Consider the following system at equilibrium at 648 K: SO₂Cl₂ (9) SO₂ (g) + Cl₂ (9) If the PRESSURE of the equilibrium s

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Consider the following system at equilibrium at 648 K: SO₂Cl₂ (9) SO₂ (g) + Cl₂ (9) If the PRESSURE of the equilibrium s

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Consider The Following System At Equilibrium At 648 K So Cl 9 So G Cl 9 If The Pressure Of The Equilibrium S 1
Consider The Following System At Equilibrium At 648 K So Cl 9 So G Cl 9 If The Pressure Of The Equilibrium S 1 (25.48 KiB) Viewed 9 times
Consider The Following System At Equilibrium At 648 K So Cl 9 So G Cl 9 If The Pressure Of The Equilibrium S 2
Consider The Following System At Equilibrium At 648 K So Cl 9 So G Cl 9 If The Pressure Of The Equilibrium S 2 (23.24 KiB) Viewed 9 times
Consider the following system at equilibrium at 648 K: SO₂Cl₂ (9) SO₂ (g) + Cl₂ (9) If the PRESSURE of the equilibrium system is suddenly decreased at constant temperature: A. Run in the forward direction to restablish equilibrium. B. Run in the reverse direction to restablish equilibrium. C. Remain the same. Already at equilibrium. The reaction must: The number of moles of Cl₂ will:A. Increase. B. Decrease. C. Remain the same. Submit Answer Try Another Version 2 item attempts remaining
t In the following net ionic equation, identify each reactant as either a Bronsted-Lowry acid or a Bronsted-Lowry base. C9H704 (aq) + H₂0+ (aq) HCgHyO4(aq) +H2O(l) B-L B-L - The formula of the reactant that acts as a proton donor is The formula of the reactant that acts as a proton acceptor is Submit Answer Try Another Version 2 item attempts remaining
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