For each pair of compounds listed, check the box next to the one with the higher boiling point. higher boiling point compounds CH,CH, CHA Ne Хе Si H10 Si,H6
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- Rank the following organic compounds in order of decreasing their boiling points: CH3CH2COOH CH3COOCH3 CH3CH2CH2OH CH3CH2CONH2 || II IV Select one: ||>l>I||>IV l>IV>III>I| IV>l>II>III IV>l>IIl>I|Order each of the molecules shown from lowest to highest vapor pressure: CH3CH2CH3 CH3CH2CH2OH (in picture)Rank the following compounds in order of decreasing boiling point. Question List (6 items) Correct Answer List (Drag and drop into the appropriate area) highest boiling point 2-methylpropane CH:(CH)CH3CH3 pentane CH3CH2CH2CH,CH3 butane CH,CH,CH,CH; 2-methylbutane CHCHICH-CHэсHS hexane CH3CH2CH2CH2CH2CH3 propane CH,CH,CH3 2. 3.
- Order each molecule from least to greatest water solubility and explain the reasoning behind eachWhich compound below has the highest boiling point? CH3 CH3CCH2CH2CH,OH ČH3 CH;CH, O CH2CH3 H3C CH3 HHH H-C-C-O нн A Moving to another question will save this response. 80 000 000 F1 O=0Rank the following compounds in decreasing order of boiling point. OIII >1> IV > II OII > IV > III > I O III >IV>I>II IV>1 >> III |>|||>|| >IV HO. 111 OH وكرة
- Rank allFor each pair of compounds listed, check the box next to the one with the higher boiling point. higher boiling point compounds CH4 CC 4 GeH4 GeCl4 CH, CH, (CH,),CH,You must show all of your work to receive full credit. Answers that do not have complete work and units will be marked incorrect. Part A Fill out the table below to determine the molar masses (in g mol-¹) and types of intermolecular forces for each compound. Compound Ethanol Formula 1-Propanol C3H₂OH C₂H5OH 1-Butanol C4H,OH Methanol CH3OH n-Hexane n-Pentane C5H12 ©2022 F'22/S'23 C6H14 Structure Molar mass How do intermolecular forces affect the evaporation rate of a solvent? Be very descriptive on how the intermolecular forces are affected by the intermolecular forces. H-bond? IMFS Present Chemistry I Lab Manual 223
- Consider the data in the table. Compound Melting point (°C) ????? (??/???)ΔHfus (kJ/mol) Boiling point (°C) ????? (??/???)ΔHvap (kJ/mol) HFHF −83.11 4.577 19.54 25.18 HClHCl −114.3 1.991 −84.9 17.53 HBrHBr −86.96 2.406 −67.0 19.27 HIHI −50.91 2.871 −35.38 21.16 Using the data in the table, calculate Δ?fus and Δ?vap for HF. Δ?fus= J/(K⋅mol) Δ?vap= J/(K⋅mol) Determine the entropy change when 8.70 mol HF(g) condenses at atmospheric pressure. Δ?= J/KConsider the data in the table. Compound Melting point (°C) ????? (??/???)ΔHfus (kJ/mol) Boiling point (°C) ????? (??/???)ΔHvap (kJ/mol) HFHF −83.11 4.577 19.54 25.18 HClHCl −114.3 1.991 −84.9 17.53 HBrHBr −86.96 2.406 −67.0 19.27 HIHI −50.91 2.871 −35.38 21.16 Using the data in the table, calculate Δ?fusΔSfus and Δ?vapΔSvap for HF.HF. Δ?fus=ΔSfus= J/(K⋅mol)J/(K⋅mol) Δ?vap=ΔSvap= J/(K⋅mol)J/(K⋅mol) Determine the entropy change when 7.60 mol HF(l)7.60 mol HF(l) boils at atmospheric pressure. Δ?=ΔS= J/Kneed soon