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What are biochemical reactions?

What are biochemical reactions?

A biochemical reaction is the transformation of one molecule to a different molecule inside a cell. Biochemical reactions are mediated by enzymes, which are biological catalysts that can alter the rate and specificity of chemical reactions inside cells.

Why are biochemical reactions important?

Reactions that take place within living things are called biochemical reactions. Two of the most important are photosynthesis and cellular respiration. Together, these two processes provide energy to almost all of Earth’s organisms. Photosynthesis and cellular respiration are closely related.

How is organic chemistry related to biochemistry?

Explanation: Organic chemistry deals with the compounds that has carbon , hydrogen. Organic chemistry describes Alkanes, Alkenes, Alkynes, Alcohols, Fatty acids, Amino acids, Polymers and many other carbon based materials. And biochemistry deals with bio molecules such as carbohydrates, proteins, lipids, DNA, RNA etc.

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What is a biochemical reaction and types?

Biochemical reactions are chemical reactions that take place inside the cells of living things. Exothermic reactions break down molecules into smaller units and release energy. Endothermic reactions build up bigger molecules from smaller ones.

What is biochemical reaction with example?

These reactions break down molecules into smaller units and release energy. An example of a catabolic reaction is the breakdown of glucose, which releases energy that cells need to carry out life processes. Endothermic reactions in organisms are called anabolic reactions.

What are the applications of organic chemistry?

The various applications of organic chemistry are:

  • It is used in the production of soaps, shampoos, powders, and perfumes.
  • Various fuels like natural gas, petroleum are also organic compounds.
  • The fabrics that we use to make various dresses are also made from organic compounds.

Why are the concepts of organic chemistry fundamental to the study of biochemistry?

Also, understanding something about organic chemistry is essential for learning about biochemistry and molecular biology because bio-molecules such as proteins, sugars, fats, and nucleic acids (DNA and RNA) are all organic molecules, albeit very large ones.

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How can chemical reactions benefit human life?

Chemical reactions help us understand the properties of matter. By observing chemical reactions, we are able to understand and explain how the natural world works. Chemical reactions turn food into fuel for your body, make fireworks explode, cause food to change when it is cooked, make soap remove grime, and much more.

What is formed as a result of a lot of biochemical reactions?

Cell organelles are formed as a result of a lot of biochemical reaction.

Why is organic chemistry important in biochemistry?

What is the difference between biochemical reactions and industrial reactions?

Biochemical Reactions. The industrial reaction takes place at 500°C. and uses gaseous hydrogen and a metal catalyst under high pressure. The biological reaction takes place in the soil, uses bacterial or plant reactors, and occurs at moderate temperature and normal atmospheric pressure of nitrogen.

What is it called when chemical reactions occur in living things?

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Chemical reactions that take place inside living things are called biochemical reactions (bio- means “life”). It’s not just for energy that living things depend on biochemical reactions. Every function and structure of a living organism depends on thousands of biochemical reactions taking place in each cell.

What is the sum of all biochemical reactions?

Summary Biochemical reactions are chemical reactions that take place inside living things. Thousands of biochemical reactions continuously take place inside each cell. The sum of all these biochemical reactions is called metabolism.

What is a common group transfer reaction in biological systems?

A common group transfer reaction in biological systems is one that is used to produce α-amino acids that can then be used for protein synthesis.