At -14.0 °C the concentration equilibrium constant K 4.4x10 for a certain reaction. Here are some facts about the reaction: • The constant pressure molar heat capacity C - 2.20 J-mol¹ K . Some of the reactants are liquids and solids. • If the reaction is run at constant pressure, 132. kJ/mol of heat are released. Using these facts, can you calculate K, at 4.7 °C? If you said yes, then enter your answer at right. Round it to 2 significant digits. If you said no, can you at least decide whether K, at 4.7 °C will be bigger or smaller than K, at -14.0°C? Yes. O No. 0 Yes, and K, will be bigger. Yes, and K, will be smaller. No. 0.9 X

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At -14.0 °C the concentration equilibrium constant K 4.4×10 for a certain reaction.
Here are some facts about the reaction:
• The constant pressure molar heat capacity C = 2.20 J-mol¹ K
• Some of the reactants are liquids and solids.
• If the reaction is run at constant pressure, 132. kJ/mol of heat are released.
Using these facts, can you calculate K, at 4.7 °C?
If you said yes, then enter your answer at right. Round it to
2 significant digits.
If you said no, can you at least decide whether Kat
4.7 °C will be bigger or smaller than K, at -14.0 °C?
Yes.
O No.
O
0
Yes, and K, will be
bigger.
Yes, and K, will be
smaller.
No.
X
Transcribed Image Text:-5 At -14.0 °C the concentration equilibrium constant K 4.4×10 for a certain reaction. Here are some facts about the reaction: • The constant pressure molar heat capacity C = 2.20 J-mol¹ K • Some of the reactants are liquids and solids. • If the reaction is run at constant pressure, 132. kJ/mol of heat are released. Using these facts, can you calculate K, at 4.7 °C? If you said yes, then enter your answer at right. Round it to 2 significant digits. If you said no, can you at least decide whether Kat 4.7 °C will be bigger or smaller than K, at -14.0 °C? Yes. O No. O 0 Yes, and K, will be bigger. Yes, and K, will be smaller. No. X
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