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NEET MOCK TEST 12

NEET Mock Test 12 is a practice paper set in the NEET pattern, with questions drawn from physics, chemistry and biology. Attempt it under timed conditions to get a feel for pacing, then go through the answers to spot the topics that need more work.

180 questions

Which amine is produced when (CH₃)2CHCH₂NO₂ is reduced with H₂/Ni ?

Reduction of 1-nitro-2-methylpropane ( (CH₃)2CHCH₂NO₂ ) with H₂/Ni yields (CH₃)2CHCH₂NH₂ (2-methylpropan-1-amine), a primary amine. This follows from NCERT principle where relation explains outcome clearly for students.

Ref: NCERT Chemistry Textbook for Class XI and XII, Chapter: Some Basic Concepts, Structure of Atom, Periodicity and relevant Chemistry topic, Topic: Mole concept and periodic trends.

Which complex is a coordination compound in hemoglobin?

Hemoglobin contains an Fe coordination compound that acts as an oxygen carrier, unlike the others which are synthetic. This follows from NCERT principle where relation explains outcome clearly for students.

Ref: NCERT Chemistry Textbook for Class XI and XII, Chapter: Some Basic Concepts, Structure of Atom, Periodicity and relevant Chemistry topic, Topic: Mole concept and periodic trends.

Which complex is a coordination compound in vitamin B₁₂?

Vitamin B₁₂ (cyanocobalamin) is a Co coordination compound, unlike the others which are synthetic. This follows from NCERT principle where relation explains outcome clearly for students.

Ref: NCERT Chemistry Textbook for Class XI and XII, Chapter: Some Basic Concepts, Structure of Atom, Periodicity and relevant Chemistry topic, Topic: Mole concept and periodic trends.

The oxidation state of phosphorus in P_4O_{10 is:

Given: The oxidation state of phosphorus in P_4O_{10 is: These values define the system as per NCERT data. Formula: In P_4O_{10, O is -2, so 4P + 10(-2) = 0, 4P - 20 = 0, 4P = 20, P = +5, as P shares electrons with oxygen.. This is standard NCERT relation. Substitution & Calculation: Substituting values and simplifying step by step as per NCERT method. Result: The computed value matches expected outcome and confirms correct choice as per NCERT.

Ref: NCERT Chemistry Textbook for Class XI and XII, Chapter: Some Basic Concepts, Structure of Atom, Periodicity and relevant Chemistry topic, Topic: Mole concept and periodic trends.

In 2Na + S -> Na₂S, what is the final oxidation state of sulfur?

S (0 in S to -2 in Na₂S ) is reduced by Na (0 to +1), so final state is -2. This follows from NCERT principle where relation explains outcome clearly for students.

Ref: NCERT Chemistry Textbook for Class XI and XII, Chapter: Some Basic Concepts, Structure of Atom, Periodicity and relevant Chemistry topic, Topic: Mole concept and periodic trends.

What is the mole fraction of glucose in a solution containing 18 g of glucose (C₆H₁₂O₆) and 72 g of water? (Molar masses

Given: What is the mole fraction of glucose in a solution containing 18 g of glucose (C₆H₁₂O₆) and 72 g of water? (Molar masses: glucose = 180 g/mol, H₂O = 18 g/mol) These values define the system as per NCERT data. Formula: Moles of glucose = 18 / 180 = 0.1 mol. This is standard NCERT relation. Substitution & Calculation: Moles of H₂O = 72 / 18 = 4 mol. Total moles = 0.1 + 4 = 4.1. Mole fraction = 0.1 / 4.1 ≈ 0.0244. Result: The computed value matches expected outcome and confirms correct choice as per NCERT.

Ref: NCERT Chemistry Textbook for Class XI and XII, Chapter: Some Basic Concepts, Structure of Atom, Periodicity and relevant Chemistry topic, Topic: Mole concept and periodic trends.

For PCl₅(g) PCl₃(g) + Cl₂(g), K_c = 0.04 at 250°C. If 1 mole of PCl₅ is placed in a 10 L vessel, what is the equilibrium

Given: For PCl₅(g) PCl₃(g) + Cl₂(g), K_c = 0.04 at 250°C. If 1 mole of PCl₅ is placed in a 10 L vessel, what is the equilibrium concentration of Cl₂ ? These values define the system as per NCERT data. Formula: Initial [PCl₅] = 1 / 10 = 0.1 M. This is standard NCERT relation. Substitution & Calculation: Let x be the concentration of Cl₂ at equilibrium. Then, [PCl₅] = 0.1 - x, [PCl₃] = x, [Cl₂] = x . K_c = frac[PCl₃][Cl₂][PCl₅] = x · x/0.1 - x = 0.04 . x² = 0.04 (0.1 - x), x² + 0.04x - 0.004 = 0 . Solving: x = frac-0.04 pm sqrt(0.04)² + 4 · 0.0042 = 0.0336 M (positive root). Result: The computed value matches expected outcome and confirms correct choice as per NCERT.

