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GATE 2018 Materials Science (XE-C) Question Paper with Answer

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Page 1

GATE 2018 Materials Science (XE-C)

XE (C): Q. 1 – Q. 9 carry one mark each & Q. 10 – Q. 22 carry two marks each.

Q.1 The stress ratio for a completely reversed cyclic loading during a fatigue test is

(A) 0 (B) 1 (C) 1 (D) 1/2

Q.2 Minimum symmetry that a cubic crystal must possess is

(A) four 3-fold rotation axes.
(B) three 4-fold rotation axes.
(C) three orthogonal mirror planes.
(D) centre of symmetry.

Q.3 If a material is repelled in an external magnetic field then it is

(A) Ferromagnetic (B) Diamagnetic
(C) Paramagnetic (D) Antiferromagnetic

Q.4 An electron makes a transition from the valence band to the conduction band in an indirect
band gap semiconductor. Which one of the following is true?

(A) Energy of the electron decreases.
(B) A photon is emitted in the process.
(C) A phonon is annihilated in the process.
(D) A photon is created in the process.

Q.5 Which one of the following is the characteristic of a screw dislocation?

(A) Dislocation line and Burgers vector are parallel.
(B) Direction of motion of dislocation is parallel to the Burgers vector.
(C) Atomic displacement due to the movement of the dislocation is in the direction of the
motion of the dislocation line.
(D) It has a unique slip plane.

Q.6 The number of vibrational degrees of freedom for a non-linear triatomic molecule are

(A) 9 (B) 6 (C) 4 (D) 3

XE-C 1/4

Page 2

GATE 2018 Materials Science (XE-C)

Q.7 An atom is restricted to move in one dimension by making unit jumps either to the left or
right, as shown in the figure. Assuming that a jump to the left or right is equally probable,
the probability of the atom returning back to the starting point after four jumps is

(A) 0.250 (B) 0.333 (C) 0.375 (D) 0.500

Q.8 For a two-dimensional solid, the variation of lattice specific heat as a function of
temperature T (in K, at low temperatures) is given as: 𝐶𝑝 = 𝑏𝑇 𝑛 , where b is a constant. The
value of n is ____________.

Q.9 𝑟
If the cation (C) to anion (A) radius ratio, 𝐶⁄𝑟𝐴 is 0.6, then the coordination number (i.e.,
number of A ions surrounding a C ion) is likely to be ____________.

Q.10 Match the invariant reactions in Column I with the names in Column II (L is liquid phase,
and , β, γ are solid phases). All reactions proceed to the right on cooling.

Column I Column II

(P) 𝐿 ⇄ 𝛼 + 𝛽 (1) Monotectic
(Q) 𝐿 + 𝛼 ⇄ 𝛽 (2) Peritectoid
(R) 𝛾 ⇄ 𝛼 + 𝛽 (3) Peritectic
(S) 𝛼 + 𝛽 ⇄ 𝛾 (4) Eutectoid
(5) Eutectic

(A) P-5, Q-1, R-4, S-3 (B) P-5, Q-3, R-4, S-2
(C) P-5, Q-1, R-2, S-4 (D) P-2, Q-1, R-4, S-5

Q.11 Consider the following anodic (oxidation) reaction in an acidic solution:

𝑀𝑔 ⟶ 𝑀𝑔+2 + 2𝑒 −

If 48250 Coulomb charge is produced during this anodic reaction then the amount of Mg
(in g) dissolved into the solution is
(Given: Faraday Constant =96500 C/mole of electrons, Atomic weight of Mg = 24)

(A) 6 (B) 12 (C) 24 (D) 48

XE-C 2/4

Page 3

GATE 2018 Materials Science (XE-C)

Q.12 An intrinsic semiconductor has conduction electron concentration, n = 1012 cm3. The
mobility of both electrons and holes are identical = 4  104 cm2 V1 s1. If a voltage of
100 V is applied on two parallel end faces of the cube (edge length 1 cm) through Ohmic
contacts, the current through the cube would be (in mA)
(Given: charge of electron = 1.6  1019 C)

