A student suggests that the molecule on the right can be made from a single molecule with one less ring in it. If the student is correct, draw the starting material below, otherwise, check the box under the drawing area. Click and drag to start drawing a structure. + NaOH C ? Ar
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- A student suggests that the molecule on the right can be made from a single molecule with one less ring in it. If the student is correct, draw the starting material below, otherwise, check the box under the drawing area. ? + NaOH Click and drag to start drawing a structure. olo ArA student suggests that the molecule on the right can be made from a single molecule that doesn't have a ring. If the student is correct, draw the starting material below, otherwise, check the box under the drawing area. Click and drag to start drawing a structure. The student is incorrect. + NaOHA student suggests that the molecule on the right can be made from a single molecule that doesn't have a ring. If the student is correct, draw the starting material below, otherwise, check the box under the drawing area. + Click and drag to start drawing a structure. The student is incorrect. + ☑ NaOH တွ
- Draw the next most important resonance structure for the enolate shown. Use curved arrows to show the delocalization of electron pairs in both structures. Include lone pairs of electrons, formal charges, and be sure to draw all hydrogen atoms. You can add condensed hydrogens using the More menu, selecting +H and clicking on the carbon as many times as needed. Draw curved arrows to form the next most important resonance structure. Draw the next most important resonance structure, then draw curved arrows to reform the first structure.For the following, use curved arrows to show the transformation of one resonance structure into another. Label the major and minor resonance forms (major and minor contributors to the resonance hybrid), and show which ones are of equal energy. Briefly justify your choices. Draw the structure of the resonance hybrid. [re % la] uAdd one or more curved arrows to show the movement of electrons for each step in the substitution reaction. All charges and electrons are already drawn. Do not delete any pre‑drawn bonds, charges, or lone pairs. If you accidentally delete a vital part of the structure, click the undo button in the lower left.
- skip this if you already this. typewritten or handwritten but readable. if I it is not readable I will downvote. If I see the same answers I will downvote.Add one or more curved arrows to show the movement of electrons in the reaction. To draw the arrows, select More in the drawing menu, then select the appropriate curved arrow. Click on a bond or electron to start a curved arrow. Do not start from an atom. Use the select tool to move the arrow head and tail to the desired placement. When the curved arrow changes from red to black, your arrow has an appropriate starting and ending point. Draw curved arrows. H,C CH, heat H,C-ö. + 0-CHs MacBook ProDraw the next most important resonance structure for the enolate shown. Use curved arrows to show the delocalization of electron pairs in both structures. Include lone pairs of electrons, formal charges, and be sure to draw all hydrogen atoms. You can add condensed hydrogens using the More menu, selecting +H and clicking on the carbon as many times as needed. Draw curved arrows to form the next most important Draw the next most important resonance structure, then draw curved arrows to reform the first structure. resonance structure. Erase Select Draw Rings More Erase Select Draw Rings More C :o : H,C CH2 Q