Using electrons and/or lone pairs in the following conjugated system, create a resonance form by moving electrons as far as possible. Be sure to include all lone pairs and charges. Part: 0 / 2 Part 1 of 2 Add curved arrow notation to show how electrons will move to form a different resonance form. + 0:
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- please draw it out and explain how to do it. i would like to learn3. The following shows all resonance structures for the following molecule. a. Draw in all implied lone pairs. b. Draw in curved arrows that show the flow of electrons, making sure the arrows show the precise starting point and destination of the electrons. Label each arrow as: lp →→→л (p=lone pair) c. d. Rank the resonance structures from most stable to least based on the number of formal charges and atoms that lack an octet of electrons. ol-of-o. B A D d-d-d-o E C F Ga Draw the additional resonance structure(s) of the structure below? :CH₂-C=N: • Include all valence lone pairs in your answer. • Draw one structure per sketcher. Add additional sketchers using the drop-down menu in the bottom right corner. • Separate resonance structures using the → symbol from the drop-down menu. Ne **** H₂C=C=N: ChemDoodleⓇ On [F remove
- Draw a resonance structure of the compound shown below, called 2-heptanone, which is found in some kinds of cheese. en Draw curved arrow(s) on the initial structure to show the expected resonance. Modify the second structure given to draw a new resonance structure, including any relevant formal charges. Use the + and - tools to add/remove charges to an atom, and use the single bond tool to add/remove double bonds. H3C CH3 Edit Drawing H3C CH3N°H HN. HO но. HN the lone pairs to help you track the movement of electrons. Note that all the charges are as shown but the lone pairs of electrons might be omitted so, add 6. Using curved arrows draw at least one resonance structure for each of the following species.d) c) H₂C b) Question 7. For each of the following: 1. H. iii. Providing the missing electrons around atoms Show electron movements using the curved arrow notation. Note that the double-headed arrow is required here as you will be moving a pair of electrons. Calculate the formal charge for those atoms involved in electron movements. Show working for calculation of formal charge. + 01H H₂C-1 da – CH3 H₂C H CH3 CH3 + 1 H H
- Shown below is the major resonance structure for a molecule. Draw the second best resonance structure of the molecule. Include all non-zero formal charges. H-N-C =C-H Click and drag to start drawing a structure. 1Two major resonance structures are possible for the anion shown. One resonance form is given, but it is incomplete. Complete the given structure by adding nonbonding electrons and formal charges. Draw the remaining structure, including nonbonding electrons and formal charges. Omit curved arrows. Structure A: complete the structure by adding nonbonding electrons and formal charges. H H H I Structure B: draw the remaining resonance structure, including nonbonding electrons and formal charges. H- : z: H HUse resonance to support your choice in part (a). First, add curved arrow(s) to show the delocalization of the negative charge using the following pattern: a lone pair next to a pi bond. Modify the second structure given to draw the new resonance structure. Include formal charges in your structure. Use the + and- tools to add/remove charges to an atom, and use the single bond tool to add/remove double bonds. HO: JOH Edit Drawing HO HQ OH