
Assertion -The atomic mass of potassium is $39$ .
Reason – An atom of potassium is $39$ times heavier than $\dfrac{1}{{12}}$ th of the mass of carbon atom $({C^{12}})$ .
Read the above assertion and reason and choose the correct option regarding it.
A . Both Assertion and Reason are correct and Reason is the correct explanation for Assertion.
B . Both Assertion and Reason are correct but Reason is not the correct explanation for Assertion.
C . Assertion is correct but Reason is incorrect.
D . Assertion is incorrect but Reason is correct.
Answer
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Hint : We know that the atomic mass of potassium is $39$,we can verify this from a periodic table. The sum of protons and neutrons is equal to atomic mass. In potassium atoms, there are $19$ protons (atomic number) and $20$neutrons so the atomic weight of potassium is the sum of the number of protons and neutrons equals $39$.
Complete answer:
> Atomic mass of any is expressed in amu (atomic mass unit),which is equal to $\dfrac{1}{{12}}$ th of the mass of carbon atom $({C^{12}})$ equal to $1.6605 \times {10^{ - 24}}$ g. Atomic mass of potassium is $39$ times heavier than $\dfrac{1}{{12}}$ th of the mass of carbon-12. One an amu is $\dfrac{1}{{12}}$ of the mass of on carbon -12 atom then it is equal to $\dfrac{1}{{{N_A}}}$; where ${N_A}$ is Avogadro’s number so $\dfrac{1}{{{N_A}}} = \dfrac{1}{{6.022 \times {{10}^{23}}}}$$ = 1.66 \times {10^{ - 24}}$ g.
Additional information : Atomic mass unit is defined as $\dfrac{1}{{12}}$ of the mass of an unbounded neutral carbon-12 in its ground state at rest. Dalton or unified atomic mass unit is a unit of mass, represented by $Da$ and $u$ respectively. This unit is used to express mass of atoms, molecules and elementary particles. Hydrogen has a relative mass of one amu equal to $1.66 \times {10^{ - 27}}$ kilograms.
Carbon-12 is a solid which used to be chemically stable and safe to use and handle. Hence both assertion and reason are correct and reason is the correct explanation for assertion so option A is correct .
Note : We have approached this problem with the help of the concept of amu and we also remember the atomic mass of potassium as it is a very useful element of the periodic table. In assertion reason problems we should firstly check the assertion and reason statement then try to find out the explanation of the problem.
Complete answer:
> Atomic mass of any is expressed in amu (atomic mass unit),which is equal to $\dfrac{1}{{12}}$ th of the mass of carbon atom $({C^{12}})$ equal to $1.6605 \times {10^{ - 24}}$ g. Atomic mass of potassium is $39$ times heavier than $\dfrac{1}{{12}}$ th of the mass of carbon-12. One an amu is $\dfrac{1}{{12}}$ of the mass of on carbon -12 atom then it is equal to $\dfrac{1}{{{N_A}}}$; where ${N_A}$ is Avogadro’s number so $\dfrac{1}{{{N_A}}} = \dfrac{1}{{6.022 \times {{10}^{23}}}}$$ = 1.66 \times {10^{ - 24}}$ g.
Additional information : Atomic mass unit is defined as $\dfrac{1}{{12}}$ of the mass of an unbounded neutral carbon-12 in its ground state at rest. Dalton or unified atomic mass unit is a unit of mass, represented by $Da$ and $u$ respectively. This unit is used to express mass of atoms, molecules and elementary particles. Hydrogen has a relative mass of one amu equal to $1.66 \times {10^{ - 27}}$ kilograms.
Carbon-12 is a solid which used to be chemically stable and safe to use and handle. Hence both assertion and reason are correct and reason is the correct explanation for assertion so option A is correct .
Note : We have approached this problem with the help of the concept of amu and we also remember the atomic mass of potassium as it is a very useful element of the periodic table. In assertion reason problems we should firstly check the assertion and reason statement then try to find out the explanation of the problem.
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