Optical sensors can be used to assess crop N status to assist with N fertilizer management. Differences between cultivars may affect optical sensor measurement. Cultivar effects on measurements made with the SPAD-502 (Soil Plant Analysis Development) meter and the MC-100 (Chlorophyll Concentration Meter), and of several vegetation indices measured with the Crop Circle ACS470 canopy reflectance sensor, were assessed. A cucumber (Cucumis sativus L.) crop was grown in a greenhouse, with three cultivars. Each cultivar received three N treatments, of increasing N concentration, being deficient (N1), sufficient (N2) and excessive (N3). There were significant differences between cultivars in the measurements made with both chlorophyll meters, part...
Optical sensors are a fast and nondestructive new technology used to estimate plant chlorophyll cont...
Optical sensors are a fast and nondestructive new technology used to estimate plant chlorophyll cont...
Intensive vegetable production is commonly associated with excessive nitrogen (N) fertilization and ...
Optical sensors can be used to assess crop N status to assist with N fertilizer management. Differen...
Cocoplum (Chrysobalanus icaco) is an ecologically significant native species to Southern Florida. Ap...
Cocoplum (Chrysobalanus icaco) is an ecologically significant native species to Southern Florida. Ap...
Relationships between destructive and non-destructive nitrogen analysis were evaluated by using data...
ABSTRACT.Optical sensors are a promising approach for assessing nitrogen (N) status of vegetable cro...
Water and nitrogen (N) are undoubtedly the two largest agricultural inputs globally. Coupled with ad...
Water and nitrogen (N) are undoubtedly the two largest agricultural inputs globally. Coupled with ad...
Water and nitrogen (N) are undoubtedly the two largest agricultural inputs globally. Coupled with ad...
Optimal nitrogen (N) management is essential for profitable vegetable crop production and to minimiz...
Water and nitrogen (N) are undoubtedly the two largest agricultural inputs globally. Coupled with ad...
Optimal nitrogen (N) management is essential for profitable vegetable crop production and to minimiz...
Water and nitrogen (N) are undoubtedly the two largest agricultural inputs globally. Coupled with ad...
Optical sensors are a fast and nondestructive new technology used to estimate plant chlorophyll cont...
Optical sensors are a fast and nondestructive new technology used to estimate plant chlorophyll cont...
Intensive vegetable production is commonly associated with excessive nitrogen (N) fertilization and ...
Optical sensors can be used to assess crop N status to assist with N fertilizer management. Differen...
Cocoplum (Chrysobalanus icaco) is an ecologically significant native species to Southern Florida. Ap...
Cocoplum (Chrysobalanus icaco) is an ecologically significant native species to Southern Florida. Ap...
Relationships between destructive and non-destructive nitrogen analysis were evaluated by using data...
ABSTRACT.Optical sensors are a promising approach for assessing nitrogen (N) status of vegetable cro...
Water and nitrogen (N) are undoubtedly the two largest agricultural inputs globally. Coupled with ad...
Water and nitrogen (N) are undoubtedly the two largest agricultural inputs globally. Coupled with ad...
Water and nitrogen (N) are undoubtedly the two largest agricultural inputs globally. Coupled with ad...
Optimal nitrogen (N) management is essential for profitable vegetable crop production and to minimiz...
Water and nitrogen (N) are undoubtedly the two largest agricultural inputs globally. Coupled with ad...
Optimal nitrogen (N) management is essential for profitable vegetable crop production and to minimiz...
Water and nitrogen (N) are undoubtedly the two largest agricultural inputs globally. Coupled with ad...
Optical sensors are a fast and nondestructive new technology used to estimate plant chlorophyll cont...
Optical sensors are a fast and nondestructive new technology used to estimate plant chlorophyll cont...
Intensive vegetable production is commonly associated with excessive nitrogen (N) fertilization and ...