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Exam Details

Aerospace Engineering (AE) 2010

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Questions 65
Duration 180 mins
Package Aerospace Engineering (AE) - Previous Year Papers

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Subject distribution

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Topic distribution

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Subtopic distribution

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Difficulty distribution

Easy 65 100%

Question type distribution

Multiple Choices 65 100%

Instructions

Aerospace Engineering (AE) 2010 – Instructions
  • Total number of questions: 65
  • 30 questions carry one mark each
  • 35 questions carry two marks each
  • Negative marking: 1/3 of the marks allotted to the question
  • Use of calculator is allowed
  • This is a proctored examination
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Syllabus

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Sample questions from this paper

Questions are selected across the paper subjects wherever the paper contains that variety.

1
2010 · Unclassified
Aerospace Engineering (AE) 2010
Q.1 – Q.25 carry one mark each.

Isentropic efficiency η0 of a subsonic diffuser is defined as (Note: 'a' represents the ambient, '2' represents the exit of the diffuser and 's' represents an isentropic process)

A
(T₂₀ - Tₐ)/(Tₛ - Tₐ)
B
(T₂₀ + Tₐ)/(Tₛ + Tₐ)
C
(P₂ - Pₐ)/(Pₛ - Pₐ)
D
(P₂ - Pₛ)/(Pₐ - P₀)
2
2010 · Unclassified
Aerospace Engineering (AE) 2010

Two position vectors are indicated by V̅1 = [x1 y1] and V̅2 = [x2 y2]. If a2 + b2 = 1, then the operation V̅'2 = [a -b b a] V̅2 amounts to obtaining the position vector V̅'2 from V̅1 by

A
translation
B
rotation
C
magnification
D
combination of translation, rotation, and magnification
3
2010 · Unclassified
Aerospace Engineering (AE) 2010

An aircraft is climbing at a constant speed in a straight line at a steep angle of climb. The load factor it sustains during the climb is:

A
equal to 1.0
B
greater than 1.0
C
positive but less than 1.0
D
dependant on the weight of the aircraft
4
2010 · Unclassified
Aerospace Engineering (AE) 2010

In a general case of a homogeneous material under thermo-mechanical loading the number of distinct components of the state of stress is

A
3
B
4
C
5
D
6
5
2010 · Unclassified
Aerospace Engineering (AE) 2010

The linear second order partial differential equation ∂2φ/∂x2 + ∂2φ/∂xy + ∂2φ/∂y2 + 9φ = 0 is

A
Parabolic
B
Hyperbolic
C
Elliptic
D
None of the above
6
2010 · Unclassified
Aerospace Engineering (AE) 2010

All other factors remaining constant, if the weight of an aircraft increases by 30% then the takeoff distance increases by approximately:

A
15%
B
30%
C
70%
D
105%