Differences between revisions 22 and 55 (spanning 33 versions)
Revision 22 as of 2009-03-01 21:53:41
Size: 2782
Editor: alydeines
Comment:
Revision 55 as of 2009-05-25 07:42:10
Size: 2363
Editor: JoseGuzman
Comment:
Deletions are marked like this. Additions are marked like this.
Line 1: Line 1:
------------
Major Goals:
= Sage Primers =
Line 4: Line 3:
1. SAGE as a Smart Calculator (target: Freshmen)
[[attachment:Sage_as_a_Smart_Calculator_0.2.sws]]
[[attachment:Sage_as_a_Smart_Calculator_0.3.sws]]

2. SAGE Primers / Tutorials for

(a) Quadratic Forms (target: Arizona Winter School Participants)

(b) Number Theory via Diophantine Equations (target: Elementary Number Theory students)

(c) Number Theory via Primes (target: Elementary Number Theory students)

(d) Group Theory (target: Undergraduate Math Majors) [http://abstract.ups.edu/sage-aata.html by Rob Beezer]

(e) Differential Calculus (target: Freshmen)
[[attachment:Differential_Calculus_Primer_0.3.sws]]

(f) Integral Calculus (target: Freshmen) [http://wdjoyner.com/teach/calc2-sage/hoffman-stein-calculus.pdf by Hoffman, Joyner & Stein]

(g) Primer guidelines [[attachment:primer_template\example.sws]]

(3) Port "Sage for Newbies" to ReST

------------
Typesetting:
<<TableOfContents>>
Line 31: Line 6:
reSTRUCTUREDtext [http://docutils.sourceforge.net/rst.html] == Done / In Progress ==

    * 0. Sage Primer Design Principles [[attachment:Sage Primer Design Principles.pdf]] [[attachment:primer_design_principles.rtf]]

    * 1. Basics

          * 1.1. Primer Template: An Example [[attachment:primer_template_example.sws]]

          * 1.2. Sage as a Smart Calculator [[attachment:basics.smart_calculator_0.5.sws]]

          * 1.3. Basic 2D plotting with Sage [[attachment:Ploting_with_Sage_v1.0.1]] by Jose Guzman

          * 1.4. Sage Devel Basics [Erik, Aly] [[attachment:dev_for_newbies.html]]-this needs to be restified., [[attachment: development_for_newbies.sws]]

    * 2. Calculus

          * 2.1. Limits Calculus [[attachment:Analysis_tutorial_Limits_v1.0.2.sws]] by Jose Guzman

          * 2.2. Differential Calculus [[attachment:calculus.differential_calculus_1.0.sws]]

          * 2.3. Integral Calculus [Sourav]

    * 3. Linear Algebra

          * 3.1. Matrix Algebra [Sourav]

    * 4. Abstract Algebra

          * 4.1. Group Theory [[attachment:group_theory.sws]] (by Robert Beezer)

    * 5. Number Theory

          * 5.1. Elementary Number Theory I [[attachment:number_theory.primes_0.5.sws]]

          * 5.2. Elementary Number Theory II [Erik]

          * 5.5. Quadratic Forms [[attachment:quadratic_forms.sws]]

          * 5.7. Quaternion Algebra [Sourav]

