еxcess CH HCI H,C. H,C. CHs v 1st attempt Choose one or more: O Uuse IR; the product has a strong broad peak at 2200 cm-1, but the starting material does not. O Use UV-vis; the product would not show an absorbance in the spectrum range due to a shorter Amax from that of the starting material O Use IR; the product has a sharp narrow peak at 3300 cm-1, but the starting material does not. O IR will not be useful as no detectable change in the spectrum will occur. O UV-vis will not be useful because no change in Åmax Would occur. Use IR; the starting material has a sharp narrow peak at 3300 cm-1, but the product does not. O Use UV-vis; the product would show an absorbance at a longer åmax from that of the starting material. Use IR; the starting material has a strong broad peak at 2200 cm-1, but the product does not.

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Chapter1: Chemical Foundations
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How could spectroscopy be used to support that the below reaction occurred? Choose all that apply.
excess
CH
HCI
H,C,
CH3
v 1st attempt
Choose one or more:
O Use IR; the product has a strong broad peak at 2200 cm-1, but the starting material does not.
O Use UV-vis; the product would not show an absorbance in the spectrum range due to a shorter Åmax from that
of the starting material
O Use IR; the product has a sharp narrow peak at 3300 cm-1, but the starting material does not.
O IR will not be useful as no detectable change in the spectrum will occur.
O UV-vis will not be useful because no change in åmax Would occur.
Use IR; the starting material has a sharp narrow peak at 3300 cm-1, but the product does not.
Use UV-vis; the product would show an absorbance at a longer Âmax from that of the starting material.
O Use IR; the starting material has a strong broad peak at 2200 cm-1, but the product does not.
Transcribed Image Text:How could spectroscopy be used to support that the below reaction occurred? Choose all that apply. excess CH HCI H,C, CH3 v 1st attempt Choose one or more: O Use IR; the product has a strong broad peak at 2200 cm-1, but the starting material does not. O Use UV-vis; the product would not show an absorbance in the spectrum range due to a shorter Åmax from that of the starting material O Use IR; the product has a sharp narrow peak at 3300 cm-1, but the starting material does not. O IR will not be useful as no detectable change in the spectrum will occur. O UV-vis will not be useful because no change in åmax Would occur. Use IR; the starting material has a sharp narrow peak at 3300 cm-1, but the product does not. Use UV-vis; the product would show an absorbance at a longer Âmax from that of the starting material. O Use IR; the starting material has a strong broad peak at 2200 cm-1, but the product does not.
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