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Consider the following compounds. Indicate whether any of these molecules are capable of forming hydrogen bonds with another molecule of the same compound.
8. Consider the following compounds. Indicate whether any of these molecules ar capable of forming hydrogen bonds with another molecule of the same compound. Explain or justify each answer. Compound H bonding? Explanation нсон (CH3CH2O)3N HC-C-
9. Draw all of the possible hydrogen bonds between the following molecule and water molecules. Indicate the hydrogen bonds with dotted lines. :N-CEN: H 10. Polar molecules can contain more than one type of attractive force. Fill in the following table answering the question "Is this attractive force present between molecules of the given compound?" Write yes or no for each force. Molecule Ionic Attraction H-Bond Dipole-Dipole London CHCl3 CH3OH NH2 65- *NH3-C-COO 11. For each of the following pairs...
For each compound in the table below, decide whether there would be any hydrogen-bonding force between molecules of the compound, or between molecules of the compound and molecules of water.
Which of these atoms are capable of forming double bonds with another atom? Choose all that are correct a. P b. H c. O d. C
3. Determine whether the following pair of molecules are representations of the same molecule, or if they are a pair of constitutional isomers. Explain your reasoning. ym 4. Clearly assign priorities for the substituents attached to the marked chirality center in each of the following molecules. (You do NOT need to determine the configuration (R/S). Just assign priorities.) CI I... Br PH2 "NH₂ Br 2. Circle all chirality center(s) in the following molecules. (You do NOT need to determine priorities...
For each of the following, indicate whether it is an ionic compound (I) or a molecule (M), and give the corresponding formula or name as appropriate. I or M Chemical Formula/Name .1. aluminum acetate 2. silver phosphate 3. ammonia 4. copper (II) hydroxide 5. ammonium sulfate 6. calcium perchlorate 7. phosphorus trichloride 8. titanium (IV) oxide
Which of the following molecules can form hydrogen bonds with a neighboring molecule of itself? H20 NH3 CH4 CH3OH CH3C1
Which of the following elements are capable of forming hypervalent compounds? (a) C (b) P (c) O (d) F (e) Cl (f) B
Consider the following molecule: Circle the anomeric carbon in the following structure and indicate whether it represents the beta or the alpha anomer. Is this sugar a pyranose or a furanose?
Which of the following groups on Hydrocortisone are capable of forming Hydrogen bonding interactions with ASN and THR pH=7.4? OH C H3C HO OH F H2c B D A Hydrocortisone OH C H3C HO OH F H2c B D A Hydrocortisone