Redu. 14.82 A cquil 3. Determine the initial concentration of HI if the initial concentrations of H2 and l2 are both 0.10 Mand their equilibrium concentrations are both 0.043 M at 430°C. Kc is 54.3 dereduad O.10i- = nast b২ torwand Or 043M ターメー O.U4340.10 SMEAR =l A+2y) (A t Oill4) HIGHLIGHTER 5413=[A D14 - 54.3 Lゅフfフ) (Ono43) 7:3 Aこし202 0.144) O:O4 3)- 4. For the same reaction and temperature as in Question # 1, calculate the equilibrium concentrations of all three Species if the starting concentrations are as follows: [H,] = 0.00623 M, [I,] = 0.00414 M, and [HI] = 0.0424 M.Kc =54.3 Иa O.00ba3 0.00441 0.04 mys! Sio06a3 e.004A +2Y (O.04o4+ax)² Co.00603-x) l0,00414-x) 2.5x105-0,)る - 0.coM4→x 0,00414,+x 3(0,04341əx2 35413 %3D 2510 , Oro37× +ぷ5x10-5 e(xet hen@9 (0.0404tax) 54,3x2 -0:563091x+ on0035S 6o404 ナax) -S13し22-0.01u3グんtる。5¥10-5) ○ ル07477 イ0,1V46x +4y>= 54,3y> 056309lx40,01357 2. Consider the follow (8)FONF At a particular time during the re what rate is molecular oxygen beir

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Redu.
14.82 A
cquil
3. Determine the initial concentration of HI if the initial concentrations of H2 and l2 are both 0.10 Mand their
equilibrium concentrations are both 0.043 M at 430°C. Kc is 54.3
dereduad
O.10i- =
nast
b২
torwand
Or 043M
ターメー
O.U4340.10
SMEAR
=l A+2y) (A t Oill4)
HIGHLIGHTER
5413=[A D14
- 54.3
Lゅフfフ)
(Ono43)
7:3
Aこし202
0.144)
O:O4 3)-
4. For the same reaction and temperature as in Question # 1, calculate the equilibrium concentrations of all three
Species if the starting concentrations are as follows: [H,] = 0.00623 M, [I,] = 0.00414 M, and [HI] = 0.0424 M.Kc =54.3
Иa
O.00ba3 0.00441 0.04
mys!
Sio06a3 e.004A +2Y
(O.04o4+ax)²
Co.00603-x) l0,00414-x)
2.5x105-0,)る
- 0.coM4→x
0,00414,+x
3(0,04341əx2
35413
%3D
2510 , Oro37× +ぷ5x10-5
e(xet hen@9
(0.0404tax) 54,3x2 -0:563091x+ on0035S
6o404 ナax) -S13し22-0.01u3グんtる。5¥10-5)
○ ル07477 イ0,1V46x +4y>= 54,3y> 056309lx40,01357
2. Consider the follow
(8)FONF
At a particular time during the re
what rate is molecular oxygen beir
Transcribed Image Text:Redu. 14.82 A cquil 3. Determine the initial concentration of HI if the initial concentrations of H2 and l2 are both 0.10 Mand their equilibrium concentrations are both 0.043 M at 430°C. Kc is 54.3 dereduad O.10i- = nast b২ torwand Or 043M ターメー O.U4340.10 SMEAR =l A+2y) (A t Oill4) HIGHLIGHTER 5413=[A D14 - 54.3 Lゅフfフ) (Ono43) 7:3 Aこし202 0.144) O:O4 3)- 4. For the same reaction and temperature as in Question # 1, calculate the equilibrium concentrations of all three Species if the starting concentrations are as follows: [H,] = 0.00623 M, [I,] = 0.00414 M, and [HI] = 0.0424 M.Kc =54.3 Иa O.00ba3 0.00441 0.04 mys! Sio06a3 e.004A +2Y (O.04o4+ax)² Co.00603-x) l0,00414-x) 2.5x105-0,)る - 0.coM4→x 0,00414,+x 3(0,04341əx2 35413 %3D 2510 , Oro37× +ぷ5x10-5 e(xet hen@9 (0.0404tax) 54,3x2 -0:563091x+ on0035S 6o404 ナax) -S13し22-0.01u3グんtる。5¥10-5) ○ ル07477 イ0,1V46x +4y>= 54,3y> 056309lx40,01357 2. Consider the follow (8)FONF At a particular time during the re what rate is molecular oxygen beir
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