Gautam Buddha University Tender
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Gautam Buddha University - GBU Tender
Laboratory Equipment and Services
Eprocure
Opening Date7 Jul 2023
Closing Date3 Aug 2023
Tender Amount₹ 7,95,289
Costs
EMD
₹ 8,500Document Cost
₹ 1,770Tender Fee
Refer Documents
Description
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Contact
Tender Id
2023_GBU_818485_2Bid Award Id
ViewTender No
GBU/SP/06/2023 dt.06.07.2023Tender Authority
Gautam Buddha University ViewPurchaser Address
-Website
http://bidplus.gem.gov.in
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Documents
BOQ Items
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To compare capacitances using De’Sauty’s bridge.
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To verify the Thevenin and Norton theorems.
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To verify the Superposition and Maximum power transfer theorems.
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To determine self-inductance of a coil by Anderson’s bridge.
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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.
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To determine the mutual inductance of two coils by Absolute method.
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To determine the wavelength of sodium source using Michelson’s interferometer.
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To determine Mechanical Equivalent of Heat, J, by Callender and Barne’s constant flow method.
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To determine the Coefficient of Thermal Conductivity of Cu by Searle’s apparatus.
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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.
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To calibrate a thermocouple to measure temperature in a specified range using Op-amp difference amplifier and to determine neutral temperature.
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Power Supply
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To determine the absorption lines in the rotational spectrum of Iodine vapour.
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To setup the Millikan oil drop apparatus and determine the charge of an electron.
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To show the tunneling effect in tunnel diode using I-V characteristics.
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To determine the Planck’s constant using LEDs of at least four different colors.
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To study the frequency response of voltage gain of a RC-coupled transistor amplifier.
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To design a Wien bridge oscillator for given frequency using an op-amp.
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To study the Colpitt’s Oscillator.
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To study the PE Hysteresis loop of a Ferroelectric Crystal.
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To measure the resistivity of a semiconductor (Ge) with temperature (up to 150oC) by four-probe method and to determine its band gap.
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To analyze elliptically polarized Light by using a Babinet’s compensator.
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To determine the refractive Index of (i) glass and (ii) a liquid by total internal reflection using a Gaussian eyepiece.
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To determine Boltzmann constant using V-I characteristics of PN junction diode.
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