🔬 Carențe nutritive — Tomate câmp
5 elemente nutritive urmărite · repere fiziologice, fără diagnostic de carență
Cardurile de mai sus includ numai elementele urmărite pentru carențe la această cultură. Rolurile fiziologice pentru celelalte elemente sunt prezentate în reperele fiziologice BBCH. Absența unui rol specific din această pagină nu indică absența elementului din plantă. Ghidurile generale se deschid din cardurile de mai sus.
Elemente nutritive la alte culturi
Culturi din aceeași grupă agronomică.
Carențe la Ardei (general)
Capsicum annuum L.
Carențe frecvente comune (CA, B, MG)
Carențe la Ardei gras
Capsicum annuum L. (tip blocky/dulce)
Carențe frecvente comune (CA, B, MG)
Carențe la Ardei Kapia
Capsicum annuum L. (tip Kapia)
Carențe frecvente comune (CA, B, MG)
Carențe la Gogoșar
Capsicum annuum L. (tip Gogoșar)
Carențe frecvente comune (CA, B, MG)
Carențe la Tomate seră
Solanum lycopersicum L.
Înrudire botanică (gen Solanum)
Carențe la Cartof timpuriu
Solanum tuberosum L. (producție timpurie)
Înrudire botanică (gen Solanum)
Surse și referințe tehnice
Conținutul acestei pagini se bazează pe publicații științifice, reglementări oficiale și ghiduri tehnice validate de institute de cercetare și organizații agricole internaționale.
Marschner, H.(2012)
Mineral Nutrition of Higher Plants (3rd ed.) — Elsevier
FAO(2008)
Micronutrient Deficiencies in Global Crop Production
IPNI — International Plant Nutrition Institute(2014)
Nutrient Deficiency Symptoms — Visual Guide for Field Crops
Diagnosticarea carențelor nutritive la principalele culturi de câmp din România
Bergmann, W.(1992)
Nutritional Disorders of Plants — Gustav Fischer Verlag
Crop Production and Protection — Crop Management Technical Guidelines
IFA — International Fertilizer Association(2006)
Fertilizer Use by Crop — Nutrient Management Recommendations
Ghiduri tehnice pentru culturile agricole din România
Meier, U. (ed.) — Julius Kühn-Institut(2018)
BBCH Monograph — Growth Stages of Major Agricultural Crops
Feller et al. (1995b), in Meier U. (ed.)(2001)
Phenological growth stages and BBCH-identification keys of solanaceous fruits — BBCH Monograph, 2nd edition · Growth stages of mono- and dicotyledonous plants — BBCH Monograph (2nd ed.) — BBCH Monograph, 2nd edition · Scala BBCH — 00 · Scala BBCH — 09 · Scala BBCH — 11 · Scala BBCH — 13 · Scala BBCH — 21 · Scala BBCH — 51 · Scala BBCH — 61 · Scala BBCH — 65 · Scala BBCH — 71 · Scala BBCH — 79 · Scala BBCH — 81 · Scala BBCH — 89 · Phenological growth stages and BBCH-identification keys of solanaceous fruits · Phenological growth stages and BBCH-identification keys of solanaceous fruits · Phenological growth stages and BBCH-identification keys of solanaceous fruits · Phenological growth stages and BBCH-identification keys of solanaceous fruits · Phenological growth stages and BBCH-identification keys of solanaceous fruits · Phenological growth stages and BBCH-identification keys of solanaceous fruits · Phenological growth stages and BBCH-identification keys of solanaceous fruits · Phenological growth stages and BBCH-identification keys of solanaceous fruits · Phenological growth stages and BBCH-identification keys of solanaceous fruits · Phenological growth stages and BBCH-identification keys of solanaceous fruits · Phenological growth stages and BBCH-identification keys of solanaceous fruits · Phenological growth stages and BBCH-identification keys of solanaceous fruits
Context, roluri și localizări (20)
- BBCH 00. Dry seeds — Germination Localizare: BBCH Monograph 2nd ed. (2001), p. 134, Principal growth stage 0: Germination
- BBCH 09. Emergence: coryledons break through soil surface — Germination Localizare: BBCH Monograph 2nd ed. (2001), p. 134, Principal growth stage 0: Germination
- BBCH 11. First true leaf on main shoot fully unfolded — Leaf development Localizare: BBCH Monograph 2nd ed. (2001), p. 134, Principal growth stage 1: Leaf development
- BBCH 13. 3rd leaf on main shoot unfolded — Leaf development Localizare: BBCH Monograph 2nd ed. (2001), p. 134, Principal growth stage 1: Leaf development
- BBCH 21. First primary apical side shoot visible — Formation of side shoots1 Localizare: BBCH Monograph 2nd ed. (2001), p. 134, Principal growth stage 2: Formation of side shoots1
- BBCH 51. First inflorescence visible (first bud erect)2 First flower bud visible3 — Inflorescence emergence Localizare: BBCH Monograph 2nd ed. (2001), p. 135, Principal growth stage 5: Inflorescence emergence
- BBCH 61. First inflorescence: first flower open2 First flower open3 — Flowering Localizare: BBCH Monograph 2nd ed. (2001), p. 135, Principal growth stage 6: Flowering
- BBCH 65. 5 inflorescences with open flowers — Flowering Localizare: Meier (2001), pp. 134–136, Principal growth stage 6, compressed source row expanded to code 65
- BBCH 71. First fruit cluster: first fruit has reached typical size2 First fruit has reached typical size and form3 — Development of fruit Localizare: BBCH Monograph 2nd ed. (2001), p. 136, Principal growth stage 7: Development of fruit