(A) 640 (B) 1280 (C) 6400 (D) 12800

Q.13 An infinite plate with a through-thickness crack of length 2 mm is
subjected to a tensile stress (as shown in the figure). Assuming the plate
to be linear elastic, the fracture stress is ____________ MPa (round off
to the nearest whole number)

(Given: Fracture toughness, 𝐾𝐼𝐶 = 25 𝑀𝑃𝑎 √𝑚)

Q.14 A unidirectionally aligned carbon fibre reinforced epoxy composite
is loaded as shown in the figure. The volume fraction of the fibre
is 0.6. The Young’s modulus of the composite is ____________ GPa.

(Given: Young’s Modulus of the fibre and the matrix are 200 GPa
and 10 GPa, respectively)

Q.15 A sintered sample was weighed in air and water using an analytical balance. The mass of
the sample in air is 2.67 g and its apparent mass in water is 1.67 g. The density of the
sample is __________ g cm3 (give answer up to 2 decimal places)

(Given: Density of water = 1.00 g cm3)

Q.16 The atoms in a gas laser have two energy levels such that a transition from the higher to the
lower level releases a photon of wavelength 500 nm. If 7  1020 atoms are pumped into the
upper level with 4  1020 atoms in the lower level, the amount of energy released in a single
pulse is ____________ Joules (give answer up to 2 decimal places)

(Given: Planck’s constant, h = 6.6  1034 J s; speed of light, c = 3  108 m s1)

Q.17 The speed of an electron is measured to be 300 m s1 with an uncertainty of 0.01%. The
fundamental accuracy with which the position of the electron can be determined
simultaneously with the speed in the same experiment is _________ mm (give answer up
to 2 decimal places)

(Given: Planck’s constant, h = 6.6  1034 J s; mass of electron = 9.1  1031 kg)

XE-C 3/4

Page 4

GATE 2018 Materials Science (XE-C)

Q.18 When 3 identical non-interacting spin ½ particles are put in an infinite potential well, the
ground state energy of the system is 18 meV. If instead, seven particles are put inside the
potential well, the new ground state energy is ________ meV.

Q.19 If the value of the integral (I) is 4, the value of the constant b is ___________ (give answer
up to 2 decimal places).

−𝑥 2
𝐼 = ∫ 𝑒 𝑏 𝑑𝑥
−∞

Q.20 X-ray diffraction pattern is obtained from FCC polycrystalline aluminium (lattice
parameter = 0.405 nm) using Cr-K radiation of wavelength 0.229 nm. The maximum
number of peaks that can be observed in the pattern is ____________.

Q.21 The planar atomic density in the (110) plane of a BCC iron crystal is ____________ nm2
(give answer up to 2 decimal places)

(Given: lattice parameter of iron is 0.287 nm)

Q.22 Mild steel is carburized at 1300 K for 1 hour to obtain a certain case depth. Keeping the
time as 1 hour, the case depth can be doubled by increasing the temperature to
______________K (round off to the nearest whole number)

(Given: Activation energy Q = 148 kJ mol1, Gas constant, R = 8.314 J mol1 K1)

