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W F Widdas

Showing results (11-20 of 24) with videos related to

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Cytobios|October 13, 2000
The sequestration of hydroxyl ions by CO2 in liquid water: the physiological implications and the second function of carbonic anhydraseW F Widdas, G F Baker
Cytobios|March 27, 1999
The physiological properties of human red cells as derived from kinetic osmotic volume changesW F Widdas, G F Baker
Cytobios|November 22, 2000
The sequestration of hydroxyl ions by C2 in liquid water: useful physiological roles for a reversible complex formation in the presence of protein catalystsW F Widdas, G F Baker
Cytobios|January 1, 1995
The triphasic volume response of human red cells in low ionic strength media: demonstration of a special bicarbonate transportW F Widdas, G F Baker
Cytobios|August 2, 2001
The surface energy of water: the largest but forgotten source of energy in biological systemsW F Widdas, G F Baker
The Journal of Physiology|May 1, 1978
Asymmetry of the hexose transfer system in human erythrocytes. Comparison of the effects of cytochalasin B, phloretin and maltose as competitive inhibitorsD A Basketter, W F Widdas
The Journal of Physiology|December 1, 1980
Asymmetry of hexose transfer system in erythrocytes of fetal and new-born guinea-pigsD S Aubby, W F Widdas
Cytobios|January 1, 1992
An hypothesis for a contractile protein based on the principles of submicroscopic physiologyW F Widdas, G F Baker
Cytobios|January 1, 1991
The polyguanidinium-ring-complex cation shield in the human red cell glucose transporterW F Widdas, G F Baker
The Journal of Physiology|May 1, 1973
The permeation of human red cells by 4,6-O-ethylidene- -D-glucopyranose (ethylidene glucose)G F Baker, W F Widdas
Pageof 3

Showing results (11-20 of 24) with videos related to

Sort By:
Pageof 3
Cytobios|October 13, 2000
The sequestration of hydroxyl ions by CO2 in liquid water: the physiological implications and the second function of carbonic anhydraseW F Widdas, G F Baker
Cytobios|March 27, 1999
The physiological properties of human red cells as derived from kinetic osmotic volume changesW F Widdas, G F Baker
Cytobios|November 22, 2000
The sequestration of hydroxyl ions by C2 in liquid water: useful physiological roles for a reversible complex formation in the presence of protein catalystsW F Widdas, G F Baker
Cytobios|January 1, 1995
The triphasic volume response of human red cells in low ionic strength media: demonstration of a special bicarbonate transportW F Widdas, G F Baker
Cytobios|August 2, 2001
The surface energy of water: the largest but forgotten source of energy in biological systemsW F Widdas, G F Baker
The Journal of Physiology|May 1, 1978
Asymmetry of the hexose transfer system in human erythrocytes. Comparison of the effects of cytochalasin B, phloretin and maltose as competitive inhibitorsD A Basketter, W F Widdas
The Journal of Physiology|December 1, 1980
Asymmetry of hexose transfer system in erythrocytes of fetal and new-born guinea-pigsD S Aubby, W F Widdas
Cytobios|January 1, 1992
An hypothesis for a contractile protein based on the principles of submicroscopic physiologyW F Widdas, G F Baker
Cytobios|January 1, 1991
The polyguanidinium-ring-complex cation shield in the human red cell glucose transporterW F Widdas, G F Baker
The Journal of Physiology|May 1, 1973
The permeation of human red cells by 4,6-O-ethylidene- -D-glucopyranose (ethylidene glucose)G F Baker, W F Widdas
Pageof 3