Non-destructive method for monitoring tomato ripening based on chlorophyll fluorescence induction
Published: 10 November 2020
Abstract Views: 2754
PDF: 1008
HTML: 298
HTML: 298
Publisher's note
All claims expressed in this article are solely those of the authors and do not necessarily represent those of their affiliated organizations, or those of the publisher, the editors and the reviewers. Any product that may be evaluated in this article or claim that may be made by its manufacturer is not guaranteed or endorsed by the publisher.
All claims expressed in this article are solely those of the authors and do not necessarily represent those of their affiliated organizations, or those of the publisher, the editors and the reviewers. Any product that may be evaluated in this article or claim that may be made by its manufacturer is not guaranteed or endorsed by the publisher.
Similar Articles
- Sergio Castellano, Pietro Santamaria, Francesco Serio, Solar radiation distribution inside a monospan greenhouse with the roof entirely covered by photovoltaic panels , Journal of Agricultural Engineering: Vol. 47 No. 1 (2016)
- Silvana Fuina, Giuseppe C. Marano, Giuseppe Puglisi, Domenico De Tommasi, Giacomo Scarascia-Mugnozza, Thermo-mechanical response of rigid plastic laminates for greenhouse covering , Journal of Agricultural Engineering: Vol. 47 No. 3 (2016)
- Alessandro Comegna, Antonio Coppola, Giovanna Dragonetti, Time domain reflectometry for dielectric characterization of olive mill wastewater contaminated soils , Journal of Agricultural Engineering: Vol. 51 No. 4 (2020)
- Carlos Alejandro Perez Garcia, Marco Bovo, Daniele Torreggiani, Patrizia Tassinari, Stefano Benni, 3D numerical modelling of temperature and humidity index distribution in livestock structures: a cattle-barn case study , Journal of Agricultural Engineering: Vol. 54 No. 3 (2023)
- Ester Foppa-Pedretti, Giovanni Riva, Giuseppe Toscano, Daniele Duca, CONSIDERATIONS ON RENEWABLE ENERGY SOURCES AND THEIR RELATED PERSPECTIVES OFAGRICULTURAL ENGINEERING , Journal of Agricultural Engineering: Vol. 41 No. 2 (2010)
- Francesco M. Tangorra, Aldo Calcante, Stefano Nava, Gabriele Marchesi, Massimo Lazzari, Design and testing of a GPS/GSM collar prototype to combat cattle rustling , Journal of Agricultural Engineering: Vol. 44 No. 2 (2013)
- Giulio Senes, Natalia Fumagalli, Paolo Stefano Ferrario, Daniele Gariboldi, Roberto Rovelli, Municipal community gardens in the metropolitan area of Milano. Assessment and planning criteria , Journal of Agricultural Engineering: Vol. 47 No. 2 (2016)
- Mohammad Bijankhan, Vito Ferro, Dimensional analysis and stage-discharge relationship for weirs: a review , Journal of Agricultural Engineering: Vol. 48 No. 1 (2017)
- Alessandro D'Emilio, Simona M.C. Porto, Giovanni Cascone, Marco Bella, Marco Gulino, Mitigating heat stress of dairy cows bred in a free-stall barn by sprinkler systems coupled with forced ventilation , Journal of Agricultural Engineering: Vol. 48 No. 4 (2017)
- Volodymyr Bulgakov, Simone Pascuzzi, Semjons Ivanovs, Volodymyr Kuvachov, Yulia Postol, Francesco Santoro, Viktor Melnyk, Study of the steering of a wide span vehicle controlled by a local positioning system , Journal of Agricultural Engineering: Vol. 52 No. 3 (2021)
<< < 22 23 24 25 26 27 28 29 30 31 > >>
You may also start an advanced similarity search for this article.