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This post was last edited by ljtjbx on 2015-11-10 08:10. Judgment: An initiator is a compound that can break carbon-carbon double bonds under certain conditions to enable chain polymerization; Free radical polymerization initiators generally have weak bonds in their structure, allowing them to decompose into free radicals. They are usually classified into two types: pyrolytic and redox types. ( ) Answer: Correct! —————————————————— Please note: We will close this thread after 24 hours, and at that time we will announce the best reply (the best assistance), as well as the answer and explanation. Charisma Reward: If you post a topic in this section within two days to provide a detailed explanation or discussion of the knowledge points related to this question, please reply or leave a comment in this post to inform us, and we will have a moderator award you charisma points. It is not allowed to simply copy and paste; original content is preferred, with at least some organization by the user along with personal insights and opinions.
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An initiator is a compound that can break carbon-carbon double bonds under certain conditions to enable chain polymerization; Free radical polymerization initiators generally have weak bonds in their structure, allowing them to decompose into free radicals. They are usually classified into two types: pyrolytic and redox types. (Correct)
An initiator is a compound that can break carbon-carbon double bonds under certain conditions to enable chain polymerization; Free radical polymerization initiators generally have weak bonds in their structure, allowing them to decompose into free radicals. They are usually classified into two types: pyrolytic and redox types. (That’s right.)
An initiator is a compound that can break carbon-carbon double bonds under certain conditions to enable chain polymerization; Free radical polymerization initiators generally have weak bonds in their structure, allowing them to decompose into free radicals. They are usually classified into two types: pyrolytic and redox types. (Yes)
An initiator is a compound that can break carbon-carbon double bonds under certain conditions to enable chain polymerization; Free radical polymerization initiators generally have weak bonds in their structure, allowing them to decompose into free radicals. They are usually classified into two types: pyrolytic and redox types. (√)
An initiator is a compound that can break carbon-carbon double bonds under certain conditions to enable chain polymerization; Free radical polymerization initiators generally have weak bonds in their structure, allowing them to decompose into free radicals. They are usually classified into two types: pyrolytic and redox types. (Yes)
An initiator is a compound that can break carbon-carbon double bonds under certain conditions to enable chain polymerization; Free radical polymerization initiators generally have weak bonds in their structure, allowing them to decompose into free radicals. They are usually classified into two types: pyrolytic and redox types. (Yes)
An initiator is a compound that can break carbon-carbon double bonds under certain conditions to enable chain polymerization; Free radical polymerization initiators generally have weak bonds in their structure, allowing them to decompose into free radicals. They are usually classified into two types: pyrolytic and redox types. (Correct)
An initiator is a compound that can break carbon-carbon double bonds under certain conditions to enable chain polymerization; Free radical polymerization initiators generally have weak bonds in their structure, allowing them to decompose into free radicals. They are usually classified into two types: pyrolytic and redox types. (Yes)