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Suppose that the egg has a diameter of $200 \mu \mathrm{m}$. What fractional change in the internal $\mathrm{Na}^{+}$ concentration results from the fertilizationin...

Question

Suppose that the egg has a diameter of $200 \mu \mathrm{m}$. What fractional change in the internal $\mathrm{Na}^{+}$ concentration results from the fertilizationinduced change in $V_{\mathrm{m}} ?$ Assume that $\mathrm{Na}^{+}$ ions are distributed throughout the cell volume. The concentration increases by (a) 1 part in $10^{4} ;$ (b) 1 part in $10^{5} ;$ (c) 1 part in $10^{6} ;$ (d) 1 part in $10^{7}$.

Suppose that the egg has a diameter of $200 \mu \mathrm{m}$. What fractional change in the internal $\mathrm{Na}^{+}$ concentration results from the fertilizationinduced change in $V_{\mathrm{m}} ?$ Assume that $\mathrm{Na}^{+}$ ions are distributed throughout the cell volume. The concentration increases by (a) 1 part in $10^{4} ;$ (b) 1 part in $10^{5} ;$ (c) 1 part in $10^{6} ;$ (d) 1 part in $10^{7}$.



Answers

Suppose that the egg has a diameter of $200 \mu \mathrm{m}$. What fractional change in the internal $\mathrm{Na}^{+}$ concentration results from the fertilizationinduced change in $V_{\mathrm{m}} ?$ Assume that $\mathrm{Na}^{+}$ ions are distributed throughout the cell volume. The concentration increases by (a) 1 part in $10^{4} ;$ (b) 1 part in $10^{5} ;$ (c) 1 part in $10^{6} ;$ (d) 1 part in $10^{7}$.


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