Q.State Le-Chatelier's principle.
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Le Chatelier's Principle
Le Chatelier's principle states that when a system at equilibrium is disturbed by a change in concentration, pressure or temperature, the equilibrium shifts in the direction that partially opposes the change.
- Concentration: adding a reactant (or removing a product) shifts the equilibrium forward.
- Pressure: increasing pressure shifts the equilibrium towards the side with fewer gaseous moles. For A(g)+21B(g)⇌C(g) the forward side has fewer moles, so high pressure favours products.
- Temperature: for an exothermic reaction (heat is a product, e.g. N2+3H2⇌2NH3+heat) raising the temperature shifts equilibrium backward and lowers the yield, while for an endothermic process (e.g. dissolution of many salts) a rise in temperature shifts it forward, increasing solubility.
- Catalyst: speeds up both directions equally and does not change the equilibrium position. …
A disturbed equilibrium shifts to nullify (counteract) the disturbance. …
Step 1. Le-Chatelier's principle (more fully, the Le Chatelier-Braun principle) describes how any system at equilibrium responds when its conditions -- concentration, pressure, or temperature -- are changed. …
- Paraphrasing so loosely that the key idea ('shifts to nullify the disturbance') is lost. …
- CBSE 2025Set ANNUAL1 markMCQQ.According to Le Chatelier's principle, maximum yield of NH3 is obtained at(a) High temperature and low pressure(b) High pressure(c) Low pressure(d) Low temperature and high pressure
›Reveal solutionSolution
Maximum NH3 yield is favoured by low temperature and high pressure.
The reaction N2(g) + 3H2(g) ⇌ 2NH3(g) is exothermic (forward direction releases heat) and reduces the number of gas moles (4 mol reactant gas → 2 mol product gas).
By Le Chatelier's principle:
- Since the forward reaction is exothermic, lowering the temperature shifts equilibrium towards the (heat-releasing) product side, favouring more NH3.
- Since the forward reaction decreases moles of gas, increasing pressure shifts equilibrium towards the side with fewer gas moles, i.e. towards NH3. …
- CBSE 2025Set ANNUAL1 markMCQQ.What is the effect of addition of H2 on the equilibrium of the reaction 2H2(g) + CO(g) (equilibrium arrows) CH3OH(g)?(a) Reaction will proceed in the direction of reactants(b) No effect on equilibrium(c) Reaction will proceed in the direction of products(d) None of these
›Reveal solutionSolution
Le Chatelier's principle: adding more of a reactant shifts the equilibrium forward, towards the products, to counteract the increased reactant concentration.
The reaction is: 2H2(g) + CO(g) <=> CH3OH(g)
Le Chatelier's principle states that if a system at equilibrium is subjected to a change in concentration, temperature, or pressure, the equilibrium shifts in the direction that partially counteracts (opposes) that change.
Here, H2 (a reactant) is added, increasing its concentration above the equilibrium value. To counteract this increase, the equilibrium position shifts in the direction that CONSUMES the extra H2 — that is, the forward direction, converting more H2 and CO into CH3OH (the product).
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- CBSE 2024Set ANNUAL1 markMCQQ.Low pressure is favourable for which of the following reactions?(a) PCl5 ⇌ PCl3 + Cl2(b) N2 + 3H2 ⇌ 2NH3(c) 2SO2 + O2 ⇌ 2SO3(d) All of these
›Reveal solutionSolution
Low pressure favours the reaction that produces more moles of gas — only the PCl5 dissociation does that.
Le Chatelier's principle: decreasing pressure shifts a gaseous equilibrium toward the side with a greater number of gas moles.
- PCl5⇌PCl3+Cl2: 1 mol → 2 mol (forward increases moles) → favoured by low pressure.
- N2+3H2⇌2NH3: 4 mol → 2 mol (forward decreases moles) → favoured by HIGH pressure. …
- CBSE 2024Set ANNUAL1 markMCQQ.What will be the effect of addition of H2 on the equilibrium of the reaction 2H2(g) + CO(g) <=> CH3OH(g) ?(a) Reaction will proceed in the direction of reactants(b) No effect on equilibrium(c) Reaction will proceed in the direction of products(d) None of these
›Reveal solutionSolution
Le Chatelier's principle: adding more of a reactant disturbs equilibrium, and the system shifts to consume the extra reactant, favouring product formation.
Reaction: 2H2(g) + CO(g) <=> CH3OH(g)
According to Le Chatelier's principle, if a system at equilibrium is disturbed by increasing the concentration of a reactant (here, H2), the equilibrium shifts in the direction that consumes the added substance to counteract the disturb …
- CBSE 2018Set ANNUAL1 markQ.What is Le Chatelier's Principle?
›Reveal solutionSolution
Le Chatelier's Principle: a stressed equilibrium shifts to oppose/minimize the applied disturbance.
Step 1: The principle applies to any system at dynamic equilibrium (physical or chemical).
Step 2: If concentration of a reactant/product is changed, pressure or volume is changed (for gaseous equilibria), or temperature is changed, the position of equilibrium shifts so as to reduce the effect of that change and restore a new equilibrium. …
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