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C M Willmer

Showing results (1-10 of 6) with videos related to

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Planta|November 14, 2013
Redox activity and peroxidase activity associated with the plasma membrane of guard-cell protoplastsO Pantoja, C M Willmer
Planta|January 25, 2014
Carbon dioxide fixation by epidermal and mesophyll tissues of Tulipa and CommelinaC M Willmer, P Dittrich
Planta|January 16, 2014
Carbon dioxide assimilation in some aerial plant organs and tissuesC M Willmer, W R Johnston
Planta|January 14, 2014
Levels of short-chain fatty acids and of abscisic acid in water-stressed and non-stressed leaves and their effects on stomata in epidermal strips and excised leavesC M Willmer, R Don, W Parker
Plant Physiology|June 1, 1974
Endogenous rhythmic activity of photosynthesis, transpiration, dark respiration, and carbon dioxide compensation point of peanut leavesJ E Pallas, Y B Samish, C M Willmer
Plant Physiology|November 1, 1973
Carbon dioxide metabolism in leaf epidermal tissueC M Willmer, J E Pallas, C C Black
Pageof 1

Showing results (1-10 of 6) with videos related to

Sort By:
Pageof 1
Planta|November 14, 2013
Redox activity and peroxidase activity associated with the plasma membrane of guard-cell protoplastsO Pantoja, C M Willmer
Planta|January 25, 2014
Carbon dioxide fixation by epidermal and mesophyll tissues of Tulipa and CommelinaC M Willmer, P Dittrich
Planta|January 16, 2014
Carbon dioxide assimilation in some aerial plant organs and tissuesC M Willmer, W R Johnston
Planta|January 14, 2014
Levels of short-chain fatty acids and of abscisic acid in water-stressed and non-stressed leaves and their effects on stomata in epidermal strips and excised leavesC M Willmer, R Don, W Parker
Plant Physiology|June 1, 1974
Endogenous rhythmic activity of photosynthesis, transpiration, dark respiration, and carbon dioxide compensation point of peanut leavesJ E Pallas, Y B Samish, C M Willmer
Plant Physiology|November 1, 1973
Carbon dioxide metabolism in leaf epidermal tissueC M Willmer, J E Pallas, C C Black
Pageof 1