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Problem 2 Assume the membrane of frog skeletal muscle is at rest, and that, at rest, only potassium channels are open, with probability 0.06 .
Problem 2\ Assume the membrane of frog skeletal muscle is at rest, and that, at rest, only potassium channels are open, with probability 0.06 . What is the resistance of
0.5cm^(2)
of this membrane given the parameters shown in Table 1 ?\ Problem 3\ An open channel behaves as an aqueous path for
K+
ions and contributes to the electrical current with a fixed conductance of
g_(K)
. Assuming
V_(m)-E_(K)=50mV
and
g_(K)=20pS
, calculate the\ \\\\table[[Preparation,\\\\table[[
\\\\gamma
Problem 2 Assume the membrane of frog skeletal muscle is at rest, and that, at rest, only potassium channels are open, with probability 0.06 . What is the resistance of 0.5cm2 of this membrane given the parameters shown in Table 1? Problem 3 An open channel behaves as an aqueous path for K+ ions and contributes to the electrical current with a fixed conductance of gK. Assuming VmEK=50mV and gK=20pS, calculate the current iK passing through the channel
Problem 2\ Assume the membrane of frog skeletal muscle is at rest, and that, at rest, only potassium channels are open, with probability 0.06 . What is the resistance of
0.5cm^(2)
of this membrane given the parameters shown in Table 1 ?\ Problem 3\ An open channel behaves as an aqueous path for
K+
ions and contributes to the electrical current with a fixed conductance of
g_(K)
. Assuming
V_(m)-E_(K)=50mV
and
g_(K)=20pS
, calculate the\ \\\\table[[Preparation,\\\\table[[
\\\\gamma
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