A 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
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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. Click and drag to start drawing a structure. + NaOH C ? ArA 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 ArDraw 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.
- Chemistry QuestionDraw two additional resonance structures for the following compound. Use curved arrows to show the movement of electrons and draw the resonance hybrid. Note that not all hydrogens and lone pair electrons have been drawn in, it may be helpful to start by drawing those in. Please write your answer on paper and submit it here. If you are not able to submit it here, submit it, along with the other short answer questions, to the "Exam 1 short answer dropbox".A 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
- Please help with row 3: Follow the instructions in each column. Hint for the last column: draw it with a wedge and again with a dash – which gives the correct configuration?Question 1: How many H- types do each of the following compounds have? Label them a, b, c, etc . In each , circle the hydrogen type you expect to be the most downfield. Please answer for all 4 parts of the question. Thank you for your help!a • You should include all products. • Draw one structure per sketcher. Add additional sketchers using the drop-down menu in the bottom right corner. Separate multiple products using the + sign from the drop-down menu. H ? + H₂O H* Sn [F
- The resonance structures of carbon monoxide are shown. Show how each structure can be converted into the other using the curved-arrow notation. 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. Resonance structure 1. Draw a curved arrow. Select Draw Rings More O: Erase Resonance structure 2. Draw a curved arrow. Select Draw Rings More /||||||| C O 0: EraseOrganic Functional Groups Identifying positions labeled with Greek letters in acids and derivatives If possible, replace an H atom on the a carbon of the molecule in the drawing area with a methyl group substituent, and replace an H atom on the ß carbon with a hydroxyl group substituent. If one of the substituents can't be added for any reason, just don't add it. If neither substituent can be added, check the box under the drawing area. HO. Oneither substituent can be added. D X 1/5 0:0 Tyler V ola Ar8) Roll two die again and draw an alcohol with that number of carbons. Pick a reagent and oxidize your alcohol. 9) Roll two die again and draw functional group that can be reduced to an alcohol with that number of carbons. Choose your reagent and reduce it.