Part 1: The structures of carbon disulfide and carbon dioxide are shown below with their boiling points. Explain why CS2 has a higher boiling point than CO2. Be specific about particulate interactions and intermolecular forces. IMG 2217 Part 2: Below are the structures of water and octane (C8H18), along with their boiling points. Water has a lower boiling point than octane! Explain why,
Part 1: The structures of carbon disulfide and carbon dioxide are shown below with their boiling points. Explain why CS2 has a higher boiling point than CO2. Be specific about particulate interactions and intermolecular forces. IMG 2217 Part 2: Below are the structures of water and octane (C8H18), along with their boiling points. Water has a lower boiling point than octane! Explain why,
Chemistry for Engineering Students
4th Edition
ISBN:9781337398909
Author:Lawrence S. Brown, Tom Holme
Publisher:Lawrence S. Brown, Tom Holme
Chapter8: Molecules And Materials
Section: Chapter Questions
Problem 8.72PAE
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Part 1: The structures of carbon disulfide and carbon dioxide are shown below with their boiling points. Explain why CS2 has a higher boiling point than CO2. Be specific about particulate interactions and intermolecular forces. IMG 2217
Part 2: Below are the structures of water and octane (C8H18), along with their boiling points. Water has a lower boiling point than octane! Explain why, being specific about the particulate-level interactions and intermolecular forces. (Remember, each point on a line is a carbon surrounded with the appropriate number of hydrogen atoms to make an octet). IMG 2218
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