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Proceedings of the National Academy of Sciences of the United States of America|June 1, 1983
Translocation pathway in the catalysis of active transportC TanfordProceedings of the National Academy of Sciences of the United States of America|October 1, 1982
Steady state of an ATP-driven calcium pump: limitations on kinetic and thermodynamic parametersC TanfordProceedings of the National Academy of Sciences of the United States of America|November 1, 1982
Mechanism of active transport: free energy dissipation and free energy transductionC TanfordFEBS Letters|January 23, 1984
The sarcoplasmic reticulum calcium pump. Localization of free energy transfer to discrete steps of the reaction cycleC TanfordBiochemical Society Transactions|December 1, 1987
Amphiphile orientation: physical chemistry and biological functionC TanfordProceedings of the National Academy of Sciences of the United States of America|May 1, 1982
Simple model for the chemical potential change of a transported ion in active transportC TanfordProceedings of the National Academy of Sciences of the United States of America|September 1, 1979
Interfacial free energy and the hydrophobic effectC TanfordScience (New York, N.Y.)|June 2, 1978
The hydrophobic effect and the organization of living matterC TanfordBiophysical Journal|January 1, 1985
Simple model can explain self-inhibition of red cell anion exchangeC TanfordCRC Critical Reviews in Biochemistry|January 1, 1984
Twenty questions concerning the reaction cycle of the sarcoplasmic reticulum calcium pumpC TanfordPageof 5