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DEVIVATION FORMULA FOR PRISM. - Class 12 PDF Download

What is deviation formula for prism? Using this formula derive prism formula.?
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A prism is a wedge-shaped body made from a refracting medium bounded by two plane faces inclined to each other at some angle. The two plane faces are called are the refracting faces and the angle included between these two faces is called the angle of prism or the refracting angle.

In the below figure , ABC represents the principal section of a glass-prism having ∠A as its refracting angle.

DEVIVATION FORMULA FOR PRISM. - Class 12

A ray KL is incident on the face AB at the point F where N1N1LO is the normal and i1∠i1 is the angle of incidence. Since the refraction takes place from air to glass, therefore, the refracted ray LM bends toward the normal such that r1∠r1 is the angle of refraction. If µ be the refractive index of glass with respect to air, then

Principal Section of a Glass Prism µ = sinisinrsinisinr ... (By Snell’s law)

The refracted ray LM is incident on the face AC at the point M where N2N2MO is the normal and r2∠r2 is the angle of incidence. Since the refraction now takes place from denser to rarer medium, therefore, the emergent ray MN such that i2∠i2 is the angle of emergence.

In the absence of the prism, the incident ray KL would have proceeded straight, but due to refraction through the prism, it changes its path along the direction PMN. Thus, ∠QPN gives the angle of deviation ‘δ’, i.e., the angle through which the incident ray gets deviated in passing through the prism.

Thus, δ=i1r1+i2r2δ=i1–r1+i2−r2 ….... (1)

δ=i1+i2(r1+r2)δ=i1+i2–(r1+r2)

Again, in quadrilateral ALOM,

∠ALO + ∠AMO = 2rt∠s [Since, ∠ALO = ∠AMO = 90º]

So, ∠LAM +∠LOM = 2rt∠s [Since, Sum of four ∠s of a quadrilateral = 4 rt∠s] ….... (2)

Also in ∠LOM,

r1+r2+LOM=2rts∠r1+∠r2+∠LOM=2rt∠s …... (3)

Comparing (2) and (3), we get

LAM=r1+r2∠LAM=∠r1+∠r2

A=r1+r2A=∠r1+∠r2

Using this value of ∠A, equation (1) becomes,

δ=i1+i2Aδ=i1+i2−A

or i1+i2=A+δi1+i2=A+δ …... (4)

Nature of Variation of the Angle of Deviation with the Angle of Incidence

DEVIVATION FORMULA FOR PRISM. - Class 12

The angle of deviation of a ray of light in passing through a prism not only depends upon its material but also upon the angle of incidence. The above figure shows the nature of variation of the angle of deviation with the angle of incidence. It is clear that an angle of deviation has the minimum value δmδm for only one value of the angle of incidence. The minimum value of the angle of deviation when a ray of light passes through a prism is called the angle of minimum deviation.

The figure below shows the prism ABC, placed in the minimum deviation position. If a plane mirror M is placed normally in the path of the emergent ray MN the ray will retrace its original path in the opposite direction NMLK so as to suffer the same minimum deviation dm.

DEVIVATION FORMULA FOR PRISM. - Class 12

In the minimum deviation position, i1=i2∠i1=∠i2

and so r1=r2=r∠r1=∠r2=∠r (say)

Obviously, ∠ALM = ∠LMA = 90º – ∠r

Thus, AL = LM

and so LM l l BC

Hence, the ray which suffers minimum deviation possess symmetrically through the prism and is parallel to the base BC.

Since for a prism,

A=r1+r2∠A=∠r1+∠r2

So, A = 2r (Since, for the prism in minimum deviation position, r1=r2=r∠r1=∠r2=∠r)

or r = A/2 …...(5)

Again, i1+i2=A+δi1+i2=A+δ

or i1+i1=A+δmi1+i1=A+δm (Since, for the prism in minimum deviation position, i1=i2andδ=δmi1=i2andδ=δm)

2i1=A+δm2i1=A+δm

or i1=A+δm2i1=A+δm2 …... (6)

Now µ=sini1sinr1=sini1sinrµ=sini1sinr1=sini1sinr

µ=sin[A+δm2]sin(A2)µ=sin[A+δm2]sin(A2) …... (7)

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FAQs on DEVIVATION FORMULA FOR PRISM. - Class 12

1. What is the deviation formula for a prism?
Ans. The deviation formula for a prism is given by the equation: Deviation = (μ - 1) × A where "μ" represents the refractive index of the material of the prism and "A" is the angle of the prism.
2. How is the deviation of light calculated in a prism?
Ans. The deviation of light in a prism can be calculated using the deviation formula. First, determine the refractive index of the prism material and the angle of the prism. Then, substitute these values into the deviation formula: Deviation = (μ - 1) × A. By multiplying the difference between the refractive index and 1 by the angle of the prism, the deviation of light can be calculated.
3. What does the deviation formula for a prism signify?
Ans. The deviation formula for a prism signifies the amount by which light is bent or deviated when passing through the prism. It provides a mathematical relationship between the refractive index of the prism material and the angle of the prism. The deviation formula allows us to quantify the change in direction of light as it enters and exits the prism.
4. How does the refractive index affect the deviation in a prism?
Ans. The refractive index of a prism material directly affects the deviation of light passing through it. As the refractive index increases, the deviation also increases. This means that light will bend more when passing through a prism with a higher refractive index. The deviation formula takes into account this relationship and provides a way to calculate the extent of the bending based on the refractive index.
5. Can the deviation of light in a prism be negative?
Ans. Yes, the deviation of light in a prism can be negative. A negative deviation indicates that the light is bending away from the base of the prism. This can occur when the angle of incidence is greater than the critical angle, causing total internal reflection within the prism. In such cases, the light does not pass through the prism but is reflected back inside, resulting in a negative deviation.
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