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Give Balanced Equation for the Laboratory Preparations of the Following Organic Compound: an Alcohol from Ethyl Bromide - Chemistry

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प्रश्न

Give balanced equation for the laboratory preparations of the following organic compound:

An alcohol from ethyl bromide

एक पंक्ति में उत्तर
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उत्तर

 C2H5Br + NaOH  C2H5OH + NaBr 

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अध्याय 11.6: Carboxylic Acid - Exercise 8 [पृष्ठ २९७]

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फ्रैंक Chemistry Part 2 [English] Class 10 ICSE
अध्याय 11.6 Carboxylic Acid
Exercise 8 | Q 8.4 | पृष्ठ २९७
फ्रैंक Chemistry Part 2 [English] Class 10 ICSE
अध्याय 11.6 Carboxylic Acid
Exercise 8 | Q 4.4 | पृष्ठ २९७

संबंधित प्रश्न

Name the alkyl radical and the functional group of the following organic compound:

CH3OH


How is gas collected?


Fill in the blank with appropriate word/words.

For artificial ripening of fruits _________is used.


When ethanol is heated with conc. H2SO4 at 170oC, it gets converted into ethane. In this reaction conc. H2SO4 acts as


Which compound should be heated with soda lime to obtain ethane gas in the laboratory?


Give reason as to why :

 Almost 90% of all known compounds are organic in nature


Draw the structural formula for the following:

Diethyl ether


Give the structural formulae of the following:

2-methyl propane


Name the gas which: Affects the acidified K2Cr2O7 paper and also turns lime water dirty milky.


The structures of six organic compounds are shown:

A

\[\begin{array}{cc}
\ce{H}\phantom{...}\ce{H}\phantom{...}\ce{H}\phantom{...}\ce{H}\\
|\phantom{....}|\phantom{....}|\phantom{....}|\\
\ce{H - C - C = C - C - H}\\
|\phantom{.............}|\\
\ce{H}\phantom{............}\ce{H}
\end{array}\]

B

\[\begin{array}{cc}
\phantom{.......}\ce{H}\phantom{.....}\ce{O}\\
\phantom{.......}|\phantom{.....}//\\
\ce{H - C - C}\\
\phantom{......}|\phantom{.....}\backslash\\
\phantom{...........}\ce{H}\phantom{.....}\ce{O - H}
\end{array}\]

C

\[\begin{array}{cc}
\ce{H}\phantom{...}\ce{H}\phantom{...}\ce{H}\phantom{...}\ce{H}\\
|\phantom{....}|\phantom{....}|\phantom{....}|\\
\ce{H - C - C - C - C - H}\\
|\phantom{....}|\phantom{....}|\phantom{....}|\\
\ce{H}\phantom{...}\ce{H}\phantom{...}\ce{H}\phantom{...}\ce{H}
\end{array}\]

D

\[\begin{array}{cc}
\ce{H}\phantom{...}\ce{H}\\
|\phantom{....}|\\
\ce{H - C - C - H}\\
|\phantom{....}|\\
\ce{H}\phantom{...}\ce{O}\\
\phantom{.......}\backslash\\
\phantom{.........}\ce{H}
\end{array}\]

E

\[\begin{array}{cc}
\ce{H}\\
|\\
\ce{H - C - H}\\
\ce{H}\phantom{....}\phantom{....}\ce{H}\\
|\phantom{....}|\phantom{....}|\\
\ce{H - C - C - C - H}\\
|\phantom{....}|\phantom{....}|\\
\ce{H}\phantom{...}\ce{H}\phantom{...}\ce{H}
\end{array}\]

F

\[\begin{array}{cc}
\ce{H}\phantom{...}\ce{H}\\
|\phantom{....}|\\
\ce{C = C}\\
|\phantom{....}|\\
\ce{H}\phantom{...}\ce{H}
\end{array}\]

  1. Identify two of the compounds that are members of the same homologous series but are not isomers.
  2. Which two compounds are isomers of each other?
  3. F can be prepared from D. Give a chemical equation for the reaction.

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