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- Heterogeneous chemical reactionConsider the following reaction to form an industrially important solid product B:A (g) ↔ B (s) + C (g) + D (g)a) How many phases are present?b) What is the maximum amount of solid product B you can make for each mole of A fed to the reactorif the reactor is operating at 400 ºC and 1 bar. Data: K = 10.43 at 400 ºCGiven the following heats of reaction: H2(g) + 1/2 O2(g) ---> H2O(g) ΔH = - 241.8 kJ/rxn 3 O2(g) ---> 2 O3(g) ΔH = +284.6 kJ/rxn H2O(l) ---> H2O(g) ΔH = +44.0 kJ/rxn Calculate ΔH of the reaction: 3H2(g) + O3(g) ---> 3H2O(l) ΔH = _____ kJ/rxnCalculate the Delta Hrxn for the following reaction: C(s)+O2(g)--> CO2(g) DeltaHrxn=-393.5 kJ H2(g)+1/2O2(g)--> H2O (l) DeltaHrxn=-285.8 kJ C5H12(g)+8O2 (g)--> 5CO2(g) +6H2O(l) DeltaHrxn=-3536 kJ 10C(s)+12H2(g)-->2C5H12(g) DeltaHrxn=??????
- For the reaction A + B <=> AB, kassoc = 2.0 sec-1 M-1 and kdissoc = 0.5 sec-1. This means that Kassoc is equal to ____ M-1. (Enter your answer to the nearest 0.1; do not include units)Calculate the ΔG° (kJ/mol) for the following reaction at 152 °C, using the following data. Eneter your answer with the correct number of sig figs, without units. C3H8(g) + 5O2(g) → 3CO2(g) + 4H2O(g) ΔHf◦ (kJ/mol) S◦(J/K.mol) C3H8 (g) -104.7 270.2 O2(g) 0 205.0 CO2(g) -393.5 213.7 H2O(g) -241.8 188.7Thermodynamics Quantities for Selected Substances at 298.15 K (25⁰C) Substance ∆H⁰f (kJ/mol) ∆G⁰f (kJ/mol) S (J/K-mol) Carbon C2H2(g) 226.7 209.2 200.8 CO2(g) -393.5 -394.4 213.6 Hydrogen H2(g) 0 0 130.58 Oxygen O2(g) 0 0 205.0 H2O(l) -285.83 -237.13 69.91 What is the ∆S⁰ in the combustion of ethane in the presence of excess oxygen yields carbon dioxide and water: 2C2H2(g) + 7O2(g) → 4CO2(g) + 6H2O(l) in J/K?
- Construct Kp for the following reaction. 3 F₂(g) + Cl₂(g) ⇌ 2 ClF₃(g)The following reaction was carried out in a 4.00 LL reaction vessel at 1100 KK: C(s)+H2O(g)⇌CO(g)+H2(g)C(s)+H2O(g)⇌CO(g)+H2(g) If during the course of the reaction, the vessel is found to contain 7.25 molmol of CC, 15.5 molmol of H2OH2O, 3.80 molmol of COCO, and 6.10 molmol of H2H2, what is the reaction quotient QQQ? Enter the reaction quotient numerically.Calculate the AGrek value for the following reaction at 298K. CO (g) + 02 (g) - CO2 (g) Assuming that the AH°reak value is constant in the operating temperature range, calculate the AG value at 500K.
- The difference between heats of reaction at constant pressure and constant volume for the reaction:2C6H6(l) + 15O2(g) = 12CO2(g) + 6H2O(l) at 298K in kJ isA. -7.43 kJB. 3.72 kJC. -3.72 kJD. 7.43 kJYears and the table of standard formation and thaws but your fine under the alexs dedicate tabs calculate the reaction empathy of the reaction under standard conditions 2HNO2g+O2g=2HNO3gThe following reaction was carried out in a 4.00 LL reaction vessel at 1100 KK: C(s)+H2O(g)⇌CO(g)+H2(g)C(s)+H2O(g)⇌CO(g)+H2(g) If during the course of the reaction, the vessel is found to contain 5.00 molmol of CC, 12.1 molmol of H2OH2O, 3.20 molmol of COCO, and 6.50 molmol of H2H2, what is the reaction quotient Qc�c? Enter the reaction quotient numerically.