Electrical and magnetic properties of solids - class-XI
electrical and magnetic properties of solids
Questions
Doping of $As$ with $Si$ is called :
- n-type semi-condutor
- p-type semi-conductor
- intrinsic semi-conductor
- None of the above
An n-type semi-conductor is formed when a trace amount of impurity is added to silicon. The number of valence electrons in the impurity atom must be:
- $3$
- $5$
- $1$
- $2$
Which of the following statements is correct about the conduction of electricity in pure crystal of silicon at room temperature?
- The conduction is due to electrons present in fully occupied lowest energy states.
- The conduction is due to only some electrons capable of leaving the bonds at room temperature.
- The conduction is only due to the holes formed from the release of electrons.
- The conduction is due to the movement of both the electrons released and holes formed.
p type semi conductor is formed when trace amount of impurity is added to silicon. The number of valence electrons in the impurity atom must be:
- $3$
- $5$
- $1$
- $2$
Solar cell is constructed by connecting the semi conductors of_____________
- n-type and n-tupe
- n-type and p-type
- p-type and p-type
- n-type and n-pn-type
A semiconductor obtained by doping silicon with elements of group 13 and group is respectively is
- P - type
- n - type
- p type, n type
- n type, p type.
Which of the following acts as a superconductor at $4K$?
- $He$
- $Cu$
- $K$
- $Mg$
Addition of arsenic in small amount to pure germanium will result in the formation of
- n-type semiconductor
- germanium arsenide
- p-type semiconductor
- a superconducting alloy
To get n-type doped semiconductor, impurity to be added to silicon should have number of valence electrons equal to:
- $1$
- $2$
- $3$
- $5$
A solid with high electrical and thermal conductivity is:
- $Si$
- $Li$
- $NaCl$
- $Ice$
If we mix a pentavalent impurity in a crystal lattice of germanium, what type of semiconductor formation will occur?
- p-type
- n-type
- Both A and B
- None of the the above
A semiconductor of Ge can be made p-type by adding which impurity?
- trivalent impurity
- tetravalent impurity
- pentavalent impurity
- hexavalent impurity
- Both Assertion and Reason are true and Reason is the correct explanation of Assertion
- Both Assertion and Reason are true but Reason is not the correct explanation of Assertion
- Assertion is true but Reason is false.
- Assertion is false but Reason is true
Which of the following statement is correct?
- Silicon doped with Boron is a n-type semi conductor.
- Silicon doped with Arsenic is a p-type semiconductor.
- Semiconductors are good conductors of electricity.
- Electrical conductivity of semiconductors increases with increasing temperature.
Assertion: Group-$15$ doped crystals of silicon are called an n-type semiconductor.
Reason: Neutrons are responsible for the semiconducting properties.
- Both Assertion and Reason are true and Reason is the correct explanation of Assertion
- Both Assertion and Reason are true but Reason is not the correct explanation of Assertion
- The Assertion is true but Reason is false
- The Assertion is false but Reason is true
- True
- False
Frenkel defect is observed in:
- $MgCl _2$
- $AgCl$
- $ZnS$
- $AgI$
- Both Assertion and Reason are correct and Reason is the correct explanation of Assertion
- Both Assertion and Reason are correct but Reason is not the correct explanation of Assertion
- Assertion is correct but Reason is incorrect
- Assertion is incorrect but Reason is correct
- Both Assertion and Reason are incorrect
The electrical resistivity of a semiconductor:
- increases with temperature
- decreases with temperature
- increases at low temperature and then decreases
- does not change with temperature
Which of the following, when doped into ultrapure germanium, will convert it into a p-type semiconductor?
- $C$
- $As$
- $In$
- $Na$
Mercury becomes superconducting at _________.
- 0 K
- 4 K
- 40 K
- 273 K
Superconductivity may be defined as a phenomenon in which metals, alloys and chemical compounds become perfect conductors with zero resistivity at temperatures approaching __________.
- room temperature
- zero temperature
- absolute zero
- all of these
For most metals, the transition temperature lies between _________.
- 2 and 5 K
- 20 and 50 K
- 200 and 250 K
- Above 273K
Which of the following represent(s) true statement(s)?
