Radioactivity
PHXII13:NUCLEI

363918 Assertion :
The ionising power of \(\beta\) -particle is less compared to \(\alpha\) -particles but their penetrating power is more.
Reason :
The mass of \(\beta\) -particle is less than the mass of \(\alpha\) -particle.

1 Both Assertion and Reason are correct and Reason is the correct explanation of the Assertion.
2 Both Assertion and Reason are correct but Reason is not the correct explanation of the Assertion.
3 Assertion is correct but Reason is incorrect.
4 Assertion is incorrect but reason is correct.
PHXII13:NUCLEI

363919 A nucleus \({ }_{Z}^{A} X\) emits an \(\alpha\)-particle. The resultant nucleus emits a \(\beta^{+}\)-particle. The respective atomic and mass number of final nucleus will be

1 \(Z - 3,A - 4\)
2 \(Z-1, A-4\)
3 \(Z-2, A-4\)
4 \(Z, A-2\)
PHXII13:NUCLEI

363920 When a neutron disintegrates to give a \({\beta ^ - }\) particle,

1 A neutrino alone is emitted
2 A proton and neutrino are emitted
3 A proton alone is emitted
4 A proton and an antineutrino are emitted
PHXII13:NUCLEI

363921 Assertion :
Radioactive nuclei emits \(\beta\) particles.
Reason :
Electron exist inside the nucleus.

1 Both Assertion and Reason are correct and Reason is the correct explanation of the Assertion.
2 Both Assertion and Reason are correct but Reason is not the correct explanation of the Assertion.
3 Assertion is correct but Reason is incorrect.
4 Assertion is incorrect but reason is correct.
PHXII13:NUCLEI

363922 On the bombardment of neutron with boron,
\({\alpha}\)-particle is emitted. The product nuclei formed is

1 \({{ }_{4}^{9} {Be}}\)
2 \({{ }_{6}^{12} {C}}\)
3 \({{ }_{3}^{6} {Li}}\)
4 \({{ }_{3}^{7} {Li}}\)
PHXII13:NUCLEI

363918 Assertion :
The ionising power of \(\beta\) -particle is less compared to \(\alpha\) -particles but their penetrating power is more.
Reason :
The mass of \(\beta\) -particle is less than the mass of \(\alpha\) -particle.

1 Both Assertion and Reason are correct and Reason is the correct explanation of the Assertion.
2 Both Assertion and Reason are correct but Reason is not the correct explanation of the Assertion.
3 Assertion is correct but Reason is incorrect.
4 Assertion is incorrect but reason is correct.
PHXII13:NUCLEI

363919 A nucleus \({ }_{Z}^{A} X\) emits an \(\alpha\)-particle. The resultant nucleus emits a \(\beta^{+}\)-particle. The respective atomic and mass number of final nucleus will be

1 \(Z - 3,A - 4\)
2 \(Z-1, A-4\)
3 \(Z-2, A-4\)
4 \(Z, A-2\)
PHXII13:NUCLEI

363920 When a neutron disintegrates to give a \({\beta ^ - }\) particle,

1 A neutrino alone is emitted
2 A proton and neutrino are emitted
3 A proton alone is emitted
4 A proton and an antineutrino are emitted
PHXII13:NUCLEI

363921 Assertion :
Radioactive nuclei emits \(\beta\) particles.
Reason :
Electron exist inside the nucleus.

1 Both Assertion and Reason are correct and Reason is the correct explanation of the Assertion.
2 Both Assertion and Reason are correct but Reason is not the correct explanation of the Assertion.
3 Assertion is correct but Reason is incorrect.
4 Assertion is incorrect but reason is correct.
PHXII13:NUCLEI

363922 On the bombardment of neutron with boron,
\({\alpha}\)-particle is emitted. The product nuclei formed is

1 \({{ }_{4}^{9} {Be}}\)
2 \({{ }_{6}^{12} {C}}\)
3 \({{ }_{3}^{6} {Li}}\)
4 \({{ }_{3}^{7} {Li}}\)
NEET Test Series from KOTA - 10 Papers In MS WORD WhatsApp Here
PHXII13:NUCLEI

363918 Assertion :
The ionising power of \(\beta\) -particle is less compared to \(\alpha\) -particles but their penetrating power is more.
Reason :
The mass of \(\beta\) -particle is less than the mass of \(\alpha\) -particle.

