The first reason transport is energetically favorable is because movement of ATP and ADP concurrently through the antiporter is moving charged molecules WITH the electrical potential gradient and therefore exergonic. Briefly explain what establishes the electrical potential gradient between the intermembrane space and the matrix of the mitochondria, and which side is more positive relative to the other. Be brief.

Human Physiology: From Cells to Systems (MindTap Course List)
9th Edition
ISBN:9781285866932
Author:Lauralee Sherwood
Publisher:Lauralee Sherwood
Chapter7: The Peripheral Nervous System: Efferent Division
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Answer part a.

The first reason transport is energetically favorable is because movement of ATP and ADP
concurrently through the antiporter is moving charged molecules WITH the electrical
potential gradient and therefore exergonic.
Briefly explain what establishes the electrical potential gradient between the intermembrane
space and the matrix of the mitochondria, and which side is more positive relative to the
other. Be brief.
Transcribed Image Text:The first reason transport is energetically favorable is because movement of ATP and ADP concurrently through the antiporter is moving charged molecules WITH the electrical potential gradient and therefore exergonic. Briefly explain what establishes the electrical potential gradient between the intermembrane space and the matrix of the mitochondria, and which side is more positive relative to the other. Be brief.
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