- The electrical resistance of metal does not depends upon temperature.
- Electrical resistance increases with decrease in temperature.
- The electrical resistance becomes almost zero near the absolute temperature.
- All of the above
The temperature at which a substance starts behaving as super-conductor is called _________.
- normal temperature
- transition temperature
- regular temperature
- all of these
superconductors are _________.
- paramagnetic
- diamgnetic
- both a and b
- none of these
The highest temperature at which superconductivity has been observed for alloys of niobium $(Nb _3Ge)$ is ________.
- 4 K
- 10 K
- 23 K
- 47 K
In a n-type semiconductor, which of the following statements is true?
- Electrons are majority carriers and trivalent atoms are dopants.
- Electrons are minority carriers and pentavalent atoms are dopants.
- Holes are minority carriers and pentavalent atoms are dopants.
- Holes are majority carriers and trivalent atoms are dopants.
$Tl _2Ca _2Ba _2Cu _3O _{10}$ possess superconductivity at ___________.
- 90 K
- 105 K
- 125 K
- 155 K
Superconductors have applications in __________.
- electronics
- building magnets
- aviation
- power transmission
With which one of the following elements silicon should be doped so as to give p-type of semiconductor?
- Selenium
- Boron
- Germanium
- Arsenic
Which of the following statement is true about semiconductors?
- Impurity of lower group creates $n-$type semiconductors
- Impurity of higher group creates $p-$type semiconductors
- extrinsic semiconductors are formed by doping impurity
- Intrinsic semiconductors become conductors when temperature is raised
Which of the following is true about the charge acquired by $p-$type semiconductors?
- Positive
- Neutral
- Negative
- Depends on concentration of $p$ impurity
Which of the following oxides behaves as conductor or insulator depending upon temperature?
- $TiO$
- $SiO _2$
- $TiO _3$
- $MgO$
To get a $n-$type semiconductor from silicon, it should be doped with a substance with valence _______.
- 2
- 1
- 3
- 5
Statement-I The conductance through electrons is called n-type conduction and if through positive semi holes it is called p-type conduction.
Statement-II Doping involves the preparation of semiconductor by the addition of impurities in the intrinsic semiconductor.
- Statement-I is correct but Statement-II is wrong
- Statement-I is wrong but Statement-II is correct
- Both Statement-I and Statement-II are correct and Statement-II is correct explanation of Statement-I
- Both Statement-I and Statement-II are correct but Statement-II is not correct explanation of Statement-I
Select the correct statement(s).
- The conductance through electrons is called p-type conduction.
- The conductance through positive holes is called p-type conduction.
- The conductance through electrons is called n-type conduction.
- The band gap in germanium is small.
Assertion:
Reason:
- Both Assertion and Reason are correct and Reason is the correct explanation of Assertion
- Both Assertion and Reason are correct but Reason is not the correct explanation of Assertion
- Assertion is correct but Reason is incorrect
- Assertion is incorrect but Reason is correct
- Both Assertion and Reason are incorrect
Assertion: Group-$13$ doped crystals of Si are called p-type semiconductors.
Reason: Positive holes are responsible for the semiconducting properties.
- Both Assertion and Reason are correct and Reason is the correct explanation of Assertion
- Both Assertion and Reason are correct but Reason is not the correct explanation of Assertion
- Assertion is correct but Reason is not correct
- Assertion is not correct but Reason is correct
- Both Assertion and Reason are incorrect
Select the correct statement(s).
- The non-stoichiometric form of $NaCl$ is yellow and that of $KCl$ is blue-lilac.
- Solids containing F-centers (Farbe) are paramagnetic.
- Non-stoichiometric compounds are called Berthollide compounds.
- Conduction by electrons is called n-type semiconductors.
Very fast conduction of electricity by matter is called superconductivity. This happens when the matter is:
- dissolved in acids
- cooled to very low temperatures
- heated to high temperatures
- treated with radiation
The newly discovered high-temperature superconductors are:
- ceramic oxides
- pure rare-earth metals
- metal alloys
- inorganic polymers
Germanium is an example of:
- intrinsic semiconductor
- n-type semiconductor
- p-type semiconductor
- insulator