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Previous year question hub

Structural Design and Disaster-resistant Construction - Building Construction, Materials, and Structural Systems - Architecture and Planning Previous Year Questions

Practice Structural Design and Disaster-resistant Construction - Building Construction, Materials, and Structural Systems - Architecture and Planning previous year questions organised from real papers, with year-wise coverage and clear topic navigation.

7Papers
7Years
39Questions
1Topics

Structural Design and Disaster-resistant Construction question pattern

Every graph below is calculated only from this selection.

Questions by year

Year-wise coverage for Structural Design and Disaster-resistant Construction. Each bar uses a separate theme-derived color.

Difficulty distribution

How the classified questions are distributed by difficulty.

Easy 22 56.4%
Medium 16 41%
Hard 1 2.6%

Question type distribution

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

MCQ 37 94.9%
Numerical Answer Type (NAT) 2 5.1%

Subject weightage

Top subjects by unique question coverage.

Architecture and Planning
39 Qs

Most asked topics

Top topics across the included previous year papers.

Building Construction, Materials, and Structural Systems
39 Qs

Subtopic coverage

Top subtopics inside this exact selection.

Structural Design and Disaster-resistant Construction
39 Qs

Paper coverage

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

Architecture and Planning (AR) 2018
1 Qs
Architecture and Planning (AR) 2013
3 Qs
Architecture and Planning (AR) 2011
6 Qs
Architecture and Planning (AR) 2010
8 Qs
Architecture and Planning (AR) 2009
6 Qs
Architecture and Planning (AR) 2008
4 Qs
Architecture and Planning (AR) 2007
11 Qs

Included previous year papers

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

PaperYear / sessionQuestions in this viewOpen
Architecture and Planning (AR) 201820181View paper
Architecture and Planning (AR) 201320133View paper
Architecture and Planning (AR) 201120116View paper
Architecture and Planning (AR) 201020108View paper
Architecture and Planning (AR) 200920096View paper
Architecture and Planning (AR) 200820084View paper
Architecture and Planning (AR) 2007200711View paper

All Structural Design and Disaster-resistant Construction previous year questions

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

1
2007 · Architecture and Planning · Building Construction, Materials, and Structural Systems · Structural Design and Disaster-resistant Construction
Architecture and Planning (AR) 2007

The degree of freedom of a joint in a plane truss is

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2
2007 · Architecture and Planning · Building Construction, Materials, and Structural Systems · Structural Design and Disaster-resistant Construction
Architecture and Planning (AR) 2007

The point of contraflexure is the point where the

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3
2007 · Architecture and Planning · Building Construction, Materials, and Structural Systems · Structural Design and Disaster-resistant Construction
Architecture and Planning (AR) 2007

When wind loads are accounted for in the design of structures, the permissible stresses in the material are increased by

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4
2007 · Architecture and Planning · Building Construction, Materials, and Structural Systems · Structural Design and Disaster-resistant Construction
Architecture and Planning (AR) 2007
A dislocation of continuity in rock strata as a result of cracking of the earth’s crust is called
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5
2007 · Architecture and Planning · Building Construction, Materials, and Structural Systems · Structural Design and Disaster-resistant Construction
Architecture and Planning (AR) 2007

In a plane truss, the equation in terms of m and j is used to check its determinacy and stability, where m = number of members and j = number of joints. The truss is deficient and unstable when

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6
2007 · Architecture and Planning · Building Construction, Materials, and Structural Systems · Structural Design and Disaster-resistant Construction
Architecture and Planning (AR) 2007

On a door opening with effective span L, the total weight (W) of an equilateral triangle on the base L is considered as a uniformly distributed load over the span. The bending moment for the door opening is given by

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7
2007 · Architecture and Planning · Building Construction, Materials, and Structural Systems · Structural Design and Disaster-resistant Construction
Architecture and Planning (AR) 2007
A beam of 50 mm diameter is simply supported at both ends and has an effective span of 6 metres. It carries two loads of 50 kN each at one-third span. The section modulus (in cm³) of the beam at the quarter span is
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8
2007 · Architecture and Planning · Building Construction, Materials, and Structural Systems · Structural Design and Disaster-resistant Construction
Architecture and Planning (AR) 2007
Match the Earthquake related terms in Group I with their definitions in Group II.

