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ISC (Science) ISC Class 12 - CISCE Question Bank Solutions

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Let \[f\left(x\right) = x^3\] be a function with domain {0, 1, 2, 3}. Then domain of \[f^{-1}\] is ______.

[1] Relations and Functions
Chapter: [1] Relations and Functions
Concept: undefined >> undefined

Let A = R – {2} and B = R – {1}. If f: A `→` B is a function defined by f(x) = `(x - 1)/(x - 2)` then show that f is a one-one and an onto function.

[1] Relations and Functions
Chapter: [1] Relations and Functions
Concept: undefined >> undefined

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Which one of the following graphs is a function of x?

Graph A Graph B
[1] Relations and Functions
Chapter: [1] Relations and Functions
Concept: undefined >> undefined

If f : R `rightarrow` R is defined by `f(x) = (2x - 7)/4`, show that f(x) is one-one and onto.

[1] Relations and Functions
Chapter: [1] Relations and Functions
Concept: undefined >> undefined

If the function f : R → R be defined by f(x) = 2x − 3 and g : R → R by g(x) = x3 + 5, then find the value of (fog)−1 (x).

[1] Relations and Functions
Chapter: [1] Relations and Functions
Concept: undefined >> undefined

Let f : W → W be defined as

`f(n)={(n-1, " if n is odd"),(n+1, "if n is even") :}`

Show that f is invertible a nd find the inverse of f. Here, W is the set of all whole
numbers.

[1] Relations and Functions
Chapter: [1] Relations and Functions
Concept: undefined >> undefined

If f : R → R, f(x) = x and g: R → R , g(x) =  2x+ 1, and R is the set of real numbers, then find fog(x) and gof (x)

[1] Relations and Functions
Chapter: [1] Relations and Functions
Concept: undefined >> undefined

If f(x) = [4 – (x – 7)3]1/5 is a real invertible function, then find f–1(x).

[1] Relations and Functions
Chapter: [1] Relations and Functions
Concept: undefined >> undefined

Let `f : R {(-1)/3} → R - {0}` be defined as `f(x) = 5/(3x + 1)` is invertible. Find f–1(x).

[1] Relations and Functions
Chapter: [1] Relations and Functions
Concept: undefined >> undefined

A rectangular coil having 60 turns and area of 0.4m2 is held at right angles to a uniform magnetic field of flux density 5 × 10-5T. Calculate the magnetic flux passing through it.

[11] Electromagnetic Induction
Chapter: [11] Electromagnetic Induction
Concept: undefined >> undefined

Obtain an expression for electric potential ‘V’ at a point in an end-on position i.e. axial position of the electric dipole. 

[3] Electric Potential
Chapter: [3] Electric Potential
Concept: undefined >> undefined

Calculate magnetic flux density of the magnetic field at the centre of a circular coil of 50 turns, having a radius of 0.5m and carrying a current of 5 A.

[11] Electromagnetic Induction
Chapter: [11] Electromagnetic Induction
Concept: undefined >> undefined

Find magnetic flux density at a point on the axis of a long solenoid having 5000 tums/m when it carrying a current of 2 A.

[11] Electromagnetic Induction
Chapter: [11] Electromagnetic Induction
Concept: undefined >> undefined

Define Curie temperature.

[9] Magnetic Field and Earth's Magnetism
Chapter: [9] Magnetic Field and Earth's Magnetism
Concept: undefined >> undefined

If magnetic susceptibility of a certain magnetic material is 0 0001, find its relative permeability.

[9] Magnetic Field and Earth's Magnetism
Chapter: [9] Magnetic Field and Earth's Magnetism
Concept: undefined >> undefined

A circular coil has radius ‘r', number of turns ‘N’ and carries a current ‘I’. Magnetic flux density ‘B’ at its centre is ______.

[11] Electromagnetic Induction
Chapter: [11] Electromagnetic Induction
Concept: undefined >> undefined

Calculate electric potential at a point P which is at a distance of 9 cm from a point charge of 50 μC.

[3] Electric Potential
Chapter: [3] Electric Potential
Concept: undefined >> undefined

The Figure below shows an infinitely long metallic wire YY' which is carrying a current I'.

P is a point at a perpendicular distance r from it.

  1. What is the direction of magnetic flux density B of the magnetic field at the point P?
  2. What is the magnitude of magnetic flux density B of the magnetic field at the point P?
  3. Another metallic wire MN having length l and carrying a current I is now kept at point P. If the two wires are in vacuum and parallel to each other, how much force acts on the wire MN due to the current I' flowing in the wire YY'?
[11] Electromagnetic Induction
Chapter: [11] Electromagnetic Induction
Concept: undefined >> undefined

An emf of 2V is induced in a coil when the current in it is changed from 0A to 10A in 0·40 sec. Find the coefficient of self-inductance of the coil.

[11] Electromagnetic Induction
Chapter: [11] Electromagnetic Induction
Concept: undefined >> undefined

A coil has a self-inductance of 0·05 Henry. Find the magnitude of the emf induced in it when the current flowing through it is changing at the rate of 100 As-1.

[11] Electromagnetic Induction
Chapter: [11] Electromagnetic Induction
Concept: undefined >> undefined
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