Pages that link to "Item:Q2031792"
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The following pages link to Nonlinear thermodynamics of biological signal transduction for predicting conservation of entropy production rate (Q2031792):
Displaying 8 items.
- Whose entropy: a maximal entropy analysis of phosphorylation signaling (Q639317) (← links)
- The relative biologic effectiveness versus linear energy transfer curve as an output-input relation for linear cellular systems (Q838383) (← links)
- Signal transmission through a metabolic cycle follows the compression hypothesis or a weak Weber's law (Q1181599) (← links)
- The role of non-genomic information in maintaining thermodynamic stability in living systems (Q1773821) (← links)
- Active transport: a kinetic description based on thermodynamic grounds (Q2193097) (← links)
- Non-equilibrium thermodynamics of biological signal transduction predicts conservation of entropy production rate (Q2415829) (← links)
- Nonequilibrium thermodynamics modeling of coupled biochemical cycles in living cells (Q2638322) (← links)
- (Q3002449) (← links)