Physics And Measurement MCQs With Answers – Part 1 (NEET Physics)
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Physics and Measurement MCQs With Answers – Part 1 (NEET Physics)

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11. A material has density \(7.5\,\text{mg mm}^{-3}\). Student A claims that its numerical density in \(\text{g cm}^{-3}\) is also \(7.5\), whereas Student B claims that it is \(7.5\times10^3\). A sample of the material has volume \(4.0\,\text{cm}^3\). Which option gives the correct student and the corresponding mass of the sample?
ⓐ. Student A; \(30\,\text{g}\)
ⓑ. Student A; \(3.0\,\text{g}\)
ⓒ. Student B; \(30\,\text{g}\)
ⓓ. Student B; \(3.0\times10^4\,\text{g}\)
12. A quantity is defined by \[ X=\left(\frac{F}{A}\right)(Avt), \] where \(F\) is force, \(A\) is area, \(v\) is speed and \(t\) is time. If \(F=6\,\text{N}\), \(v=4\,\text{m s}^{-1}\) and \(t=2\,\text{s}\), which option gives the correct SI unit and numerical value of \(X\)?
ⓐ. watt; \(12\)
ⓑ. pascal; \(48\)
ⓒ. joule; \(12\)
ⓓ. joule; \(48\)
13. In a new system of units, the unit of mass is \(0.20\,\text{kg}\), the unit of length is \(5.0\,\text{m}\), and the unit of time is \(2.0\,\text{s}\). Using \(F=ma\) and \(E=F\ell\), what is the numerical measure of \(250\,\text{J}\) of energy in this system?
ⓐ. \(20\)
ⓑ. \(50\)
ⓒ. \(125\)
ⓓ. \(200\)
14. An unfamiliar quantity \(Y\) is defined by \[ Y=\frac{F}{\rho A}, \] where \(F\) is force, \(\rho\) is density and \(A\) is area. If its numerical value is \(3.6\) when expressed in its SI base-unit form, which option gives both the correct SI unit and its numerical value when the length unit is changed from metre to centimetre while second remains unchanged?
ⓐ. \(\text{m s}^{-2}\); \(3.6\times10^2\)
ⓑ. \(\text{m}^2\text{s}^{-1}\); \(3.6\times10^4\)
ⓒ. \(\text{m}^2\text{s}^{-2}\); \(3.6\times10^4\)
ⓓ. \(\text{m}^2\text{s}^{-2}\); \(3.6\times10^{-4}\)
15. A quantity is defined by \[ Z=\frac{It}{n}, \] where \(I\) is electric current, \(t\) is time and \(n\) is amount of substance. For \(I=2.0\,\text{A}\), \(t=3.0\,\text{s}\) and \(n=0.50\,\text{mol}\), which statement is correct?
ⓐ. \(Z=12\,\text{A mol}^{-1}\), and its unit is a base SI unit.
ⓑ. \(Z=3.0\,\text{C mol}^{-1}\), and its unit is a base SI unit.
ⓒ. \(Z=12\,\text{mol C}^{-1}\), and its unit is derived.
ⓓ. \(Z=12\,\text{C mol}^{-1}\), and its unit is derived.
16. A quantity \(P\) is defined by \[ P=\frac{F\ell}{t}. \] In an MKS-based measurement its numerical value is \(6\), with \(F\) expressed in newton, \(\ell\) in metre and \(t\) in second. Another observer expresses the same quantity in CGS units. Use \(1\,\text{N}=10^5\,\text{dyn}\) and \(1\,\text{m}=10^2\,\text{cm}\). Which pair gives the CGS numerical measure and the special SI name of the unit of \(P\), respectively?
ⓐ. \(6\times10^7\); watt
ⓑ. \(6\times10^{-7}\); joule
ⓒ. \(6\times10^5\); pascal
ⓓ. \(6\times10^2\); watt
17. A derived quantity \(X\) is defined by \[ X=\frac{Ft}{A}, \] where \(F\) is force, \(t\) is time and \(A\) is area. Its numerical value is \(2.4\times10^4\) when expressed in the CGS base-unit form \(\text{g cm}^{-1}\text{s}^{-1}\). Which option gives its numerical value and an equivalent SI unit?
ⓐ. \(2.4\times10^5\,\text{Pa s}\)
ⓑ. \(2.4\times10^3\,\text{Pa s}\)
ⓒ. \(2.4\times10^{-3}\,\text{Pa s}\)
ⓓ. \(2.4\times10^4\,\text{Pa s}\)
18. Consider the following statements about SI quantities and units. Statement I: Amount of substance is an SI base quantity and mole is its base unit. Statement II: Luminous intensity is an SI base quantity and candela is its base unit. Statement III: Electric charge is an SI base quantity and coulomb is its base unit. Statement IV: Thermodynamic temperature is an SI base quantity and kelvin is its base unit. Which combination is correct?
ⓐ. Statements I and II only
ⓑ. Statements II and III only
ⓒ. Statements I, III and IV only
ⓓ. Statements I, II and IV only
19. Assertion: A standard unit should be reproducible in different laboratories rather than depend on an arbitrary local object available to only one observer. Reason: SI units are internationally standardized, and modern SI definitions are connected with fixed physical constants and reproducible standards.
ⓐ. Both Assertion and Reason are true, and Reason is the correct explanation of Assertion.
ⓑ. Both Assertion and Reason are true, but Reason is not the correct explanation of Assertion.
ⓒ. Assertion is true, but Reason is false.
ⓓ. Assertion is false, but Reason is true.
20. A quantity \(R\) is defined as \[ R=\frac{E}{At}, \] where \(E\) is energy, \(A\) is area and \(t\) is time. Initially \(R=0.060\,\text{W cm}^{-2}\). If \(E\) and \(t\) remain unchanged while the area is doubled, what is the new value of \(R\) in \(\text{kW m}^{-2}\)?
ⓐ. \(0.12\,\text{kW m}^{-2}\)
ⓑ. \(0.60\,\text{kW m}^{-2}\)
ⓒ. \(0.30\,\text{kW m}^{-2}\)
ⓓ. \(3.0\,\text{kW m}^{-2}\)
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