Dual Nature of Matter and Radiation MCQ Questions & Answers in Modern Physics | Physics

Learn Dual Nature of Matter and Radiation MCQ questions & answers in Modern Physics are available for students perparing for IIT-JEE, NEET, Engineering and Medical Enternace exam.

51. When intensity of incident light increases

A photocurrent increases
B photocurrent decreases
C kinetic energy of emitted photoelectrons increases
D kinetic energy of emitted photoelectrons decreases
Answer :   photocurrent increases

52. The work functions of metals $$A$$ and $$B$$ are in the ratio $$1:2.$$  If light of frequencies $$f$$ and $$2f$$  are incident on the surfaces of $$A$$ and $$B$$ respectively, the ratio of the maximum kinetic energies of photoelectrons emitted is ($$f$$ is greater than threshold frequency of $$A,$$ $$2f$$  is greater than threshold frequency of $$B$$ )

A $$1:1$$
B $$1:2$$
C $$1:3$$
D $$1:4$$
Answer :   $$1:2$$

53. Light of two different frequencies whose photons have energies $$1\,eV$$  and $$2.5\,eV$$  respectively illuminate a metallic surface whose work function is $$0.5\,eV$$  successively. Ratio of maximum speeds of emitted electrons will be

A $$1:2$$
B $$1:1$$
C $$1:5$$
D $$1:4$$
Answer :   $$1:2$$

54. Light of wavelength $$5000\,\mathop {\text{A}}\limits^ \circ $$  falls on a sensitive plate with photoelectric work function of $$1.9\,eV.$$  The kinetic energy of the photoelectron emitted will be

A $$0.58\,eV$$
B $$2.48\,eV$$
C $$1.24\,eV$$
D $$1.16\,eV$$
Answer :   $$0.58\,eV$$

55. X-rays are produced in an X-ray tube operating at a given accelerating voltage. The wavelength of the continuous X-rays has values from

A $$0$$ to $$\infty $$
B $${\lambda _{\min }}$$  to $$\infty $$  where $${\lambda _{\min }} > 0$$
C $$0$$ to $${\lambda _{\max }}$$  where $${\lambda _{\max }} < \infty $$
D $${\lambda _{\min }}$$  to $${\lambda _{\max }}$$  where $$0 < {\lambda _{\min }} < {\lambda _{\max }} < \infty $$
Answer :   $${\lambda _{\min }}$$  to $$\infty $$  where $${\lambda _{\min }} > 0$$

56. Number of ejected photoelectron increases with increase

A in intensity of light
B in wavelength of light
C in frequency of light
D Never
Answer :   in intensity of light

57. When a metallic surface is illuminated with radiation of wavelength $$\lambda ,$$ the stopping potential is $$V.$$ If the same surface is illuminated with radiation of wavelength $$2\lambda ,$$ the stopping potential is $$\frac{V}{4}.$$ The threshold wavelength for the metallic surface is :

A $$4\lambda $$
B $$5\lambda $$
C $$\frac{5}{2}\lambda $$
D $$3\lambda $$
Answer :   $$3\lambda $$

58. Photoelectric emission is observed from a metallic surface for frequencies $${v_1}$$ and $${v_2}$$ of the incident light rays $$\left( {{v_1} > {v_2}} \right).$$   If the maximum values of kinetic energy of the photoelectrons emitted in the two cases are in the ratio of $$1 : k,$$  then the threshold frequency of the metallic surface is

A $$\frac{{{v_1} - {v_2}}}{{k - 1}}$$
B $$\frac{{k{v_1} - {v_2}}}{{k - 1}}$$
C $$\frac{{k{v_2} - {v_1}}}{{k - 1}}$$
D $$\frac{{{v_2} - {v_1}}}{k}$$
Answer :   $$\frac{{k{v_1} - {v_2}}}{{k - 1}}$$

59. Momentum of a photon of wavelength $$\lambda $$ is

A $$\frac{h}{\lambda }$$
B zero
C $$\frac{{h\lambda }}{{{c^2}}}$$
D $$\frac{{h\lambda }}{c}$$
Answer :   $$\frac{h}{\lambda }$$

60. A photoelectric surface is illuminated successively by monochromatic light of wavelengths $$\lambda $$ and $$\frac{\lambda }{2}.$$ If the maximum kinetic energy of the emitted photoelectrons in the second case is 3 times that in the first case, the work function of the surface is :

A $$\frac{{hc}}{{2\lambda }}$$
B $$\frac{{hc}}{{\lambda }}$$
C $$\frac{{hc}}{{3\lambda }}$$
D $$\frac{{3hc}}{{\lambda }}$$
Answer :   $$\frac{{hc}}{{2\lambda }}$$