QuestionAugust 9, 2025

Increasing the concentration of external K+ will result in: Hyperpolarization of neurons Depolarization of neurons Blocking the refractory period Increased diffusion of K+ out of neurons

Increasing the concentration of external K+ will result in: Hyperpolarization of neurons Depolarization of neurons Blocking the refractory period Increased diffusion of K+ out of neurons
Increasing the concentration of external K+ will result in:
Hyperpolarization of neurons
Depolarization of neurons
Blocking the refractory period
Increased diffusion of K+ out of neurons

Solution
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Answer

Depolarization of neurons Explanation 1. Understand the effect of external K^+ concentration Increasing external K^+ reduces the concentration gradient across the membrane. 2. Determine the impact on membrane potential Reduced gradient decreases K^+ efflux, leading to depolarization.

Explanation

1. Understand the effect of external $K^+$ concentration<br /> Increasing external $K^+$ reduces the concentration gradient across the membrane.<br />2. Determine the impact on membrane potential<br /> Reduced gradient decreases $K^+$ efflux, leading to depolarization.
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