Engineering & Architecture Admissions

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Q. If the frequency of an AC source is 60 Hz, what is the time period of the AC signal?
  • A. 0.0167 s
  • B. 0.0333 s
  • C. 0.05 s
  • D. 0.1 s
Q. If the frequency of an AC source is increased, what happens to the capacitive reactance?
  • A. It increases
  • B. It decreases
  • C. It remains the same
  • D. It becomes infinite
Q. If the frequency of incident light is doubled, what happens to the kinetic energy of the emitted electrons?
  • A. It remains the same
  • B. It doubles
  • C. It quadruples
  • D. It decreases
Q. If the function f(x) = e^x + x^2 has a minimum at x = 0, then f(0) is:
  • A. 1
  • B. 0
  • C. 2
  • D. 3
Q. If the function f(x) = x^2 - 4x + 3 has a minimum value, what is it?
  • A. -1
  • B. 0
  • C. 1
  • D. 2
Q. If the function f(x) = x^3 - 3x + 2 has a local maximum, what is the value of x?
  • A. -1
  • B. 0
  • C. 1
  • D. 2
Q. If the galvanometer in a Wheatstone bridge has a high resistance, what is the effect on the sensitivity of the bridge?
  • A. Increases sensitivity
  • B. Decreases sensitivity
  • C. No effect
  • D. Depends on the resistances
Q. If the galvanometer in a Wheatstone bridge has a resistance of 5Ω and the bridge is balanced, what is the current through the galvanometer?
  • A. Zero.
  • B. 5A.
  • C. 1A.
  • D. 10A.
Q. If the galvanometer in a Wheatstone bridge shows a deflection, what does it indicate?
  • A. The bridge is balanced.
  • B. The bridge is unbalanced.
  • C. The resistances are equal.
  • D. The circuit is open.
Q. If the galvanometer shows a deflection in a Wheatstone bridge, what can be inferred?
  • A. The bridge is balanced
  • B. The bridge is unbalanced
  • C. The resistances are equal
  • D. The circuit is open
Q. If the galvanometer shows a deflection when the Wheatstone bridge is not balanced, what does it indicate?
  • A. The bridge is balanced
  • B. The resistances are equal
  • C. There is a potential difference
  • D. The circuit is open
Q. If the gravitational field strength at a point is 10 N/kg, what is the gravitational potential at that point assuming it is at infinity?
  • A. 0 J/kg
  • B. -10 J/kg
  • C. 10 J/kg
  • D. -5 J/kg
Q. If the gravitational field strength at a point is 10 N/kg, what is the gravitational potential at that point assuming the reference point is at infinity?
  • A. -10 J/kg
  • B. 10 J/kg
  • C. 0 J/kg
  • D. -5 J/kg
Q. If the gravitational field strength at a point is 10 N/kg, what is the gravitational potential at that point, assuming it is at a distance of 2 m from the mass creating the field?
  • A. -20 J/kg
  • B. -10 J/kg
  • C. 0 J/kg
  • D. -5 J/kg
Q. If the gravitational field strength at a point is 10 N/kg, what is the gravitational potential at that point, assuming it is 2 meters from the mass creating the field?
  • A. -20 J/kg
  • B. -10 J/kg
  • C. 0 J/kg
  • D. -5 J/kg
Q. If the gravitational field strength at a point is 10 N/kg, what is the gravitational potential at that point, assuming it is at a distance of 2 meters from the mass creating the field?
  • A. -20 J/kg
  • B. -10 J/kg
  • C. 0 J/kg
  • D. -5 J/kg
Q. If the gravitational field strength at a point is 10 N/kg, what is the gravitational potential at that point assuming it is zero at infinity?
  • A. -10 J/kg
  • B. -5 J/kg
  • C. 0 J/kg
  • D. 10 J/kg
Q. If the gravitational field strength at a point is 10 N/kg, what is the gravitational potential at that point assuming it is 2 meters from the mass?
  • A. -20 J/kg
  • B. -10 J/kg
  • C. 0 J/kg
  • D. -5 J/kg
Q. If the gravitational field strength at a point is 10 N/kg, what is the gravitational potential at that point, assuming it is 2 meters above the reference point?
  • A. -20 J/kg
  • B. -10 J/kg
  • C. 0 J/kg
  • D. -5 J/kg
Q. If the gravitational field strength at a point is 10 N/kg, what is the gravitational potential at that point assuming it is at a distance of 2 m from the mass?
  • A. -20 J/kg
  • B. -10 J/kg
  • C. 0 J/kg
  • D. -5 J/kg
Q. If the gravitational potential at a point is -15 J/kg and the gravitational field strength is constant at 3 N/kg, what is the distance from the mass?
  • A. 5 m
  • B. 10 m
  • C. 15 m
  • D. 20 m
Q. If the gravitational potential at a point is -20 J/kg and the gravitational field strength is 4 N/kg, what is the distance from the mass?
  • A. 5 m
  • B. 10 m
  • C. 15 m
  • D. 20 m
Q. If the gravitational potential at a point is -30 J/kg and the gravitational field strength is 5 N/kg, what is the distance from the mass?
  • A. 6 m
  • B. 3 m
  • C. 5 m
  • D. 4 m
Q. If the gravitational potential at a point is -30 J/kg, what is the gravitational field strength at that point?
  • A. 3 N/kg
  • B. 30 N/kg
  • C. 0 N/kg
  • D. Cannot be determined
Q. If the height of an isosceles triangle is 12 cm and the base is 10 cm, what is the area of the triangle?
  • A. 60 cm²
  • B. 70 cm²
  • C. 80 cm²
  • D. 90 cm²
Q. If the image distance is equal to the object distance for a lens, what is the magnification?
  • A. 0
  • B. 1
  • C. 2
  • D. Infinity
Q. If the image distance of a convex lens is 40 cm and the object distance is 30 cm, what is the focal length of the lens?
  • A. 10 cm
  • B. 20 cm
  • C. 30 cm
  • D. 15 cm
Q. If the inductance of a coil is 2 H and the frequency is 50 Hz, what is the inductive reactance?
  • A. 100 π
  • B. 100
  • C. 314
  • D. 628
Q. If the intensity of light at a point of constructive interference is I, what is the intensity at a point of destructive interference?
  • A. I
  • B. 0
  • C. 2I
  • D. I/2
Q. If the intensity of light is doubled while keeping the frequency constant, what happens to the number of emitted electrons?
  • A. It doubles
  • B. It remains the same
  • C. It is halved
  • D. It becomes zero
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