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Solved in 6 steps
- 2NO2(g) - ->N2(g)+2O2(g) Delta Gf for N02(g) is 51.84 kj/mol. What is delta G at 298K when the partial pressure of N02, N2,02 are 0.100 atm, 1.00 atm, 2 atm, respectively?N2(g) + 202(g) → 2N02(g) Delta Gf for N02(g) is 51.84 kj/mol. What is delta G at 298K when the partial pressure of N02, N2,02 are 0.100 atm, 1.00 atm, 2 atm, respectively?What is the temperature of 0.630 mole of neon in a 2.00 L vessel at 4.32 bar? R=0.08314 L•bar/mol•k
- Given the following values what is the boiling point of unknown compound D2 in °C? Substance ΔH°f (kJ/mol) ΔS° (J/mol*K) D2(g) 30.91 245.5 D2(l). 0 152.2At 298 K, N2(g) + 3H2(g) ⇄ 2NH3(g) K = 5.8 x 105At 298 K, NH3(g) ⇄ 1/2N2(g) + 3/2H2(g) K = 1.3 x 10⁻3 Is NH3 favorably formed at 298 K? Explain your answer.What is the ∆G◦ (in kJ mol−1) for the followingreaction at 25 ◦C?NO2(g) ⇌ N2O4(g)NO2(g):∆H◦ = 33 kJ mol−1; S◦ = 240 J mol−1 K−1N2O4(g):∆H◦ = 11 kJ mol−1; S◦ = 304 J mol−1 K−1A. −41.1 B. −8.8 C. −2.5 D. 16.2E. 5.24 × 104
- Coould you explain how to find the partial pressures of O2 and H2O13.3p. If you allow one pound of carbon dioxide to sublime (change from CO2(s) to CO2(g)) at room conditions of roughly 1atm and 25C, what volume would it occupy?When dealing withsolving a question using the Clausis-Clapeyron Equasion does it matter if you solve the equasion using atm or kPa.? Or does it not matter just so that both numbers have the same units?
- For the following equation at 500 K, Kc = 7.9 x 1011.H2(g) + Br2(g) ⇌ 2 HBr(g) Find the Kc values for the following equations:a) 2 HBr(g) ⇌ H2(g) + Br2(g) Kc = ?b) 4 HBr(g) ⇌ 2 H2(g) + 2 Br2(g) Kc = ?What is the temperature in K of 0.500 mole of neon in a 2.00 L vessel at 4.32 bar? R = 0.08314 L・bar/mol・K.Underwater, the pressure increases by 1 bar for every 10 m of depth. When a scuba diver breathes pressurized air in which the partial pressure of N2(g) exceeds 4 bar, the result is nitrogen narcosis, which is similar to alcohol intoxication. What is the maximum mole percent of N2 in an air mixture that could be used by divers at depths up to 85 m below sea level without undue risk of nitrogen narcosis?