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Previous year question hub

Beams, Shafts and Pressure Vessels - Mechanics of Deformable Bodies - Engineering Sciences Previous Year Questions

Practice Beams, Shafts and Pressure Vessels - Mechanics of Deformable Bodies - Engineering Sciences previous year questions organised from real papers, with year-wise coverage and clear topic navigation.

20Papers
20Years
94Questions
1Topics

Beams, Shafts and Pressure Vessels question pattern

Every graph below is calculated only from this selection.

Questions by year

Year-wise coverage for Beams, Shafts and Pressure Vessels. Each bar uses a separate theme-derived color.

Difficulty distribution

How the classified questions are distributed by difficulty.

Medium 72 76.6%
Easy 20 21.3%
Hard 2 2.1%

Question type distribution

MCQ, numerical, multiple-select and other formats found in these papers.

MCQ 60 63.8%
Numerical Answer Type (NAT) 30 31.9%
MSQ 3 3.2%
Fill in the blanks 1 1.1%

Subject weightage

Top subjects by unique question coverage.

Engineering Sciences
94 Qs

Most asked topics

Top topics across the included previous year papers.

Mechanics of Deformable Bodies
94 Qs

Subtopic coverage

Top subtopics inside this exact selection.

Beams, Shafts and Pressure Vessels
94 Qs

Paper coverage

Question coverage for the most populated papers. Every active PYP paper remains listed below.

Engineering Sciences (XE) 2026
2 Qs
Engineering Sciences (XE) 2025
4 Qs
Engineering Sciences (XE) 2024
5 Qs
Engineering Sciences (XE) 2023
5 Qs
Engineering Sciences (XE) 2022
5 Qs
Engineering Sciences (XE) 2021
3 Qs
Engineering Sciences (XE) 2020
4 Qs
Engineering Sciences (XE) 2019
6 Qs
Engineering Sciences (XE) 2018
4 Qs
Engineering Sciences (XE) 2017
6 Qs
Engineering Sciences (XE) 2016
4 Qs
Engineering Sciences (XE) 2015
2 Qs
Engineering Sciences (XE) 2014
4 Qs
Engineering Sciences (XE) 2013
4 Qs
Engineering Sciences (XE) 2012
3 Qs
Engineering Sciences (XE) 2011
4 Qs
Engineering Sciences (XE) 2010
5 Qs
Engineering Sciences (XE) 2009
4 Qs
Engineering Sciences (XE) 2008
12 Qs
Engineering Sciences (XE) 2007
8 Qs

Included previous year papers

Newest papers appear first. Sort by year, question coverage or name.

PaperYear / sessionQuestions in this viewOpen
Engineering Sciences (XE) 202620262View paper
Engineering Sciences (XE) 202520254View paper
Engineering Sciences (XE) 202420245View paper
Engineering Sciences (XE) 202320235View paper
Engineering Sciences (XE) 202220225View paper
Engineering Sciences (XE) 202120213View paper
Engineering Sciences (XE) 202020204View paper
Engineering Sciences (XE) 201920196View paper
Engineering Sciences (XE) 201820184View paper
Engineering Sciences (XE) 201720176View paper
Engineering Sciences (XE) 201620164View paper
Engineering Sciences (XE) 201520152View paper
Engineering Sciences (XE) 201420144View paper
Engineering Sciences (XE) 201320134View paper
Engineering Sciences (XE) 201220123View paper
Engineering Sciences (XE) 201120114View paper
Engineering Sciences (XE) 201020105View paper
Engineering Sciences (XE) 200920094View paper
Engineering Sciences (XE) 2008200812View paper
Engineering Sciences (XE) 200720078View paper

All Beams, Shafts and Pressure Vessels previous year questions

Practice every matching question in batches of 20, with every available option.

1
2007 · Engineering Sciences · Mechanics of Deformable Bodies · Beams, Shafts and Pressure Vessels
Engineering Sciences (XE) 2007

A 100 kVA, 11 kV/415 V transformer has 2% winding resistance and 4% leakage reactance. The voltage regulation at rated kVA, 0.8 pf lagging load is

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2
2007 · Engineering Sciences · Mechanics of Deformable Bodies · Beams, Shafts and Pressure Vessels
Engineering Sciences (XE) 2007
In the circuit shown in figure, v(t) = 3 cos ωt and cut-in voltage of each diode is 0.7 V. Given V1 = 2 V and V2 = 1 V.
The maximum and minimum values of vo(t) are
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3
2007 · Engineering Sciences · Mechanics of Deformable Bodies · Beams, Shafts and Pressure Vessels
Engineering Sciences (XE) 2007
A simply supported beam AB is subjected to a horizontal force, P, as shown in the figure.
Shear force at section a-a is given by

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4
2007 · Engineering Sciences · Mechanics of Deformable Bodies · Beams, Shafts and Pressure Vessels
Engineering Sciences (XE) 2007