Group I
P. Focus
Q. Epicentre
R. Centre of Mass
S. Centre of Stiffness

Group II
1. The geographical point on the earth' surface vertically above the originating source
2. The originating source of the seismic waves inside the earth
3. The point corresponding to the centre of gravity of a structural system
4. The point through which the resultant of the restoring forces of a structural system act
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9
2007 · Architecture and Planning · Building Construction, Materials, and Structural Systems · Structural Design and Disaster-resistant Construction
Architecture and Planning (AR) 2007

The slenderness ratio for a cantilever prismatic column of length L with a circular cross section having radius r is

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10
2007 · Architecture and Planning · Building Construction, Materials, and Structural Systems · Structural Design and Disaster-resistant Construction
Architecture and Planning (AR) 2007
The maximum values of shear force and bending moment in the beam are
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11
2007 · Architecture and Planning · Building Construction, Materials, and Structural Systems · Structural Design and Disaster-resistant Construction
Architecture and Planning (AR) 2007
The maximum values of bending stress and shear stress developed in the beam in N/mm² are
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12
2008 · Architecture and Planning · Building Construction, Materials, and Structural Systems · Structural Design and Disaster-resistant Construction
Architecture and Planning (AR) 2008

Identify the FALSE statement.

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13
2008 · Architecture and Planning · Building Construction, Materials, and Structural Systems · Structural Design and Disaster-resistant Construction
Architecture and Planning (AR) 2008
Select the valid combination of shear force and bending moment diagrams for the loading shown below.

Question diagram

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14
2008 · Architecture and Planning · Building Construction, Materials, and Structural Systems · Structural Design and Disaster-resistant Construction
Architecture and Planning (AR) 2008

Shells and Space Frames are examples of

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15
2008 · Architecture and Planning · Building Construction, Materials, and Structural Systems · Structural Design and Disaster-resistant Construction
Architecture and Planning (AR) 2008
Which of the following statements is valid for a saddle surfaced shell structure?
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16
2009 · Architecture and Planning · Building Construction, Materials, and Structural Systems · Structural Design and Disaster-resistant Construction
Architecture and Planning (AR) 2009

A simply supported beam of length L carries a concentrated load of intensity P at its centre. The bending moment at the centre of the beam will be

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17
2009 · Architecture and Planning · Building Construction, Materials, and Structural Systems · Structural Design and Disaster-resistant Construction
Architecture and Planning (AR) 2009

As per IS:456-2000, the maximum area of tension reinforcement in a RCC beam shall not exceed x% of its cross-sectional area, where x is equal to

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18
2009 · Architecture and Planning · Building Construction, Materials, and Structural Systems · Structural Design and Disaster-resistant Construction
Architecture and Planning (AR) 2009

Allowable stress in the design of a tension member in a steel truss is a function of

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19
2009 · Architecture and Planning · Building Construction, Materials, and Structural Systems · Structural Design and Disaster-resistant Construction
Architecture and Planning (AR) 2009
Match the high-rise tube structural systems in Group I with their corresponding terms in Group II:
Group IGroup II
P1. Framed tube
Q2. Bundled tubes
R3. Braced tube
S4. Perforated shell tube

Question diagram

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20
2009 · Architecture and Planning · Building Construction, Materials, and Structural Systems · Structural Design and Disaster-resistant Construction
Architecture and Planning (AR) 2009
If self-weight of the beam is neglected, bending moment developed at the fixed end (in kN-m) is
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Showing 20 of 39 questions