Excel File

 

DAY

DATE

LECTURER

L/R

SUBJECT

READ

PROBLEM SET

 

OUT

DUE

M

1-Feb

   

Registration Day

     

W

3-Feb

TPO

L1

Molecular Bonding I

PSSA 2.1

1

 

F1

5

TPO

L2

Molecular Bonding II

PSSA 2.2

   

F2

 

TPO

R1

Background Refresher

6.728 Lectures 16 and 22-25

   

M

8

TPO

L3

Bonding in Solids

PSSA 2.3

   

W

10

TPO

L4

Metal as Free Electron Gas

PSSA 3.1-3.3, A&M 2

2

1

F1

12

TPO

L5

Elastic Waves: Classical Continuum

PSSA 4.1-4.3

   

F2

   

R2

Problem Session

     

M

15

TPO

 

Vacation Day

     

Tues

16

TPO

L6

Elastic Waves: Quantized

PSSA 4.4

Part 1

 

W

17

TPO

L7

Debye & Einstein Models

PSSA 4.5

3

2

F1

19

TPO

L8

Stiffness Matrix

PSSA 4.6

   

F2

   

R3

Problem Session

     

M

22

TPO

L9

Periodic Structures

PSSA 5; A&M 4 and 5

   

W

24

TPO

L10

Periodic Structures, x-ray diffraction

PSSA 5; A&M 4 and 5

 

3

F1

26

TPO

L11

Lattice Waves: 1D monatomic

PSSA 6.1; A&M 22 and 23

   

F2

   

R4

Problem Session

     

M

1-Mar

TPO

L12

Lattice Waves: 1D diatomic

PSSA 6.2; A&M 22 and 23

   

W

3

TPO

L13

2D Lattice Waves

PSSA 6.3-6.4; A&M 22 and 23

4

Part1

F1

5

TPO

L14

Quantization of Lattice Waves

PSSA 6.5

Part2

 

F2

   

R5

Problem Session

     

M

8

TPO

L15

Phonon-Photon Interactions

PSSA 6.6

   

W

10

TPO

L16

1D Tight Binding: Monatomic

PSSA 7.2; A&M 10

 

4

F1

12

TPO

L17

1D Tight Binding: Diatomic

PSSA 7.2; A&M 10

   

F2

     

Problem Session

     

M

15

TPO

L18

2D & 3D Tight Binding

PSSA 7.2; A&M 9

   

W

16

TPO

L18b

2D & 3D Tight Binding

PSSA 7.2; A&M 10

5

Part2

F1

19

TPO

L19

Nearly Free Electron Approximation

PSSA 7.4; A&M 9

Part3

 

F2

   

R6

Problem Session

     

M

22

   

Spring Break

     

W

24

   

Spring Break

     

F

26

   

Spring Break

     

M

29

TPO

L20

Nearly Free Electron Approximation

PSSA 7.4; A&M 9

   

W

31

TPO

L21

Properties of Bloch Functions

PSSA 7.5; A&M 8

   

F1

2-Apr

TPO

L22

Band Structure of Materials

PSSA 7.6

   

F2

 

TPO

R7

Problem Session

     

M

5

TPO

L23

Effective Mass Theorem

PSSA 8.2

   

W

7

TPO

L24

Semiclassical Eqns of Motion

PSSA 8.4

 

5

F1

9

TPO

L25

Hydrogenic Impurity States

PSSA 8.3

   

F2

   

R8

Problem Session

     

M

12

TPO

L26

Electrons and Holes: I

PSSA 9.3-9.4

   

W

14

TPO

L27

Electrochemical Potential/Donors

PSSA 9.5

6

Part3

F1

16

TPO

L28

Band Bending in Metals

SDS 11

   

F2

   

R9

Problem Session

     

M

19

   

Holiday

     

W

21

TPO

L29

Band Bending in Semiconductors

SDS 11

7

6

F1

23

TPO

L30

Non-Equilibrium: A Case Study

SDS 4

   

F2

   

R10

Problem Session

     

M

26

TPO

L31

Generation and Recombination

SDS 8

   

W

28

TPO

L32

Boltzmann Transport :I

SDS 9

8

7

F1

30

TPO

L33

Relaxation Time Approximation

SDS 11

   

F2

   

R11

Problem Session

     

M

3-May

TPO

L34

Scattering Rates

     

W

5

TPO

L35

Scattering Rates

   

8

F1

7

 

R12

Problem Session

     

F2

   

R13

Problem Session

     

M

10

TPO

L36

Velocity Saturation

     

W

12

TPO

L37

Velocity Saturation