- BBCH 79. 9 or more fruit clusters with fruits of typical size (2digit) 9th fruit cluster: first fruit has reached typical size (3digit)2 9 or more fruits have reached typical size and form (2digit) 9th fruit has reached typical size and form (3digit)3 — Development of fruit Localizare: BBCH Monograph 2nd ed. (2001), p. 136, Principal growth stage 7: Development of fruit
- BBCH 81. 10% of fruits show typical fully ripe colour — Ripening of fruit and seed Localizare: BBCH Monograph 2nd ed. (2001), p. 136, Principal growth stage 8: Ripening of fruit and seed
- BBCH 89. Fully ripe: fruits have typical fully ripe colour3 — Ripening of fruit and seed Localizare: BBCH Monograph 2nd ed. (2001), p. 136, Principal growth stage 8: Ripening of fruit and seed
- BBCH 00.
- BBCH 09.
- BBCH 11.
- BBCH 13.
- BBCH 21.
- BBCH 51.
- BBCH 61.
- BBCH 65.
- BBCH 71.
- BBCH 79.
- BBCH 81.
- BBCH 89.
- BBCH 00. Semințe uscate Germinare Localizare: BBCH Monograph 2nd ed. (2001), p. 134, Principal growth stage 0: Germination
- BBCH 09. Răsărire: cotiledoanele străpung suprafața solului Germinare Localizare: BBCH Monograph 2nd ed. (2001), p. 134, Principal growth stage 0: Germination
- BBCH 11. Prima frunză adevărată de pe lăstarul principal complet desfășurată Dezvoltarea frunzelor Localizare: BBCH Monograph 2nd ed. (2001), p. 134, Principal growth stage 1: Leaf development
- BBCH 13. A 3-a frunză de pe lăstarul principal desfășurată Dezvoltarea frunzelor Localizare: BBCH Monograph 2nd ed. (2001), p. 134, Principal growth stage 1: Leaf development
- BBCH 21. Primul lăstar lateral apical primar vizibil Formarea lăstarilor laterali Localizare: BBCH Monograph 2nd ed. (2001), p. 134, Principal growth stage 2: Formation of side shoots1
- BBCH 51. Prima inflorescență vizibilă (primul mugure erect). Primul mugure floral vizibil. Apariția inflorescenței Localizare: BBCH Monograph 2nd ed. (2001), p. 135, Principal growth stage 5: Inflorescence emergence
- BBCH 61. Prima inflorescență: prima floare deschisă. Înflorire Localizare: BBCH Monograph 2nd ed. (2001), p. 135, Principal growth stage 6: Flowering
- BBCH 65. 5 inflorescențe cu flori deschise Înflorire Localizare: Meier (2001), pp. 134–136, Principal growth stage 6, compressed source row expanded to code 65
- BBCH 71. Primul ciorchine de fructe: primul fruct a atins dimensiunea tipică2 Primul fruct a atins dimensiunea și forma tipică3 Dezvoltarea fructului Localizare: BBCH Monograph 2nd ed. (2001), p. 136, Principal growth stage 7: Development of fruit
- BBCH 79. 9 sau mai multe ciorchini de fructe cu fructe de dimensiune tipică (cod cu 2 cifre) Al 9-lea ciorchine de fructe: primul fruct a atins dimensiunea tipică (cod cu 3 cifre)2 9 sau mai multe fructe au atins dimensiunea și forma tipică (cod cu 2 cifre) Al 9-lea fruct a atins dimensiunea și forma tipică (cod cu 3 cifre)3 Dezvoltarea fructului Localizare: BBCH Monograph 2nd ed. (2001), p. 136, Principal growth stage 7: Development of fruit
- BBCH 81. 10% dintre fructe prezintă culoarea tipică de maturitate deplină Maturarea fructului și seminței Localizare: BBCH Monograph 2nd ed. (2001), p. 136, Principal growth stage 8: Ripening of fruit and seed
- BBCH 89. Complet matur: fructele au culoarea tipică de maturitate deplină. Maturarea fructului și seminței Localizare: BBCH Monograph 2nd ed. (2001), p. 136, Principal growth stage 8: Ripening of fruit and seed
- BBCH 00. Phenological growth stages and BBCH-identification keys of solanaceous fruits (BBCH Monograph, 2nd edition) Localizare: https://www.openagrar.de/receive/openagrar_mods_00042351; Dry seeds
- BBCH 09. Phenological growth stages and BBCH-identification keys of solanaceous fruits (BBCH Monograph, 2nd edition) Localizare: https://www.openagrar.de/receive/openagrar_mods_00042351; Emergence: coryledons break through soil surface
- BBCH 11. Phenological growth stages and BBCH-identification keys of solanaceous fruits (BBCH Monograph, 2nd edition) Localizare: https://www.openagrar.de/receive/openagrar_mods_00042351; First true leaf on main shoot fully unfolded
- BBCH 13. Phenological growth stages and BBCH-identification keys of solanaceous fruits (BBCH Monograph, 2nd edition) Localizare: https://www.openagrar.de/receive/openagrar_mods_00042351; 3rd leaf on main shoot unfolded
- BBCH 21. Phenological growth stages and BBCH-identification keys of solanaceous fruits (BBCH Monograph, 2nd edition) Localizare: https://www.openagrar.de/receive/openagrar_mods_00042351; First primary apical side shoot visible
- BBCH 51. Phenological growth stages and BBCH-identification keys of solanaceous fruits (BBCH Monograph, 2nd edition) Localizare: https://www.openagrar.de/receive/openagrar_mods_00042351; First inflorescence visible (first bud erect)2 First flower bud visible3
- BBCH 61. Phenological growth stages and BBCH-identification keys of solanaceous fruits (BBCH Monograph, 2nd edition) Localizare: https://www.openagrar.de/receive/openagrar_mods_00042351; First inflorescence: first flower open2 First flower open3
- BBCH 65. Phenological growth stages and BBCH-identification keys of solanaceous fruits (BBCH Monograph, 2nd edition) Localizare: https://www.openagrar.de/receive/openagrar_mods_00042351; 5 inflorescences with open flowers
