QUESTION IMAGE
Question
part d
a nerve impulse is an electrical charge running across a neuron. explain why the simulation supports this explanation.
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To answer this, we analyze the nerve impulse as an electrical charge. A nerve impulse involves the movement of ions (like Na⁺ and K⁺) across the neuron's membrane. In a simulation (e.g., of ion movement), we can observe how the distribution of these charged ions changes, creating an electrical potential difference. When a neuron is stimulated, ion channels open, allowing ions to flow (like Na⁺ rushing in during depolarization), which generates the electrical charge of the impulse. The simulation would show this ion movement (charge transfer) along the neuron, supporting that a nerve impulse is an electrical charge running across the neuron—by visualizing the ion flux (charge) and the resulting action potential (electrical signal) propagation.
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A nerve impulse as an electrical charge across a neuron is supported by the simulation (e.g., of ion movement) because: 1. Nerve impulses rely on ion (charged particle) movement (e.g., Na⁺, K⁺) across the neuron’s membrane. 2. The simulation likely shows ion channels opening/closing, causing ion flux (charge transfer) that creates electrical potential changes (depolarization/repolarization). 3. This ion - mediated charge movement (e.g., Na⁺ influx during depolarization) generates the electrical signal (impulse) that propagates along the neuron, matching the “electrical charge running across” description.