The bird will stop flying because it will quickly use up its remaining energy.
If a toxin stops the movement of hydrogen ions outside the mitochondrial membranes of a bird's cells, it would likely disrupt the process of oxidative phosphorylation and ATP production in the mitochondria. This could lead to a decrease in energy production, impacting various cellular functions and potentially causing cell damage or death.
If the hydrogen ion pump stops moving H ions outside the mitochondrial membranes of the bird's cells, the proton gradient will collapse. As a result, ATP production will be disrupted as the mitochondria will not be able to generate the necessary proton motive force for ATP synthase. This could lead to a decrease in energy production and cell function, ultimately affecting the bird's overall health and survival.
If the hydrogen ion pump in the mitochondria stops moving H+ ions outside due to a toxin, it will disrupt the proton gradient necessary for ATP production through oxidative phosphorylation. This will impair the cell's ability to generate energy efficiently and may lead to cell dysfunction and eventual cell death.
The electron movement causes H+ ions to be transported to the cystolic side of the mitochondrial membrane from the mitochondial matrix. This creates the electrochemical gradient that is used to generate chemical energy (ATP from ADP)
Manganese dioxide is a catalyst for the decomposition of hydrogen peroxide.
The bird will stop flying because it will quickly use up its remaining energy
The bird will stop flying because it will quickly use up its remaining energy
The bird will stop flying because it will quickly use up its remaining energy.
If a toxin stops the movement of hydrogen ions outside the mitochondrial membranes of a bird's cells, it would likely disrupt the process of oxidative phosphorylation and ATP production in the mitochondria. This could lead to a decrease in energy production, impacting various cellular functions and potentially causing cell damage or death.
The bird will stop flying because it will quickly use up its remaining energy
If the hydrogen ion pump stops moving H ions outside the mitochondrial membranes of the bird's cells, the proton gradient will collapse. As a result, ATP production will be disrupted as the mitochondria will not be able to generate the necessary proton motive force for ATP synthase. This could lead to a decrease in energy production and cell function, ultimately affecting the bird's overall health and survival.
If the hydrogen ion pump in the mitochondria stops moving H+ ions outside due to a toxin, it will disrupt the proton gradient necessary for ATP production through oxidative phosphorylation. This will impair the cell's ability to generate energy efficiently and may lead to cell dysfunction and eventual cell death.
cocaine?
The electron movement causes H+ ions to be transported to the cystolic side of the mitochondrial membrane from the mitochondial matrix. This creates the electrochemical gradient that is used to generate chemical energy (ATP from ADP)
Nitrogen, Hydrogen Methane and Oxygen. The methane and hydrogen causes the odor. The Nitrogen causes the sound.
hydrogen
Hydrogen is less dense than air, so it creates a buoyant force that causes the balloon to rise. This is because the density of the hydrogen inside the balloon is lower than the surrounding air, making it lighter and causing it to float upwards.