SCCI Digital Library and Forum

MIT

S# Lecture Course Institute Instructor Discipline
4926
The pn Junction: Reverse Bias (M-I-T)
Electrical, Optical, and Magnetic Materials and Devices (Spring 2020) (M-I-T) MIT Prof. Caroline Ross Applied Sciences
4927
More Examples of Diodes & Summary (M-I-T)
Electrical, Optical, and Magnetic Materials and Devices (Spring 2020) (M-I-T) MIT Prof. Caroline Ross Applied Sciences
4928
State of Matter and Bonding: Amorphous Solids (M-I-T)
Structure of Materials (Spring 2019) (M-I-T) MIT Prof. Silvija Gradecak Applied Sciences
4929
Structure of Materials Roadmap (M-I-T)
Structure of Materials (Spring 2019) (M-I-T) MIT Prof. Silvija Gradecak Applied Sciences
4930
The pn Junction: Unbiased Case (M-I-T)
Electrical, Optical, and Magnetic Materials and Devices (Spring 2020) (M-I-T) MIT Prof. Caroline Ross Applied Sciences
4931
MOS Devices: Band Structure Under Applied Voltage (M-I-T)
Electrical, Optical, and Magnetic Materials and Devices (Spring 2020) (M-I-T) MIT Prof. Caroline Ross Applied Sciences
4932
MOS Devices: Introduction and Equilibrium Band Structure (M-I-T)
Electrical, Optical, and Magnetic Materials and Devices (Spring 2020) (M-I-T) MIT Prof. Caroline Ross Applied Sciences
4933
Time Dependence of Carrier Concentration (M-I-T)
Electrical, Optical, and Magnetic Materials and Devices (Spring 2020) (M-I-T) MIT Prof. Caroline Ross Applied Sciences
4934
The Crystalline State in 2D (M-I-T)
Structure of Materials (Spring 2019) (M-I-T) MIT Prof. Silvija Gradecak Applied Sciences
4935
MOSFET: Applications & Examples (M-I-T)
Electrical, Optical, and Magnetic Materials and Devices (Spring 2020) (M-I-T) MIT Prof. Caroline Ross Applied Sciences
4936
The Crystalline State in 3D (M-I-T)
Structure of Materials (Spring 2019) (M-I-T) MIT Prof. Silvija Gradecak Applied Sciences
4937
Total Number of Electrons and Holes (M-I-T)
Electrical, Optical, and Magnetic Materials and Devices (Spring 2020) (M-I-T) MIT Prof. Caroline Ross Applied Sciences
4938
pn Junction Electrostatics (M-I-T)
Electrical, Optical, and Magnetic Materials and Devices (Spring 2020) (M-I-T) MIT Prof. Caroline Ross Applied Sciences
4939
Transistors: Overview (M-I-T)
Electrical, Optical, and Magnetic Materials and Devices (Spring 2020) (M-I-T) MIT Prof. Caroline Ross Applied Sciences
4940
Position Dependence of Carrier Concentration at Steady State (M-I-T)
Electrical, Optical, and Magnetic Materials and Devices (Spring 2020) (M-I-T) MIT Prof. Caroline Ross Applied Sciences
4941
Quantitative JFET Analysis (M-I-T)
Electrical, Optical, and Magnetic Materials and Devices (Spring 2020) (M-I-T) MIT Prof. Caroline Ross Applied Sciences
4942
Real Diodes: Zener & Avalanche (M-I-T)
Electrical, Optical, and Magnetic Materials and Devices (Spring 2020) (M-I-T) MIT Prof. Caroline Ross Applied Sciences
4943
Recombination and Generation (M-I-T)
Electrical, Optical, and Magnetic Materials and Devices (Spring 2020) (M-I-T) MIT Prof. Caroline Ross Applied Sciences
4944
Summary: Carrier Distribution (M-I-T)
Electrical, Optical, and Magnetic Materials and Devices (Spring 2020) (M-I-T) MIT Prof. Caroline Ross Applied Sciences
4945
Summary: Transistors (M-I-T)
Electrical, Optical, and Magnetic Materials and Devices (Spring 2020) (M-I-T) MIT Prof. Caroline Ross Applied Sciences
4946
Temperature Dependence of Carrier Density (M-I-T)
Electrical, Optical, and Magnetic Materials and Devices (Spring 2020) (M-I-T) MIT Prof. Caroline Ross Applied Sciences
4947
The Bipolar Junction Transistor (M-I-T)
Electrical, Optical, and Magnetic Materials and Devices (Spring 2020) (M-I-T) MIT Prof. Caroline Ross Applied Sciences
4948
Bonus Lecture 1: Phases (M-I-T)
Introduction to Solid-State Chemistry (M-I-T) MIT Prof. Jeffrey Grossman Applied Sciences
4949
Bonus Lecture 2: The Chemistry of Batteries (M-I-T)
Introduction to Solid-State Chemistry (M-I-T) MIT Prof. Jeffrey Grossman Applied Sciences
4950
Lecture 31: Exam Review (M-I-T)
Introduction to Solid-State Chemistry (M-I-T) MIT Prof. Jeffrey Grossman Applied Sciences