The maximum bending moment in the beam is

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5
2007 · Engineering Sciences · Mechanics of Deformable Bodies · Beams, Shafts and Pressure Vessels
Engineering Sciences (XE) 2007
The source voltage of the three-phase network shown in the figure is 11 kV.
The line voltage at the load end and the phase angle with respect to the source voltage will be

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6
2007 · Engineering Sciences · Mechanics of Deformable Bodies · Beams, Shafts and Pressure Vessels
Engineering Sciences (XE) 2007
A beam ABCD with simple supports at A, B and D and an internal hinge at C is subjected to loads as shown in the figure.\nThe reaction at middle support is given by
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7
2007 · Engineering Sciences · Mechanics of Deformable Bodies · Beams, Shafts and Pressure Vessels
Engineering Sciences (XE) 2007
An L-shaped bar of square cross-section with sides, \( b \), is loaded as shown in the figure.
If the value of the stress component \( \sigma_{xx} \) at point P is zero, the distance \( a \) of the force \( F \) from the x-axis should be

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8
2007 · Engineering Sciences · Mechanics of Deformable Bodies · Beams, Shafts and Pressure Vessels
Engineering Sciences (XE) 2007
A stepped shaft PQR is fixed at both the ends as shown in the figure. A torque T is applied at point Q. The polar moments of inertia of the shafts PQ and QR are J₁ and J₂ respectively. G is the modulus of rigidity.

The angle of twist at point Q due to torque, T, is given by (in radians)

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9
2008 · Engineering Sciences · Mechanics of Deformable Bodies · Beams, Shafts and Pressure Vessels
Engineering Sciences (XE) 2008

A three-phase star-connected, slip-ring induction motor has per-phase standstill rotor resistance, r2 = 0.01 Ω and reactance, x2 = 0.05 Ω. To achieve maximum torque at starting, the external per-phase resistance to be connected at the slip-rings is

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10
2008 · Engineering Sciences · Mechanics of Deformable Bodies · Beams, Shafts and Pressure Vessels
Engineering Sciences (XE) 2008
The total winding resistance of a single-phase, two-winding transformer is half the magnitude of the total impedance of the winding, both referred to the primary side. Considering the input and output voltages to be practically in-phase, the transformer will have zero regulation when the load power factor is
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11
2008 · Engineering Sciences · Mechanics of Deformable Bodies · Beams, Shafts and Pressure Vessels
Engineering Sciences (XE) 2008

A 4-bit resistor network based D/A converter is shown in the figure. The output corresponding to the number 1010 is

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12
2008 · Engineering Sciences · Mechanics of Deformable Bodies · Beams, Shafts and Pressure Vessels
Engineering Sciences (XE) 2008
The rotor copper loss of this induction motor is
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13
2008 · Engineering Sciences · Mechanics of Deformable Bodies · Beams, Shafts and Pressure Vessels
Engineering Sciences (XE) 2008

A point of contraflexure in a loaded beam is one where

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14
2008 · Engineering Sciences · Mechanics of Deformable Bodies · Beams, Shafts and Pressure Vessels
Engineering Sciences (XE) 2008

In a beam of uniform strength, the extreme fibers at every cross section are stressed to the maximum allowable stress. Consider a solid circular beam of uniform strength subjected to bending moment. In this beam, the diameter of the cross-section at any section is proportional

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15
2008 · Engineering Sciences · Mechanics of Deformable Bodies · Beams, Shafts and Pressure Vessels
Engineering Sciences (XE) 2008

A plane cantilever truss is loaded as shown in the figure. If a positive sign denotes tension and a negative sign compression, the axial force in the member 1 is

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16
2008 · Engineering Sciences · Mechanics of Deformable Bodies · Beams, Shafts and Pressure Vessels
Engineering Sciences (XE) 2008

The axial force, shear force and bending moment at section A-A of beam shown in figure are respectively

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17
2008 · Engineering Sciences · Mechanics of Deformable Bodies · Beams, Shafts and Pressure Vessels
Engineering Sciences (XE) 2008
The maximum compressive load that can be applied on a hinged-hinged column of cross-section 20mm x 10mm and length 2000 mm is (allowable compressive stress = 250 MPa; \(E = 210\) GPa)
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18
2008 · Engineering Sciences · Mechanics of Deformable Bodies · Beams, Shafts and Pressure Vessels
Engineering Sciences (XE) 2008

The support reactions are

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19
2008 · Engineering Sciences · Mechanics of Deformable Bodies · Beams, Shafts and Pressure Vessels
Engineering Sciences (XE) 2008
A voltage of +5 V is applied (with respect to ground) to both the inputs V1 and V2 of an operational amplifier circuit shown in the figure. R1 = 20 kΩ and R2 = 10 kΩ. The output voltage, V_o is

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20
2008 · Engineering Sciences · Mechanics of Deformable Bodies · Beams, Shafts and Pressure Vessels
Engineering Sciences (XE) 2008
The support moment at B( \( M_B \) ) is

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