Application of the principle of microscopic reversibility to the steady-state rate equation for a general mechanism for an enzyme reaction with substrate and modifier [1]
Biochemical Journal
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sg-nus-scholar.10635-383312015-01-14T18:15:01Z Application of the principle of microscopic reversibility to the steady-state rate equation for a general mechanism for an enzyme reaction with substrate and modifier [1] Selwyn, M.J. BIOCHEMISTRY Biochemical Journal 295 3 897-898 BIJOA 2013-06-05T09:50:51Z 2013-06-05T09:50:51Z 1993 Others Selwyn, M.J. (1993). Application of the principle of microscopic reversibility to the steady-state rate equation for a general mechanism for an enzyme reaction with substrate and modifier [1]. Biochemical Journal 295 (3) : 897-898. ScholarBank@NUS Repository. 02646021 http://scholarbank.nus.edu.sg/handle/10635/38331 NOT_IN_WOS Scopus |
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Selwyn, M.J. Application of the principle of microscopic reversibility to the steady-state rate equation for a general mechanism for an enzyme reaction with substrate and modifier [1] |
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Selwyn, M.J. |
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Application of the principle of microscopic reversibility to the steady-state rate equation for a general mechanism for an enzyme reaction with substrate and modifier [1] |
title_short |
Application of the principle of microscopic reversibility to the steady-state rate equation for a general mechanism for an enzyme reaction with substrate and modifier [1] |
title_full |
Application of the principle of microscopic reversibility to the steady-state rate equation for a general mechanism for an enzyme reaction with substrate and modifier [1] |
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Application of the principle of microscopic reversibility to the steady-state rate equation for a general mechanism for an enzyme reaction with substrate and modifier [1] |
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Application of the principle of microscopic reversibility to the steady-state rate equation for a general mechanism for an enzyme reaction with substrate and modifier [1] |
title_sort |
application of the principle of microscopic reversibility to the steady-state rate equation for a general mechanism for an enzyme reaction with substrate and modifier [1] |
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2013 |
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http://scholarbank.nus.edu.sg/handle/10635/38331 |
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1681081932397412352 |