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- 3.) Which of the following pairs are resonance structures of each other? (Circle all that apply) EN SexGive correct detailed Solution with explanation needed of all options..don't give Handwritten answer .don't use Ai for answering this6. Good question. A molecule with zero formal charges on all atoms is drawn below. Identify which group of the periodic table each of the elements X, Y, Z, and A, belong to. A A A -X A A :Z-A Ÿ-A
- Please don't provide handwritten solution ....1. (a) Lewis diagrams may look different but represent the same bonding between atoms. Pair the Lewis diagrams A through D to each other. Explain your choice. Structure A Structure B Structure C H H H Structure D H H H- C -H H-C-HO-H H- -C-HO-H " H H H H- H H-O: -H H- ## H-C-H H H H D:H-C-HII. Problem solving. 1. Choose from each pair the one that will exhibit the given property to the greater extent a. bond polarity N-H b. net number of lone pairs NH3 c. bond length CI-F d. formal charge on N e. net number of lone pairs f. bond strength g. bond polarity h. bond length electronegativity i. j. formal charge on O NH4+ NH₂™ C-O H-CI N-N O H₂O 2. Draw the Lewis structures of the following then evaluate the formal charge a. PBr3 b. CH3OH B-F CH4 F-F NH3 NH₁+ C-N H-F N = N CI H3O+ C. NO₂¹¹
- Which of the following species is a valid resonance structure of A? Use curved arrows to show how A is converted to any valid resonance structure. When a compound is not a valid resonance structurc of A, explain why not. Provide steps and tips on what to look for to understand how to solve and apply to other problems.Give correct detailed Solution with explanation needed . Don't give Handwritten answerFor each polar molecule in draw the molecule and indicate the positive and negative ends of the dipole moment. a) I2(b) NO(c) HCl(d) N2
- The curved arrow notation introduced in Section 1.6 is a powerful method used by organic chemists to show the movement of electrons not only in resonance structures, but also in chemical reactions. Since each curved arrow shows the movement of two electrons, following the curved arrows illustrates what bonds are broken and formed in a reaction. Consider the following three-step process. (a) Add curved arrows in Step [1] to show the movement of electrons. (b) Use the curved arrows drawn in Step [2] to identify the structure of X. X is converted in Step [3] to phenol and HCl.The curved arrow notation introduced in Section 1.6 is a powerful method used by organic chemists to show the movement of electrons not only in resonance structures, but also in chemical reactions. Since each curved arrow shows the movement of two electrons, following the curved arrows illustrates what bonds are broken and formed in a reaction. Consider the following three-step process. (a) Add curved arrows in Step [1] to show the movement of electrons. (b) Use the curved arrows drawn in Step [2] to identify the structure of X. X is converted in Step [3] to phenol and HCl.Do not give handwriting solution.
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