Q.Explain the difference between isotopic and isobaric nuclei.
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🔒 Start your 14-day free trial to unlock the full solution →Concept understanding — Composition and Size of the Nucleus
A nucleus ZAX is made of Z protons and N=A−Z neutrons, together called nucleons; mass number A = total nucleons, atomic number Z = proton count (fixing the element). Scattering experiments show nuclear radius grows as R=R0A1/3, R0≈1.2 fm, so nuclear volume ∝A: every nucleon occupies roughly the same volume, packed together almost like drops of an incompressible nuclear liquid. Because both mass and volume sca …
A nucleus is labelled by its atomic number Z (protons) and its mass number A (protons plus neutrons), and the two terms are distinguished by which of these is held the same. …
Isotopes: same Z, different A. Isobars: same A, different Z.
Isotopes are nuclei of the same element — same number of protons (Z) but different numbers of neutrons, hence different mass numbers A. Example: 6C12 and 6C14.
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Showing the 12 most recent of 34 on this concept.
- CBSE 2026Set 55/3/11 markMCQQ.If r1 and r2 are the radii of atomic nuclei of mass numbers 64 and 27 respectively, then the value of r2r1 is : (A) 1 (B) 34 (C) 43 (D) 6427
›Reveal solutionSolution
Nuclear radius scales as the cube root of mass number: r∝A1/3. Taking the ratio gives r2r1=(2764)1/3=34.
The size of an atomic nucleus is not arbitrary. Experiments—particularly Rutherford scattering and later electron-scattering studies—revealed that nuclear radius follows a beautiful empirical law that connects it directly to how many nucleons (protons and neutrons) are packed inside.
The key insight is that nuclear matter has roughly constant density. Think of nucleons as incompressible spheres packed together: if you double the number of nucleons, you double the volume, not the radius. Since volume scales as r3, the radius must scale as the cube root of the number of nucleons.
r=r0A1/3
where A is the mass number (total nucleons) and r0≈1.2 fm is a constant.
Now let's find the ratio of the two nuclear radii.
- Write the radius for each nucleus For the nucleus with mass number A1=64:
r1=r0(64)1/3
For the nucleus with mass number A2=27:
r2=r0(27)1/3
- Form the ratio When we divide r1 by r2, the constant r0 cancels: …
- CBSE 2026Set V11 markMCQQ.An example for isobars is :(a) 12H and 13H(b) 12H and 24He(c) 80198Hg and 79197Au(d) 13H and 23He
›Reveal solutionSolution
Option (d) 13H and 23He. …
- CBSE 2026Set ANNUAL1 markMCQQ.If mass number of a nucleus is 'A', then its radius will be -(i) R=R0A1/3(ii) R=R0A4/3(iii) R=R0A3(iv) R=R0A2/3
›Reveal solutionSolution
Nuclear radius scales as the cube root of the mass number.
Experimentally the nuclear radius is found to be R=R0A1/3, where R0≈1.2×10−15 m is a constant, consistent with nuclear density …
- CBSE 2026Set A1 markMCQQ.Which of the following are known as nucleons? (A) Only protons (B) Protons and electrons (C) Protons and neutrons (D) Neutrons and electrons
›Reveal solutionSolution
Nucleons = protons + neutrons, the constituents of the nucleus.
The atomic nucleus is built from two kinds of particle: positively charged protons and electrically neutral neutrons. Together these are called nucleons. Electrons orbit the nuc …
- CBSE 2026Set ANNUAL1 markMCQQ.As compared to 12C atom, 14C atom has(a) two extra protons and two extra electrons(b) two extra protons but no extra electrons(c) two extra neutrons and no extra electrons(d) two extra neutrons and two extra electrons
›Reveal solutionSolution
Isotopes of the same element have the same number of protons and electrons but different numbers of neutrons.
Both 612C and 614C have atomic number Z=6, so both have 6 protons and (as neutral atoms) 6 electrons — these are identical between the two.
Mass number A= number of protons + neutrons.
