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(a) Consider the combustion of ether, given below: 1 C4H10O(g) + 6 O2(g) 4 CO2(g) + 5 H2O(g) If C4H10O(g) is decreasing at the rate of 0.500 mol/s, what are the rates of change of O2(g), CO2(g), and H2O(g)? O2(g)/t = mol/s CO2(g)/t = mol/s H2O(g)/t = mol/s (b) The decomposition reaction given below: 3 NO(g) 1 N2O(g) + 1 NO2(g) is carried out in a closed reaction vessel. If the partial pressure of NO(g) is decreasing at the rate...
Consider the reaction below. 2 CO (g) + O2 (g) ?? 2 CO2 (g) Given :Kc = 0.7 at 2000 *C What is ?Go rxn for this reaction at 2000 *C ?
2 Probleni #2130 pts) 30% O2, is compressed adiabatically in a closed system, from 1 bar, 300 K to 4 bar, 500K. The mass A kg mixture, having an analysis on a mass basis of30% N2, 40%C02, and ctions, molecular weighis and specific heats of the components are given in the table below. etermine: No 2a) The work required, (kJ), and 2b) The entropy produced, (kJ/K) Gas Mixture Component Mass Fraction Molar Mass Cp (k/kg-k) Cv (kJ/kg-k) CO2 02 0.30...
s(s) + 3/2 O2 (g) = SO3 15. (6 pts) Given the data below, calculate the ΔΗ,xn for the reaction: AH -296.1 kJ S (s) + O2 (g) → SO2 (g) 2SOs (g)
In the electrical network shown below, the four relays are closed at a given time It is equally likely that each relay w work or not when it is closed. What is the probability that a closed path will exist from A to B? 4
Answer the questions below for the diatomic species A) O2– B) O2+ C) O2–2 What is the bond order for the O2–2 ion? Bond Order = Which of the species has the shortest bond? How many of the above molecules/ions are paramagnetic?
Given the following reaction: 4 Al + 3 O2 =====è 2 Al2O3 Find the grams O2 used and the grams Al2O3 made with 855 grams Al and excess O2 Given the following reaction: 4 Al + 3 O2 ====> 2 Al2O3 Find the grams O2 used and the grams Al2O3 made with 855 grams Al and excess O2
Calculate the Delta H formation of N2O5 (g) given the below reactions: 2NO (g) + O2 (g) -> 2NO2 (g), ΔHrxn = -114.1 kJ/mol 4NO2(g) + O2 (g) -> 2N2O5 (g), ΔHrxn = -110.2 kJ/mol N2 (g) + O2 (g) -> 2 NO (g), ΔHrxn = +180.5 kJ/mol
please help Question 3 2 HgO(s) = Hg(1) + O2(g) In a closed container at 46 °C , the equilibrium vapor pressure is 389 mmHg. What are the values of Kp and Kc *Please report 3 significant figures.
For the closed-loop unity feedback system given below Kp - 350, Kd = 20. Find the maximum overshoot Mp? 1 S(+2)