The inner membrane of mitochondria is highly folded into structures called cristae, which provide a large surface area for the electron transport chain and ATP synthase enzymes to generate energy through oxidative phosphorylation. This increased surface area allows for more efficient production of ATP molecules, the cell's primary energy source.
The mitochondria itself is not highly folded. The inner membrane of the mitochondria is, and this increases the surface area of the membrane while not changing the volume enclosed by it. The inner membrane contains ATP synthase, which is an enzyme that stimulates the production of ATP, which the cell uses as an energy source. This means that with more membrane, the cells ability to produce ATP, or energy, is increased. This is enforced by the observation that in cells with a high demand for energy, such as muscle cells, the inner mitochondrial membrane has a lot more folds than in cells like liver cells, which have a lower energy demand.
The ribbonlike folds on the inner lining of the mitochondrial membrane are called cristae. These folds increase the surface area of the inner membrane, which is crucial for the electron transport chain and ATP production during cellular respiration. The cristae play a vital role in the efficiency of energy production within the mitochondria.
The scientific name for the Earth's inner core is "Earth's solid inner core."
The inner membrane of mitochondria is highly folded or ruffled to increase its surface area, allowing for more space for enzymes and proteins involved in energy production to be located. This increased surface area facilitates more efficient production of ATP, the energy currency of the cell, through the process of oxidative phosphorylation.
the inner core
The sun. It grows the grass the animals eat. The grass transfers some of its energy to the animal. Then, when we eat the animal, it transfers energy to us. Even then the sun is not the source of ALL energy. Volcanoes and tectonic forces on Earth are driven by heat derived from the radioactive decay of Uranium and Thorium in the Earth's inner layers.
A mitochondrion's structure is specifically designed to support its function in producing energy for the cell through its double membrane, inner membrane folds called cristae, and matrix containing enzymes for energy production. These features allow for efficient production of ATP, the cell's main energy source.
The inner core of the Sun converts about 700,000,000 tons of Hydrogen into 695,000,000 tons of Helium each second by a process called nuclear fusion. The mass difference 5,000,000 tons is converted into energy (by Einstein's E-MC2 formula) and it is this constantly produced heat that makes the Sun shine - makes it a star.
The unmanifested is the source of Chi. Chi is the inner energy field of your body
The earth's inner core releases thermal energy through the decay of isotopes such as uranium-238. The sun does have an impact on the earth's temperature in regards to day/night and seasonal temperatures, however it has an extremely small impact on the temperature of the earth's inner core if at all. If you use your common sense, it would be completely illogical to think that the thermal radiation from the sun penetrates through 5100 km of rock and molten to heat up the earth's inner core.
it goes into the inner core.
The heat in the inner core is the result of several different sources. Some of these are: residual heat from the creation of the planet; heat caused by nuclear decay; friction; magnetic and tidal effects.
The two main sources of energy in Earth's spheres are the Sun, which provides solar energy for the biosphere, atmosphere, and hydrosphere through processes like photosynthesis and weather patterns, and the internal heat of the Earth, which drives processes like plate tectonics, volcanic activity, and geothermal energy.
The proximate source of energy for oxidative phosphorylation is the proton gradient across the inner mitochondrial membrane. This gradient is established during the electron transport chain as electrons are passed along and protons are pumped across the membrane. The flow of protons back into the matrix through ATP synthase drives the production of ATP.
No. The source of earth's magnetic field is the molten inner core. The moon due to its proximity of course influences our magnetic field but it is to be considered a "weak effect".
The inner membrane of mitochondria is highly folded into structures called cristae, which provide a large surface area for the electron transport chain and ATP synthase enzymes to generate energy through oxidative phosphorylation. This increased surface area allows for more efficient production of ATP molecules, the cell's primary energy source.