Table 1: Effect of cultivation methods and zinc levels and their methods of application on plant height and leaf area index of lentil at different growth stages (pooled data)
Table 2: Effect of cultivation methods and zinc levels and their methods of application on dry matter accumulation and crop growth rate of lentil at different growth stages
Table 3: Effect of cultivation methods and zinc levels and their methods of application on yield, Zn concentration and Zn uptake of lentil
Table 4: Effect of cultivation methods and zinc levels and their methods of application on zinc use efficiency indices of lentil
Figure 1: Correlation between Zn level and grain Zn concentration
Figure 2: Correlation between Zn level and stover Zn concentration
Figure 3: Correlation between Zn level and grain Zn uptake
Figure 4: Correlation between Zn level and stover Zn uptake
Figure 5: Correlation between grain yield and grain Zn uptake
Figure 6: Correlation between stover yield and stover Zn uptake
Table 1: Effect of cultivation methods and zinc levels and their methods of application on plant height and leaf area index of lentil at different growth stages (pooled data)
Table 2: Effect of cultivation methods and zinc levels and their methods of application on dry matter accumulation and crop growth rate of lentil at different growth stages
Table 3: Effect of cultivation methods and zinc levels and their methods of application on yield, Zn concentration and Zn uptake of lentil
Table 4: Effect of cultivation methods and zinc levels and their methods of application on zinc use efficiency indices of lentil
Figure 1: Correlation between Zn level and grain Zn concentration
Figure 2: Correlation between Zn level and stover Zn concentration
Figure 3: Correlation between Zn level and grain Zn uptake
Figure 4: Correlation between Zn level and stover Zn uptake
Figure 5: Correlation between grain yield and grain Zn uptake
Figure 6: Correlation between stover yield and stover Zn uptake
Table 1: Effect of cultivation methods and zinc levels and their methods of application on plant height and leaf area index of lentil at different growth stages (pooled data)
Table 2: Effect of cultivation methods and zinc levels and their methods of application on dry matter accumulation and crop growth rate of lentil at different growth stages
Table 3: Effect of cultivation methods and zinc levels and their methods of application on yield, Zn concentration and Zn uptake of lentil
Table 4: Effect of cultivation methods and zinc levels and their methods of application on zinc use efficiency indices of lentil
Figure 1: Correlation between Zn level and grain Zn concentration
Figure 2: Correlation between Zn level and stover Zn concentration
Figure 3: Correlation between Zn level and grain Zn uptake
Figure 4: Correlation between Zn level and stover Zn uptake
Figure 5: Correlation between grain yield and grain Zn uptake
Figure 6: Correlation between stover yield and stover Zn uptake
Table 1: Effect of cultivation methods and zinc levels and their methods of application on plant height and leaf area index of lentil at different growth stages (pooled data)
Table 2: Effect of cultivation methods and zinc levels and their methods of application on dry matter accumulation and crop growth rate of lentil at different growth stages
Table 3: Effect of cultivation methods and zinc levels and their methods of application on yield, Zn concentration and Zn uptake of lentil
Table 4: Effect of cultivation methods and zinc levels and their methods of application on zinc use efficiency indices of lentil
Figure 1: Correlation between Zn level and grain Zn concentration
Figure 2: Correlation between Zn level and stover Zn concentration
Figure 3: Correlation between Zn level and grain Zn uptake
Figure 4: Correlation between Zn level and stover Zn uptake
Figure 5: Correlation between grain yield and grain Zn uptake
Figure 6: Correlation between stover yield and stover Zn uptake
Table 1: Effect of cultivation methods and zinc levels and their methods of application on plant height and leaf area index of lentil at different growth stages (pooled data)
Table 2: Effect of cultivation methods and zinc levels and their methods of application on dry matter accumulation and crop growth rate of lentil at different growth stages
Table 3: Effect of cultivation methods and zinc levels and their methods of application on yield, Zn concentration and Zn uptake of lentil
Table 4: Effect of cultivation methods and zinc levels and their methods of application on zinc use efficiency indices of lentil
Figure 1: Correlation between Zn level and grain Zn concentration
Figure 2: Correlation between Zn level and stover Zn concentration
Figure 3: Correlation between Zn level and grain Zn uptake
Figure 4: Correlation between Zn level and stover Zn uptake
Figure 5: Correlation between grain yield and grain Zn uptake
Figure 6: Correlation between stover yield and stover Zn uptake
Table 1: Effect of cultivation methods and zinc levels and their methods of application on plant height and leaf area index of lentil at different growth stages (pooled data)
Table 2: Effect of cultivation methods and zinc levels and their methods of application on dry matter accumulation and crop growth rate of lentil at different growth stages
Table 3: Effect of cultivation methods and zinc levels and their methods of application on yield, Zn concentration and Zn uptake of lentil
Table 4: Effect of cultivation methods and zinc levels and their methods of application on zinc use efficiency indices of lentil
Figure 1: Correlation between Zn level and grain Zn concentration
Figure 2: Correlation between Zn level and stover Zn concentration
Figure 3: Correlation between Zn level and grain Zn uptake
Figure 4: Correlation between Zn level and stover Zn uptake
Figure 5: Correlation between grain yield and grain Zn uptake
