Match the LIST-I with LIST-II
LIST-ILIST-II
A. Boltzmann constantI. ML^2T^-1
B. Coefficient of viscosityII. MLT^-3K^-1
C. Planck's constantIII. ML^2T^-2K^-1
D. Thermal conductivityIV. ML^-1T^-1
Choose the correct answer from the options given below :

Solution & Explanation

### Related Formula Formulas to find dimensional formulas: - Boltzmann constant: k_B = fractextEnergytextTemperature - Coefficient of viscosity: eta = fracFA fracdvdx - Planck's constant: h = fracEnu - Thermal conductivity: fracdQdt = K A fracdTdx Rightarrow K = fractextHeat flow cdot textthicknesstextArea cdot textTemperature difference ### Core Logic Evaluate each constant individually: ### Step 1: Dimensions of Boltzmann constant (k_B) [k_B] = frac[ML^2T^-2][K] = [ML^2T^-2K^-1] quad Rightarrow textMatches III ### Step 2: Dimensions of Coefficient of viscosity (eta) [eta] = frac[MLT^-2][L^2] [T^-1] = [ML^-1T^-1] quad Rightarrow textMatches IV ### Step 3: Dimensions of Planck's constant (h) [h] = frac[ML^2T^-2][T^-1] = [ML^2T^-1] quad Rightarrow textMatches I ### Step 4: Dimensions of Thermal conductivity (K) [K] = frac[ML^2T^-3] [L][L^2] [K] = [MLT^-3K^-1] quad Rightarrow textMatches II This sequence yields A-III, B-IV, C-I, D-II, matching Option (1). ### Pattern Recognition To solve matching sets efficiently, search for the most recognizable dimensions first. Planck's constant h (ML^2T^-1) and viscosity coefficient eta (ML^-1T^-1) are highly unique and usually resolve the options instantly. ### Evaluation Rubric / Model Answer null ### Chapter Mix Class 11 Physics: Units and Measurements

More Units and Measurements Previous-Year Questions — Page 5

Q22 jee_main_2025_24_jan_morning Screw Gauge and Least Count
The least count of a screw guage is 0.01 mathrm~mm . If the pitch is increased by 75 \% and number of divisions on the circular scale is reduced by 50 \% , the new least count will be \_ times 10^-3 mathrm~mm .
Numerical Answer. Answer: 35 to 35

Solution

### Related Formula The Least Count (LC) of a screw gauge tool is defined by: textL.C. = fractextPitchtextTotal Number of Circular Divisions (N) ### Core Logic The initial least count is given as [cite: 167, 788]: textL.C.textinitial = fracPN = 0.01text mm Now, calculate the modified parameters from the text details : * New Pitch: P' = P(1 + 0.75) = 1.75P * New Divisions: N' = N(1 - 0.50) = 0.5N ### Step 1: Calculating the New Least Count Set up the updated least count expression ratio : textL.C.textnew = fracP'N' = frac1.75P0.5N = 3.5 times left(fracPN ight) Substitute the initial least count value : textL.C.textnew = 3.5 times 0.01text mm = 0.035text mm Converting into the requested scientific prefix units (10^-3text mm) : textL.C.textnew = 35 times 10^-3text mm Therefore, the requested value is 35. ### Pattern Recognition Least count scales proportionally with pitch increases, and inversely with reductions in circular divisions. ### Evaluation Rubric / Model Answer null ### Chapter Mix Class 11 Physics: Units and Measurements
Q3 jee_main_2025_28_jan_evening Dimensional Analysis
Match List-I with List-II:
List-IList-II
(A) Angular Impulse(I) [M^0L^2T^-2]
(B) Latent Heat(II) [M L^2T^-3A^-1]
(C) Electrical resistivity(III) [M L^2T^-1]
(D) Electromotive force(IV) [M L^3T^-3"A^-2]
Choose the correct answer from the options given below:
  • A. text(A)-(III), (B)-(I), (C)-(IV), (D)-(II)
  • B. text(A)-(I), (B)-(III), (C)-(IV), (D)-(II)
  • C. text(A)-(III), (B)-(I), (C)-(II), (D)-(IV)
  • D. text(A)-(II), (B)-(I), (C)-(IV), (D)-(III)

