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It decomposes H2O into H+ molecules and O2. The oxygen is useful for every breathing organism. The H+ are then used to reduce NADP to NAPDH, necessary for glucose synthesis later on in the processes. The Z enzyme also transfers electrons to an electron acceptor.
Enzymes work on one substrate specifically. This is why there is millions of different types of enzymes to interact with all the molecules they need to metabolically and chemically react with.
Action potential, release of calcium, change in tropomyosin conformation, attachment of globular myosin heads, release of ATP energy, movement of the Z-lines.
The number of protons. Carbon = a Z number of 6. Hydrogen = a Z number of 1 Oxygen = a Z number of 8. And so on. Just read it off the periodic table.
only Z
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It decomposes H2O into H+ molecules and O2. The oxygen is useful for every breathing organism. The H+ are then used to reduce NADP to NAPDH, necessary for glucose synthesis later on in the processes. The Z enzyme also transfers electrons to an electron acceptor.
Some thing then ase. So if the substrate was called B the enzyme would B+ase, Base. Or substrate Z, the enzyme would be Z+ase, Zase. Some examples, amylase, maltase, catalase, sucrase. That is the most common naming, but it is not ALWAYS the case.
indicate the total number of p electrons in N(z=7) s electronsin Si(z=14) 3d electronsin S(z=16)
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