Engineering & Architecture Admissions

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Q. A tuning fork produces a sound wave of frequency 440 Hz. What is the wavelength of the sound wave in air at a temperature of 20°C?
  • A. 0.78 m
  • B. 0.34 m
  • C. 0.50 m
  • D. 0.25 m
Q. A tuning fork produces a sound wave with a frequency of 440 Hz. What is the wavelength of the sound wave in air, given that the speed of sound in air is approximately 340 m/s?
  • A. 0.77 m
  • B. 0.85 m
  • C. 0.90 m
  • D. 1.00 m
Q. A uniform electric field of 200 N/C is present. What is the potential difference between two points 3 m apart?
  • A. 600 V
  • B. 400 V
  • C. 200 V
  • D. 800 V
Q. A uniform rod of length L and mass M is pivoted at one end and released from rest. What is the angular velocity of the rod when it makes an angle θ with the vertical?
  • A. √(g/L)(1-cosθ)
  • B. √(2g/L)(1-cosθ)
  • C. √(g/L)(1+cosθ)
  • D. √(2g/L)(1+cosθ)
Q. A uniform rod of length L and mass M is pivoted at one end and released from rest. What is the angular velocity just before it hits the ground?
  • A. √(3g/L)
  • B. √(2g/L)
  • C. √(g/L)
  • D. √(4g/L)
Q. A uniform rod of length L and mass M is rotated about its center. What is its moment of inertia?
  • A. 1/3 ML^2
  • B. 1/12 ML^2
  • C. 1/2 ML^2
  • D. ML^2
Q. A uniform rod of length L is pivoted at one end. If it is allowed to fall freely, what is its angular acceleration just after it is released?
  • A. g/L
  • B. 2g/L
  • C. g/2L
  • D. 3g/2L
Q. A uniform thin circular ring of mass M and radius R is rotated about an axis through its center. What is its moment of inertia?
  • A. MR^2
  • B. 1/2 MR^2
  • C. 1/3 MR^2
  • D. 2/5 MR^2
Q. A uniformly charged sphere of radius R has a total charge Q. What is the electric field at a point outside the sphere (r > R)?
  • A. 0
  • B. Q/(4πε₀r²)
  • C. Q/(4πε₀R²)
  • D. Q/(4πε₀R)
Q. A vehicle moving with a speed of 60 km/h applies brakes and comes to a stop in 5 seconds. What is the deceleration?
  • A. 2 m/s²
  • B. 3 m/s²
  • C. 4 m/s²
  • D. 5 m/s²
Q. A voltage is measured as 12.0 V with an uncertainty of ±0.1 V. What is the absolute error?
  • A. 0.1 V
  • B. 0.2 V
  • C. 0.3 V
  • D. 0.4 V
Q. A voltage is measured as 12.0 V with an uncertainty of ±0.2 V. What is the maximum possible voltage?
  • A. 11.8 V
  • B. 12.0 V
  • C. 12.2 V
  • D. 12.4 V
Q. A voltage is measured as 15.0 V with an uncertainty of ±0.3 V. What is the fractional error in the voltage measurement?
  • A. 0.02
  • B. 0.03
  • C. 0.01
  • D. 0.05
Q. A voltage measurement is taken as 220 V with an uncertainty of ±5 V. What is the absolute error?
  • A. 5 V
  • B. 10 V
  • C. 2.5 V
  • D. 0.5 V
Q. A volume is measured as 1000 mL with an error of 10 mL. What is the relative error?
  • A. 0.01
  • B. 0.1
  • C. 0.001
  • D. 0.05
Q. A volume is measured as 2.0 L with an uncertainty of ±0.1 L. If this volume is used to calculate density, what is the uncertainty in density if mass is measured as 4.0 kg with an uncertainty of ±0.2 kg?
  • A. 0.1 kg/L
  • B. 0.2 kg/L
  • C. 0.05 kg/L
  • D. 0.4 kg/L
Q. A volume is measured as 200 L with an error of 5 L. What is the relative error in percentage?
  • A. 2.5%
  • B. 5%
  • C. 1%
  • D. 0.5%
Q. A wave has a frequency of 50 Hz and a wavelength of 2 m. What is its speed?
  • A. 25 m/s
  • B. 50 m/s
  • C. 100 m/s
  • D. 75 m/s
Q. A wave has a frequency of 50 Hz and a wavelength of 3 m. What is its speed?
  • A. 150 m/s
  • B. 100 m/s
  • C. 50 m/s
  • D. 200 m/s
Q. A wave has a wavelength of 0.5 m and a frequency of 600 Hz. What is the speed of the wave?
  • A. 300 m/s
  • B. 600 m/s
  • C. 1200 m/s
  • D. 1500 m/s
Q. A wave has an amplitude of 0.5 m and a frequency of 10 Hz. What is the maximum speed of a particle in the wave?
  • A. 3.14 m/s
  • B. 6.28 m/s
  • C. 9.42 m/s
  • D. 12.56 m/s
Q. A wave is described by the equation y(x, t) = 0.2 cos(4x - 5t). What is the amplitude of the wave?
  • A. 0.1 m
  • B. 0.2 m
  • C. 0.3 m
  • D. 0.4 m
Q. A wave on a string is described by the equation y(x, t) = 0.05 cos(4x - 3t). What is the amplitude of the wave?
  • A. 0.05 m
  • B. 0.1 m
  • C. 0.2 m
  • D. 0.3 m
Q. A wave on a string is described by the equation y(x, t) = 0.1 sin(2π(0.5x - 10t)). What is the speed of the wave?
  • A. 5 m/s
  • B. 10 m/s
  • C. 20 m/s
  • D. 25 m/s
Q. A wave on a string is described by the equation y(x, t) = 0.1 sin(2π(0.5x - 2t)). What is the speed of the wave?
  • A. 1 m/s
  • B. 2 m/s
  • C. 0.5 m/s
  • D. 4 m/s
Q. A wave on a string is described by the equation y(x, t) = 0.1 sin(2πx - 4πt). What is the amplitude of the wave?
  • A. 0.1 m
  • B. 0.2 m
  • C. 0.4 m
  • D. 1 m
Q. A wave on a string is described by the equation y(x, t) = A sin(kx - ωt). What does 'k' represent?
  • A. Angular frequency
  • B. Wave number
  • C. Amplitude
  • D. Phase constant
Q. A wave on a string is described by the equation y(x, t) = A sin(kx - ωt). What does 'A' represent?
  • A. Wavelength
  • B. Frequency
  • C. Amplitude
  • D. Wave number
Q. A wave traveling along a string is described by the equation y(x, t) = 0.1 sin(2π(0.5x - 4t)). What is the wave speed?
  • A. 2 m/s
  • B. 4 m/s
  • C. 8 m/s
  • D. 1 m/s
Q. A wave traveling along a string is described by the equation y(x, t) = 0.1 sin(2π(0.5x - 2t)). What is the speed of the wave?
  • A. 1 m/s
  • B. 2 m/s
  • C. 3 m/s
  • D. 4 m/s
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