

Equilibrium-Chemical NEET Mindmap: Chemical equilibrium is an important concept in NEET Chemistry. It involves dynamic balance between reactants and products in reversible reactions. Topics like equilibrium constant expressions, Le Chatelier’s principle, and factors affecting equilibrium are considered difficult.
Equilibrium-Chemical NEET Mindmap organizes these concepts and helps students connect theory with numerical calculations and predict reaction shifts. Mindmaps will help you make sense of multiple equilibrium expressions, concentration relationships, and reaction quotient calculations.
Equilibrium-Chemical NEET Mindmap Notes summarize the chapter in a visual format. This makes it easier to recall formulas and concepts:
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Equilibrium-Chemical NEET Mindmap Notes |
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Topic |
Details |
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Introduction to Chemical Equilibrium |
Dynamic balance between forward and backward reactions. |
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Equilibrium Constant (K) |
KcK_cKc and KpK_pKp expressions for concentration and pressure. |
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Reaction Quotient (Q) |
Used to predict the direction of reaction. |
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Le Chatelier’s Principle |
Predicts how equilibrium shifts with changes in concentration, pressure, or temperature. |
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Factors Affecting Equilibrium |
Temperature, pressure, concentration, and catalysts. |
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Homogeneous vs Heterogeneous Equilibrium |
Equilibria in single-phase vs multi-phase systems. |
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Applications |
Industrial synthesis (Haber process, Contact process). |
Equilibrium-Chemical NEET Mindmap Formulas and expressions appear in NEET:
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Equilibrium-Chemical NEET Mindmap Formulas |
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Concept |
Formula / Expression |
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Equilibrium constant (concentration) |
Kc = [C]^c [D]^d / [A]^a [B]^b |
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Equilibrium constant (pressure) |
Kp = Kc (RT)^Δn |
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Reaction quotient |
Q = [C]^c [D]^d / [A]^a [B]^b |
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Relation between Kc and Kp |
Kp = Kc (RT)^Δn |
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Le Chatelier’s shifts |
ΔC, ΔP, ΔT → predict direction using principle |
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Gibbs free energy & equilibrium |
ΔG = −RT ln K |
Equilibrium-Chemical NEET mindmap PDF provides a visual overview of the chapter. It includes core concepts such as Chemical equilibrium definitions and K expressions. It also shows the shifts in equilibrium.
Industrial processes like Haber and Contact processes for practical relevance are also mentioned as well as formula clusters such as Kc, Kp, Q, ΔG, and Le Chatelier’s calculations. Equilibrium-Chemical NEET Mindmap PDF is given here for reference:
Equilibrium-Chemical NEET Mindmap PDF
Using mindmaps, you can link formulas, shifts, and calculations visually. Equilibrium-Chemical NEET Mindmap Practice Questions are given here:
For the reaction N2+3H2⇌2NH3N_2 + 3H_2 ⇌ 2NH_3N2+3H2⇌2NH3, calculate KcK_cKc given equilibrium concentrations.
Predict the direction of equilibrium shift if pressure is increased for H2+I2⇌2HIH_2 + I_2 ⇌ 2HIH2+I2⇌2HI.
Calculate KpK_pKp from a given KcK_cKc value for a gaseous reaction at 300 K.
Determine Gibbs free energy change at equilibrium for a reaction with known KKK.
Apply Le Chatelier’s principle to predict product formation when temperature changes in an exothermic reaction.
Draw arrows for concentration, pressure, and temperature changes directly on mindmaps.
Cluster formulas by type, i.e., keep Kc, Kp, Q, and ΔG grouped for easy access during calculations.
Link real-world examples like Industrial processes make abstract equilibrium concepts easier to recall.
Quickly identify which formula applies for each numerical problem.
First skim mindmap notes, solve practice questions, and finally glance at the PDF for last-minute retention.
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