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Previous year question hub

Mechanics of Materials - Applied Mechanics and Structures - Naval Architecture & Marine Engineering Previous Year Questions

Practice Mechanics of Materials - Applied Mechanics and Structures - Naval Architecture & Marine Engineering previous year questions organised from real papers, with year-wise coverage and clear topic navigation.

6Papers
5Years
31Questions
1Topics

Mechanics of Materials question pattern

Every graph below is calculated only from this selection.

Questions by year

Year-wise coverage for Mechanics of Materials. Each bar uses a separate theme-derived color.

Difficulty distribution

How the classified questions are distributed by difficulty.

Easy 16 51.6%
Medium 15 48.4%

Question type distribution

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

MCQ 13 41.9%
Numerical Answer Type (NAT) 12 38.7%
MSQ 6 19.4%

Subject weightage

Top subjects by unique question coverage.

Naval Architecture & Marine Engineering
31 Qs

Most asked topics

Top topics across the included previous year papers.

Applied Mechanics and Structures
31 Qs

Subtopic coverage

Top subtopics inside this exact selection.

Mechanics of Materials
31 Qs

Paper coverage

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

Naval Architecture and Marine Engineering (NM) 2026
5 Qs
Mining Engineering (MN) 2026
3 Qs
Naval Architecture & Marine Engineering (NM) 2025
5 Qs
Naval Architecture & Marine Engineering (NM) 2024
9 Qs
Naval Architecture & Marine Engineering (NM) 2023
3 Qs
Naval Architecture & Marine Engineering (NM) 2022
6 Qs

Included previous year papers

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

PaperYear / sessionQuestions in this viewOpen
Mining Engineering (MN) 202620263View paper
Naval Architecture and Marine Engineering (NM) 202620265View paper
Naval Architecture & Marine Engineering (NM) 202520255View paper
Naval Architecture & Marine Engineering (NM) 202420249View paper
Naval Architecture & Marine Engineering (NM) 202320233View paper
Naval Architecture & Marine Engineering (NM) 202220226View paper

All Mechanics of Materials previous year questions

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

1
2022 · Naval Architecture & Marine Engineering · Applied Mechanics and Structures · Mechanics of Materials
Naval Architecture & Marine Engineering (NM) 2022

A simply supported beam is loaded with a uniformly distributed load (UDL) acting vertically downwards. Which of the following statements are TRUE with regard to strain energy?

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2
2022 · Naval Architecture & Marine Engineering · Applied Mechanics and Structures · Mechanics of Materials
Naval Architecture & Marine Engineering (NM) 2022
The beam fixed at end A and simply supported at C with a roller is shown in the figure. If B is an internal hinge and a concentrated load of 10 kN is acting at D and a uniformly distributed load (UDL) of 10 kN/m is acting on member AB, then the magnitude of bending moment at the fixed end A is ______ kNm.

Question diagram

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3
2022 · Naval Architecture & Marine Engineering · Applied Mechanics and Structures · Mechanics of Materials
Naval Architecture & Marine Engineering (NM) 2022
A column of height 20 m is fixed at both ends. If Young's modulus of elasticity is 17 × 10⁹ N/m² and moment of inertia is 3.255 × 10⁻⁴ m⁴, then the first critical load of buckling of the column lies between __________ kN.
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4
2022 · Naval Architecture & Marine Engineering · Applied Mechanics and Structures · Mechanics of Materials
Naval Architecture & Marine Engineering (NM) 2022
Which of the following statements are TRUE about the assumptions adopted in Euler's column theory?
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5
2022 · Naval Architecture & Marine Engineering · Applied Mechanics and Structures · Mechanics of Materials
Naval Architecture & Marine Engineering (NM) 2022
Consider the midship section of a vessel with the centerline (CL) and neutral axis (NA) as shown in the figure. Assume that the cross-section is symmetric about the centerline, the plate thickness is uniform throughout the section and \( h_1 < h_2 \).
When the vessel is subjected to a vertical bending moment in its upright condition, which of the following statements are TRUE?
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6
2022 · Naval Architecture & Marine Engineering · Applied Mechanics and Structures · Mechanics of Materials
Naval Architecture & Marine Engineering (NM) 2022
An element, as shown in the figure, is subjected to stresses \(\sigma_x = 500 \text{ N/m}^2\), \(\sigma_y = 300 \text{ N/m}^2\) and \(\tau = 120 \text{ N/m}^2\).
If \(\sigma_1\) and \(\sigma_2\) are the principal stresses, then the absolute value of the angle \(\varphi\) is ______ degree (rounded off to one decimal place).

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7
2023 · Naval Architecture & Marine Engineering · Applied Mechanics and Structures · Mechanics of Materials
Naval Architecture & Marine Engineering (NM) 2023

Which method among the following is based on the strain energy principle?