Solution

### Related Formula * **Angular Impulse** = Change in Angular Momentum = tau cdot Delta t = [M L^2 T^-2] cdot [T] = [M L^2 T^-1] [cite: 670, 672] * **Latent Heat** (L) = fracQm = frac[M L^2 T^-2][M] = [M^0 L^2 T^-2] * **Electrical resistivity** (\rho) = fracR cdot Al = frac[M L^2 T^-3 A^-2] cdot [L^2][L] = [M L^3 T^-3 A^-2] * **Electromotive force** (V) = fracWq = frac[M L^2 T^-2][A T] = [M L^2 T^-3 A^-1] ### Core Logic By comparing the formulas derived for each physical quantity with the options given in List-II [cite: 670, 673, 674]: * (A) matches with (III) [cite: 670, 672] * (B) matches with (I) * (C) matches with (IV) * (D) matches with (II) Hence, the correct matching is (A)-(III), (B)-(I), (C)-(IV), (D)-(II). ### Pattern Recognition In match-the-column dimensional analysis questions, identifying even one or two straightforward quantities like Latent Heat (L = Q/m) often immediately eliminates three incorrect options, securing a quick correct answer. ### Evaluation Rubric / Model Answer null ### Chapter Mix Class 11 Physics: Units and Measurements
Q jee_main_2025_29_jan_morning Dimensional Analysis
The pair of physical quantities not having same dimensions is :
  • A. textTorque and energy
  • B. textSurface tension and impulse
  • C. textAngular momentum and Planck\'s constant
  • D. textPressure and Young\'s modulus

Solution

### Core Logic Let\'s check the dimensions of each pair : * textTorque = [textEnergy] = [ML^2T^-2] * textSurface Tension = [MT^-2] vs textImpulse = [MLT^-1] * [textAngular Momentum] = [textPlanck\'s Constant] = [ML^2T^-1] * [textPressure] = [textYoung\'s Modulus] = [ML^-1T^-2] ### Step 1: Identify Non-Matching Pair Surface tension and impulse do not share matching dimension frameworks. ### Pattern Recognition Surface tension is force per unit length ([MT^-2]), while impulse is force times time ([MLT^-1]) ### Chapter Mix Class 11 Physics: Units and Measurements
Q jee_main_2025_29_jan_morning Dimensional Homogeneity
The expression given below shows the variation of velocity (v) with time (t), v = At^2 + fracBtC + t . The dimension of ABC is:
  • A. left[mathrmM^0 mathrm~L^2 mathrmT^-3right]
  • B. left[mathrmM^0 mathrm~L^1 mathrmT^-3right]
  • C. [mathrmM^0mathrmL^1mathrmT^-2]
  • D. left[mathrmM^0 mathrm~L^2 mathrmT^-2right]

Solution

### Related Formula [v] = [At^2] = left[fracBtC+tright] ### Core Logic By the principle of dimensional homogeneity: 1. [C] = [t] = [T] 2. [At^2] = [v] implies [A][T^2] = [LT^-1] implies [A] = [LT^-3] 3. left[fracBtTright] = [v] implies [B] = [LT^-1] ### Step 1: Calculate Dimensions of ABC [ABC] = [LT^-3] cdot [LT^-1] cdot [T] = [L^2 T^-3] ### Pattern Recognition Denominator terms matched first give C, tracking linear velocity units sets the balance for A and B ### Chapter Mix Class 11 Physics: Units and Measurements
Q42 jee_main_2024_01_february_morning Vernier Calliper
10 divisions on the main scale of a Vernier calliper coincide with 11 divisions on the Vernier scale. If each division on the main scale is of 5 units, the least count of the instrument is:
  • A. frac12
  • B. frac1011
  • C. frac5011
  • D. frac511

Solution

### Related Formula Least Count (LC) definition: textLC = 1text MSD - 1text VSD ### Core Logic From the problem: 10text MSD = 11text VSD implies 1text VSD = frac1011text MSD Substitute into the Least Count formula: textLC = 1text MSD - frac1011text MSD = frac111text MSD ### Step 1: Calculate with Main Scale Units Given that 1text MSD = 5text units: textLC = frac111 times 5 = frac511text units ### Pattern Recognition Watch out for unconventional scale arrangements where textVSD > textMSD. The fundamental difference formula 1text MSD - 1text VSD safely determines magnitudes without needing sign corrections. ### Evaluation Rubric / Model Answer null ### Chapter Mix Class 11 Physics: Units and Measurements

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