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Why does inorganic carbohydrates not contain carbon?

Inorganic carbohydrates do not contain carbon because they are typically composed of simple molecules that do not include carbon atoms. Carbohydrates are generally compounds made of carbon, hydrogen, and oxygen, and inorganic molecules lack that carbon component. Examples of inorganic carbohydrates include minerals like calcium carbonate and sodium bicarbonate.


The carbon to produce carbohydrates in the second stage of photosynthesis comes from?

The carbon to produce carbohydrates in the second stage of photosynthesis comes from carbon dioxide in the atmosphere. During the Calvin cycle, carbon dioxide is fixed and converted into glucose molecules that make up carbohydrates.


Before the calvin cycle begins where is the energy stored?

The energy needed for the Calvin cycle is stored in the form of ATP and NADPH molecules, which are produced during the light-dependent reactions of photosynthesis. These molecules provide the energy required for the Calvin cycle to convert carbon dioxide into carbohydrates.


The energy used in the Calvin cycle production of carbohydrates comes from?

The energy used in the Calvin cycle production of carbohydrates comes from ATP and NADPH, which are produced during the light-dependent reactions of photosynthesis. These molecules provide the necessary energy and reducing power for the conversion of carbon dioxide into carbohydrates in the Calvin cycle.


What is the main component of organic molecules?

Carbon is always the main component of organic molecules.

Related Questions

Why does inorganic carbohydrates not contain carbon?

Inorganic carbohydrates do not contain carbon because they are typically composed of simple molecules that do not include carbon atoms. Carbohydrates are generally compounds made of carbon, hydrogen, and oxygen, and inorganic molecules lack that carbon component. Examples of inorganic carbohydrates include minerals like calcium carbonate and sodium bicarbonate.


The carbon to produce carbohydrates in the second stage of photosynthesis comes from?

The carbon to produce carbohydrates in the second stage of photosynthesis comes from carbon dioxide in the atmosphere. During the Calvin cycle, carbon dioxide is fixed and converted into glucose molecules that make up carbohydrates.


What is carbon a major component of?

fuel and its also a building block of life.


Is nitrogen a component of carbohydrates?

No, carbohydrates are composed of carbon, hydrogen, and oxygen.


Which molecules produced by the light dependent reaction are used during the Calvin cycle?

i have no clue....


Which carbohydrates are molecules?

Carbohydrates molecules are made of carbon, hydrogen, and oxygen. If it had only carbon and hydrogen (and no oxygen) it would be called a hydrocarbon.


Before the calvin cycle begins where is the energy stored?

The energy needed for the Calvin cycle is stored in the form of ATP and NADPH molecules, which are produced during the light-dependent reactions of photosynthesis. These molecules provide the energy required for the Calvin cycle to convert carbon dioxide into carbohydrates.


What are carbohydrates and where are they daiagested?

Carbohydrates are molecules with Carbon, Hydrogen, and Oxygen atoms.


The energy used in the Calvin cycle production of carbohydrates comes from?

The energy used in the Calvin cycle production of carbohydrates comes from ATP and NADPH, which are produced during the light-dependent reactions of photosynthesis. These molecules provide the necessary energy and reducing power for the conversion of carbon dioxide into carbohydrates in the Calvin cycle.


What is the main component of organic molecules?

Carbon is always the main component of organic molecules.


What are smallest carbohydrates?

Simple Carbohydrates and Complex Carbohydrates I believe


What happens to carbon after your body processes it?

After your body processes carbon, it is either expelled as carbon dioxide when you exhale or used to create new molecules in the body. Carbon is a key component of many biological molecules, such as proteins, fats, and carbohydrates, which are used for energy and building tissues.