Modules / Lectures


Sl.No Chapter Name MP4 Download
1Lecture 01: IntroductionDownload
2Lecture 02: Introduction and Course OverviewDownload
3Lecture 03: Basics of Quantum MechanicsDownload
4Lecture 04: Electron in a Potential WellDownload
5Lecture 05: Electrons in SolidsDownload
6Lecture 06: KP ModelDownload
7Lecture 07: KP Model, Effective MassDownload
8Lecture 08: Bands, Effective Mass, DOSDownload
9Lecture 09: Effective Mass, DOSDownload
10Lecture 10: Density of StatesDownload
11Lecture 11: Density of StatesDownload
12Lecture 12: Density of States - 3D, 2DDownload
13Lecture 13: Density of States - 2D, 1D, 0DDownload
14Lecture 14: DOS, Fermi FunctionDownload
15Lecture 15: Fermi- Dirac DistributionDownload
16Lecture 16: Fermi Function, General Model of TransportDownload
17Lecture 17: General Model of Transport-IDownload
18Lecture 18: General Model of Transport-IIDownload
19Lecture 19: General Model of Transport-IIIDownload
20Lecture 20: General Model of Transport, ModesDownload
21Lecture 21: Modes-IDownload
22Lecture 22: Modes-IIDownload
23Lecture 23: Modes, Diffusive TransportDownload
24Lecture 24: Diffusive TransportDownload
25Lecture 25: Diffusive Transport, ConductanceDownload
26Lecture 26: Conductance, Bulk Transport-IDownload
27Lecture 27: Conductance, Bulk Transport-IIDownload
28Lecture 28: Resistance: Ballistic and Diffusive Cases-IDownload
29Lecture 29: Resistance: Ballistic and Diffusive Cases-IIDownload
30Lecture 30: Resistance: Ballistic and Diffusive Cases-IIIDownload
31Lecture 31: Resistance: Diffusive CaseDownload
32Lecture 32: The Idea of MobilityDownload
33Lecture 33: Voltage Drop in Ballistic ConductorDownload
34Lecture 34: 1D and 2D Realistic ConductorsDownload
35Lecture 35: Introduction to MOSFETDownload
36Lecture 36: Introduction to MOSFET-IIDownload
37Lecture 37: MOSFET: A Barrier Controlled DeviceDownload
38Lecture 38: MOSFET Electrical CharacteristicsDownload
39Lecture 39: MOSFET IV Characteristics-IDownload
40Lecture 40: MOSFET IV Characteristics-IIDownload
41Lecture 41: MOSFET IV Characteristics-IIIDownload
42Lecture 42: MOSFET IV Characteristics-Traditional ApproachDownload
43Lecture 43: MOSFET: Transport-IDownload
44Lecture 44: MOSFET: Transport-IIDownload
45Lecture 45: MOSFET: Landauer TransportDownload
46Lecture 46: Landauer Transport and Ballistic MOSFETDownload
47Lecture 47: Ballistic MOSFETDownload
48Lecture 48: Ballistic Injection VelocityDownload
49Lecture 49: Velocity Saturation in Ballistic MOSFET and ElectrostaticsDownload
50Lecture 50: MOS ElectrostaticsDownload
51Lecture 51: MOS ElectrostaticsDownload
52Lecture 52: MOSFET: Electrostatics, Threshold VoltageDownload
53Lecture 53: MOSFET 2D ElectrostaticsDownload
54Lecture 54: MOSFET: 2D Electrostatics and Quantum ConfinementDownload
55Lecture 55: ETSOI MOSFETs, Quantum Confinement, Strain EngineeringDownload
56Lecture 56: Strain Engineering, Thermoelectric EffectsDownload
57Lecture 57: Thermoelectric EffectsDownload
58Lecture 58: Thermoelectric Effects, Quantum Dot DevicesDownload
59Lecture 59: Quantum Dot DevicesDownload
60Lecture 60: Quantum Dot Devices – IV Characteristics, DFT, Course SummaryDownload

