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Subjects

Physics

Continuous Charge Distribution

सतत आवेश वितरण

In Class 12 Physics, this topic introduces continuous charge distribution, where electric charge is spread smoothly along a line, over a surface, or throughout a volume rather than concentrated at separate points. Students learn linear, surface, and volume charge densities and use small charge elements with integration to calculate total charge and electric fields. The topic strengthens their understanding of superposition and prepares them to analyse charged rods, rings, discs, sheets, and other extended systems in the chapter Electric Charges and Fields.

Practice questions

01 Why is the transverse component of the electric field zero on the axis of a uniformly charged ring?

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02 Why do components along the rod cancel on the perpendicular bisector of a uniformly charged rod?

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03 If one side of a uniform rod becomes more highly charged, why can the earlier component cancellation on the perpendicular bisector be disturbed?

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04 If surface charge density is higher only near the edges, why is the distribution not called uniform?

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05 If electric-field contributions from small elements of a continuous distribution have equal magnitudes but opposite directions, what is their total contribution?

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06 If electric-field contributions from small elements of a continuous distribution point in the same direction, which statement is correct?

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07 At the centre of a uniformly charged ring, each small element produces a nonzero field, yet the total electric field is zero. Why?

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08 At the centre of a uniformly charged ring, the electric potential may be nonzero because potential is what type of quantity?

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09 If a charge distribution is specified per square metre, which measure should multiply the density to obtain the charge of a small element?

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10 If a charge distribution is specified per cubic metre, how is the charge of a small element obtained?

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11 If a charge distribution is specified per metre, how is the charge of a small element obtained?

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12 In a uniform surface distribution total charge is one hundred eight coulomb and area is nine square metre. If charge becomes half and area becomes three times what is the new surface density?

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13 In a uniform volume distribution total charge is two hundred forty coulomb and volume is thirty cubic metre. If charge becomes three fourths and volume becomes half what is the new volume density?

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14 Two wires have linear density ratio seven to four and length ratio eight to twenty one. What is the ratio of their total charges?

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15 Two surfaces have surface charge-density ratio 9:5 and area ratio 10:27. What is the ratio of their total charges?

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16 Two solids have volume charge-density ratio 5:6 and volume ratio 18:25. What is the ratio of their total charges?

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17 A uniformly charged ring has a negative total charge. Why is the electric field at its centre still zero?

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18 At the centre of a complete uniformly charged ring, the field due to each small element is non-zero, yet the total field is zero. Which principle does this demonstrate most clearly?

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19 A uniform wire is cut into unequal parts. How do the total charge and the linear charge density of the parts compare?

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20 A larger portion of a uniformly charged plate has more total charge. Why can its surface charge density still remain unchanged?

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21 If a quantity is specified with the unit of surface charge density but a student treats it as volume charge density, what is the main error?

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22 If charge density is given per metre but the physical situation appears to involve a surface, what should be checked first?

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23 If volume charge density is uniform throughout an irregularly shaped body, how is its total charge determined?

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24 If surface charge density is uniform on a curved surface, which measure is required to calculate the total charge?

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25 If charge on a thin ring is distributed along its circumference, which charge density is most appropriate?

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