Answer:
Molecule
Explanation:
Molecule 34
A carbohydrate is an organic molecule consisting of C, H, and O atoms in a 1:2:1 ratio, important for human biochemistry and found in various forms from simple sugars to complex polysaccharides.
An organic molecule that consists of carbon (C), hydrogen (H), and oxygen (O) atoms in a 1:2:1 ratio is known as a carbohydrate. Carbohydrates are essential biomolecules that come in various forms, such as sugars, starches, and fibers.
They have a general stoichiometric formula of (CH₂O)ₙ, where 'n' represents the number of carbon atoms in the molecule.
These organic compounds are a significant part of human biochemistry, consisting of carbon and hydrogen, and are essential for our diet and bodily functions.
Simple carbohydrates include monosaccharides like glucose and fructose, while complex carbohydrates include polysaccharides such as starch and cellulose.
The carbon skeleton of a carbohydrate provides a backbone to which other functional groups are bound, making them versatile in structure and function within living organisms.
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Lipids are important biomolecules. A typical lipid contains a glycerol, fatty acid chains and a functional group in its structure.
Glycerol is a molecule made up of three carbon atoms. Glycerol forms the backbone in the structure of lipids.
Unsaturated fatty acids contain a single bond in its structure while the saturated fatty acids contain double bonds.
Unsaturated fatty acids have a straight chains while saturated fatty acids are bent.
Glycerol and threefatty acids together make up one triglyceride molecule.
Triglycerides are primarily found in blood and also present in the adipose tissues.
Lipids form an integral part of the cell membrane and also present around the organs creating cushion.
Therefore, lipids are important biomolecules for energy conservation and in the body.
Learn more about lipids, here:
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B. It determines the frequency of El Niño and La Niña weather systems.
C. It reduces temperature fluctuations between seasons in North America.
D. It reduces temperature fluctuations between seasons in Europe.
Answer:
D.
Explanation:
This warms the water in the north Atlantic Ocean, along
with warm winds that move over the Atlantic and into Europe. This then
helps regulate the European climate by reducing temperature
fluctuations across seasons
Answer:
D. It reduces temperature fluctuations between seasons in Europe.
Explanation:
25% chance
50% chance
75% chance
100% chance
Photosynthesis makes the glucose that is used in cellular respiration to make ATP. The glucose is then turned back into carbon dioxide, which is used in photosynthesis. While water is broken down to form oxygen during photosynthesis, in cellular respiration oxygen is combined with hydrogen to form water.
Photosynthesis and cellular respiration are two interdependent processes. Photosynthesis uses carbon dioxide and water to produce carbohydrates and oxygen, while cellular respiration uses these carbohydrates to produce energy, carbon dioxide, and water. They form a cyclical biological harmony vital to life.
Photosynthesis and cellular respiration are two fundamental processes in the carbon cycle that share reciprocal reactants and products. In photosynthesis, plants absorb light energy to build carbohydrates in chloroplasts, using carbon dioxide and water. The resulting byproduct of this process is oxygen. On the other hand, cellular respiration occurs in the cytoplasm and mitochondria, where organisms metabolize these carbohydrates to produce energy, in the process releasing carbon dioxide and water. Both processes use electron transport chains to capture the energy necessary to drive other reactions.
Thus, photosynthesis and cellular respiration are linked in a cyclical biological harmony; they provide the life-sustaining energy that originates millions of miles away in the sun. Photosynthesis produces the carbohydrates needed for cellular respiration, and cellular respiration releases the carbon dioxide required for photosynthesis, creating an interdependent cycle vital to most forms of life on Earth.
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