Physical Chemistry. Please show all your work. I'll rate. Thank you in advance!

Answer: As we know the equation of entropy, enthalpy and temperature as-
G
=
H - T
S
If the
H is independent of temperature then
H can be ignored.
G
= - T
S
As per this equation if the value of Temperature (T) increases
G value also increases towards more negative side.
As, more the negative
G, more spontaneous is the reaction
hence the reaction is spontaneous this means product formation predominent.
Hence answer is (a) shifts the equilibrium towards product
Physical Chemistry. Please show all your work. I'll rate. Thank you in advance! 4. Suppose a...
Physical Chemistry. Please show all your work. I will rate. If
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3. Suppose the reaction Gibbs free energy is 1 k.J/mol, independent of temperature. The reaction enthalpy, at 50K, is equal to (a) 20 J/mol (b) 1 kJ/mol (c) 50 kJ/mol (d) not enough information
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15. Given the Boltzmann distribution, e-E/kbt, the probability to find a vibrating particle in the fourth excited state, relative to that for the second excited state, at temperature 300K, is (for w = 1012 Hz.) (a) 0.9035 (b) 0.9505 (c) 0.9750 (d) 1.0000
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CHM 1046 Workbook Florida International University Chapter 19-Chemical Kinetics Reaction Profile, Collision Theory, and Catalysts Textbook Reading Assignment-Sections 19.1 and 19.8 The rate of reaction is dependent on several factors, which influence the frequency of these collisions. These include changes in concentration, changes in temperature, presence of a Unit 1 catalyst, and physical state of the reactants to name a few. Learning obiectives 1) Draw reaction profiles...
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Chemistry 452 2016-10-10 Glucose-Lactate Under anaarobic conditions glucose is broken down in the muscle tissue to form lactic acid according to the reaction Part D GGH1206 -2CHзсH (он соон Calculate the molar enthalny change the reaction at T-310K For answering the questions below the following data will be use valid at T-298K and P 101325 Pa usetul. These data a (JKmal Glucose -1273.1 219 2092 Lactic Acid 673.6 127.6...
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Given the reaction at 200K: 3H2(g) + N2(g) = 2NH3(9) A flask initially contains 0.285M hydrogen and 0.334M nitrogen and no ammonia. Calculate Kc if the equilibrium concentration of hydrogen is 0.042M. Report your answer to 4 significant figures NOT in scientific notation Answer: What is the equilibrium expression, Kc, for the following reaction? SIC(s) + 2CO2(g) = SiO2(s) + 3C(s) Select one: O A. [CO]2 o B. [SIO2] [C] /...
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4. For the autoionization of water: 2 H2O(l) <=> H30+(aq) + OH*(aq) the equilibrium constant Kw is 1. 139 x 10-15 at 273.15 K and 9.614 x 10-14 at 333.15 K. Assume that AH° and ASº for this process are independent of temperature from 273 to 333 K. a) Determine AH° and ASº for the autoionization process. b) If the pH of pure water were 7.000 this would imply that Kw...
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The density of rhombic sulfur is 2.070 g cm3 with a standard molar entropy of 31.80J K mol-1. The density of monoclinic sulfur is 1.957 g cm-3 with a standard molar entropy of 32.60J Kmol a Can an increase in temperature be expected to make monoclinic sulfur more stable than rhombic sulfur? If so, at what temperature will the transition occur at 1 bar? Can an increase...
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1. Consider a system composed of a collection of N molecules that can distribute so that there are ni molecules in the state with energy E, n2 molecules in the state with energy E2, n3 molecules in the state with energy E..etc. The number of ways, W, in which molecules can distribute this way is N! N! W П "! n,in In,.. II Suppose that this system is undergoing the...
Physical Chemistry rate law reverse reaction expression help?
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Suppose a reaction A rlhar B can produce B via two pathways - an uncatalyzed pathway with a rate k_af[A] and a OH^- catalyzed pathway with a rate of k_bf[OH^-][B]. Given the equilibrium constant K = [B]_eq/[A]_eq and that the rate law is v_f = (k_af + k_bf[OH^-])[A] = k_f[A], find an expression for the corresponding rate law for the reverse reaction.
This is for physical chemistry 2. Please answer all questions and show all work. 1) The normal boiling point of benzene is 80.2°C. The vapor pressure at 25°C is 0.13 atm. Find the enthalpy of vaporization of benzene. 2) At 25°C and 1.0 bar total pressure, N2O4 is 19% dissociated into NO2. Calculate Kp. Assume ideal gas behavior.