When a neuron is not conducting any impulse,the axonal membrane is comparatively more permeable to $K^+$ ions and nearly impermeable to $Na^+$ ions.

  • A
    $K^+, Na^+$
  • B
    $K^+, Cl^-$
  • C
    $HCO_3^-, Na^+$
  • D
    $Na^+, K^+$

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Similar Questions

The rate of rise of action potential and its amplitude are determined by the concentration of

During the propagation of a nerve impulse,the action potential results from the movement of

Assertion: The imbalance in concentration of $Na^+$,$K^+$ and proteins generates resting potential.
Reason: To maintain the unequal distribution of $Na^+$ and $K^+$,the neurons use electrical energy.

When a neuron is in a resting state,i.e.,not conducting any impulse,the axonal membrane is:

$A$ : The imbalance in the concentration of $Na^+, K^+$ and proteins generates the resting potential.
$R$ : To maintain the unequal distribution of $Na^+$ and $K^+$,the neurons use electrical energy.

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