 
C₂H6 C₂H₂ → C₂H₂ → C₂H → C₂H,Br → C₂H4.
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    Ответы на вопрос
 
        Ответ:
1)2CH4--(1500°C)-->C2H2+3H2
2)C2H2+H2O--(кат.)-->CH3COH
3)CH3COH+H2--(кат.)-->C2H5OH
4)C2H5OH+HBr--->C2H5Br+H2O
5)C2H5Br--(t°;кат.)-->C2H4+HBr
6)C2H4+H2O--->C2H5OH
7)C2H5OH+Cu(OH)2--->
CH3COH+Cu+2H2O
8)CH3COH+2[Ag(NH3)2]OH--->
CH3COOH+2Ag+4NH3+H2O
9)2CH3COOH+2Na--->
2CH3COONa+H2
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            The chemical reaction you have provided seems incomplete or contains some errors. It appears to be a series of reactions involving the conversion of ethane (C₂H₆) and acetylene (C₂H₂) into ethene (C₂H₄). However, I will try to provide a possible explanation based on the information you provided:
- C₂H₆ (ethane) can be converted to C₂H₂ (acetylene) through a process called dehydrogenation. This reaction typically requires a catalyst, such as a metal catalyst like platinum or palladium, and high temperatures. 
- C₂H₂ (acetylene) can undergo a reaction called hydrogenation to form C₂H₄ (ethene). This reaction involves adding hydrogen (H₂) to the carbon-carbon triple bond of acetylene. The reaction is usually carried out in the presence of a catalyst like palladium or nickel. 
The reaction steps you mentioned are as follows:
C₂H₆ (ethane) → C₂H₂ (acetylene) C₂H₂ (acetylene) → C₂H₂ (acetylene) [This seems to be an error or repetition] C₂H₂ (acetylene) → C₂H (ethylene) [Assuming this is a step involving hydrogenation] C₂H (ethylene),Br (bromine) → C₂H₄ (ethene)
Please note that without specific conditions and reaction details, it is challenging to provide an accurate and complete explanation. If you have any additional information or specific reaction conditions, I would be happy to assist you further.
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