Photochemical energy is transformed into biochemical energy.
The electron transport chain (ETC) occurs in the inner mitochondrial membrane. It is comprised of a series of protein complexes embedded in the membrane, through which electrons are passed along to generate ATP.
ATP molecules
Electron transport chain (ETC), located in the inner mitochondrial membrane. This process generates a proton gradient, driving ATP production through oxidative phosphorylation. Ultimately, oxygen is the final electron acceptor, forming water in the final step of electron transfer.
The electrons that drive the electron transport chain (ETC) primarily come from the oxidation of NADH and FADH2, which are generated during earlier stages of cellular respiration, such as glycolysis and the Krebs cycle. These coenzymes carry high-energy electrons that are released during metabolic processes. Once delivered to the ETC, these electrons are transferred through a series of protein complexes, ultimately leading to the production of ATP and the reduction of oxygen to water.
s, p, d, f, etc.
The electron transport chain (ETC) occurs in the inner mitochondrial membrane. It is comprised of a series of protein complexes embedded in the membrane, through which electrons are passed along to generate ATP.
ATP molecules
Electron transport chain (ETC), located in the inner mitochondrial membrane. This process generates a proton gradient, driving ATP production through oxidative phosphorylation. Ultimately, oxygen is the final electron acceptor, forming water in the final step of electron transfer.
Only certain cancers (breast etc.) can be passed on but lung caner etc. cant be passed from generation to generation.
The material is conductive. Metals (copper or aluminum, etc) allows charged particles of electrons to move freely in either direction along their length.
It passes the energy to the reaction center ( a specialized region of photosystem) then the energized electrons leave the reaction centers and are passed to adjacent electron transport chains (ETC)
It could be passed down by stories, knowledge in textbooks etc. That's at least how I think of it.
Democracy, Art, Architecture , etc.
most learned chants form fathers and passed it on to their sons and their sons passed it on their sons etc.;
FADH2 is an electron carrier similar to NADH, but only the second protein in the ETC accepts FADH2 electrons. So FADH2 is used in the ETC, but it produces less ATP due to it only entering the second protein in the ETC.
The electrons that drive the electron transport chain (ETC) primarily come from the oxidation of NADH and FADH2, which are generated during earlier stages of cellular respiration, such as glycolysis and the Krebs cycle. These coenzymes carry high-energy electrons that are released during metabolic processes. Once delivered to the ETC, these electrons are transferred through a series of protein complexes, ultimately leading to the production of ATP and the reduction of oxygen to water.
It shows the possible allele combinations after fertilisation. You can use the punnett square to show what will happen if one or both of the parents have genetic disorders/mutations, what features will be passed on to their kids, etc.