Sl. No.
|
Name of the Experiment
|
Link
|
01
|
Conductometric estimation of acids in acid mixture
|
|
02
|
Potentiometric estimation of FAS using standard K2Cr2O7 solution
|
|
03
|
Colorimetric estimation of Copper
|
|
04
|
Determination of Pka of the given weak acid using pH meter.
|
|
05
|
Estimation of Total Hardness of Water Sample by EDTA complexometric Method
|
|
06
|
Estimation of CaO in a cement solution by rapid EDTA method.
|
|
07
|
Determination of % of copper in brass solution using standard sodium thiosulfate solution.
|
|
Semester
|
Subject Name
|
Module
|
Video Title with link
|
II
|
EME
|
Module I
Sources of Energy
|
Introduction to Sources of energy and solar pond- https://youtu.be/0KsxPxgF-U0
|
Hydro energy -https://youtu.be/3DCNGjD6VhM
|
|||
Wind energy- https://youtu.be/Z3Y8Wit9HEw
|
|||
Nuclear energy - https://youtu.be/RlMEUI8glmM
|
|||
Biofuels-https:// https://youtu.be/LX1IfWmhIag
|
Semester
|
Subject Name
|
Module
|
Video Title with link
|
II(E)
|
Advanced Calculus & Numerical Method
|
III
|
Formation of PDE by eliminating arbitrary constants
Formation of PDE by eliminating arbitrary Function
Formation of PDE by eliminating arbitrary Function-I
Solution of non homogeneous PDE by direct integration
https://youtu.be/V93f2gpYUKw
|
II(B)
|
18MAT21
|
II
|
Linear differential equations :
https://www.youtube.com/watch?v=odgAfs5dK-A
|
III
|
Solution of Homogeneous LDE:
https://www.youtube.com/watch?v=aU37x3XvEFg
Non Homogeneous LDE type 1
https://www.youtube.com/watch?v=tfwimn7du3Y
|
||
III
|
Type 1 P.I. exmpl. continued :
Non Homogeneous LDE type 2 :
https://www.youtube.com/watch?v=CVAqim3fD5s
|
||
II(C)
|
Advanced Calculus and Numerical Methods
|
II
|
|
Solution of Homo LDE, https://www.youtube.com/watch?v=A1KyaRjfnmk&t=7s
|
|||
Soln of initial value problems
|
|||
Soln of non homogeneous LDE
|
|||
Non homogeneous LDE – Type 1
|
|||
Type 1 – QP problems
|
|||
Non homogeneous LDE – Type 2
|
|||
Non homogeneous LDE – Type 3
|
|||
Non homogeneous LDE-QP problems
|
|||
Variation of Parameters_Part1
|
|||
Variation of Parameters_Part2
|
|||
Variation of Parameters_Part3
|
|||
Variation of Parameters_Part4
|
|||
Cauchys DE_Part1
|
|||
Cauchys DE_Part2
|
|||
V
|
Tricks to remember formulas in Numerical Methods
|
||
II
|
Advanced Calculus and Numerical Methods
|
III
|
PDE_Part1, https://youtu.be/TETafwE6fNs
PDE_Part2, https://youtu.be/yd15HKQG0yA
PDE_Part3, https://youtu.be/V1c7umR7YXw
PDE_Part4, https://youtu.be/aX-8oP9OeMw
PDE_Part5, https://youtu.be/ikA3QiHw5q8
PDE_Part6, https://youtu.be/ZmMdYD9Ku_M
PDE_Part7, https://youtu.be/M6mxBexhgfc
PDE_Part8, https://youtu.be/VLE2arKYCjg
PDE_Part9, https://youtu.be/yAHZRDDULEE
|
II(A&C)
|
Engineering Physics
|
IV
|
Engineering Physics Laser Introduction: https://youtu.be/u9VmcXjws6Q
Energy density in terms of Einstein coefficients: https://youtu.be/c6gtjlSvlOQ
CO2 Laser- Construction and Working: https://youtu.be/Xikp6MbSxFU
Semiconductor (GaAs) Laser: https://youtu.be/S5yDX8z12lI
|
II(B)
|
Engineering Physics
|
IV
|
De Broglie wave hypothesis-https://youtu.be/aChUpMbaQvk
Heisenberg's uncertainty principle-
Application of Heisenberg uncertainty principle-https://youtu.be/MmjaTCjwv6g
Wave function-https://youtu.be/nr6H_H45NJg
Schrodinger wave equation-https://youtu.be/HDWvoorihSo
Eigenvalue and eigen function-https://youtu.be/k50ZOvMKsWw
|
II(D&E)
|
Engineering Chemistry
|
III
|
|
II ‘D&E’
|
C Programming for problem solving Sub. Code : 18CPS23
|
II
|
1. for Looping Construct in C - https://youtu.be/l696gFM67uw
2. Nested for loops -https://youtu.be/IsKEeSgynNA
3. while loop in C - https://youtu.be/Gdg3OmUy_Mg
4. Unconditional branching statement -
|
III
|
1. Introduction to Arrays - https://youtu.be/-BfrFOGOauM
2. Programs on 2D arrays - https://youtu.be/LiEAnpjz-sQ
3. Introduction to Strings - https://youtu.be/cztGvScgdIg
|
||
II(B&C)
|
Basic Electrical Engg.(18ELE23)
|
I
|
DC Circuits: https://youtu.be/-5F_fg_2AP8
|
II
|
AC Circuits with R: https://youtu.be/ZzCYXeA8Gjo
AC Circuits with L: https://youtu.be/ALpb_FbmDUA