    * 9. About this document ...
Line 35: Line 50:
== To Do ==
Line 36: Line 52:
-------------     * 1. Basics
Line 38: Line 54:
Goals:           * 1.3. Programming in Sage
Line 40: Line 56:
1) Accessible to high school math teachers and undergraduate mathematics majors.           * 1.5. 2D and 3D Plotting in Sage [JoseGuzman]
Line 42: Line 58:
2) Anticipated user desires           * 1.6. Interact in Sage [Erik]
Line 44: Line 60:
a. Content specific modules     * 2. Calculus
Line 46: Line 62:
i. Quadratic Forms           * 2.3. Multivariate Calculus
Line 48: Line 64:
ii. Group theory           * 2.4. Taylor Series and Infinite Sums
Line 50: Line 66:
iii. Abstract algebra           * 2.5. Differential Equations
Line 52: Line 68:
iv. Calculus     * 3. Linear Algebra
Line 54: Line 70:
v. Number theory           * 3.2. Vector Spaces [Sourav]
Line 56: Line 72:
vi. High school algebra / trigonometry / precalculus     * 4. Abstract Algebra
Line 58: Line 74:
vii. Probability           * 4.2. Rings and Fields [Erik]
Line 60: Line 76:
viii. Statistics     * 5. Number Theory
Line 62: Line 78:
b. Plotting 2 and 3 dimensions           * 5.3. Cryptography [Dan]
Line 64: Line 80:
c. Sage math functions (sage as calculator), sage constants           * 5.4. Elliptic Curves [Aly]
Line 66: Line 82:
d. Generate Classroom examples           * 5.6. Automorphic Forms
Line 68: Line 84:
i. show (), latex()           * 5.8. Modular Forms
Line 70: Line 86:
ii. matplotlab     * 6. Combinatorics
Line 72: Line 88:
3) Demonstrate SAGE functionality:           * 6.1. Counting
Line 74: Line 90:
a. Primes           * 6.2. Graph Theory
Line 76: Line 92:
b. Random numbers     * 7. Geometry
Line 78: Line 94:
c. Plotting     * 8. Statistics
Line 80: Line 96:
d. Interact           * 8.1. Statistical Methods [Erik]
Line 82: Line 98:
e. Sage data types           * 8.2. Probability [Erik]
Line 84: Line 100:
4) Programming

a. Types, casting, relevant Sage data types

b. Lists, tuples

c. Control operators (if, then, else, logical operators, in, srange())

d. Loops

i. For, in, srange(), range()

e. Functions

f. Recursion

5) Topics

a. Primes and factorization

i. Given a random number, is it a prime?

1. Modular division

a. random()

b. Factor()

2. Euclidean algorithm

a. Recursion

b. gcd()

3. primality testing

a. for loops

b. range()

c. is_prime()

ii. How many primes are there?

1. prime_pi()

2. plotting example

iii. Where are the primes?

1. Density of primes

2. primes()

3. Arithemtic sequences of primes

b. Diophantine equations

i. Linear Diophantine equation

1. extended euclidean algorithm

2. recursion vs iteration

ii. diagonal quadratic forms; sums of squares (ENT p. 25)

1. Pythagorean triples and generating them

2. Graphing the Pythagorean triples

3. Enumerating all triples using linear intersections

4. Elliptic curves and congruent numbers (chapter 6, stein)

iii. Pell’s Equation (?)
          * 8.3. Finance

Sage Primers

Done / In Progress

To Do

  • 1. Basics
    • 1.3. Programming in Sage
    • 1.5. 2D and 3D Plotting in Sage [JoseGuzman]

    • 1.6. Interact in Sage [Erik]
  • 2. Calculus
    • 2.3. Multivariate Calculus
    • 2.4. Taylor Series and Infinite Sums
    • 2.5. Differential Equations
  • 3. Linear Algebra
    • 3.2. Vector Spaces [Sourav]
  • 4. Abstract Algebra
    • 4.2. Rings and Fields [Erik]
  • 5. Number Theory
    • 5.3. Cryptography [Dan]
    • 5.4. Elliptic Curves [Aly]
    • 5.6. Automorphic Forms
    • 5.8. Modular Forms
  • 6. Combinatorics
    • 6.1. Counting
    • 6.2. Graph Theory
  • 7. Geometry
  • 8. Statistics
    • 8.1. Statistical Methods [Erik]
    • 8.2. Probability [Erik]
    • 8.3. Finance

days13/projects/sagenewbie (last edited 2011-01-28 07:12:10 by Eviatar)