{"id":18476,"date":"2021-02-11T10:06:13","date_gmt":"2021-02-11T04:36:13","guid":{"rendered":"https:\/\/ncertsolutions.guru\/?p=18476"},"modified":"2021-02-11T10:06:13","modified_gmt":"2021-02-11T04:36:13","slug":"mcq-questions-for-class-12-physics-chapter-2","status":"publish","type":"post","link":"https:\/\/ncertsolutions.guru\/mcq-questions-for-class-12-physics-chapter-2\/","title":{"rendered":"MCQ Questions for Class 12 Physics Chapter 2 Electrostatic Potential and Capacitance with Answers"},"content":{"rendered":"

Students are advised to practice the NCERT MCQ Questions for Class 12 Physics Chapter 2 Electrostatic Potential and Capacitance with Answers Pdf free download is available here. MCQ Questions for Class 12 Physics with Answers<\/a> are prepared as per the Latest Exam Pattern. Students can solve these Electrostatic Potential and Capacitance Class 12 MCQs Questions with Answers and assess their preparation level.<\/p>\n

Electrostatic Potential and Capacitance Class 12 MCQs Questions with Answers<\/h2>\n

Solving the Electrostatic Potential and Capacitance Multiple Choice Questions of Class 12 Physics Chapter 2 MCQ can be of extreme help as you will be aware of all the concepts. These MCQ Questions on Electrostatic Potential and Capacitance Class 12 with answers pave for a quick revision of the Chapter thereby helping you to enhance subject knowledge. Have a glance at the MCQ of Chapter 2 Physics Class 12 and cross-check your answers during preparation.<\/p>\n

Multiple Choice Questions<\/span><\/p>\n

Question 1.
\nA positively charged particle is released from rest in a uniform electric field. The electric potential energy of the charge
\n(a) remains a constant because the electric field is uniform.
\n(b) increases because the charge moves along the electric field.
\n(c) decreases because the charge moves along the electric field.
\n(d) decreases because the charge moves opposite to the electric field.<\/p>\n

\nAnswer<\/span><\/summary>\n

Answer: (c) decreases because the charge moves along the electric field.<\/p>\n<\/details>\n


\n

Question 2.
\nThe figure below shows some equipotential lines distributed in space. A charged object is moved from point A to point B.
\n\"MCQ
\n(a) The work done in figure (i) is the greatest.
\n(b) The work done in figure (ii) is least.
\n(c) The work done is the same in figure (i), figure (ii) and figure (iii).
\n(d) The work done in figure (iii) is greater than figure (ii) but equal to that in figure (i).<\/p>\n

\nAnswer<\/span><\/summary>\n

Answer: (c) The work done is the same in figure (i), figure (ii) and figure (iii).<\/p>\n<\/details>\n


\n

Question 3.
\nThe electrostatic potential on the surface of a charged conducting sphere is 100 V. Two statements are made in this regard:
\nS1<\/sub>: At any point inside the sphere, electric intensity is zero.
\nS2<\/sub>: At any point inside the sphere, the electrostatic potential is 100 V. Which of the following is a correct statement?
\n(a) S1<\/sub> is true but S2<\/sub> is false.
\n(b) Both S1<\/sub> and S2<\/sub> are false.
\n(c) S1<\/sub> is true, S2<\/sub> is also true and S1<\/sub> is the cause of S2<\/sub>.
\n(d) S1<\/sub> is true, S2<\/sub> is also true but the statements are independent.<\/p>\n

\nAnswer<\/span><\/summary>\n

Answer: (c) S1<\/sub> is true, S2<\/sub> is also true and S1<\/sub> is the cause of S2<\/sub>.<\/p>\n<\/details>\n


