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1-37 of about 37 matches for site:www.ishs.org investigate potential
https://www.ishs.org/ishs-article/1378_14
Investigating the potential of moringa leaf extracts (MLEs) as potential antifungal agents against Fusarium dry rot of
https://www.ishs.org/ishs-article/1377_20
mail or user number. Request new password You are here Home » Acta Horticulturae » Acta Horticulturae 1377 Potential of solar
https://www.ishs.org/ishs-article/1378_17
also known as β- thujaplicin, was selected as a natural fungistatic substance. Hinokitiol has potential for antimicrobial
https://www.ishs.org/ishs-article/1375_4
conducted in 2020 and 2021 under northern German climate conditions to investigate genotypic differences in
https://www.ishs.org/ishs-article/1393_3
investigated. A field experiment was conducted in Sicily, Italy, to investigate the effects
https://www.ishs.org/ishs-article/1377_1
food production. A series of experiments was carried out to investigate the growing
https://www.ishs.org/ishs-article/1393_21
on carrot genes and discuss possibilities opened by high-throughput technologies to investigate and utilize
https://www.ishs.org/ishs-article/1393_11
in carrots and associated field weeds, and also to investigate the relative
https://www.ishs.org/ishs-article/1393_8
in vitro has been demonstrated in previous studies. This study aimed to investigate plant extracts’ influence on
https://www.ishs.org/ishs-article/1393_4
in the cosmetics and pharmaceutical industries. This trial aimed to investigate the effects
https://www.ishs.org/ishs-article/1377_22
1377_19 SERRES+: towards fossil-fuel-free heated greenhouse system for soilless tomato cultivation 1377_20 Potential of solar
https://www.ishs.org/ishs-article/1377_26
EC glass, able to instantaneously switch light intensity or scattering) were evaluated on their potential for production
https://www.ishs.org/ishs-article/1391_6
to enhance the crop’s nutritional requirements and also to investigate their impact on some
https://www.ishs.org/ishs-article/1377_25
are diffuse, waveband-selective, spectral-shifting, and photovoltaic materials. These have the potential to advance
https://www.ishs.org/ishs-article/1377_3
in an uncertain market, policy and climatic environment, ultimately limiting the potential of hemp
https://www.ishs.org/ishs-article/1377_10
a measurement chamber, and the leaf with the most important photosynthetic potential (defined as reference leaf
https://www.ishs.org/ishs-article/1377_4
These values allow, together with other variables, the calculation of the potential evapotranspiration which will allow
https://www.ishs.org/ishs-article/1377_11
1377_19 SERRES+: towards fossil-fuel-free heated greenhouse system for soilless tomato cultivation 1377_20 Potential of solar
https://www.ishs.org/ishs-article/1377_7
1377_19 SERRES+: towards fossil-fuel-free heated greenhouse system for soilless tomato cultivation 1377_20 Potential of solar
https://www.ishs.org/ishs-article/1377_13
1377_19 SERRES+: towards fossil-fuel-free heated greenhouse system for soilless tomato cultivation 1377_20 Potential of solar
https://www.ishs.org/ishs-article/1377_16
1377_19 SERRES+: towards fossil-fuel-free heated greenhouse system for soilless tomato cultivation 1377_20 Potential of solar
https://www.ishs.org/ishs-article/1377_24
1377_19 SERRES+: towards fossil-fuel-free heated greenhouse system for soilless tomato cultivation 1377_20 Potential of solar
https://www.ishs.org/ishs-article/1377_2
1377_19 SERRES+: towards fossil-fuel-free heated greenhouse system for soilless tomato cultivation 1377_20 Potential of solar
https://www.ishs.org/ishs-article/1377_17
1377_19 SERRES+: towards fossil-fuel-free heated greenhouse system for soilless tomato cultivation 1377_20 Potential of solar
https://www.ishs.org/ishs-article/1377_14
1377_19 SERRES+: towards fossil-fuel-free heated greenhouse system for soilless tomato cultivation 1377_20 Potential of solar
https://www.ishs.org/ishs-article/1377_6
1377_19 SERRES+: towards fossil-fuel-free heated greenhouse system for soilless tomato cultivation 1377_20 Potential of solar
https://www.ishs.org/ishs-article/1377_5
1377_19 SERRES+: towards fossil-fuel-free heated greenhouse system for soilless tomato cultivation 1377_20 Potential of solar
https://www.ishs.org/ishs-article/1377_23
1377_19 SERRES+: towards fossil-fuel-free heated greenhouse system for soilless tomato cultivation 1377_20 Potential of solar
https://www.ishs.org/ishs-article/1377_8
1377_19 SERRES+: towards fossil-fuel-free heated greenhouse system for soilless tomato cultivation 1377_20 Potential of solar
https://www.ishs.org/ishs-article/1377_27
1377_19 SERRES+: towards fossil-fuel-free heated greenhouse system for soilless tomato cultivation 1377_20 Potential of solar
https://www.ishs.org/ishs-article/1377_15
1377_19 SERRES+: towards fossil-fuel-free heated greenhouse system for soilless tomato cultivation 1377_20 Potential of solar
https://www.ishs.org/ishs-article/1377_18
1377_19 SERRES+: towards fossil-fuel-free heated greenhouse system for soilless tomato cultivation 1377_20 Potential of solar
https://www.ishs.org/ishs-article/1377_21
1377_19 SERRES+: towards fossil-fuel-free heated greenhouse system for soilless tomato cultivation 1377_20 Potential of solar
https://www.ishs.org/ishs-article/1377_19
1377_19 SERRES+: towards fossil-fuel-free heated greenhouse system for soilless tomato cultivation 1377_20 Potential of solar
https://www.ishs.org/ishs-article/1377_12
1377_19 SERRES+: towards fossil-fuel-free heated greenhouse system for soilless tomato cultivation 1377_20 Potential of solar
https://www.ishs.org/ishs-article/1377_9
1377_19 SERRES+: towards fossil-fuel-free heated greenhouse system for soilless tomato cultivation 1377_20 Potential of solar
https://www.ishs.org/ishs-article/1391_19
greenhouse vegetables in winter. A pot experiment was designed to investigate the effects