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- The Haber process is the principal industrial route for converting nitrogen into ammonia: N21g2 + 3 H21g2 ¡ 2 NH31g2Calculate the standard emf of the Haber process at room temperatureR = 8.314 mol-K F = 96,485 mol AG = AG° + RT · In(Q) ΔΕ - (E) · In(Q) ΔΕ. Half Reaction (Note: All given as reduction) E° (V) 02 (g) + 4 H*(aq) + 4 e 2 H20 (1) 1.229 Z2 (s) + 2 e 3+ (aq) + 3 e 2z (aq) 0.426 A (s) 0.292 2 H20 (1) + 2 e G2+ (aq) + 2 e M²+ (aq) + 2 e¯ H2 (g) + 2 OH¯ (aq) - 0.828 G (s) - 1.245 M (s) - 1.893 A student constructs a voltaic electrochemical cell with two metal electrodes [metal G and metal A] in their respective aqueous nitrate solutions [G(NO3)2 and A(NO3)3]. Use this information, as well as the reduction potentials in the table above to complete each statement below. Consider the same cell from the above prompt. Calculate A E°. cell for this galvanic cell given the reference information given at the top of the quiz. Report your answer with 3 decimal places. You do not need to report units with your answer.Ethanoic acid and ethanol react together to form the ester ethyl ethanoate, CH₂COOC₂H, and water. CH₂COOH (1) + CH₂CH₂OH(I) = CH₂COOCH₂CH₂(1) + H₂O(l)
- 11:16 ul 4G 5 ĝ © T o Evaluate the following statements and report whether you agree with it or not. In every instance, explain your decision and if applicable, write balanced equations to support your answer. The following reaction is identified as a reduction reaction, because the oxidation numbers increased from -1 to +3: BIOS Add a caption... > Status (Custom) +Determine the AH of the reaction 1 1 NO29) + 702c9) +5H20(9) → HNO3(aq) 4 AH = 33.2 kJ 5 N2c9) + O2cg) → N02c9) 1 Haa) +Nzo) +0zc) → HNO3(aq) AH = -202.3 kJ 1 H2(g) - ΗΝO3(αq) 1 H2(g) * 2 → H20(g) AH = -285.8 kJCalculate ΔG° for the reaction shown below.
- Find the AHrn for the following reaction: 2N29) + 502(9) → 2N,O5(9) given the following reactions and subsequent AH° values 2H2(9) + O2(9) → 2H,Ou) N½O5(9) + H2Ou → 2HNO3(1) AH° = -541.6 kJ AH° = -54.6 kJ %D N2(9) + 302(9) + H2(9) → 2HNO3(1) AH° -331.1 kJFind the AHn for the following reaction: 20F,(g) + 2 S(s) → SO2(9) + SF4(9) given the following reactions and subsequent AH° values $$ OF2 (9) + H2O(1) → O2 (g) + 2 H F(g) SF.(9) + 2 H2O(I) → 4 H F (g) + S02(g) S(s) + 0,(g) → SO2(g) AH° -272.8 kJ ΔΗ' = -827 kJ AH° = -292.5 kJ $$Do you expect the reactions to be exergonic or endergonic?
- Ka of HNO2 in 25 degree is 4.5 x 10^-4. (a) Write the equilibrium chemical reaction corresponding to Ka for nitrous acid (HNO2) at 25°C. (b) Calculate ΔG° for the dissociation of nitrous acid in solution using the given Ka value. (c) What is the value of ΔG at equilibrium? (d) When [H+] = 5.0 × 10^-2 M, [NO2^-] = 6.0 × 10^-4 M, [HNO2] = 0.20 M, what is the value of ΔG?What happens when (write the reactions involved)H2SO4 + 2 KOH→ 2H2O + K2SO4; A) Determine the moles of KOH needed to react with 5.5 moles of H2SO4. B) Determine the moles of H2O produced from 5.5 moles of H2SO4.