Which of the following arrangements shows the schematic alignment of magnetic moments of antiferromagnetic substances? 

1.      

2.      

3.      

4.      

Subtopic:  Magnetic Behaviour of an Element/Compound |
 78%
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Graphite is a good conductor of electricity due to the presence of ......... .

(1) Lone pair of electrons.

(2) Free valence electrons.

(3) Cations.

(4) Anions.

 

Subtopic:  Magnetic Behaviour of an Element/Compound |
 88%
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Which of the following oxides shows electrical properties like metals?

1.  SiO2

2.  MgO

3.  SO2 (s)

4.  CrO2

 

Subtopic:  Magnetic Behaviour of an Element/Compound |
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The incorrect statement among the following is:

1. Paramagnetic substances are weakly attracted by magnetic field.
2. Ferromagnetic substances cannot be magnetised permanently.
3. The domains in antiferromagnetic substances are oppositely oriented with respect to each other.
4. Pairing of electrons cancels their magnetic moment in the diamagnetic substances.

Subtopic:  Magnetic Behaviour of an Element/Compound |
 77%
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A ferromagnetic substance becomes a permanent magnet when it is placed in a magnetic field because:

1. All the domains get oriented in the direction of the magnetic field.
2. All the domains get oriented in the direction opposite to the direction of the magnetic field.
3. Domains get oriented randomly.
4. Domains are not affected by the magnetic field.

Subtopic:  Magnetic Behaviour of an Element/Compound |
 80%
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The value of the magnetic moment is zero in the case of antiferromagnetic substances because the domains -

I. Get oriented in the direction of the applied magnetic field
II. Get oriented opposite to the direction of the applied magnetic field
III. Are oppositely oriented with respect to each other without the application of magnetic field
IV. Cancel out each other’s magnetic moment

The correct choice among the given is -

1. (I, II)

2. (II, III)

3. (III, IV)

4. (I, IV)

Subtopic:  Magnetic Behaviour of an Element/Compound |
 74%
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Consider the following statements about semiconductors.

I. Silicon doped with electron-rich impurity is a p-type semiconductor.
II. Silicon doped with an electron-rich impurity is an n-type semiconductor.
III. Delocalised electrons increase the conductivity of doped silicon.
IV. An electron vacancy increases the conductivity of n-type semiconductor.
The correct statements about semiconductors are: 

1. I and II

2. II and III

3. III and IV

4. I and IV

Subtopic:  Magnetic Behaviour of an Element/Compound |
 85%
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