- BBCH 71. Phenological growth stages and BBCH-identification keys of solanaceous fruits (BBCH Monograph, 2nd edition) Localizare: https://www.openagrar.de/receive/openagrar_mods_00042351; First fruit cluster: first fruit has reached typical size2 First fruit has reached typical size and form3
- BBCH 79. Phenological growth stages and BBCH-identification keys of solanaceous fruits (BBCH Monograph, 2nd edition) Localizare: https://www.openagrar.de/receive/openagrar_mods_00042351; 9 or more fruit clusters with fruits of typical size (2digit) 9th fruit cluster: first fruit has reached typical size (3digit)2 9 or more fruits have reached typical size and form (2digit) 9th fruit has reached typical size and form (3digit)3
- BBCH 81. Phenological growth stages and BBCH-identification keys of solanaceous fruits (BBCH Monograph, 2nd edition) Localizare: https://www.openagrar.de/receive/openagrar_mods_00042351; 10% of fruits show typical fully ripe colour
- BBCH 89. Phenological growth stages and BBCH-identification keys of solanaceous fruits (BBCH Monograph, 2nd edition) Localizare: https://www.openagrar.de/receive/openagrar_mods_00042351; Fully ripe: fruits have typical fully ripe colour3
Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
Context, roluri și localizări (1)
- BBCH 00. N Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 00. P Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 00. K Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 00. Ca Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 00. Mg Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 00. S Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 00. Fe Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 00. Mn Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 00. Zn Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 00. B Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 00. Cu Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 00. Mo Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 09. N Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 09. P Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 09. K Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 09. Ca Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 09. Mg Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 09. S Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 09. Fe Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 09. Mn Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 09. Zn Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 09. B Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 09. Cu Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 09. Mo Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 11. N Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 11. P Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 11. K Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 11. Ca Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 11. Mg Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 11. S Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 11. Fe Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 11. Mn Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 11. Zn Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 11. B Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 11. Cu Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 11. Mo Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 13. N Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 13. P Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 13. K Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 13. Ca Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 13. Mg Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 13. S Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 13. Fe Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 13. Mn Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 13. Zn Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 13. B Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 13. Cu Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 13. Mo Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 21. N Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 21. P Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 21. K Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 21. Ca Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 21. Mg Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 21. S Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 21. Fe Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 21. Mn Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 21. Zn Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 21. B Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 21. Cu Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 21. Mo Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 51. N Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 51. P Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 51. K Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 51. Ca Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 51. Mg Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 