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Yes, carbon (C) forms more compounds than all the other elements combined. Any compound that contains carbon is considered an organic compound.

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Q: How are carbon atoms able to form organic compounds?
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Organic compounds are the basis for all life Explain this statement?

Organic compounds are the basis for all life forms because they are all made of mostly carbon-based compounds and not synthetic materials. Carbon is able to bond with elements easily due to having four valence electrons.


What are compounds found in nature?

That can't be answered in this small text box, there are countless. The atoms are all in the Periodic Table, and there are many rules and exceptions as to how they combine and how they don't. You should study chemistry. Especially carbon (and silicium) are able to form the basis for very large and complex compounds, which is the field of organic chemistry and a large part of your body (carbon that is).


Green algae are able to obtain carbon dioxide from the envronmet and use it to synthesize organic compounds What is this activity called?

Cellular Respiration


What is the difference between organic matter and inorganic matter?

organic carbon compounds derived from plants or animals. They usually contain carbon and hydrogen along. For example, carbohydrates (such as glucose: C6H12O6), proteins and palm oil. They have low melting and boiling point and insulator for electric conductivity. They able to dissolve in organic solvent (such as methanol, ether and chloroform) but not inorganic solvent ( such as water, acids and alkalis).inorganic carbon compounds derived from minerals in the Earth. Usually the carbon comes along with a non-metallic element (for instance carbon dioxide and carbon monoxide). However, it may also comes along with a metallic element (for instance sodium hydrogen carbonate). Contrary to organic carbon compounds, they dissolved in inorganic solvent but not organic solvent.You should also take note that there's also another classification of carbon compounds that is synthetic carbon compounds. As the name suggests, this group is artificially man-made compounds with carbon elements in it. For example, nylon, polyvinyl chloride (plastics).


Why carbon form millions and billions of compound?

Carbon forms so many compounds because each carbon atom is able to form stable chemical bonds with up to four other atoms.

Related questions

Why organic compounds are polar in nature?

Organic compounds all have one thing in common: Carbon. The reason Carbon (and organic compounds) are popular in nature is carbon can form lots of bonds and, therefore, attach to many atoms. Carbon can form 4 bonds. Organic compounds are not polar. They are nonpolar. It is possible for part of an organic compound to be polar if the end is an alcohol (OH) or some other polar ion is attached.


Organic compounds are the basis for all life Explain this statement?

Organic compounds are the basis for all life forms because they are all made of mostly carbon-based compounds and not synthetic materials. Carbon is able to bond with elements easily due to having four valence electrons.


What are compounds found in nature?

That can't be answered in this small text box, there are countless. The atoms are all in the Periodic Table, and there are many rules and exceptions as to how they combine and how they don't. You should study chemistry. Especially carbon (and silicium) are able to form the basis for very large and complex compounds, which is the field of organic chemistry and a large part of your body (carbon that is).


Are the reactants of photosynthesis organic or inorganic?

I think what you're asking is, are the materials autotrophic eukaryotes (multicellular organisms that are able to produce their own glucose for energy), like most plants that use photosynthesis to produce glucose from carbon dioxide and water, considered inorganic compounds? sunlight H20+CO2---------> C6H12O6 + O2 the best answer I found was, "Organic compounds are actually compounds containing carbon covalently bonded with a hydrogen. You can say carbon is the main thing here. Compounds of carbon [except oxides, carbonates, bicarbonates] are termed as organic. Water does not contain a carbon atom. So it is inorganic. Carbon dioxide is considered by chemists as inorganic, along with carbon monoxide, carbonates and bicarbonates. Nature has not distinguished compounds into inorganic and organic compounds that clearly. These compounds of carbon are just assumed to be inorganic. Also there is that one thing about carbon being covalently bonded with hydrogen in organic compounds. Due to that criteria carbon dioxide is considered inorganic. But actually there is no clear reason."


Why are organic compounds so complex?

carbon can bond with a lot of things covalently, because it has 4 valence electrons and it needs 4 more. So it has no tendency to become cation or anion. It has the highest tendency for catenation. Which means that it has the highest tendency to bond with its own kind of atoms than any other element.


Green algae are able to obtain carbon dioxide from the envronmet and use it to synthesize organic compounds What is this activity called?

Cellular Respiration


What is the difference between organic matter and inorganic matter?

organic carbon compounds derived from plants or animals. They usually contain carbon and hydrogen along. For example, carbohydrates (such as glucose: C6H12O6), proteins and palm oil. They have low melting and boiling point and insulator for electric conductivity. They able to dissolve in organic solvent (such as methanol, ether and chloroform) but not inorganic solvent ( such as water, acids and alkalis).inorganic carbon compounds derived from minerals in the Earth. Usually the carbon comes along with a non-metallic element (for instance carbon dioxide and carbon monoxide). However, it may also comes along with a metallic element (for instance sodium hydrogen carbonate). Contrary to organic carbon compounds, they dissolved in inorganic solvent but not organic solvent.You should also take note that there's also another classification of carbon compounds that is synthetic carbon compounds. As the name suggests, this group is artificially man-made compounds with carbon elements in it. For example, nylon, polyvinyl chloride (plastics).


Why are there so many organic compounds?

Mainly because carbon is unusual in being able to form strong and stable bonds to itself. This means you can form chains of carbon atoms, a phenomenon called catenation. So for any type of carbon compound you can have a whole series, with one carbon, two carbons, three carbons etc., in theory for ever. So you can have methane, ethane, propane etc. chloromethane, chloroethane, chloropropane etc methanol, ethanol, propan-1-ol...... Then, for all but the simplest members of each series, the position of the different atoms matters as well, and you get different compounds called isomers. There are millions of possibilities.


Why carbon form millions and billions of compound?

Carbon forms so many compounds because each carbon atom is able to form stable chemical bonds with up to four other atoms.


Why do scientists consider plants to be fungi?

Scientists do not consider plants to be fungi. Plants are autotrophic organisms that are able to synthesize new organic compounds from inorganic carbon (usually in the form of carbon dioxide) utilizing the energy found in sunlight. This is preformed in specialized organelles called chloroplasts and uses pigments called chlorophyll. Fungi are heterotrophic, which means they are unable to turn inorganic carbon into organic carbon and must derive all of their energy by breaking down organic compounds produced by other organisms.


What are some characteristics of inorganic compound?

inorganic solids are mostly disolve able in water but the organic like benzene never ever dissolves in water similarly boiling points of in organic like NaCl are high as compared to organic example ether and petrol also gasoline


How many covalent bonds with other atoms is a carbon atom able to work?

Carbon can bond to a maximum of four other atoms.