Figure 6: Correlation between stover yield and stover Zn uptake
Table 1: Effect of cultivation methods and zinc levels and their methods of application on plant height and leaf area index of lentil at different growth stages (pooled data)
Table 2: Effect of cultivation methods and zinc levels and their methods of application on dry matter accumulation and crop growth rate of lentil at different growth stages
Table 3: Effect of cultivation methods and zinc levels and their methods of application on yield, Zn concentration and Zn uptake of lentil
Table 4: Effect of cultivation methods and zinc levels and their methods of application on zinc use efficiency indices of lentil
Figure 1: Correlation between Zn level and grain Zn concentration
Figure 2: Correlation between Zn level and stover Zn concentration
Figure 3: Correlation between Zn level and grain Zn uptake
Figure 4: Correlation between Zn level and stover Zn uptake
Figure 5: Correlation between grain yield and grain Zn uptake
Figure 6: Correlation between stover yield and stover Zn uptake
Table 1: Effect of cultivation methods and zinc levels and their methods of application on plant height and leaf area index of lentil at different growth stages (pooled data)
Table 2: Effect of cultivation methods and zinc levels and their methods of application on dry matter accumulation and crop growth rate of lentil at different growth stages
Table 3: Effect of cultivation methods and zinc levels and their methods of application on yield, Zn concentration and Zn uptake of lentil
Table 4: Effect of cultivation methods and zinc levels and their methods of application on zinc use efficiency indices of lentil
Figure 1: Correlation between Zn level and grain Zn concentration
Figure 2: Correlation between Zn level and stover Zn concentration
Figure 3: Correlation between Zn level and grain Zn uptake
Figure 4: Correlation between Zn level and stover Zn uptake
Figure 5: Correlation between grain yield and grain Zn uptake
Figure 6: Correlation between stover yield and stover Zn uptake
Table 1: Effect of cultivation methods and zinc levels and their methods of application on plant height and leaf area index of lentil at different growth stages (pooled data)
Table 2: Effect of cultivation methods and zinc levels and their methods of application on dry matter accumulation and crop growth rate of lentil at different growth stages
Table 3: Effect of cultivation methods and zinc levels and their methods of application on yield, Zn concentration and Zn uptake of lentil
Table 4: Effect of cultivation methods and zinc levels and their methods of application on zinc use efficiency indices of lentil
Figure 1: Correlation between Zn level and grain Zn concentration
Figure 2: Correlation between Zn level and stover Zn concentration
Figure 3: Correlation between Zn level and grain Zn uptake
Figure 4: Correlation between Zn level and stover Zn uptake
Figure 5: Correlation between grain yield and grain Zn uptake
Figure 6: Correlation between stover yield and stover Zn uptake
Table 1: Effect of cultivation methods and zinc levels and their methods of application on plant height and leaf area index of lentil at different growth stages (pooled data)
Table 2: Effect of cultivation methods and zinc levels and their methods of application on dry matter accumulation and crop growth rate of lentil at different growth stages
Table 3: Effect of cultivation methods and zinc levels and their methods of application on yield, Zn concentration and Zn uptake of lentil
Table 4: Effect of cultivation methods and zinc levels and their methods of application on zinc use efficiency indices of lentil
Figure 1: Correlation between Zn level and grain Zn concentration
Figure 2: Correlation between Zn level and stover Zn concentration
Figure 3: Correlation between Zn level and grain Zn uptake
Figure 4: Correlation between Zn level and stover Zn uptake
Figure 5: Correlation between grain yield and grain Zn uptake
Figure 6: Correlation between stover yield and stover Zn uptake
People also read
Animal Resource management
Anti-trypanosomal Potential of Methanolic Extract of Calotropis gigantea Leaves against Trypanosma evansi and its Cytotoxicity
P. Shaba, N. N. Pandey, O. P. Sharma, J. R. Rao and R. K. SinghCalotropis gigantea leaves, anti-trypanosomal activity, cytotoxicity test
Published Online : 07 Mar 2011
Changes in the Chemical Properties of a Soil Impacted by Intensive Agriculture, North-eastern Mexico
F. Silva-Arredondo, M. Pando Moreno*, H. Gonzalez Rodriguez and L. Scott MoralesAgrochemicals, potato cropping, Chihuahuan desert, Mexican plateau
Published Online : 07 Jun 2013
Full Research
Morphological and Molecular Variability of Rhizoctonia solani Isolates Causing Banded Leaf and Sheath Blight in Maize
M. Madhavi, P. Narayan Reddy, R. Ranga Reddy and S. Sokka ReddyRhizoctonia solani, morphological variability, PCA, genetic variability
Published Online : 07 Jun 2015
Effect of Tillage and Organic Manures on Soil Moisture and Performance of Rainfed Groundnut (Arachis hypogea L.)
D. P. Sanepara, P. D. Vekariya, V. D. Vora, M. S. Gajera and K. N. AkbariDeep tillage, FYM, soil moisture, groundnut yield, economics
Published Online : 07 Aug 2015
Research Article
Yield Maximization in Pigeonpea through Various Crop Management Practices in Humid South Eastern Plain Zone of Rajasthan
S. N. Meena, Chaman Jadon, B. S. Meena, H. P. Meena, Pratap Singh and M. L. JatVermicompost, pendimethalin, imazethapyr, indoxacarb, INM, IWM, IPM
Published Online : 14 Jan 2020
Full article
Study of Socio-economic and Psychological Characteristics of Farmers towards Climate Change
Pankaj Kumar Meghwal, Rajkumar Josmee Singh, Muthu Lakshmi B., Inne Lego and Konjengbam Monika DeviClimate change, socio-economic, psychological, sampling
Published Online : 23 Apr 2018