51. S Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 51. Fe Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 51. Mn Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 51. Zn Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 51. B Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 51. Cu Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 51. Mo Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 61. N Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 61. P Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 61. K Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 61. Ca Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 61. Mg Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 61. S Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 61. Fe Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 61. Mn Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 61. Zn Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 61. B Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 61. Cu Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 61. Mo Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 65. N Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 65. P Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 65. K Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 65. Ca Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 65. Mg Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 65. S Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 65. Fe Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 65. Mn Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 65. Zn Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 65. B Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 65. Cu Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 65. Mo Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 71. N Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 71. P Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 71. K Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 71. Ca Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 71. Mg Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 71. S Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 71. Fe Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 71. Mn Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 71. Zn Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 71. B Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 71. Cu Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 71. Mo Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 79. N Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 79. P Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 79. K Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 79. Ca Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 79. Mg Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 79. S Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 79. Fe Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 79. Mn Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 79. Zn Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 79. B Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 79. Cu Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 79. Mo Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 81. N Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 81. P Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 81. K Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 81. Ca Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 81. Mg Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 81. S Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 81. Fe Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 81. Mn Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 81. Zn Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 81. B Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 81. Cu Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 81. Mo Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 89. N Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 89. P Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 89. K Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 89. Ca Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 89. Mg Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 89. S Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 89. Fe Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 89. Mn Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 89. Zn Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 89. B Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 89. Cu Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
- BBCH 89. Mo Localizare: Evaluation of the Nutrients Uptake by Tomato Plants in Different Phenological Stages Using an Electrical Conductivity Technique; https://www.mdpi.com/2077-0472/11/4/292; Section 2.2 [L348-359], Section 2.4 [L376-380], Table 1 [L540-568]. domeniu verificat: Tomato (Brillante F1) grown in a greenhouse in Iasi, Romania. limită: The method cannot be used for very long periods of time because the plant begins to form a callus around the electrode.