Sl.No Chapter Name English
1Lecture 01: IntroductionPDF unavailable
2Lecture 02: Introduction and Course OverviewPDF unavailable
3Lecture 03: Basics of Quantum MechanicsPDF unavailable
4Lecture 04: Electron in a Potential WellPDF unavailable
5Lecture 05: Electrons in SolidsPDF unavailable
6Lecture 06: KP ModelPDF unavailable
7Lecture 07: KP Model, Effective MassPDF unavailable
8Lecture 08: Bands, Effective Mass, DOSPDF unavailable
9Lecture 09: Effective Mass, DOSPDF unavailable
10Lecture 10: Density of StatesPDF unavailable
11Lecture 11: Density of StatesPDF unavailable
12Lecture 12: Density of States - 3D, 2DPDF unavailable
13Lecture 13: Density of States - 2D, 1D, 0DPDF unavailable
14Lecture 14: DOS, Fermi FunctionPDF unavailable
15Lecture 15: Fermi- Dirac DistributionPDF unavailable
16Lecture 16: Fermi Function, General Model of TransportPDF unavailable
17Lecture 17: General Model of Transport-IPDF unavailable
18Lecture 18: General Model of Transport-IIPDF unavailable
19Lecture 19: General Model of Transport-IIIPDF unavailable
20Lecture 20: General Model of Transport, ModesPDF unavailable
21Lecture 21: Modes-IPDF unavailable
22Lecture 22: Modes-IIPDF unavailable
23Lecture 23: Modes, Diffusive TransportPDF unavailable
24Lecture 24: Diffusive TransportPDF unavailable
25Lecture 25: Diffusive Transport, ConductancePDF unavailable
26Lecture 26: Conductance, Bulk Transport-IPDF unavailable
27Lecture 27: Conductance, Bulk Transport-IIPDF unavailable
28Lecture 28: Resistance: Ballistic and Diffusive Cases-IPDF unavailable
29Lecture 29: Resistance: Ballistic and Diffusive Cases-IIPDF unavailable
30Lecture 30: Resistance: Ballistic and Diffusive Cases-IIIPDF unavailable
31Lecture 31: Resistance: Diffusive CasePDF unavailable
32Lecture 32: The Idea of MobilityPDF unavailable
33Lecture 33: Voltage Drop in Ballistic ConductorPDF unavailable
34Lecture 34: 1D and 2D Realistic ConductorsPDF unavailable
35Lecture 35: Introduction to MOSFETPDF unavailable
36Lecture 36: Introduction to MOSFET-IIPDF unavailable
37Lecture 37: MOSFET: A Barrier Controlled DevicePDF unavailable
38Lecture 38: MOSFET Electrical CharacteristicsPDF unavailable
39Lecture 39: MOSFET IV Characteristics-IPDF unavailable
40Lecture 40: MOSFET IV Characteristics-IIPDF unavailable
41Lecture 41: MOSFET IV Characteristics-IIIPDF unavailable
42Lecture 42: MOSFET IV Characteristics-Traditional ApproachPDF unavailable
43Lecture 43: MOSFET: Transport-IPDF unavailable
44Lecture 44: MOSFET: Transport-IIPDF unavailable
45Lecture 45: MOSFET: Landauer TransportPDF unavailable
46Lecture 46: Landauer Transport and Ballistic MOSFETPDF unavailable
47Lecture 47: Ballistic MOSFETPDF unavailable
48Lecture 48: Ballistic Injection VelocityPDF unavailable
49Lecture 49: Velocity Saturation in Ballistic MOSFET and ElectrostaticsPDF unavailable
50Lecture 50: MOS ElectrostaticsPDF unavailable
51Lecture 51: MOS ElectrostaticsPDF unavailable
52Lecture 52: MOSFET: Electrostatics, Threshold VoltagePDF unavailable
53Lecture 53: MOSFET 2D ElectrostaticsPDF unavailable
54Lecture 54: MOSFET: 2D Electrostatics and Quantum ConfinementPDF unavailable
55Lecture 55: ETSOI MOSFETs, Quantum Confinement, Strain EngineeringPDF unavailable
56Lecture 56: Strain Engineering, Thermoelectric EffectsPDF unavailable
57Lecture 57: Thermoelectric EffectsPDF unavailable
58Lecture 58: Thermoelectric Effects, Quantum Dot DevicesPDF unavailable
59Lecture 59: Quantum Dot DevicesPDF unavailable
60Lecture 60: Quantum Dot Devices – IV Characteristics, DFT, Course SummaryPDF unavailable


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