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With your knowledge on the nature of carbon, why are there many organic compounds or molecules? Cite 3 reasons and briefly explain each.
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- write the structural formulas of all the alkanes which contain five carbon atoms in the main chain, which have a density compared to that of hydrogen equal to 50. Name these compounds according to the mathematical way.What is the main difference that distinguishes organic compounds from inorganic compounds? Do all organic compounds have the same physical and chemical properties? How so? site 3 examples. Compare your examples to those properties exhibited by inorganic compounds.Write the letter T or F inside each box after deciding which statement is true or false. Then on the 3rd box, write the letter of your choice based on the given instructions. A if both statements are true. B if the 1st statement is false and the 2nd statement is true. C if the 1st statement is true and the 2nd statement is false. D if both statements are false. T F
- What three characteristics of carbon enable it to be found in millions of compounds?What is the structural formula for the molecule CH₂?4. Decide whether each statement is true (T) or false (F). Place your answer in the blank space given. a. A hydrocarbon contains only atoms of carbon and hydrogen. b. Alkanes have the general formula C₂H₂- c. In a condensed structural diagram, the symbol "H" is used to show the position of a hydrogen atom. d. A continuous-chain alkane has one or more carbon branches attached to the parent chain. e. In a Lewis dot diagram of a hydrocarbon, each carbon-carbon and carbon-hydrogen bond is represented by a line segment. f. Any branch within branched alkanes is called an alkyl group. 1
- What are the common features of organic compounds?What are "common names" of organic molecules? How do those rules change if we substitute some of the hydrogen atoms with , for example , chlorine atoms ?Paragraph 1: Defines polymers and give an overview of the importance of polymers in our everyday world. Shows an example picture of two monomers coming together to make a polymer.
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