Referință tehnică
Phenological growth stages and BBCH-identification keys of solanaceous fruits (BBCH Monograph, 2nd edition)
Context, roluri și localizări (1)
- BBCH 00. Localizare: Phenological growth stages and BBCH-identification keys of solanaceous fruits (BBCH Monograph, 2nd edition)
- BBCH 09. Localizare: Phenological growth stages and BBCH-identification keys of solanaceous fruits (BBCH Monograph, 2nd edition)
- BBCH 11. Localizare: Phenological growth stages and BBCH-identification keys of solanaceous fruits (BBCH Monograph, 2nd edition)
- BBCH 13. Localizare: Phenological growth stages and BBCH-identification keys of solanaceous fruits (BBCH Monograph, 2nd edition)
- BBCH 21. Localizare: Phenological growth stages and BBCH-identification keys of solanaceous fruits (BBCH Monograph, 2nd edition)
- BBCH 51. Localizare: Phenological growth stages and BBCH-identification keys of solanaceous fruits (BBCH Monograph, 2nd edition)
- BBCH 61. Localizare: Phenological growth stages and BBCH-identification keys of solanaceous fruits (BBCH Monograph, 2nd edition)
- BBCH 65. Localizare: Phenological growth stages and BBCH-identification keys of solanaceous fruits (BBCH Monograph, 2nd edition)
- BBCH 71. Localizare: Phenological growth stages and BBCH-identification keys of solanaceous fruits (BBCH Monograph, 2nd edition)
- BBCH 79. Localizare: Phenological growth stages and BBCH-identification keys of solanaceous fruits (BBCH Monograph, 2nd edition)
- BBCH 81. Localizare: Phenological growth stages and BBCH-identification keys of solanaceous fruits (BBCH Monograph, 2nd edition)
- BBCH 89. Localizare: Phenological growth stages and BBCH-identification keys of solanaceous fruits (BBCH Monograph, 2nd edition)
Referință tehnică
301164
Context, roluri și localizări (2)
- transplantare–3/4 săptămâni. Prindere și rădăcină înainte de creșterea rapidă. — Creșterea și absorbția N sunt relativ lente în primele 3–4 săptămâni după transplantare.
- fructificare intensă / umplere. Susținerea relației dintre organele sursă și cele consumatoare și a calibrului. — Din 4 WAT până la începutul coacerii, culturile viguroase pot absorbi în medie ~4 lb N/ac/zi; după coacere absorbția scade.
tomato production
Context, roluri și localizări (1)
- transplantare–3/4 săptămâni. Prindere și rădăcină înainte de creșterea rapidă. — Creșterea și absorbția N sunt relativ lente în primele 3–4 săptămâni după transplantare.
rofert start
Context, roluri și localizări (1)
- transplantare–3/4 săptămâni. Prindere și rădăcină înainte de creșterea rapidă. — Creșterea și absorbția N sunt relativ lente în primele 3–4 săptămâni după transplantare.
rofert max
Context, roluri și localizări (3)
- transplantare–3/4 săptămâni. Prindere și rădăcină înainte de creșterea rapidă. — Creșterea și absorbția N sunt relativ lente în primele 3–4 săptămâni după transplantare.
- primul boboc–prima floare. Menținerea vegetației și pregătirea setului fructelor. — Din ~4 WAT până la începutul coacerii, absorbția de N devine rapidă; primul înflorit este fereastra optimă de diagnostic tisular.
- fructificare intensă / umplere. Susținerea relației dintre organele sursă și cele consumatoare și a calibrului. — Din 4 WAT până la începutul coacerii, culturile viguroase pot absorbi în medie ~4 lb N/ac/zi; după coacere absorbția scade.
rofert pk
Context, roluri și localizări (3)
- transplantare–3/4 săptămâni. Prindere și rădăcină înainte de creșterea rapidă. — Creșterea și absorbția N sunt relativ lente în primele 3–4 săptămâni după transplantare.
- primul boboc–prima floare. Menținerea vegetației și pregătirea setului fructelor. — Din ~4 WAT până la începutul coacerii, absorbția de N devine rapidă; primul înflorit este fereastra optimă de diagnostic tisular.
- fructificare intensă / umplere. Susținerea relației dintre organele sursă și cele consumatoare și a calibrului. — Din 4 WAT până la începutul coacerii, culturile viguroase pot absorbi în medie ~4 lb N/ac/zi; după coacere absorbția scade.
tomate camp
Context, roluri și localizări (1)
- transplantare–3/4 săptămâni. Prindere și rădăcină înainte de creșterea rapidă. — Creșterea și absorbția N sunt relativ lente în primele 3–4 săptămâni după transplantare.
fertilization
Context, roluri și localizări (3)
- primul boboc–prima floare. Menținerea vegetației și pregătirea setului fructelor. — Din ~4 WAT până la începutul coacerii, absorbția de N devine rapidă; primul înflorit este fereastra optimă de diagnostic tisular.
- fructificare intensă / umplere. Susținerea relației dintre organele sursă și cele consumatoare și a calibrului. — Din 4 WAT până la începutul coacerii, culturile viguroase pot absorbi în medie ~4 lb N/ac/zi; după coacere absorbția scade.
- coacere–pre-recoltare. Maturare uniformă și calitate. — Odată cu coacerea, absorbția N scade; stimularea vegetativă tardivă este nedorită.
