1
GATE ME 2023
Numerical
+1
-0

The figure shows a block of mass m = 20 kg attached to a pair of identical linear springs, each having a spring constant k = 1000 N/m. The block oscillates on a frictionless horizontal surface. Assuming free vibrations, the time taken by the block to complete ten oscillations is _________ seconds. (Rounded off to two decimal places)

Take Ο€ = 3.14.

GATE ME 2023 Theory of Machines - Vibrations Question 4 English
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2
GATE ME 2023
MCQ (Single Correct Answer)
+2
-0.66

The figure shows a wheel rolling without slipping on a horizontal plane with angular velocity πœ”1. A rigid bar PQ is pinned to the wheel at P while the end Q slides on the floor.

What is the angular velocity πœ”2 of the bar PQ?

GATE ME 2023 Theory of Machines - Analysis of Plane Mechanisms Question 3 English
A
πœ”2 = 2πœ”1
B
πœ”2 = πœ”1
C
πœ”2 = 0.5πœ”1
D
πœ”2 = 0.25πœ”1
3
GATE ME 2023
MCQ (Single Correct Answer)
+1
-0.33
A heat engine extracts heat (𝑄H) from a thermal reservoir at a temperature of 1000 K and rejects heat (𝑄L) to a thermal reservoir at a temperature of 100 K, while producing work (π‘Š). Which one of the combinations of [𝑄H, 𝑄L and π‘Š] given is allowed? 
A
𝑄H = 2000 J, 𝑄L = 500 J, π‘Š = 1000 J 
B
𝑄H = 2000 J, 𝑄L = 750 J, π‘Š = 1250 J
C
𝑄H = 6000 J, 𝑄L = 500 J, π‘Š = 5500 J
D
𝑄H = 6000 J, 𝑄L = 600 J, π‘Š = 5500 J
4
GATE ME 2023
MCQ (Single Correct Answer)
+2
-0.66
Which one of the following statements is FALSE?
A
For an ideal gas, the enthalpy is independent of pressure. 
B
For a real gas going through an adiabatic reversible process, the process equation is given by 𝑃𝑉𝛾 = constant, where P is the pressure, V is the volume and 𝛾 is the ratio of the specific heats of the gas at constant pressure and constant volume.
C
For an ideal gas undergoing a reversible polytropic process 𝑃𝑉1.5 = constant, the equation connecting the pressure, volume and temperature of the gas at any point along the process is $\rm \frac{P}{R}=\frac{mT}{V}$, where 𝑅 is the gas constant and π‘š is the mass of the gas. 
D
Any real gas behaves as an ideal gas at sufficiently low pressure or sufficiently high temperature.
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