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K O Burkey

Showing results (11-20 of 27) with videos related to

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Biochemistry|September 15, 1981
Effect of carboxyl group modification on redox properties and electron donation capability of spinach plastocyaninK O Burkey, E L Gross
Biochemistry|May 12, 1981
Use of chemical modification to study the relationship between activity and net protein charge of the photosystem I core complexK O Burkey, E L Gross
Photosynthesis Research|January 15, 2014
Acclimation of barley to changes in light intensity: photosynthetic electron transport activity and componentsW R De la Torre, K O Burkey
Photosynthesis Research|November 26, 2013
Genetic variation in soybean photosynthetic electron transport capacity is related to plastocyanin concentration in the chloroplastK O Burkey, Z Gizlice, T E Carter
Photosynthesis Research|January 15, 2014
Acclimation of barley to changes in light intensity: chlorophyll organizationW R De la Torre, K O Burkey
Photosynthesis Research|January 11, 2014
Physiological effects of sublethal atrazine on barley chloroplast thylakoid membranesW R De la Torre, K O Burkey
Biochemistry|August 30, 1983
Determination of base pairing in ribonucleic acid by Fourier-transform infrared spectrometry: yeast ribosomal 5S ribonucleic acidK O Burkey, A G Marshall, J O Alben
The New Phytologist|November 30, 2005
Functional role of anthocyanins in high-light winter leaves of the evergreen herb Galax urceolataN M Hughes, H S Neufeld, K O Burkey
Plant Biology (Stuttgart, Germany)|January 16, 2016
Plants and the changing environmentL J De Kok, D A Grantz, K O Burkey
Plant Physiology|August 1, 1982
Effect of trypsin treatment of photosystem I particles on the electron donation to p700R Bhardwaj, K O Burkey, B C Tripathy, et al.
Pageof 3

Showing results (11-20 of 27) with videos related to

Sort By:
Pageof 3
Biochemistry|September 15, 1981
Effect of carboxyl group modification on redox properties and electron donation capability of spinach plastocyaninK O Burkey, E L Gross
Biochemistry|May 12, 1981
Use of chemical modification to study the relationship between activity and net protein charge of the photosystem I core complexK O Burkey, E L Gross
Photosynthesis Research|January 15, 2014
Acclimation of barley to changes in light intensity: photosynthetic electron transport activity and componentsW R De la Torre, K O Burkey
Photosynthesis Research|November 26, 2013
Genetic variation in soybean photosynthetic electron transport capacity is related to plastocyanin concentration in the chloroplastK O Burkey, Z Gizlice, T E Carter
Photosynthesis Research|January 15, 2014
Acclimation of barley to changes in light intensity: chlorophyll organizationW R De la Torre, K O Burkey
Photosynthesis Research|January 11, 2014
Physiological effects of sublethal atrazine on barley chloroplast thylakoid membranesW R De la Torre, K O Burkey
Biochemistry|August 30, 1983
Determination of base pairing in ribonucleic acid by Fourier-transform infrared spectrometry: yeast ribosomal 5S ribonucleic acidK O Burkey, A G Marshall, J O Alben
The New Phytologist|November 30, 2005
Functional role of anthocyanins in high-light winter leaves of the evergreen herb Galax urceolataN M Hughes, H S Neufeld, K O Burkey
Plant Biology (Stuttgart, Germany)|January 16, 2016
Plants and the changing environmentL J De Kok, D A Grantz, K O Burkey
Plant Physiology|August 1, 1982
Effect of trypsin treatment of photosystem I particles on the electron donation to p700R Bhardwaj, K O Burkey, B C Tripathy, et al.
Pageof 3