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Practical Physics setup

A |B |C |D |E |F |G |H |I |J |K |L |M |N |O |P |Q |R |S |T |U |V |W |Y |Z |
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Physics Exp A01 Determination of Young's Modulus of a Metallic Rod

AP-23B2-A01

Determination of Young's modulus of a metallic rod by using Searle's optical interference Newton ring method.


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Physics Exp A02 Determination of Elastic Constants

AP-23B2-A02

Determination of elastic constants of elastic constants of glass by Cornu's interference method.


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Physics Exp A03 The Study of Thermal Expansion of a Crystal

AP-23B2-A03

The study of thermal expansion of a crystal by optical interference method.


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Physics Exp A04 Determination of Velocity of Ultrasonic Waves

AP-23B2-A04

Determination of velocity of ultrasonic waves in a liquid medium.


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Physics Exp A05 Determination of elastic constants of a polycrystalline material

AP-23B2-A05

Determination of elastic constants of a polycrystalline material by using ultrasonic waves


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Physics Exp A06 Determination of viscosity of a fluid

AP-23B2-A06

Determination of viscosity of a fluid by rotation viscometer.


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Physics Exp A07 Measurement of temperature

AP-23B2-A07

Measurement of temperature by platinum resistance thermometer.


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Physics Exp A08 Determination of Stefan's radiation constant

AP-23B2-A08

Determination of Stefan's radiation constant by using heated hemispherical enclosure.


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Physics Exp A09 Verification of Stefan's law of radiation

AP-23B2-A09

Verification of Stefan's law of radiation by using on incandescent lamp as black body radiator.


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Physics Exp A10 To determine the value of Stefan's constant

AP-23B2-A10

(a) To determine the value of Stefan's constant by using a photovoltaic cell and an incandescent filament lamp as black body radiator.

(b) To test photoelectric equation in case of photovoltaic cell.


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Physics Exp A11 To use emission type of photocell to study photoelectric effect

AP-23B2-A11

To use emission type of photocell to study photoelectric effect and find the following:

(1) The value of Planck radiation constant h.

(2) The values of threshold frequency v0 and the work function of the photocathode w0.

(3) The verification of photoelectric equation: hv=hv0+1/2mv2max


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Physics Exp A12 To study intrinsic photoconduction in case of photovoltaic cell

AP-23B2-A12

To study intrinsic photoconduction in case of photovoltaic cell with following objectives:

(a) To find the value of Planck radiation constant h.

(b) To determine the threshold frequency v0 and thereby the work function w0 of the photovoltaic cell.

(c) To verify photoelectric equation: hv=hv0+1/2 2max


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Physics Exp A13 To study photoelectric effect in case of photoconductive cell by using radiation from an incandescent filament lamp

AP-23B2-A13

To study photoelectric effect in case of photoconductive cell by using radiation from an incandescent filament lamp with the following objective:

(a) To find the value of Planck radiation constant h.

(b) To find the value of threshold frequency v0 and the work function w0

(c) To verify photoelectric equation of emission hv=hv0 +1/2 mv2max


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Physics Exp A14 To determine the energy band gap in case of a semiconductor

AP-23B2-A14

To determine the energy band gap in case of a semiconductor (silicon) by studying the variation of its electrical conductance with temperature.


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Physics Exp A15 To determine the energy band gap in case of a semiconductor

AP-23B2-A15

To determine the energy band gap in case of a semiconductor by investigating the spectral response of its electrical conductivity.


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Physics Exp A16 Measurement of electrical conductivity

AP-23B2-A16

Measurement of electrical conductivity by four probe technique.


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Physics Exp A17 To study Hall effect in semiconductors

AP-23B2-A17

To study Hall effect in semiconductors with following objectives:

(a) Determination of Hall coefficient (Rh).

(b) Determination of concentration (n) of charge earriers in the specimen semiconductor.

(c)Determination of Hall angle (0)

(d) Determination of magnetoresistance (Rx), teh magnetic conductivity (o) and the mobility (u) of the carriers of the specimen.

(e) Four probe and Hall probe.


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Physics Exp A18 To determine magnetic susceptibility of a specimen by Gouy's method.

AP-23B2-A18

To determine magnetic susceptibility of a specimen by Gouy's method.


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Physics Exp A19 Measurement of magnetic volume susceptibility of a liquid or solution

AP-23B2-A19

Measurement of magnetic volume susceptibility of a liquid or solution by using Quincke's method.


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Physics Exp A20 Measurement of magnetic field

AP-23B2-A20

Measurement of magnetic field B by the following methods:

(A) Hall probe fluxmeter.

(B) Moving coil fluxmeter.

(C) Bismuth spiral fluxmeter


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Physics Exp A21 To plot a (B-H) curve for an iron specimen in the form of an anchor ring

AP-23B2-A21

To plot a (B-H) curve for an iron specimen in the form of an anchor ring (toroid)

by using a ballistic galvanometer.


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Physics Exp A22 To display (b-H) curve on the screen of a cathode ray oscillograph

AP-23B2-A22

To display (b-H) curve on the screen of a cathode ray oscillograph and determine the energy loss.


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Physics Exp A26 To study the characteristics of a tetrode vale

AP-23B2-A26

To study the characteristics of a tetrode vale


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Physics Exp A27 Determination of valve coefficients (ura,gm) of a triode valve and to investigate the variation of voltage gain

AP-23B2-A27

Determination of valve coefficients (ura,gm) of a triode valve and to investigate the variation of voltage gain with load resistance by using a.c. bridges.


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