Answer:photosynthesis involved the process of energy build -up from monomers like carbon iv oxide and water (anabolism) with the help of solar energy while cellular respiration involved the breakdown of energy in the form of ATP with the help of oxygen (catabolism) into carbon iv oxide and water as waste products.
Explanation:
Answer: Prey Insects would become inedible.
Explanation:
no prey no survive
Think of a Tree like a organic solar panel its leaves are cells basically what they do is turn the solar energy into food for themselves if the roots of the tree are too compressed the tree can get root rash and not have enough space to grow. It is important to always put trees in loose soil and let gravity do the work so that it will compact it at the right rate but, earthworms are a great way of fixing root rash because they will dig tunnels all around the roots for them to drink nitrates and nitrites in the soil for nutrients. The leaves turn a yellow color if the roots are that way or if there isn't enough phosphorus in the soil.
Although glycolysis produces four molecules of atp by substrate-level phosphorylation, the net gain of atp for the cell is two molecules. This is because glycolysis is at first endergonic.
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What is glycolysis?</h3>
- The metabolic process that turns glucose into pyruvic acid is known as glycolysis.
- The high-energy molecules adenosine triphosphate and reduced nicotinamide adenine dinucleotide are created using the free energy released during this process.
- A series of ten enzyme-catalyzed processes make up glycolysis.
- The process by which glucose is broken down to provide energy is known as glycolysis.
- It generates two pyruvate molecules, ATP, NADH, and water.
- There is no need for oxygen throughout the process, which occurs in the cytoplasm of a cell.
- Both aerobic and anaerobic creatures experience it.
- The initial process in breaking down glucose to release energy for cellular metabolism is called glycolysis.
- An energy-consuming phase and an energy-releasing phase make up glycolysis.
Learn more about glycolysis here:
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