Ref: NCERT Chemistry Textbook for Class XI and XII, Chapter: Some Basic Concepts, Structure of Atom, Periodicity and relevant Chemistry topic, Topic: Mole concept and periodic trends.

A spring system has m = 1.2 kg, k = 480 N/m, A = 6 cm . What is the potential energy at x = 3 cm ?

Given: A spring system has m = 1.2 kg, k = 480 N/m, A = 6 cm . What is the potential energy at x = 3 cm ? These values define the system as per NCERT data. Formula: Potential energy: U = 1/2 k x². This is standard NCERT relation. Substitution & Calculation: k = 480 N/m, x = 0.03 m . U = 0.5 × 480 × (0.03)² = 0.5 × 480 × 0.0009 = 0.216 J . Result: The computed value matches expected outcome and confirms correct choice as per NCERT.

Ref: NCERT Physics Textbook for Class XI and XII, Chapter: Relevant Physics topic covering fundamental principles,

A rectangular loop of area 0.03 m² with 20 turns carries 2 A in a field of 0.7 T at 45° to the plane. What is the torque

Given: A rectangular loop of area 0.03 m² with 20 turns carries 2 A in a field of 0.7 T at 45° to the plane. What is the torque? These values define the system as per NCERT data. Formula: tau = N I A B sin θ, where θ = 45° to plane means sin 45° with normal. This is standard NCERT relation. Substitution & Calculation: tau = 20 × 2 × 0.03 × 0.7 × sin 45° = 0.84 × 0.707 = 0.5939 approx 0.59 N m . Result: The computed value matches expected outcome and confirms correct choice as per NCERT.

Ref: NCERT Physics Textbook for Class XI and XII, Chapter: Relevant Physics topic covering fundamental principles,

A solution contains 15 g of glycerol ( C₃H₈O₃ ) in 285 g of water. What is the molality of the solution? (Molar mass: C₃

Given: A solution contains 15 g of glycerol ( C₃H₈O₃ ) in 285 g of water. What is the molality of the solution? (Molar mass: C₃H₈O₃ = 92 g/mol ) These values define the system as per NCERT data. Formula: Moles of glycerol = 15/92 = 0.163 mol. This is standard NCERT relation. Substitution & Calculation: Mass of solvent in kg = 285/1000 = 0.285 kg . Molality = 0.163/0.285 = 0.572 mol/kg . Result: The computed value matches expected outcome and confirms correct choice as per NCERT.

Ref: NCERT Chemistry Textbook for Class XI and XII, Chapter: Some Basic Concepts, Structure of Atom, Periodicity and relevant Chemistry topic, Topic: Mole concept and periodic trends.

What is the standard electrode potential of a galvanic ll where zinc is oxidized and copper is reduced, given their stan

Given: What is the standard electrode potential of a galvanic ll where zinc is oxidized and copper is reduced, given their standard reduction potentials are -0.76 V and 0.34 V respectively? These values define the system as per NCERT data. Formula: Standard ll potential, E_{ll⁰ = E_{cathode⁰ - E_{anode⁰. This is standard NCERT relation. Substitution & Calculation: For Zn(s) → Zn²⁺(aq) + 2e⁻ (anode) and Cu²⁺(aq) + 2e⁻ → Cu(s) (cathode): E_{ll⁰ = 0.34 - (-0.76) = 1.10 V . Result: The computed value matches expected outcome and confirms correct choice as per NCERT.

Ref: NCERT Chemistry Textbook for Class XI and XII, Chapter: Some Basic Concepts, Structure of Atom, Periodicity and relevant Chemistry topic, Topic: Mole concept and periodic trends.

What is the ll potential at 298 K for Ni(s) + 2Ag⁺(0.002 M) → Ni²⁺(0.160 M) + 2Ag(s) if E_{ll⁰ = 1.05 V ?

Given: What is the ll potential at 298 K for Ni(s) + 2Ag⁺(0.002 M) → Ni²⁺(0.160 M) + 2Ag(s) if E_{ll⁰ = 1.05 V ? These values define the system as per NCERT data. Formula: E_{ll = E_{ll⁰ - 0.059/2 log frac[Ni^{2+][Ag^{+]². This is standard NCERT relation. Substitution & Calculation: Q = 0.160/(0.002)² = 40000, log Q = 4.602 . E_{ll = 1.05 - 0.059/2 × 4.602 = 1.05 - 0.136 = 0.914 V approx 0.91 V . Result: The computed value matches expected outcome and confirms correct choice as per NCERT.

Ref: NCERT Chemistry Textbook for Class XI and XII, Chapter: Some Basic Concepts, Structure of Atom, Periodicity and relevant Chemistry topic, Topic: Mole concept and periodic trends.