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Dinitrogen Tetroxide Partially Decomposes According to the Following Equilibrium

Question 106

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Dinitrogen tetroxide partially decomposes according to the following equilibrium:
Dinitrogen tetroxide partially decomposes according to the following equilibrium:      (g) ⇌   (g)   A 1.000 L flask is charged with 3.00 × 10<sup>-2</sup> mol of     .At equilibrium,2.36 × 10<sup>-2</sup> mol of     Remains.   For this reaction is: A) 0.723 mol L<sup>-1</sup> B) 0.391 mol L<sup>-1</sup> C) 0.212 mol L<sup>-1</sup> D) 6.94 ×   mol L<sup>-1</sup> E) 1.92 × 10<sup>-4</sup> mol L<sup>-1</sup> Dinitrogen tetroxide partially decomposes according to the following equilibrium:      (g) ⇌   (g)   A 1.000 L flask is charged with 3.00 × 10<sup>-2</sup> mol of     .At equilibrium,2.36 × 10<sup>-2</sup> mol of     Remains.   For this reaction is: A) 0.723 mol L<sup>-1</sup> B) 0.391 mol L<sup>-1</sup> C) 0.212 mol L<sup>-1</sup> D) 6.94 ×   mol L<sup>-1</sup> E) 1.92 × 10<sup>-4</sup> mol L<sup>-1</sup> (g) ⇌ Dinitrogen tetroxide partially decomposes according to the following equilibrium:      (g) ⇌   (g)   A 1.000 L flask is charged with 3.00 × 10<sup>-2</sup> mol of     .At equilibrium,2.36 × 10<sup>-2</sup> mol of     Remains.   For this reaction is: A) 0.723 mol L<sup>-1</sup> B) 0.391 mol L<sup>-1</sup> C) 0.212 mol L<sup>-1</sup> D) 6.94 ×   mol L<sup>-1</sup> E) 1.92 × 10<sup>-4</sup> mol L<sup>-1</sup> (g)
A 1.000 L flask is charged with 3.00 × 10-2 mol of Dinitrogen tetroxide partially decomposes according to the following equilibrium:      (g) ⇌   (g)   A 1.000 L flask is charged with 3.00 × 10<sup>-2</sup> mol of     .At equilibrium,2.36 × 10<sup>-2</sup> mol of     Remains.   For this reaction is: A) 0.723 mol L<sup>-1</sup> B) 0.391 mol L<sup>-1</sup> C) 0.212 mol L<sup>-1</sup> D) 6.94 ×   mol L<sup>-1</sup> E) 1.92 × 10<sup>-4</sup> mol L<sup>-1</sup> Dinitrogen tetroxide partially decomposes according to the following equilibrium:      (g) ⇌   (g)   A 1.000 L flask is charged with 3.00 × 10<sup>-2</sup> mol of     .At equilibrium,2.36 × 10<sup>-2</sup> mol of     Remains.   For this reaction is: A) 0.723 mol L<sup>-1</sup> B) 0.391 mol L<sup>-1</sup> C) 0.212 mol L<sup>-1</sup> D) 6.94 ×   mol L<sup>-1</sup> E) 1.92 × 10<sup>-4</sup> mol L<sup>-1</sup> .At equilibrium,2.36 × 10-2 mol of Dinitrogen tetroxide partially decomposes according to the following equilibrium:      (g) ⇌   (g)   A 1.000 L flask is charged with 3.00 × 10<sup>-2</sup> mol of     .At equilibrium,2.36 × 10<sup>-2</sup> mol of     Remains.   For this reaction is: A) 0.723 mol L<sup>-1</sup> B) 0.391 mol L<sup>-1</sup> C) 0.212 mol L<sup>-1</sup> D) 6.94 ×   mol L<sup>-1</sup> E) 1.92 × 10<sup>-4</sup> mol L<sup>-1</sup> Dinitrogen tetroxide partially decomposes according to the following equilibrium:      (g) ⇌   (g)   A 1.000 L flask is charged with 3.00 × 10<sup>-2</sup> mol of     .At equilibrium,2.36 × 10<sup>-2</sup> mol of     Remains.   For this reaction is: A) 0.723 mol L<sup>-1</sup> B) 0.391 mol L<sup>-1</sup> C) 0.212 mol L<sup>-1</sup> D) 6.94 ×   mol L<sup>-1</sup> E) 1.92 × 10<sup>-4</sup> mol L<sup>-1</sup> Remains. Dinitrogen tetroxide partially decomposes according to the following equilibrium:      (g) ⇌   (g)   A 1.000 L flask is charged with 3.00 × 10<sup>-2</sup> mol of     .At equilibrium,2.36 × 10<sup>-2</sup> mol of     Remains.   For this reaction is: A) 0.723 mol L<sup>-1</sup> B) 0.391 mol L<sup>-1</sup> C) 0.212 mol L<sup>-1</sup> D) 6.94 ×   mol L<sup>-1</sup> E) 1.92 × 10<sup>-4</sup> mol L<sup>-1</sup> For this reaction is:


A) 0.723 mol L-1
B) 0.391 mol L-1
C) 0.212 mol L-1
D) 6.94 × Dinitrogen tetroxide partially decomposes according to the following equilibrium:      (g) ⇌   (g)   A 1.000 L flask is charged with 3.00 × 10<sup>-2</sup> mol of     .At equilibrium,2.36 × 10<sup>-2</sup> mol of     Remains.   For this reaction is: A) 0.723 mol L<sup>-1</sup> B) 0.391 mol L<sup>-1</sup> C) 0.212 mol L<sup>-1</sup> D) 6.94 ×   mol L<sup>-1</sup> E) 1.92 × 10<sup>-4</sup> mol L<sup>-1</sup> mol L-1
E) 1.92 × 10-4 mol L-1

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