Dr. Hill,  OFFICE: 512 WACHMAN HALL , 215-204-1654, dhill001 at temple.edu
Office Hours:  Monday, 9:00 – 11:00; Tuesday & Thursday 10:00-12:00;
Math 3044.001  Numerical Analysis II, 12:30 - 1:50 T & Th Barton 401,
 

Teaching Assistant: Michael McPhelin, Office: 517 Wachman Hall; Office Hours:  Monday & Wednesday 2 - 4. Use Michael's email to contact him: tua07903 at temple.edu

 

MATLAB information:
 
Getting Started in MATLAB; a pdf file (about 260 pages) available from the makers of MATLAB. Click here to go to the MATHWORKS page where this item can be accessed.

MATLAB Primer

 Matlab General Information constructed for this course.

 

Via a search engine you can find other MATLAB information.

Syllabus. Lists the text, topics covered, grading scheme & policies.

Dr. Hill's instructional MATLAB m-files for numerical analysis; click to here to download a zipped file.

 

To see grade list by last 4 digits of Temple ID, click here.

Topics/Section
Notes/Handouts
pdf files
Assignments Miscellaneous
Vector and Matrix Norms Section 3.3 Assignments for Sections 3.3 and 3.4  
Error Estimates and Condition Number Section 3.4   Details on proving the inequality for relative error on the error vector                   e = true - approx

Details on proving the upper bound on the perturbed solution

 
Iterative Methods Section 3.8    
Nonlinear Systems Section 3.10    
Optimal Points for Interpolation Section 5.4    
Hermite Interpolation Section 5.7    
Hermite Cubic Interpolation Section 5.7    
Intro DE material Exercises; do not do #4  
IVPs for ODEs Section 7.1 Exercises  

Euler’s Method with Error Discussion Section 7.2

Exercises  

Section 7.3 Taylor Methods

 
Exercises  
Section 7.4 Runge-Kutta Methods Exercises  
Section 7.5 Multistep Methods Exercises  
Linear BVP Review    
Nonlinear BVP Exercises  
Elliptic PDEs Exercises  
Parabolic PDEs Part 1 Exercise  
Parabolics PDEs Part 2 Exercises  
Parabolic PDEs Part 3 Exercises  
Eigen Review Exercises  
Power Method Exercises part 1

Exercises part 2

<== doc file; MATLAB code can be copied from this file

 

Leslie Population Model    
General Eigen Problem; Hessenberg form Exercises  
     

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