BRR : 9425584
Tender Brief : Supply And Installation Of Equipment For B.Sc. ( H ) Physics Lab., School Of Voc. Studies And Applied Sciences - 1 To Determine The Height Of A Building Using A Sextant. 2 To Determine The Coefficient Of Viscosity Of Water By Capillary Flow Method ( Poiseuille’S Method ) . 3 To Determine The YoungS Modulus Of A Wire By Optical Lever Method. 4 To Compare Capacitances Using De’Sauty’S Bridge. 5 To Verify The Thevenin And Norton Theorems. 6 To Verify The Superposition And Maximum Power Transfer Theorems. 7 To Determine Self-Inductance Of A Coil By Anderson’S Bridge. 8 To... Read More
Tender Value
₹
7,95,289
Submission Date
20-11-2023
Participated Bidder List
6 No of Bidder(s)
| Sr No. | Bidder Name | Bid Analytics | Technical Bid | Financial Bid | AOC | Bid Value | Rank |
|---|---|---|---|---|---|---|---|
| 1 | cnet-technologies | Bid Analytics | |||||
| 2 | cnet-technologies | Bid Analytics | |||||
| 3 | cnet-technologies | Bid Analytics | |||||
| 4 | cnet-technologies | Bid Analytics | |||||
| 5 | cnet-technologies | Bid Analytics | |||||
| 6 | cnet-technologies | Bid Analytics |
Work Detail
supply and installation of equipment for b.sc. ( h ) physics lab., school of voc. studies and applied sciences - 1 to determine the height of a building using a sextant. 2 to determine the coefficient of viscosity of water by capillary flow method ( poiseuille’s method ) . 3 to determine the youngs modulus of a wire by optical lever method. 4 to compare capacitances using de’sauty’s bridge. 5 to verify the thevenin and norton theorems. 6 to verify the superposition and maximum power transfer theorems. 7 to determine self-inductance of a coil by anderson’s bridge. 8 to study response curve of a series& parallel lcr circuit and determine its ( i ) resonant frequency, ( ii ) impedance at resonance, ( iii ) quality factor q and ( iv ) band width. 9 to determine the mutual inductance of two coils by absolute method. 10 to determine the wavelength of sodium source using michelson’s interferometer. 11 to determine mechanical equivalent of heat, j, by callender and barne’s constant flow method. 12 to determine the coefficient of thermal conductivity of cu by searle’s apparatus. 13 to study the variation of thermo-emf of a thermocouple with difference of temperature of its two junctions using a null method and also to calibrate the thermocouple in a specified temperature range. 14 to calibrate a thermocouple to measure temperature in a specified range using op-amp difference amplifier and to determine neutral temperature. 15 power supply 16 to determine the absorption lines in the rotational spectrum of iodine vapour. 17 to setup the millikan oil drop apparatus and determine the charge of an electron. 18 to show the tunneling effect in tunnel diode using i-v characteristics. 19 to determine the planck’s constant using leds of at least four different colors. 20 to study the frequency response of voltage gain of a rc-coupled transistor amplifier. 21 to design a wien bridge oscillator for given frequency using an op-amp. 22 to study the colpitt’s oscillator. 23 to study the pe hysteresis loop of a ferroelectric crystal. 24 to measure the resistivity of a semiconductor ( ge ) with temperature ( up to 150oc ) by four-probe method and to determine its band gap. 25 to analyze elliptically polarized light by using a babinet’s compensator. 26 to determine the refractive index of ( i ) glass and ( ii ) a liquid by total internal reflection using a gaussian eyepiece. 27 to determine boltzmann constant using v-i characteristics of pn junction diode.
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