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    Or·gan·ic chem·is·try
    /ôrˈɡanik ˈkeməstrē/

    noun

    • 1. the chemistry of carbon compounds (other than simple salts such as carbonates, oxides, and carbides).

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  2. Organic chemistry is the chemistry of carbon and carbon-containing compounds. Since the core structural, catalytic, information storage, and retrieval systems of organisms are carbon-based macromolecules, organic chemistry is of direct relevance to the life sciences.

  3. A brief introduction to organic chemistry. Carbon can form covalent bonds with itself and other elements to create a mind-boggling array of structures. In organic chemistry, we will learn about the reactions chemists use to synthesize crazy carbon based structures, as well as the analytical methods to characterize them.

  4. Jan 15, 2023 · Define organic chemistry as the study of carbon-containing compounds. Explain why the results of the experiments carried out by Chevreul and Wöhler contributed to the demise of the “vital force” theory. Key Terms. Make certain that you can define, and use in context, the key term below. organic chemistry.

  5. Mar 11, 2024 · The meaning of ORGANIC CHEMISTRY is a branch of chemistry that is concerned with carbon and especially carbon compounds which are found in living things.

  6. Jul 3, 2019 · Organic chemistry is the study of carbon and the study of the chemistry of life. Since not all carbon reactions are organic, another way to look at organic chemistry would be to consider it the study of molecules containing the carbon-hydrogen (C-H) bond and their reactions. Why Organic Chemistry Is Important.

  7. They gradually became defined by chemists in a more modern fashion: Organic chemistry is the chemistry of carbon compounds. Nature is filled with chemical structures of many types, but in the chemistry of life we find an abundance of organic chemicals. Carbon has an outsized role to play in life, and thus in our chemical activities.

  8. Organic chemistry is the study of the structure, properties, composition, reactions, and preparation of carbon-containing compounds. Most organic compounds contain carbon and hydrogen, but they may also include any number of other elements (e.g., nitrogen, oxygen, halogens, phosphorus, silicon, sulfur).

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