Mass Energy and Nuclear Binding Energy
NEET Test Series from KOTA - 10 Papers In MS WORD WhatsApp Here
PHXII13:NUCLEI

363697 The parameter used to measure the stability of the nucleus is

1 Average binding energy
2 No of protons
3 No of neutrons
4 No of electrons
PHXII13:NUCLEI

363698 Consider the nuclear reaction:
\(X^{200} \rightarrow A^{110}+B^{90}+\) Energy
The binding energy per nucleon for \({X^{200}},{A^{100}},{B^{90}}\) are respectively \(7.4\,MeV,8.2\,MeV\) and \(8.2\,MeV\). The energy released is

1 \(200\,MeV\)
2 \(160\,MeV\)
3 \(110\,MeV\)
4 \(90\,MeV\)
PHXII13:NUCLEI

363699 Assertion :
If a heavy nucleus is split into two medium sized parts, each of the nuclei will have more binding energy per nucleon than the original nucleis.
Reason :
Joining two light nuclei together to gives a single nucleus of medium size means more binding energy per nucleon than the two nuclei.

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

363700 Following process is known as \(h \nu \longrightarrow e^{+}+e^{-} \quad\)

1 pair production
2 photoelectric effect
3 Compton effect
4 Zeeman effect
PHXII13:NUCLEI

363697 The parameter used to measure the stability of the nucleus is

1 Average binding energy
2 No of protons
3 No of neutrons
4 No of electrons
PHXII13:NUCLEI

363698 Consider the nuclear reaction:
\(X^{200} \rightarrow A^{110}+B^{90}+\) Energy
The binding energy per nucleon for \({X^{200}},{A^{100}},{B^{90}}\) are respectively \(7.4\,MeV,8.2\,MeV\) and \(8.2\,MeV\). The energy released is

1 \(200\,MeV\)
2 \(160\,MeV\)
3 \(110\,MeV\)
4 \(90\,MeV\)
PHXII13:NUCLEI

363699 Assertion :
If a heavy nucleus is split into two medium sized parts, each of the nuclei will have more binding energy per nucleon than the original nucleis.
Reason :
Joining two light nuclei together to gives a single nucleus of medium size means more binding energy per nucleon than the two nuclei.

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

363700 Following process is known as \(h \nu \longrightarrow e^{+}+e^{-} \quad\)

1 pair production
2 photoelectric effect
3 Compton effect
4 Zeeman effect
PHXII13:NUCLEI

363697 The parameter used to measure the stability of the nucleus is

1 Average binding energy
2 No of protons
3 No of neutrons
4 No of electrons
PHXII13:NUCLEI

363698 Consider the nuclear reaction:
\(X^{200} \rightarrow A^{110}+B^{90}+\) Energy
The binding energy per nucleon for \({X^{200}},{A^{100}},{B^{90}}\) are respectively \(7.4\,MeV,8.2\,MeV\) and \(8.2\,MeV\). The energy released is

1 \(200\,MeV\)
2 \(160\,MeV\)
3 \(110\,MeV\)
4 \(90\,MeV\)
PHXII13:NUCLEI

363699 Assertion :
If a heavy nucleus is split into two medium sized parts, each of the nuclei will have more binding energy per nucleon than the original nucleis.
Reason :
Joining two light nuclei together to gives a single nucleus of medium size means more binding energy per nucleon than the two nuclei.

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

363700 Following process is known as \(h \nu \longrightarrow e^{+}+e^{-} \quad\)

1 pair production
2 photoelectric effect
3 Compton effect
4 Zeeman effect
NEET Test Series from KOTA - 10 Papers In MS WORD WhatsApp Here
PHXII13:NUCLEI

363697 The parameter used to measure the stability of the nucleus is

1 Average binding energy
2 No of protons
3 No of neutrons
4 No of electrons
PHXII13:NUCLEI

363698 Consider the nuclear reaction:
\(X^{200} \rightarrow A^{110}+B^{90}+\) Energy
The binding energy per nucleon for \({X^{200}},{A^{100}},{B^{90}}\) are respectively \(7.4\,MeV,8.2\,MeV\) and \(8.2\,MeV\). The energy released is

1 \(200\,MeV\)
2 \(160\,MeV\)
3 \(110\,MeV\)
4 \(90\,MeV\)
PHXII13:NUCLEI

363699 Assertion :
If a heavy nucleus is split into two medium sized parts, each of the nuclei will have more binding energy per nucleon than the original nucleis.
Reason :
Joining two light nuclei together to gives a single nucleus of medium size means more binding energy per nucleon than the two nuclei.

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

363700 Following process is known as \(h \nu \longrightarrow e^{+}+e^{-} \quad\)

1 pair production
2 photoelectric effect
3 Compton effect
4 Zeeman effect