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Interpretation: The reason for difference in strength of intermolecular forces between ammonia and methane needs to be explained.
Concept introduction: When polar molecules with dipole moments are put together, they orient themselves in such a way that molecules with dipole moments can attract each other so that the positive and negative portions of the molecules come close to each other.
The forces that exist among non-polar molecules are called London dispersion forces. Atoms can develop a temporary dipole moment due the distortion of symmetrical charge distribution as the electrons move around the nucleus. This instantaneous dipole generated in turn induces a similar dipole in a neighboring atom.
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Answer to Problem 2STP
Option “A” is correct.
Explanation of Solution
Ammonia due to electronegativity difference between
On the other hand due tetrahedral structure of methane (
Option “A” is correct.
Chapter 14 Solutions
World of Chemistry
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- Predict the major organic product(s), if any, of the following reactions. Assume all reagents are in excess unless otherwise indicated.arrow_forwardPredict the major organic product(s), if any, of the following reactions. Assume all reagents are in excess unless otherwise indicated.arrow_forwardHow many signals would you expect to find in the 1 H NMR spectrum of each given compound? Part 1 of 2 2 Part 2 of 2 HO 5 ☑ Х IIIIII***** §arrow_forward
- A carbonyl compound has a molecular ion with a m/z of 86. The mass spectra of this compound also has a base peak with a m/z of 57. Draw the correct structure of this molecule. Drawingarrow_forwardCan you draw this using Lewis dot structures and full structures in the same way they are so that I can better visualize them and then determine resonance?arrow_forwardSynthesize the following compound from cyclohexanol, ethanol, and any other needed reagentsarrow_forward
- For a titration of 20.00 mL of 0.0500 M H2SO4 with 0.100 M KOH, calculate the pH at each of the following volume of KOH used in the titration: 1) before the titration begin; 2) 10.00 mL; 3) 20.00 mL; 4) 30.00 mL. Ka2 = 1.20×10-2 for H2SO4.arrow_forwardCurved arrows are used to illustrate the flow of electrons. Using the provided starting and product structures, draw the curved electron-pushing arrows for the following reaction or mechanistic step(s) Be sure to account for all bond-breaking and bond-making steps Problem 73 of 10 Drawing Amows ro HO Donearrow_forward12. Synthesize the following target molecules (TMs) using the specified starting materials. .CI a) HO3S SM TM b) HO- SMarrow_forward
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