END OF THE QUESTION PAPER

XE-C 4/4

Page 5

Q.No. Type Section Key/Range Marks

1 MCQ GA A 1

2 MCQ GA C 1

3 MCQ GA B 1

4 MCQ GA B 1

5 MCQ GA B 1

6 MCQ GA A 2

7 MCQ GA D 2

8 MCQ GA D 2

9 MCQ GA B 2

10 MCQ GA C 2

1 MCQ XE‐A D 1

2 MCQ XE‐A A 1

3 NAT XE‐A 0.01 to 0.01 1

4 NAT XE‐A 5 to 5 1

5 NAT XE‐A 0.29 to 0.32 1

6 NAT XE‐A 250 to 250 1

7 NAT XE‐A 108 to 108 1

8 MCQ XE‐A B 2

9 MCQ XE‐A C 2

10 NAT XE‐A 3 to 3 2

11 NAT XE‐A 0.04 to 0.04 2

1 MCQ XE‐B B 1

2 MCQ XE‐B A 1

Page 6

Q.No. Type Section Key/Range Marks

3 MCQ XE‐B D 1

4 MCQ XE‐B A 1

5 MCQ XE‐B C 1

6 MCQ XE‐B B 1

7 MCQ XE‐B A 1

8 NAT XE‐B 4 to 4 1

9 NAT XE‐B 39 to 42 1

10 MCQ XE‐B B 2

11 MCQ XE‐B C 2

12 MCQ XE‐B C 2

13 MCQ XE‐B A 2

14 NAT XE‐B 900 to 990 2

15 NAT XE‐B 40 to 42 2

16 NAT XE‐B 2.9 to 3.1 2

17 NAT XE‐B 107 to 127 2

18 NAT XE‐B 440000 to 442000 2

19 NAT XE‐B 0.001 to 0.002 2

20 NAT XE‐B 30 to 45 2

21 NAT XE‐B 4800 to 4800 2

22 NAT XE‐B 1200 to 1350 2

1 MCQ XE‐C C 1

2 MCQ XE‐C A 1

3 MCQ XE‐C B 1

Page 7

Q.No. Type Section Key/Range Marks

4 MCQ XE‐C C 1

5 MCQ XE‐C A 1

6 MCQ XE‐C D 1

7 MCQ XE‐C C 1

8 NAT XE‐C 2 to 2 1

9 NAT XE‐C 6 to 6 1

10 MCQ XE‐C B 2

11 MCQ XE‐C A 2

12 MCQ XE‐C B 2

13 NAT XE‐C 430 to 500 2

14 NAT XE‐C 124 to 124 2

15 NAT XE‐C 2.60 to 2.70 2

16 NAT XE‐C 59.00 to 60.00 2

17 NAT XE‐C 1.85 to 2.00 2

18 NAT XE‐C 132 to 132 2

19 NAT XE‐C 5.01 to 5.17 2

20 NAT XE‐C 5 to 5 2

21 NAT XE‐C 15.5 to 18.5 2

22 NAT XE‐C 1420 to 1480 2

1 MCQ XE‐D D 1

2 MCQ XE‐D A 1

3 MCQ XE‐D D 1

4 MCQ XE‐D B 1

Page 8

Q.No. Type Section Key/Range Marks

5 MCQ XE‐D B 1

6 NAT XE‐D 52.50 to 53.50 1

7 NAT XE‐D 27.00 to 28.00 1

8 NAT XE‐D 80 to 80 1

9 NAT XE‐D 220.00 to 222.00 1

10 MCQ XE‐D B 2

11 MCQ XE‐D B 2

12 MCQ XE‐D D 2

13 MCQ XE‐D C 2

14 MCQ XE‐D C 2

15 MCQ XE‐D A 2

16 MCQ XE‐D D 2

17 NAT XE‐D 195.00 to 197.00 2

18 NAT XE‐D 0.01 to 0.02 2

19 NAT XE‐D 14.5 to 15.5 2

20 NAT XE‐D 26.00 to 27.00 2

21 NAT XE‐D 3.10 to 3.20 2

22 NAT XE‐D 13.5 to 14.5 2

1 MCQ XE‐E B 1

2 MCQ XE‐E A 1

3 MCQ XE‐E C 1

