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please help with bottom question, is due in 30 mins, will rate, thank you ! Rate...
please help with the bottom questions
Determination (run) Rate Time / s 428 sec 2 82.7 Le 3 IGLO M 4 430.5 Le (0) (5,0:1 0.04211 M 0.084211 M 0.04211 M 0.04210520 M 0.04211 M 0.0210526M 0.04211 M. 0.0106263 M 0.084211M 0.042106 M 0.042105 M 0.042105 M 0.0210526 M 0.042105 M 0.0106263 M 0.042105 M 5 6 46.8 sec 101.2 uc 156.9 sec 7 8 348.6 Le (520,21 Rate k Ink Temp/C Run 9 - 29 Run 10 - 12...
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A reaction has AG° = (1.88x10^1) kJ/mol. What is the value of the equilibrium constant, K, at 298 K for this reaction?
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If AS univ = -(6.61x10^0) J/mol K and ASsys = -(2.980x10^1) J/mol K, what is the value of ASsurr in J/mol K?
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At what temperature (in K) will a reaction be at equilibrium if AHsys = -(4.67x10^2) kJ/mol and ASsys = -(3.7900x10^2) J/K mol?
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What is AG (in kJ/mol) at 298 K for a reaction that has AHrxn = -19.4200x10^1) kJ/mol and ASrxn = -(1.84x10^2) J/K mol?
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A phase change has ASsys = -17.250x10^1) J/K mol and AHsys = -(3.55x10^1) kJ/mol. At what temperature (in K) will this phase change be at equilibrium?
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AGº for the reaction 2 A(g) = 3 B(g) is -25.5 kJ/mol. What is the value of AG (in kJ/mol) at 298 K when the pressure of each gas is: A = (1.17x10^-5) atm and B = (5.5100x10^0) atm.
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How many grams of Mg(NO3)2 (MM = 148.33 g/mol) would it take to lower the freezing point of (4.60x10^2) grams of water by 4.00°C? The freezing point depression constant of water is Kf = 1.86°C/m.
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A certain pure solvent freezes at 39.8°C and has a freezing point depression constant Kp = 0.777°C/m. What is the predicted freezing point in °C) of a solution made from this solvent that is (1.42x10^0) m in a non-electrolyte solute?
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Calculate AS° (in J) for the reaction 2 A + 4 B = 3 C given these Sº values (all J/mol): A = (4.0500x10^2), B = (1.25x10^2), and C = (2.5700x10^2).