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HSC Science (Computer Science) इयत्ता १२ वी - Maharashtra State Board Important Questions

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A conductor of any shape, having area 40 cm2 placed in air is uniformly charged with a charge 0* 2µC. Determine the electric intensity at a point just outside its surface. Also, find the mechanical force per unit area of the charged conductor.

[∈0=8.85x10-12 S.I. units]

Appears in 1 question paper
Chapter: [12] Electrostatics
Concept: Mechanical Force on Unit Area of a Charged Conductor

Electric field intensity in free space at a distance ‘r’ outside the charged conducting sphere of radius ‘R’ in terms of surface charge density ‘ a ’ is............................

(a)`sigma / in_0[R/r]^2`

(b)`in_0/sigma[R/r]^2`

(c)`R/r[sigma/in_0]^2`

(d)`R/sigma[r/in_0]^2`

 

Appears in 1 question paper
Chapter: [12] Electromagnetic Induction
Concept: Electromagnetic Induction

The magnetic flux through a loop varies according to the relation Φ = 8t2 + 6t + C, where ‘C’ is constant, 'Φ' is in milliweber and 't' is in second. What is the magnitude of induced e.m.f. in the loop at t = 2 seconds.

Appears in 1 question paper
Chapter: [12] Electromagnetic Induction
Concept: Electromagnetic Induction

If the radius of a sphere is doubled without changing the charge on it, then electric flux originating from the sphere is ______.

Appears in 1 question paper
Chapter: [12] Electromagnetic Induction
Concept: Inductance >> Mutual Inductance

A solenoid of length 1.5 m and 4 cm in diameter possesses 10 turns per metre. A current of 5 A is flowing through it. The magnetic induction at a point inside the solenoid along the axis is ............................. .

0 = 4π × 10-7 Wb/Am)

  1. π  × 10-5 T
  2. 2π × 10-5 T
  3. 3π × 10-5 T
  4. 4π × 10-5 T
Appears in 1 question paper
Chapter: [12] Electromagnetic Induction
Concept: Electromagnetic Induction

Explain the phenomenon of self induction

Appears in 1 question paper
Chapter: [12] Electromagnetic Induction
Concept: Inductance >> Self Inductance

Draw a neat labelled diagram of a parallel plate capacitor completely filled with dielectric.

Appears in 1 question paper
Chapter: [12] Electrostatics
Concept: The Parallel Plate Capacitor

Electrostatic energy of 3·5 x 10-4 J is stored in a capacitor at 700 V. What is the charge on the capacitor?

Appears in 1 question paper
Chapter: [12] Electrostatics
Concept: Energy of Charged Condenser

A metal rod `1/sqrtpi `m long rotates about one of its ends perpendicular to a plane whose magnetic induction is 4 x 10-3 T. Calculate the number of revolutions made by the rod per second if the e.m.f. induced between the ends of the rod is 16 mV.

Appears in 1 question paper
Chapter: [12] Electromagnetic Induction
Concept: Electromagnetic Induction

A network of four capacitors of 6 μF each is connected to a 240 V supply. Determine the charge on each capacitor.

Appears in 1 question paper
Chapter: [12] Electrostatics
Concept: Condensers in Series and Parallel,

Intensity of electric field at a point close to and outside a charged conducting cylinder is proportional to ______. (r is the distance of a point from the axis of cylinder)

(A) `1/r`

(B) `1/r^2`

(C) `1/r^3`

(D) r3

Appears in 1 question paper
Chapter: [12] Electrostatics
Concept: Energy of Charged Condenser

The magnetic flux through a loop is varying according to a relation `phi = 6t^2 + 7t + 1` where `phi` is in milliweber and t is in second. What is the e.m.f. induced in the loop at t = 2 second?

Appears in 1 question paper
Chapter: [12] Electromagnetic Induction
Concept: Electromagnetic Induction

Explain self induction and mutual induction

Appears in 1 question paper
Chapter: [12] Electromagnetic Induction
Concept: Inductance >> Mutual Inductance

A cube of marble having each side 1 cm is kept in an electric field of intensity 300 V/m. Determine the energy contained in the cube of dielectric constant 8. [Given : ∈0 = 8.85  10–12 C^2/Nm^2]

Appears in 1 question paper
Chapter: [12] Electrostatics
Concept: Energy of Charged Condenser

Obtain an expression for electric field intensity at a point outside uniformly charged thin plane sheet.

Appears in 1 question paper
Chapter: [12] Electrostatics
Concept: Effect of Dielectric on Capacitance

Derive an expression for e.m.f. and current in terms of turns ratio

Appears in 1 question paper
Chapter: [12] Electromagnetic Induction
Concept: Transformers

Prove theoretically  (electromagnetic induction) `e = (dphi)/(dt)`

Appears in 1 question paper
Chapter: [12] Electromagnetic Induction
Concept: Electromagnetic Induction

With the help of a neat diagram, describe the construction and working of van de Graff generator.

Appears in 1 question paper
Chapter: [12] Electrostatics
Concept: Van-deGraaff Generator

The energy density at a point in a medium of dielectric constant 6 is 26.55 × 106 J/m3. Calculate electric field intensity at that point. (ε0 = 8.85 × 10−12 SI units).

Appears in 1 question paper
Chapter: [12] Electrostatics
Concept: Energy Density of a Medium

If ‘R’ is the radius of dees and ‘B’ be the magnetic field of induction in which positive charges (q) of mass (m) escape from the cyclotron, then its maximum speed (vmax) is _______.

A) `(qR)/(Bm)`

B)`(qm)/(Br)`

C) `(qBR)/m`

D) `m/(qBR)`

Appears in 1 question paper
Chapter: [12] Electromagnetic Induction
Concept: Electromagnetic Induction
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