AC Circuits with Capacitor: https://youtu.be/ezUsr7K81XA
AC Circuits with R and L Series: https://youtu.be/G-UFgs6ci9o
|
||
III
|
Module 3 Part1: https://youtu.be/itVCPspScKU
Module 3 Part2: https://youtu.be/Kza716WdlcA
Module 3.3: https://youtu.be/E8q_kLUkUAg
Module 3.4: https://youtu.be/WVFY94oM77A
|
||
II C div
|
EGD
|
II
|
Square pyramid resting on edge : https://youtu.be/SOZFBeHaylY
Square pyramid resting on corner : https://youtu.be/Vi7B7ad58Zw
pentagonal pyramid resting on edge : https://youtu.be/46qzUpqHEOU
hexagonal pyramid resting on corner : https://youtu.be/csZP1DgZozQ
pentagonal pyramid resting on slant edge : https://youtu.be/Vzwg10YcgPc
hexagonal pyramid resting on slant face: https://youtu.be/9ceZ7AB5vBc
Cone resting on one of its generator: https://youtu.be/imYxjXIyHUI
Cone resting on one of its point on circumference: https://youtu.be/1leB9mqmqvk
pentagonal prism resting on edge : https://youtu.be/AMJ-2LGLTs0
hexagonal prism resting on corner : https://youtu.be/2pQmOq68Yok
Cube resting on edge: https://youtu.be/KZBYwjmtfaw
Cube solid diagonal: https://youtu.be/XHdjoOYjBZY
Tetrahedron resting on corner: https://youtu.be/XdXqJXmENDM
|
II
|
EGD
|
Projection of planes
|
|
II
|
Introduction: https://youtu.be/SX0AnrDcrnM
|
||
II(B)
|
Elements of Civil Engg.
|
V
|
Definitions and introduction : https://youtu.be/uk4qHUsQVeU
Rectilinear motion , Numericals: https://youtu.be/s-My243BJ0k
Rectilinear motion, Numericals: https://youtu.be/Pj8JlmF-7LQ
Varying Acceleration: https://youtu.be/uSdHw_kkpCY
Varying Acceleration, Numericals; https://youtu.be/dy1K_hkFMK4
Numericals: https://youtu.be/J9_-WJR4cj8
Numericals: https://youtu.be/y1DIuCh1ivY
|
II
( A & C)
|
Elements of Civil Engg.
|
III
|
Introduction-http://youtube.be/oUtTVUvSsoU
Analysis of Overhanging Beam.http://youtube.be/i1Dd5EFSUo
Calculation of support reaction by using equilibrium condition- http://youtube.be/ph2fPqlvrio
Analysis of truss- http://youtube.be/HG7uVSg_cl4
|
II(D)
|
Basic Electronics
|
III
|
Op-Amp Introduction &its Characteristics: https://youtu.be/0S8-ttiQsFo
Op-Amp Characteristics &its Applications: https://youtu.be/yuNCkFmv6Nk
Op-Amp Applications: https://youtu.be/rwm6oK61wBo
Op-Amp Applications: https://youtu.be/fCT6CtXJ-uc
Op-Amp Applications: https://youtu.be/81kv0D4_AbY
|
II(E)
|
Basic Electronics
|
III
|
Introduction to Operational Amplifiers : https://youtu.be/Z7uSxteN9Gc
|
Abstract symbol of op amp : https://youtu.be/Q5IVGI-8vQU
|
|||
Characteristics of ideal op amp: https://youtu.be/b1-a71R5PRQ
|
|||
Differential amplifier : https://youtu.be/vLuPcAUFmUc
|
|||
Output voltage expressions: https://youtu.be/QIJKrlERkJg
|
|||
Summing amplifier : https://youtu.be/GRu75O-V32w
|
|||
Differentiator : https://youtu.be/_YJlttRyVB0
|
|||
Integrator : https://youtu.be/CDAWPZU2Cdw
|
|||
Op amp parameters: https://youtu.be/6lba7xSzthc
|
|||
V
|
Digital Electronics Fundamentals : https://youtu.be/GhefSNQsghQ
|
||
Decimal Number System : https://youtu.be/_1gdqYBHgqY
|
|||
Subtraction using 9's compliment method: https://youtu.be/lisYfHUttrU
|
|||
Subtraction using 10's compliment method : https://youtu.be/s1SIW_THAos
|
|||
Binary Number System : https://youtu.be/_H44MVUeK_Y
|
|||
Octal Number System : https://youtu.be/Ahh2v0ubTB8
|
|||
Hexadecimal Number System: https://youtu.be/PIDBjkrxUoU
|
|||
Subtraction using 15's compliment method : https://youtu.be/Cf0ycothG0c
|
|||
II(E)
|
EME
|
III
|
Introduction to Refrigeration : https://youtu.be/cVZTvRLbN4o
Refrigeration definitions : https://youtu.be/vfpqo9-AkHw
Vapor compression refrigeration system : https://youtu.be/4aMU0Z45XOA
Vapor absorption refrigeration system : https://youtu.be/SoCL_x8c9KM
Properties of refrigerants : https://youtu.be/l6gVi7_4ndc
Window air conditioning system : https://youtu.be/ex9svXxBLhE
|
II(D)
|
EME
|
V
|
LATHE PARTS, WORKING PRINCIPLE: https://youtu.be/3_-XS5X8TZY
TURNING KNURLING DRILLING: https://youtu.be/-24sdZkA2KA
MILLING MACHINE & OPERATIONS: https://youtu.be/xPTXAU1fl3Y
|