1 Both Assertion and Reason are correct and Reason is the correct explanation of the Assertion.
2 Both Assertion and Reason are correct but Reason is not the correct explanation of the Assertion.
3 Assertion is correct but Reason is incorrect.
4 Assertion is incorrect but reason is correct.
PHXII13:NUCLEI

363919 A nucleus \({ }_{Z}^{A} X\) emits an \(\alpha\)-particle. The resultant nucleus emits a \(\beta^{+}\)-particle. The respective atomic and mass number of final nucleus will be

1 \(Z - 3,A - 4\)
2 \(Z-1, A-4\)
3 \(Z-2, A-4\)
4 \(Z, A-2\)
PHXII13:NUCLEI

363920 When a neutron disintegrates to give a \({\beta ^ - }\) particle,

1 A neutrino alone is emitted
2 A proton and neutrino are emitted
3 A proton alone is emitted
4 A proton and an antineutrino are emitted
PHXII13:NUCLEI

363921 Assertion :
Radioactive nuclei emits \(\beta\) particles.
Reason :
Electron exist inside the nucleus.

1 Both Assertion and Reason are correct and Reason is the correct explanation of the Assertion.
2 Both Assertion and Reason are correct but Reason is not the correct explanation of the Assertion.
3 Assertion is correct but Reason is incorrect.
4 Assertion is incorrect but reason is correct.
PHXII13:NUCLEI

363922 On the bombardment of neutron with boron,
\({\alpha}\)-particle is emitted. The product nuclei formed is

1 \({{ }_{4}^{9} {Be}}\)
2 \({{ }_{6}^{12} {C}}\)
3 \({{ }_{3}^{6} {Li}}\)
4 \({{ }_{3}^{7} {Li}}\)
PHXII13:NUCLEI

363918 Assertion :
The ionising power of \(\beta\) -particle is less compared to \(\alpha\) -particles but their penetrating power is more.
Reason :
The mass of \(\beta\) -particle is less than the mass of \(\alpha\) -particle.

1 Both Assertion and Reason are correct and Reason is the correct explanation of the Assertion.
2 Both Assertion and Reason are correct but Reason is not the correct explanation of the Assertion.
3 Assertion is correct but Reason is incorrect.
4 Assertion is incorrect but reason is correct.
PHXII13:NUCLEI

363919 A nucleus \({ }_{Z}^{A} X\) emits an \(\alpha\)-particle. The resultant nucleus emits a \(\beta^{+}\)-particle. The respective atomic and mass number of final nucleus will be

1 \(Z - 3,A - 4\)
2 \(Z-1, A-4\)
3 \(Z-2, A-4\)
4 \(Z, A-2\)
PHXII13:NUCLEI

363920 When a neutron disintegrates to give a \({\beta ^ - }\) particle,

1 A neutrino alone is emitted
2 A proton and neutrino are emitted
3 A proton alone is emitted
4 A proton and an antineutrino are emitted
PHXII13:NUCLEI

363921 Assertion :
Radioactive nuclei emits \(\beta\) particles.
Reason :
Electron exist inside the nucleus.

1 Both Assertion and Reason are correct and Reason is the correct explanation of the Assertion.
2 Both Assertion and Reason are correct but Reason is not the correct explanation of the Assertion.
3 Assertion is correct but Reason is incorrect.
4 Assertion is incorrect but reason is correct.
PHXII13:NUCLEI

363922 On the bombardment of neutron with boron,
\({\alpha}\)-particle is emitted. The product nuclei formed is

1 \({{ }_{4}^{9} {Be}}\)
2 \({{ }_{6}^{12} {C}}\)
3 \({{ }_{3}^{6} {Li}}\)
4 \({{ }_{3}^{7} {Li}}\)
PHXII13:NUCLEI

363918 Assertion :
The ionising power of \(\beta\) -particle is less compared to \(\alpha\) -particles but their penetrating power is more.
Reason :
The mass of \(\beta\) -particle is less than the mass of \(\alpha\) -particle.

1 Both Assertion and Reason are correct and Reason is the correct explanation of the Assertion.
2 Both Assertion and Reason are correct but Reason is not the correct explanation of the Assertion.
3 Assertion is correct but Reason is incorrect.
4 Assertion is incorrect but reason is correct.
PHXII13:NUCLEI

363919 A nucleus \({ }_{Z}^{A} X\) emits an \(\alpha\)-particle. The resultant nucleus emits a \(\beta^{+}\)-particle. The respective atomic and mass number of final nucleus will be

1 \(Z - 3,A - 4\)
2 \(Z-1, A-4\)
3 \(Z-2, A-4\)
4 \(Z, A-2\)
PHXII13:NUCLEI

363920 When a neutron disintegrates to give a \({\beta ^ - }\) particle,

1 A neutrino alone is emitted
2 A proton and neutrino are emitted
3 A proton alone is emitted
4 A proton and an antineutrino are emitted
PHXII13:NUCLEI

363921 Assertion :
Radioactive nuclei emits \(\beta\) particles.
Reason :
Electron exist inside the nucleus.

1 Both Assertion and Reason are correct and Reason is the correct explanation of the Assertion.
2 Both Assertion and Reason are correct but Reason is not the correct explanation of the Assertion.
3 Assertion is correct but Reason is incorrect.
4 Assertion is incorrect but reason is correct.
PHXII13:NUCLEI

363922 On the bombardment of neutron with boron,
\({\alpha}\)-particle is emitted. The product nuclei formed is

1 \({{ }_{4}^{9} {Be}}\)
2 \({{ }_{6}^{12} {C}}\)
3 \({{ }_{3}^{6} {Li}}\)
4 \({{ }_{3}^{7} {Li}}\)