2) Let n represent the number of cycles, as defined in problem 1. In addition, let No and K. represent the initial number of Nat and K+ ions, respectively, inside the cell before the first cycle starts. Complete the following table to derive equations for the number of Nat and K* ions remaining inside the cell after n cycles.

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2) Let n represent the number of cycles, as defined in problem 1. In addition, let No and K, represent the
initial number of Nat and K+ ions, respectively, inside the cell before the first cycle starts. Complete the
following table to derive equations for the number of Nat and Kt ions remaining inside the cell after n
cycles.
Number of K* ions
K, + 2
K. + 4
Number of Na+ ions
No- 3
No-6
1
9
No
No - 3( )
No -3( )
Ko+8
K, + 2( )
+2()
6.
K.
and the
After n cycles, the number of Nat ions inside the cell is N(n) =
number of K+ ions inside the cell is K(n) =
34
Transcribed Image Text:2) Let n represent the number of cycles, as defined in problem 1. In addition, let No and K, represent the initial number of Nat and K+ ions, respectively, inside the cell before the first cycle starts. Complete the following table to derive equations for the number of Nat and Kt ions remaining inside the cell after n cycles. Number of K* ions K, + 2 K. + 4 Number of Na+ ions No- 3 No-6 1 9 No No - 3( ) No -3( ) Ko+8 K, + 2( ) +2() 6. K. and the After n cycles, the number of Nat ions inside the cell is N(n) = number of K+ ions inside the cell is K(n) = 34
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