\n

Question 4.
\nA parallel plate capacitor is made of two dielectric blocks in series. One of the blocks has thickness d1<\/sub> and dielectric constant k1<\/sub> and the other has thickness d2<\/sub> and dielectric constant k2<\/sub> as shown in figure. This arrangement can be thought as a dielectric slab of thickness d (= d1<\/sub> + d2<\/sub>) and effective dielectric constant k. The k is
\n\"MCQ
\n(a) \\(\\frac { k_1d_1+k_2d_2 }{k_1+d_2}\\)
\n(b) \\(\\frac { k_1d_1+k_2d_2 }{k_1-d_2}\\)
\n(c) \\(\\frac { k_1d_2(d_2+d_2) }{(k_1d_1+k_2d_2)}\\)
\n(d) \\(\\frac { 2k_1k_2}{k_1+k_2}\\)<\/p>\n

\nAnswer<\/span><\/summary>\n

Answer: (c) \\(\\frac { k_1d_2(d_2+d_2) }{(k_1d_1+k_2d_2)}\\)<\/p>\n<\/details>\n


\n

Question 5.
\nConsider a uniform electric field in the z direction. The potential is not a constant
\n(a) in all space.
\n(b) for any x for a given z.
\n(c) for any y for a given z.
\n(d) on the x-y plane for a given z.<\/p>\n

\nAnswer<\/span><\/summary>\n

Answer: (a) in all space.<\/p>\n<\/details>\n


\n

Question 6.
\nFor equipotential surfaces, which statement is not correct?
\n(a) are closer in regions of large electric fields compared to regions of lower electric fields.
\n(b) will always be equally spaced.
\n(c) will be more crowded near sharp edges of a conductor.
\n(d) will be more crowded near regions of large charge densities.<\/p>\n

\nAnswer<\/span><\/summary>\n

Answer: (b) will always be equally spaced.<\/p>\n<\/details>\n


\n

Question 7.
\nIn a region of constant potential
\n(a) the electric field is uniform
\n(b) the electric field is zero
\n(c) there can be charge inside the region.
\n(d) the electric field shall necessarily change if a charge is placed outside the region.<\/p>\n

\nAnswer<\/span><\/summary>\n

Answer: (b) the electric field is zero<\/p>\n<\/details>\n


\n

Question 8.
\nIf a conductor has a potential V \u2260 0 and there are no charges anywhere else outside, then
\n(a) there must be charges on the surface or inside itself.
\n(b) there will be some charge in the body of the conductor.
\n(c) there must be charges only on the surface.
\n(d) there must be charges inside the surface.<\/p>\n

\nAnswer<\/span><\/summary>\n

Answer: (a) there must be charges on the surface or inside itself.<\/p>\n<\/details>\n


\n

Question 9.
\nIn an isolated parallel plate capacitor of capacitance C, the four surfaces have charges Q1<\/sub>, Q2<\/sub>, Q3<\/sub> and Q4<\/sub> as shown. The potential difference between the plates is
\n\"MCQ
\n(a) \\(\\frac { Q_1+Q_2+Q_3+Q_4}{2C}\\)
\n(b) \\(\\frac { Q_2+Q_3}{2C}\\)
\n(c) \\(\\frac { Q_2-Q_3 }{2C}\\)
\n(d) \\(\\frac { Q_1+Q_4}{2C}\\)<\/p>\n

\nAnswer<\/span><\/summary>\n

Answer: (c) \\(\\frac { Q_2-Q_3 }{2C}\\)<\/p>\n<\/details>\n


\n

Question 10.
\nThree charges Q, +q and +q are placed at the vertices of a right-angled isosceles triangle as shown. The net electrostatic energy of the configuration is zero if Q is equal to
\n\"MCQ
\n(a) \\(\\frac { -q}{1+\u221a2}\\)
\n(b) \\(\\frac { -\u221a2q}{1+\u221a2}\\)
\n(c) -2q
\n(d) +q<\/p>\n

