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No. Organic compounds are almost exclusively covalent.

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Why is lithium inorganic?

Lithium is considered inorganic because it does not contain carbon-hydrogen bonds, which are typically found in organic compounds. Inorganic compounds are generally those that do not contain carbon bonded with hydrogen.


What are the multiple bonds How are multiple bonds found and why are they most often in those elements?

Organic compounds have frequently double or triple bonds.


Is organic compounds are found in living organisms?

Not necessarily. Many organic compounds are found in living organisms, but not all of them. nore are all the compounds in an organism organic. Any compound that contains bonds between carbon and hydrogen is classified as organic, whether or not it is of a biological origin.


Are organic compounds found in living things?

Not necessarily. Many organic compounds are found in living organisms, but not all of them. nore are all the compounds in an organism organic. Any compound that contains bonds between carbon and hydrogen is classified as organic, whether or not it is of a biological origin.


Is iron oxygen nickel and copper are found in organic compounds?

Iron, nickel, and copper are not typically found in organic compounds, as they are considered inorganic elements. Oxygen, on the other hand, is commonly found in organic compounds, as it is essential for life and often forms bonds with carbon in organic molecules.


Which element is always found in organic compound?

The element is carbon. Organic chemistry revolves around carbon-containing compounds that have C-C or C-H bonds. Not all compounds that have carbon are classified as organic though, such as carbon dioxide.


Do inorganic compounds contain Carbon- Hydrogen bonds?

No, inorganic compounds do not typically contain carbon-hydrogen bonds. These types of bonds are characteristic of organic compounds, which are based on carbon atoms covalently bonded to hydrogen atoms. Inorganic compounds often involve elements other than carbon and hydrogen.


Why organic compounds are less stable than inorganic compounds?

Organic compounds are generally less stable than inorganic compounds due to the presence of carbon-hydrogen (C-H) bonds, which can be more reactive under certain conditions. The reactivity of organic compounds often arises from functional groups that can undergo chemical transformations more readily than the bonds typically found in inorganic compounds. Additionally, the complexity and variety of organic structures can lead to more potential reaction pathways, making them more prone to decomposition or reaction. In contrast, many inorganic compounds have stronger ionic or covalent bonds that contribute to their stability.


What element do all inorganic compounds lack?

All inorganic compounds lack carbon-hydrogen (C-H) bonds. Carbon-hydrogen bonds are characteristic of organic compounds.


Does sulfur hydrogen and plutonium have organic compounds?

Yes, sulfur, hydrogen, and plutonium can be found in organic compounds. Sulfur is commonly found in amino acids, such as cysteine and methionine. Hydrogen is present in virtually all organic compounds, as it forms covalent bonds with carbon. Plutonium can be incorporated into organic compounds through synthetic processes in laboratories, but naturally occurring organic compounds with plutonium are rare.


Which elements are considered the foundation organic compounds and why?

Carbon and hydrogen are considered the foundation organic compounds because they form the backbone of organic molecules due to their unique bonding properties. Carbon can form four covalent bonds, allowing for a wide variety of complex and diverse organic compounds to exist. Hydrogen commonly bonds with carbon to form the organic compounds found in living organisms.


What are the difference between organic and in organic compounds?

Basically, all organic compounds have carbon and organic chemistry is the study of carbon based comounds. Inorganic generally do not contain carbon (with exceptions being carbon monoxide, carbon dioxide, metal carbonates, metal bicarbonates and metal carbides).