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The standard reaction free energy AG=-800. kJ for this reaction: CH (0)+ 20,(0)Co,(0)+ 2H20(g) Use this...
The standard reaction free energy AG =-1105.3 kJ for this reaction: Sg(s) +24 F2(g)> 8 SF6(g) Use this information to complete the table below, Round each of your answers to the nearest kJ. reaction 4G 3s,6)+72F,(e) 24SF, () 8SF,()s,)+ 24F, (e) 16SF, ()25,() + 48F, () Continue
(9) A spontaneous process has the change of free energy (a) AG>0 (c) AG = 0 (b) AG <O (d) AH>0 and AS <O (10) A chemical reaction has AH = 10 kJ. AS = 50 J/K at temperature T = 300 K. the reaction AG = J. (a) 5000 (b) -5000 (c) 10000 (d) 50 (11) For reaction: Ag (s) + 2 Cl2 (g) Ag° (aq) +CI (aq), the standard free energy of formation: AGf° (Ag*) = 77.1 kJ/mol,...
The standard reaction free energy AG - 29.59 kJ for this reaction: Fe2O3(9) + 2 H2(9) 2 Fe(s) + 3 H20(1) Use this information to complete the table below. Round each of your answers to the nearest kJ. reaction ΔG X 5 Fo(w) + ,00 – 70,0,6) + u, 6) 2Fc (s) + 3H,0(1) - Fe, 0,6) + 2H, () F0,0,(s) + H,() - Fe(s) + H20()
AG-70. kJ for this reaction: The standard reaction free energy MgCl2(s) +H2O0) MgO(s) + 2HCI(g) Use this information to complete the table below. Round each of your answers to the nearest kJ. reaction AG kJ k.J kJ
(9) A spontaneous process has the change of free energy (a) AG > 0 (b) AG <0 (c) AG = 0 (d) AH >0 and AS <0 (10) A chemical reaction has AH = 10 kJ, AS = 50 J/K at temperature T = 300 K, the reaction AG = (a) 5000 (b)-5000 (c) 10000 (d) 50 (11) For reaction : Ag (s) + 1/2 Cl2 (g) = Agt (aq) + CI+ (aq), the standard free energy of formation: AGE"...
Using standard reduction potentials from the ALEKS Data tab, calculate the standard reaction free energy AG for the following redox reaction. Round your answer to 3 significant digits Mn (aq)+2H,O()+2Fe (aq)MnO, ()+4H (aq)+2Fe (aq) dhData Cu (aq) + e Cu (5) F2 (0)+2e2F (aq) Fe (aq) +2e Fe (s) Fe (aq) + eFe2 (aq) Fe (aq) + 3e Fe (s) 2.866 X ? -0.447 0.771 -e.037 2H (aq)+2e H (0) e.000 2H)O (I)+2e H2 (a) +20H(aq) -0.8277 1.776 H2O2 (aq)...
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FREE ENERGY AND CALCULATING AG FOR REACTIONS (Math) 21. Any reaction will be spontaneous if AG > 0 d. AS < 0 b. AG0 AH, <0 AS > 0 a. e. c. From AGformations 22. What is the AG for the reaction given: CH_(8) +20,(8) CO2(g) + 2H2O(g) Substance CH.(g) CO.(g) H.O(g) AGform (kJ/mol) 50.8 394.4 -228.57 a. -50.8 kJ/mol b. -- 751 kJ/mol c. -113 kJ/mol d. -115 kJ/mol e. -807 kJ/mol 23. Determine AG for...
Using standard reduction potentials from the ALEKS Data tab, calculate the standard reaction free energy AG for the following redox reaction. Round your answer to 3 significant digits. 6C1" (aq) +200 (aq) +8H,0(1) — 3C1, (e)+2Cr(OH),() +100H(aq) dl Data 1.498 -2.912 XS ? 1.066 -2.168 1.35827 -0.28 1.92 -0.913 -0.744 Apl(aq) + 34 - Au (s) Ba?+ (aq) + 2e" -Ba(s) Bry () + 2e" -2Br" (aq) Ca2+ (aq) + 2e - Ca (s) Cl2 (a) + 2e --20" (aq)...
For the following reaction: C2H4(9) +302(g) + 2C02(g) + 2H2O(1) What is the change in free energy in kJ ? The relevant standard free energies of formation are: kJ AG . C.H. = 68.4- mol mol AG, 0, = 0 AGC, CO, = -393.3 kJ AGF, 4,0 = -285.8 kJ mol mol • Your answer should include three significant figures.
Use standard reduction potentials to calculate the standard free energy change in kJ for the reaction: Ni2+(aq) + H2(g)—— Ni(s) + 2H+(aq) Answer: kJ K for this reaction would be than one.