Last updated 1/03/2013
| Date | Coverage |
| 1/7 | Intro |
| 1/9 | 2.1 Exponential Growth and Decay |
| 1/11 | 2.2 Sequences |
| 1/14 | 2.2 Sequences |
| 1/16 | 2.3 More Population Models |
| 1/18 | 3.1 Limits |
| 1/21 | HOLIDAY: Martin Luther King Day |
| 1/23 | 3.1 Limits; 3.2 Continuity |
| 1/25 | 3.2 Continuity; 3.3 Limits at Infinity |
| 1/28 | 3.4 The Sandwich Theorem and Some Trigonometric Limits |
| 1/30 | 3.5 Properties of Continuous Functions |
| 2/1 | Exam 1 |
| 2/4 | 4.1 Formal Definition of the Derivative |
| 2/6 | 4.1 Formal Definition of the Derivative; 4.2 Basic Rules of Differentiation |
| 2/8 | 4.2 Basic Rules of Differentiation |
| 2/11 | 4.3 Product and Quotient Rules |
| 2/13 | 4.4 The Chain Rule and Higher Derivatives |
| 2/15 | 4.4 The Chain Rule and Higher Derivatives |
| 2/18 | HOLIDAY: President's Day |
| 2/20 | 4.5 Derivatives of Trigonometric Functions; 4.6 Derivatives of Exponential Functions |
| 2/22 | 4.7 Inverse Functions and Logarithms |
| 2/25 | 4.8 Linear Approximation and Error Propagation |
| 2/27 | 5.1 Extrema and the Mean-Value Theorem |
| 3/1 | Exam 2 |
| 3/4 | 5.2 Monotonicity and Concavity; 5.3 Extrema, Inflection Points, and Graphing |
| 3/6 | 5.4 Optimization |
| 3/8 | 5.4 Optimization, 5.5 L'Hospital's Rule |
| 3/11 | 5.5 L'Hospital's Rule |
| 3/13 | 5.7 Newton-Raphson Method |
| 3/13 | Review/Catch-Up |
| 3/18 | Review/Catch-Up |