Table 1.

Equations and fit functions

ContextFormulaVariables and fit parametersNo.
Three-state transitions, probability top state Ptop=1(1+e Δz•(FF12)kBT)2  F Force
kB Boltzmann constant
T Temperature
Δz & F1/2 fit parameters  
Three-state transitions, probability middle state Pmiddle= 11+12e Δz•(FF12)kBT+12eΔz•(FF12)kBT  F Force
kB Boltzmann constant
T Temperature
Δz & F1/2 fit parameters 
Three-state transitions, probability bottom state Pbottom=1(1+e Δz•(FF12)kBT)2  F Force
kB Boltzmann constant
T Temperature
Δz & F1/2 fit parameters  
Two-state transitions, probability top state Ptop=11+eΔz•(FF12)kBT F Force
kB Boltzmann constant
T Temperature
Δz & F1/2 fit parameters 
Two-state transitions, probability bottom state Pbottom=11+eΔz•(FF12)kBT F Force
kB Boltzmann constant
T Temperature
Δz & F1/2 fit parameters 
Dwell times open state τopen(F)=τ0,opene(ΔzopenFkBT)  F force
kB Boltzmann constant
T Temperature
τ0,open, Δzopen fit parameters 
Dwell times closed state τclosed(F)=τ0,closede(ΔzclosedFkBT) F force
kB Boltzmann constant
T Temperature
τ0,closed, Δzclosed fit parameters  
Gauss-fit, 1 term ae(xbc)2 a, b, c fit parameters 
Gauss-fit, 2 terms a1e(xb1c1)2+ a2e(xb2c2)2 a1, b1, c1, a2, b2, c2 fit parameters 
Gauss-fit, 3 terms a1e(xb1c1)2+ a2e(xb2c2)2+ a3e(xb3c3)2 a1, b1, c1, a2, b2, c2, a3, b3, c3 fit parameters 10 
ContextFormulaVariables and fit parametersNo.
Three-state transitions, probability top state Ptop=1(1+e Δz•(FF12)kBT)2  F Force
kB Boltzmann constant
T Temperature
Δz & F1/2 fit parameters  
Three-state transitions, probability middle state Pmiddle= 11+12e Δz•(FF12)kBT+12eΔz•(FF12)kBT  F Force
kB Boltzmann constant
T Temperature
Δz & F1/2 fit parameters 
Three-state transitions, probability bottom state Pbottom=1(1+e Δz•(FF12)kBT)2  F Force
kB Boltzmann constant
T Temperature
Δz & F1/2 fit parameters  
Two-state transitions, probability top state Ptop=11+eΔz•(FF12)kBT F Force
kB Boltzmann constant
T Temperature
Δz & F1/2 fit parameters 
Two-state transitions, probability bottom state Pbottom=11+eΔz•(FF12)kBT F Force
kB Boltzmann constant
T Temperature
Δz & F1/2 fit parameters 
Dwell times open state τopen(F)=τ0,opene(ΔzopenFkBT)  F force
kB Boltzmann constant
T Temperature
τ0,open, Δzopen fit parameters 
Dwell times closed state τclosed(F)=τ0,closede(ΔzclosedFkBT) F force
kB Boltzmann constant
T Temperature
τ0,closed, Δzclosed fit parameters  
Gauss-fit, 1 term ae(xbc)2 a, b, c fit parameters 
Gauss-fit, 2 terms a1e(xb1c1)2+ a2e(xb2c2)2 a1, b1, c1, a2, b2, c2 fit parameters 
Gauss-fit, 3 terms a1e(xb1c1)2+ a2e(xb2c2)2+ a3e(xb3c3)2 a1, b1, c1, a2, b2, c2, a3, b3, c3 fit parameters 10 

Equations describing the equilibrium and the kinetics of the transitions in the D3 domains assuming independent processes.

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