18.023A
Calculus with Applications
D. Kleitman
Mon-Fri, Jan 6-10, 13-17, 21-24, 27-31, 12-01:00pm, 2-147
Pre-register on WebSIS and attend first class.
No listeners
Prereq: —
Level: U 12 units Standard A - F Grading
Integral calculus in several variables, integrals, line integrals, integration in the complex plane, area, surface and volume integrals, multiple integrals, the fundamental theorem of calculus in each of these contexts, including Stokes' theorem and the divergence theorem with applications to electromagnetic fields. Second half, including review and introduction to linear algebra, taught in IAP. Extensive use of applet and spreadsheet computations. Numerical methods for integration and solution to ordinary differential equations with applications to physics.
Contact: D. Kleitman, 2-347, djk@math.mit.edu
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18.02A
Calculus
C. O'Neil
Mon-Fri, Jan 6-10, 13-17, 21-24, 27-31, 12-01:00pm, 54-100, Recitation TR 10 or 2
Pre-register on WebSIS and attend first class.
No listeners
Prereq: 18.01A or 18.01
Level: U 12 units Standard A - F Grading
First half is taught during the last six weeks of the fall term; covers material in the first half of 18.02 (through double integrals). Second half of 18.02A can be taken either during IAP (daily lectures) or during the first half of the Spring term; it covers the remaining material in 18.02.
Contact: Stephanie (Stevie) Gallarelli, 2-108, x3-4977, nonna@math.mit.edu
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18.095
Mathematics Lecture Series
Richard Dudley
Mon, Wed, Fri, Jan 6, 8, 10, 13, 15, 17, 22, 24, 27, 29, 01-02:30pm, 2-190
Pre-register on WebSIS and attend first class.
Listeners welcome at individual sessions (series)
Prereq: 18.01 or equivalent
Level: U 6 units Graded P/D/F
Ten lectures by mathematics faculty members on interesting topics from both classical and modern mathematics. All lectures accessible to students with calculus background and an interest in mathematics. At each lecture, reading and exercises are assigned. Students prepare these for discussion in a weekly problem session.
Students taking 18.095 for credit are expected to attend regularly and to do problem sets.
Contact: Richard Dudley, x3-7567, rmd@math.mit.edu
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