\nAnswer<\/span><\/summary>\n

Answer: (b) \\(\\frac { -\u221a2q}{1+\u221a2}\\)<\/p>\n<\/details>\n


\n

Fill in the Blanks<\/span><\/p>\n

Question 1.
\nElectrostatic potential is ………….. throughout the volume of the conductor and has the same value (as inside) on its surface.<\/p>\n

\nAnswer<\/span><\/summary>\n

Answer: Constant<\/p>\n<\/details>\n


\n

Question 2.
\nElectric field at the surface of a charged conductor is ……………<\/p>\n

\nAnswer<\/span><\/summary>\n

Answer: q\/\u03b50<\/sub><\/p>\n<\/details>\n


\n

Question 3.
\nCapacitance of the earth depends upon its …………….<\/p>\n

\nAnswer<\/span><\/summary>\n

Answer: Radius<\/p>\n<\/details>\n


\n

Question 4.
\nCapacitance of a capacitor does not depend upon the …………… and ………….. stored in it.<\/p>\n

\nAnswer<\/span><\/summary>\n

Answer: Potential, Charge<\/p>\n<\/details>\n


\n

Question 5.
\nThe capacitance of a parallel plate capacitor is ……………<\/p>\n

\nAnswer<\/span><\/summary>\n

Answer: \u03b50<\/sub> A\/d<\/p>\n<\/details>\n


\n

Question 6.
\nWhen capacitors are connected in parallel, the net capacitance is the …………… of the individual capacitance.<\/p>\n

\nAnswer<\/span><\/summary>\n

Answer: sum<\/p>\n<\/details>\n


\n

Question 7.
\nWhen capacitors are connected in series, the reciprocal of the net capacitance is the sum of the …………….. of the individual
\ncapacitance.<\/p>\n

\nAnswer<\/span><\/summary>\n

Answer: reciprocal<\/p>\n<\/details>\n


\n

Question 8.
\nThe potential energy of a charge q placed at potential V is ………………<\/p>\n

\nAnswer<\/span><\/summary>\n

Answer: qV<\/p>\n<\/details>\n


\n

Question 9.
\nIt is safer to be inside the car rather than standing outside under a tree during lightning; this is based on ……………. concept.<\/p>\n

\nAnswer<\/span><\/summary>\n

Answer: Electrostatic shielding<\/p>\n<\/details>\n


\n

Question 10.
\nCapacitor plates are charged by a battery. After charging, battery is disconnected and a dielectric slab is inserted between the plates; the charge on the plates of capacitor ……………….<\/p>\n

\nAnswer<\/span><\/summary>\n

Answer: Remains same<\/p>\n<\/details>\n


\n

Question 11.
\nThe amount of work done in bringing a charge q from infinity to a point un-accelerated is equal to ……………. acquired by the charge.<\/p>\n

\nAnswer<\/span><\/summary>\n

Answer: Electrostatic potential energy<\/p>\n<\/details>\n


\n

Question 12.
\nA capacitor is charged and is not connected to a battery. Potential between plates of …………….. the capacitor when it is filled with dielectric.<\/p>\n

\nAnswer<\/span><\/summary>\n

Answer: Decreases<\/p>\n<\/details>\n


\n

Hope the information shared regarding the NCERT MCQ Questions for Class 12 Physics Chapter 2 Electrostatic Potential and Capacitance with Answers Pdf free download is true and genuine as far as our knowledge is concerned. If you feel any information regarding CBSE Class 12 Physics Electrostatic Potential and Capacitance MCQs Multiple Choice Questions with Answers is missing do reach us and we will look into it and add it accordingly.<\/p>\n","protected":false},"excerpt":{"rendered":"

Students are advised to practice the NCERT MCQ Questions for Class 12 Physics Chapter 2 Electrostatic Potential and Capacitance with Answers Pdf free download is available here. MCQ Questions for Class 12 Physics with Answers are prepared as per the Latest Exam Pattern. Students can solve these Electrostatic Potential and Capacitance Class 12 MCQs Questions …<\/p>\n

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