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The MCQs below are drawn from the Physics subject category.
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2071
Cosmic rays mostly comprise of
A. ions
B. positively charged particles
C. negatively charged particles
D. neutral particles
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Explanation
Primary cosmic rays are mostly high-energy protons (positively charged particles), so option C is correct.
2072
The carbon dating is a
A. process to treat diseases in plants
B. process to determine the age of archaeological and geological specimen by measuring the concentration of radioactive isotopes
C. medicine for cancer treatment
D. process to treat diseases in animals
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Explanation
Carbon dating uses radioactive isotopes (like C-14) to determine ages of archaeological and geological samples.
2073
The maximum energy of emitted photoelectron is measured by
A. the speed with they emerge
B. the current they produce
C. the potential difference they produce
D. the largest potential difference they can traverse
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Explanation
Stopping potential (largest opposing potential difference) measures the maximum kinetic energy of emitted photoelectrons.
2074
The energy band gap is maximum in
A. semiconductors
B. metals
C. superconductors
D. insulators
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Explanation
Insulators have the largest band gaps compared to semiconductors and metals (metals have overlapping bands).
2075
Nuclear force as compared to electrostatic force is
A. stronger and longer-range
B. weaker and long-range
C. stronger and short-range
D. weaker and short-range
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Explanation
The nuclear (strong) force is much stronger than electrostatic force but acts only over very short ranges, so 'stronger and short-range' is correct.
2076
According to Moseley's law, the frequency of a spectral line in X-ray spectrum varies as
A. atomic number of the element
B. square of atomic number of the element
C. square root of atomic number of element
D. fourth power of the atomic number of the element
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Explanation
Moseley's law gives the X-ray frequency proportional to (Z − const)^2, i.e., roughly the square of the atomic number.
2077
Half life of radioactive element is 12.5 hours and its quantity is 256 gm. After how much time its quantity will remain 1 gm?
A. 100 hrs
B. 200 hrs
C. 150 hrs
D. 50 hrs
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Explanation
256→1 is 2^8 reduction, so 8 half-lives × 12.5 hrs = 100 hours.
2078
154. In Millikan's oil drop experiment a charged drop of mass 1.8 × 10^-14 kg is stationary between the plates. The distance between the plates is 0.9 cm and potential difference between the plates is 2000 volts. The number of electrons on the oil drop is
A. 20
B. 5
C. 50
D. 10
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Explanation
E = V/d = 2000/0.009 = 2.22×10^5 V/m, q = mg/E ≈ (1.8×10^-14×9.8)/2.22×10^5 ≈ 8×10^-19 C, so n ≈ 8×10^-19/1.6×10^-19 ≈ 5 electrons.
2079
The transformation of a neutron into proton in the nucleus gives rise to emission of:
A. Gamma particles
B. X-rays
C. Alpha particles
D. Beta particles
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Explanation
A neutron converting into a proton emits an electron (beta particle) and an antineutrino (beta minus decay).
2080
The Bohr model of atoms
A. predicts the same emission spectra for all types of atoms
B. uses Einstein's photo-electric equation
C. assumes that the angular momentum of all electrons is quantized
D. predicts continuous emission spectra for atoms
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Explanation
Bohr's model postulates quantized angular momentum for electrons in orbits.