4 MCQ XE‐E A 1

5 MCQ XE‐E C 1

Page 9

Q.No. Type Section Key/Range Marks

6 MCQ XE‐E D 1

7 NAT XE‐E 160.0 to 161.0 1

8 NAT XE‐E 14.5 to 15.0 1

9 NAT XE‐E 0.30 to 0.32 1

10 MCQ XE‐E C 2

11 MCQ XE‐E C 2

12 MCQ XE‐E D 2

13 MCQ XE‐E B 2

14 MCQ XE‐E A 2

15 MCQ XE‐E D 2

16 NAT XE‐E 332.5 to 336.5 2

17 NAT XE‐E 3.01 to 3.07 2

18 NAT XE‐E 838.0 to 844.0 2

19 NAT XE‐E 961.0 to 962.0 2

20 NAT XE‐E 5.7 to 6.1 2

21 NAT XE‐E 12950.0 to 13000.0 2

22 NAT XE‐E 513.0 to 517.0 2

1 MCQ XE‐F C 1

2 MCQ XE‐F A 1

3 MCQ XE‐F D 1

4 MCQ XE‐F B 1

5 MCQ XE‐F D 1

6 MCQ XE‐F B 1

Page 10

Q.No. Type Section Key/Range Marks

7 MCQ XE‐F A 1

8 NAT XE‐F 1500.00 to 1500.00 1

9 NAT XE‐F 48.52 to 48.72 1

10 MCQ XE‐F D 2

11 MCQ XE‐F A 2

12 MCQ XE‐F B 2

13 MCQ XE‐F D 2

14 MCQ XE‐F B 2

15 MCQ XE‐F D 2

16 MCQ XE‐F C 2

17 MCQ XE‐F C 2

18 NAT XE‐F ‐25.00 to ‐24.50 2

19 NAT XE‐F 98.80 to 99.10 2

20 NAT XE‐F 0.90 to 0.93 2

21 NAT XE‐F 17.91 to 18.00 2

22 NAT XE‐F 2600 to 2600 2

1 MCQ XE‐G B 1

2 MCQ XE‐G A 1

3 MCQ XE‐G C 1

4 MCQ XE‐G D 1

5 MCQ XE‐G D 1

6 NAT XE‐G 1.55 to 1.65 1

7 NAT XE‐G 103.0 to 103.2 1

Page 11

Q.No. Type Section Key/Range Marks

8 NAT XE‐G 54 to 56 1

9 NAT XE‐G 0 to 0 1

10 MCQ XE‐G B 2

11 MCQ XE‐G C 2

12 MCQ XE‐G C 2

13 MCQ XE‐G A 2

14 MCQ XE‐G D 2

15 MCQ XE‐G A 2

16 MCQ XE‐G C 2

17 MCQ XE‐G B 2

18 NAT XE‐G 9.8 to 10.2 2

19 NAT XE‐G 1.1 to 1.8 2

20 NAT XE‐G 14.5 to 15.5 2

21 NAT XE‐G 6.0 to 6.4 2

22 NAT XE‐G 10 to 10 2

1 MCQ XE‐H B 1

2 MCQ XE‐H C 1

3 MCQ XE‐H A 1

4 MCQ XE‐H B 1

5 MCQ XE‐H B 1

6 MCQ XE‐H C 1

7 MCQ XE‐H D 1

8 MCQ XE‐H D 1

Page 12

Q.No. Type Section Key/Range Marks

9 MCQ XE‐H B 1

10 MCQ XE‐H A 2

11 MCQ XE‐H B 2

12 MCQ XE‐H A 2

13 MCQ XE‐H B 2

14 NAT XE‐H 1254 to 1256 2

15 NAT XE‐H 19.42 to 19.44 2

16 NAT XE‐H 734.8 to 735.0 2

17 NAT XE‐H 9.16 to 9.18 2

18 NAT XE‐H 12.8 to 13.2 2

19 NAT XE‐H 92.4 to 92.8 2

20 NAT XE‐H 1.3 to 1.4 2

21 NAT XE‐H 0.11 to 0.12 2

22 NAT XE‐H 9.99 to 10.01 2

Document Details

Board / OrgIIT
ExamGATE
TypeQuestion Paper
Pages12
Updated30 Apr 2026