For 12C: neutrons =12−6=6.
For 14C: neutrons =14−6=8. …
- CBSE 2026Set ANNUAL1 markMCQQ.The nucleus is approximately spherical in shape. Then the surface area of nucleus having mass number A varies as ____.(a) A^2/3(b) A^4/3(c) A^1/3(d) A^5/3
›Reveal solutionSolution
Nuclear radius scales as R=R0A1/3, so the surface area of a (roughly spherical) nucleus, being proportional to R2, scales as A2/3.
Experiments (electron and alpha-particle scattering) show the nuclear radius depends on mass number as
R=R0A1/3,R0≈1.2×10−15 m
This reflects the fact that nuclear density is roughly the same for all nuclei — nuclear volume, ∝R3, is proportional to A (the number of nucleons).
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- CBSE 2025Set ANNUAL1 markMCQQ.Which of the following statements is true-(a) Proton is a stable particle and neutron is unstable particle.(b) Proton is unstable particle and neutron is stable particle.(c) Proton and neutron both are stable particles.(d) Proton and neutron both are unstable particles.
›Reveal solutionSolution
A free proton is stable (or has an extremely long lifetime); a free neutron is unstable and decays with a mean life of about 15 minutes.
A free (isolated) proton does not spontaneously decay — its lifetime is, as far as experiments show, effectively infinite (it is stable, or at least stable on cosmological timescales far exceeding the age of the universe). A free neutron, on the other hand, is unstable: it undergoes beta decay,
n→p+e−+uˉe …
- CBSE 2025Set JS1 markQ.Differentiate between isotopes and isobars.
›Reveal solutionSolution
Isotopes = same Z, different A (same element). Isobars = same A, different Z (different elements).
Concept. A nucleus is specified by its atomic number Z (number of protons) and mass number A (protons + neutrons).
Feature Isotopes Isobars Atomic number Z same different Mass number A different same Number of neutrons different different Chemical element same element different elements Example 11H, 12H, 13H 1840Ar, 2040Ca … - CBSE 2025Set D1 markMCQQ.What is the main difference between isotopes of the same element? (A) Number of protons (B) Number of neutrons (C) Number of electrons (D) Atomic number
›Reveal solutionSolution
Isotopes differ only in neutron number; their proton number (and hence chemical identity) is the same.
Isotopes are nuclides of the same element. Being the same element means the same atomic number Z (same number of protons), and in a neutral atom the same number of electrons — so their chemistry is identical.
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- CBSE 2025Set ANNUAL1 markQ.____________ is credited with the discovery of the neutron.
›Reveal solutionSolution
The neutron was discovered by James Chadwick in 1932, confirming the existence of a neutral nuclear particle predicted earlier by Rutherford.
James Chadwick discovered the neutron in 1932 by bombarding beryllium with alpha particles and correctly interpreting the resulting neutral, penetrating radiation as a new particle of mass close to the proton's but with no charge …
- CBSE 2025Set ANNUAL1 markQ.How is the radius of the nucleus related to the mass number?
›Reveal solutionSolution
Experiments (electron/alpha scattering) show nuclear radius scales with mass number as R = R0 A^(1/3), consistent with nucleons packed at essentially constant density.
The empirical relation between nuclear radius R and mass number A is:
R = R0 A^(1/3)
where R0 is an approximately constant value, about 1.2 x 10^-15 m (1.2 fm), found from scattering experiments.
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- CBSE 2025Set ANNUAL1 markQ.All atoms except ................ contain neutron in their nuclei. (fill in the blank)
›Reveal solutionSolution
The lightest hydrogen isotope, protium, has a nucleus consisting of a single proton and no neutron — every other atom's nucleus contains at least one neutron.
A nucleus is characterised by mass number A=Z+N, where Z is the number of protons and N the number of neutrons. The ordinary hydrogen atom (11H, protium) has Z=1, A=1, so N=0 — its nucleus is a lone proton with no neutron at all. Every other element (starting from helium, Z=2) needs at least o …
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