Explore topic-wise MCQs in Electrical Engineering.

This section includes 1232 Mcqs, each offering curated multiple-choice questions to sharpen your Electrical Engineering knowledge and support exam preparation. Choose a topic below to get started.

1151.

Silver has crystal structure

A. simple cubic
B. body centred
C. face centred
D. hexagonal close packed
Answer» D. hexagonal close packed
1152.

Tungsten has crystal structure

A. simple cubic
B. body centred
C. face centred
D. hexagonal close packed
Answer» C. face centred
1153.

α - Fe has crystal structure

A. simple cubic
B. body centred
C. face centred
D. hexagonal close packed
Answer» C. face centred
1154.

Molybdenum has crystal structure

A. simple cubic
B. body centred
C. face centred
D. hexagonal close packed
Answer» C. face centred
1155.

Copper has crystal structure

A. simple cubic
B. body centred
C. face centred
D. hexagonal close packed
Answer» D. hexagonal close packed
1156.

Zinc has crystal structure

A. simple cubic
B. body centred
C. face centred
D. hexagonal close packed
Answer» E.
1157.

Magnesium has crystal structure

A. simple cubic
B. body centred
C. face centred
D. hexagonal close packed
Answer» E.
1158.

Aluminum has crystal structure

A. simple cubic
B. body centred
C. face centred
D. hexagonal close packed
Answer» D. hexagonal close packed
1159.

Chromium has crystal structure

A. simple cubic
B. body centred
C. face centred
D. hexagonal close packed
Answer» C. face centred
1160.

the examples of hexagonal close packed crystal structure are

A. cr, mo. fe, ta, w
B. al, cu, ag, au, ni
C. mg, cd, zn, co, be
D. none of the above
Answer» B. al, cu, ag, au, ni
1161.

the examples of face centred cubic structure are

A. cr, mo. fe, ta, w
B. al, cu, ag, au, ni
C. mg, cd, zn, co, be
D. none of the above
Answer» D. none of the above
1162.

the examples of body centred cubic structure are

A. cr, mo. fe, ta, w
B. al, cu, ag, au, ni
C. mg, cd, zn, co, be
D. none of the above
Answer» B. al, cu, ag, au, ni
1163.

the examples of simple cubic crystal structure are

A. cr, mo. fe, ta, w
B. al, cu, ag, au, ni
C. mg, cd, zn, co, be
D. none of the above
Answer» E.
1164.

the average packing factor for hexagonal close packed crystal structure is given as

A. 0.52
B. 0.68
C. 0.74
D. 0.85
Answer» D. 0.85
1165.

in a crystal structure, the average number of atoms per unit cell is 6

A. simple cubic
B. body centred
C. face centred
D. hexagonal close packed
Answer» E.
1166.

the coordination number for a hexagonal close packed crystal structure is given as

A. 6
B. 8
C. 12
D. 14
Answer» D. 14
1167.

in a hexagonal close packed crystal structure, there is number of center atoms

A. 1
B. 4
C. 8
D. 3
Answer» E.
1168.

in a hexagonal close packed crystal structure, the average number of atoms per unit cell is

A. 1
B. 2
C. 4
D. 6
Answer» E.
1169.

in a hexagonal close packed crystal structure, there is number of corner atoms

A. 1
B. 4
C. 8
D. 12
Answer» E.
1170.

the coordination number for a face centred crystal structure is given by

A. 6
B. 8
C. 12
D. 14
Answer» D. 14
1171.

in a hexagonal close packed crystal structure, there is number of

A. 2
B. 4
C. 8
D. 6
Answer» B. 4
1172.

the average packing factor for face centred crystal structure is given as

A. 0.52
B. 0.68
C. 0.74
D. 0.85
Answer» D. 0.85
1173.

in a face centred crystal structure, the relationship between lattice constant and radius of atom is given by

A. r=√3a/4
B. a=√3r/4
C. a=r/2√2
D. r=a/2√2
Answer» E.
1174.

in a crystal structure, the average number of atoms per unit cell is 4

A. simple cubic
B. body centred
C. face centred
D. hexagonal close packed
Answer» D. hexagonal close packed
1175.

in a face centred crystal structure there is                     number of corner atoms