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8
2023 · Naval Architecture & Marine Engineering · Applied Mechanics and Structures · Mechanics of Materials
Naval Architecture & Marine Engineering (NM) 2023

A simply supported beam with an overhang has experienced the bending moment as shown below. The corresponding concentrated load is

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9
2023 · Naval Architecture & Marine Engineering · Applied Mechanics and Structures · Mechanics of Materials
Naval Architecture & Marine Engineering (NM) 2023
The stress field,
\sigma_x = 4x^3 + 3x^2y + 5xy^2
\sigma_y = -x^3 + 6x^2y - 7xy^2
\tau_{xy} = -5x^2y - 3xy^2
would satisfy the strain compatibility condition if
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10
2024 · Naval Architecture & Marine Engineering · Applied Mechanics and Structures · Mechanics of Materials
Naval Architecture & Marine Engineering (NM) 2024
Consider an initially perfectly straight elastic column with pinned supports at both ends. If \(E\) is the Young’s modulus of the material, \(L\) is the length of the column between the supports, and \(I\) is the least moment of inertia of the constant cross-sectional area of the column, then the Euler load is given by
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11
2024 · Naval Architecture & Marine Engineering · Applied Mechanics and Structures · Mechanics of Materials
Naval Architecture & Marine Engineering (NM) 2024
For a plane strain problem in the \(x-y\) plane, it is necessary that
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12
2024 · Naval Architecture & Marine Engineering · Applied Mechanics and Structures · Mechanics of Materials
Naval Architecture & Marine Engineering (NM) 2024

How many independent material constants in solids are required to define isotropic materials?

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13
2024 · Naval Architecture & Marine Engineering · Applied Mechanics and Structures · Mechanics of Materials
Naval Architecture & Marine Engineering (NM) 2024

A simply supported beam is subjected to a concentrated moment M at the mid span as shown in the figure. The magnitude of the bending moment at a distance of L/4 from the left support A is equal to

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14
2024 · Naval Architecture & Marine Engineering · Applied Mechanics and Structures · Mechanics of Materials
Naval Architecture & Marine Engineering (NM) 2024
A steel deck plate of a tanker is supported by two longitudinal stiffeners as shown in the figure. The width of the plate is \( a \) and its length is 5 times the width. Assume that the long edge is simply supported, and the short edge is free. The plate is loaded by a distributed pressure, \( p = p_0 \sin \left( \frac{\pi y}{a} \right) \), where \( p_0 \) is the pressure at \( y = a/2 \). The flexural rigidity of the plate is \( D \). The plate equation is given by
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15
2024 · Naval Architecture & Marine Engineering · Applied Mechanics and Structures · Mechanics of Materials
Naval Architecture & Marine Engineering (NM) 2024

In the solution of statically indeterminate problems, Castigliano’s second theorem employs the

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16
2024 · Naval Architecture & Marine Engineering · Applied Mechanics and Structures · Mechanics of Materials
Naval Architecture & Marine Engineering (NM) 2024
A ship travelling in head seas experiences a bending moment of 200 MN·m. The ship’s cross section is assumed to be a box girder of 30 m beam and 10 m depth with a 10 mm plate thickness. The maximum bending stress is ______ MPa (rounded off to the nearest integer).
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17
2024 · Naval Architecture & Marine Engineering · Applied Mechanics and Structures · Mechanics of Materials
Naval Architecture & Marine Engineering (NM) 2024
Consider a thin-walled closed cylindrical steel vessel with an internal pressure of 2 N/mm². The inner diameter is 1 m, and the thickness of the wall is 10 mm. The hoop stress is ______ N/mm² (rounded off to one decimal place).
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18
2024 · Naval Architecture & Marine Engineering · Applied Mechanics and Structures · Mechanics of Materials
Naval Architecture & Marine Engineering (NM) 2024
Consider a rectangular plate with in-plane loads. The state of the stress at an arbitrary angle \(\theta\) is defined by \(\sigma_x\), \(\sigma_y\) and \(\tau_{xy}\), as shown in the figure. If the principal plane is at \(\theta = 45^0\), and the principal stresses are \(\sigma_x = 8 \text{ N/mm}^2\) and \(\sigma_y = 3 \text{ N/mm}^2\), then the corresponding \(\tau_{xy} =\) ________ N/mm².
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19
2025 · Naval Architecture & Marine Engineering · Applied Mechanics and Structures · Mechanics of Materials
Naval Architecture & Marine Engineering (NM) 2025
In the stress-strain curve of mild steel, plastic deformation starts at the __________.
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20
2025 · Naval Architecture & Marine Engineering · Applied Mechanics and Structures · Mechanics of Materials
Naval Architecture & Marine Engineering (NM) 2025
A square shaped body is subjected to only direct tensile stresses \(\sigma_x\) and \(\sigma_y\) as shown in the figure. If \(\sigma_x > \sigma_y\), then the value of normal stress (\(\sigma_\theta\)) and shear stress (\(\tau_\theta\)) respectively are ______.
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Showing 20 of 31 questions