76738
Context, roluri și localizări (3)
- primul boboc–prima floare. Menținerea vegetației și pregătirea setului fructelor. — Din ~4 WAT până la începutul coacerii, absorbția de N devine rapidă; primul înflorit este fereastra optimă de diagnostic tisular.
- înflorire deplină–legarea primelor fructe. Legare și creșterea fructelor tinere cu integritate celulară. — Ca în fruct depinde de fluxul de apă; K și NH4-N excesive concurează indirect cu Ca și stimulează vegetația.
- coacere–pre-recoltare. Maturare uniformă și calitate. — Odată cu coacerea, absorbția N scade; stimularea vegetativă tardivă este nedorită.
rofert ks
Context, roluri și localizări (4)
- primul boboc–prima floare. Menținerea vegetației și pregătirea setului fructelor. — Din ~4 WAT până la începutul coacerii, absorbția de N devine rapidă; primul înflorit este fereastra optimă de diagnostic tisular.
- înflorire deplină–legarea primelor fructe. Legare și creșterea fructelor tinere cu integritate celulară. — Ca în fruct depinde de fluxul de apă; K și NH4-N excesive concurează indirect cu Ca și stimulează vegetația.
- fructificare intensă / umplere. Susținerea relației dintre organele sursă și cele consumatoare și a calibrului. — Din 4 WAT până la începutul coacerii, culturile viguroase pot absorbi în medie ~4 lb N/ac/zi; după coacere absorbția scade.
- coacere–pre-recoltare. Maturare uniformă și calitate. — Odată cu coacerea, absorbția N scade; stimularea vegetativă tardivă este nedorită.
rofert mg
Context, roluri și localizări (4)
- primul boboc–prima floare. Menținerea vegetației și pregătirea setului fructelor. — Din ~4 WAT până la începutul coacerii, absorbția de N devine rapidă; primul înflorit este fereastra optimă de diagnostic tisular.
- înflorire deplină–legarea primelor fructe. Legare și creșterea fructelor tinere cu integritate celulară. — Ca în fruct depinde de fluxul de apă; K și NH4-N excesive concurează indirect cu Ca și stimulează vegetația.
- fructificare intensă / umplere. Susținerea relației dintre organele sursă și cele consumatoare și a calibrului. — Din 4 WAT până la începutul coacerii, culturile viguroase pot absorbi în medie ~4 lb N/ac/zi; după coacere absorbția scade.
- coacere–pre-recoltare. Maturare uniformă și calitate. — Odată cu coacerea, absorbția N scade; stimularea vegetativă tardivă este nedorită.
fertilizare
Context, roluri și localizări (2)
- primul boboc–prima floare. Menținerea vegetației și pregătirea setului fructelor. — Din ~4 WAT până la începutul coacerii, absorbția de N devine rapidă; primul înflorit este fereastra optimă de diagnostic tisular.
- înflorire deplină–legarea primelor fructe. Legare și creșterea fructelor tinere cu integritate celulară. — Ca în fruct depinde de fluxul de apă; K și NH4-N excesive concurează indirect cu Ca și stimulează vegetația.
detail
Context, roluri și localizări (1)
- înflorire deplină–legarea primelor fructe. Legare și creșterea fructelor tinere cu integritate celulară. — Ca în fruct depinde de fluxul de apă; K și NH4-N excesive concurează indirect cu Ca și stimulează vegetația.
rofert ca
Context, roluri și localizări (1)
- înflorire deplină–legarea primelor fructe. Legare și creșterea fructelor tinere cu integritate celulară. — Ca în fruct depinde de fluxul de apă; K și NH4-N excesive concurează indirect cu Ca și stimulează vegetația.
rofert b
Context, roluri și localizări (1)
- înflorire deplină–legarea primelor fructe. Legare și creșterea fructelor tinere cu integritate celulară. — Ca în fruct depinde de fluxul de apă; K și NH4-N excesive concurează indirect cu Ca și stimulează vegetația.
rofert amino
Context, roluri și localizări (1)
- coacere–pre-recoltare. Maturare uniformă și calitate. — Odată cu coacerea, absorbția N scade; stimularea vegetativă tardivă este nedorită.
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