A. 1
B. 4
C. 8
Answer» D.
1176.

in a face centred crystal structure, the average number of atoms per unit cell is

A. 1
B. 2
C. 4
D. 6
Answer» D. 6
1177.

in a face centred crystal structure there is                     number of face atoms

A. 0
B. 4
C. 8
D. 6
Answer» E.
1178.

the coordination number for simple body structure is given as

A. 6
B. 8
C. 12
D. 14
Answer» C. 12
1179.

the average packing factor for body centred crystal structure is given as

A. 0.52
B. 0.68
C. 0.74
D. 0.85
Answer» C. 0.74
1180.

in body centred crystal structure, the relationship between lattice constant and radius of atom is given by

A. a=r/2
B. r=a/2
C. r=√3a/4
D. a=√3r/4
Answer» D. a=√3r/4
1181.

in a crystal structure, the average number of atoms per unit cell is 2

A. simple cubic
B. body centred
C. face centred
D. hexagonal closed pack
Answer» C. face centred
1182.

in body centred crystal structure, the average number of atoms per unit cell is

A. 1
B. 2
C. 4
D. 6
Answer» C. 4
1183.

in body centred crystal structure, there is                 number of center atoms

A. 1
B. 4
C. 8
Answer» B. 4
1184.

in body centred crystal structure, there is               number of corner atoms

A. 1
B. 4
C. 8
Answer» D.
1185.

in simple cubic crystal structure, the relationsheep between lattice constant and radius of atom is given by

A. a=r/2
B. r=a/2
C. r=√3a/4
D. r=√3r/4
Answer» C. r=√3a/4
1186.

the average packing factor for simple cubic crystal is given as

A. 0.52
B. 0.68
C. 0.74
D. 0.85
Answer» B. 0.68
1187.

the coordination number for simple cubic structure is given as

A. 6
B. 8
C. 12
D. 14
Answer» B. 8
1188.

in simple cubic crystal structure, the average number of atoms per unit cell is

A. 1
B. 2
C. 4
D. 6
Answer» B. 2
1189.

in simple cubic crystal structure there are number of face atom

A. 1
B. 4
C. 8
D. none of the above
Answer» E.
1190.

in a cubic crystal structure, the average number of atoms per unit cell is 1

A. simple cubic
B. body centred
C. face centred
D. hexagonal close packed
Answer» B. body centred
1191.

in simple cubic crystal structure there are number of corner atoms

A. 1
B. 4
C. 8
Answer» D.
1192.

APN is defined as

A. ratio of volume occupied by atoms in unit cell to volume of unit cell
B. ratio of volume of unit cell to volume occupied by atoms in unit cell
C. ratio of volume of unit cell to volume of crystal structure
D. none of the above
Answer» B. ratio of volume of unit cell to volume occupied by atoms in unit cell
1193.

is defined as fraction of volume occupied by atoms in unit cell

A. ligancy number
B. average number of atoms per unit cell
C. atomic packing factor
D. none of the above
Answer» D. none of the above
1194.

a higher value of APN number indicates

A. bigger size of materials
B. higher density of materials
C. higher value of averagge niumber of atoms per unit cell
D. both b and c
Answer» E.
1195.

a higher value of coordination number indicates

A. bigger size of materials
B. higher density of materials
C. lower density of materials
D. none of the above
Answer» C. lower density of materials
1196.

                     is defined as number of atoms adjacent to and touching a central atoms under consideration

A. co- ordination number
B. average number of atoms per unit cell
C. atomic packing factor
D. none of the above
Answer» B. average number of atoms per unit cell
1197.

co-ordination number is also referred to as

A. ligancy number
B. average number of atoms per unit cell
C. atomic packing factor
D. none of the above
Answer» B. average number of atoms per unit cell
1198.

A higher value of average number of atoms per unit cell indicates

A. bigger size of materials
B. higher density of materials
C. lower density of materials
D. none of the above
Answer» C. lower density of materials
1199.

in cubic crystal structure, the                        located atom is shared by 8 adjacent unit cells

A. center
B. face
C. corner
D. none of the above
Answer» D. none of the above
1200.

in face centered cubic crystal structure the face atom is shared by adjacent unit cells

A. 1
B. 2
C. 4
D. 8
Answer» C. 4