AP Calculus BC Monday, 18 November 2013 OBJECTIVE TSW use integration by subsitution. ASSIGNMENT DUE –Sec. 4.1  wire basket Tests are graded. Look on.

Slides:



Advertisements
Similar presentations
6.2 Antidifferentiation by Substitution
Advertisements

u-du: Integrating Composite Functions
4012 u-du : Integrating Composite Functions AP Calculus.
Section 2.9 Linear Approximations and Differentials Math 1231: Single-Variable Calculus.
AP Calculus BC Friday, 30 January 2015 OBJECTIVE TSW (1) find the area of a region between two curves; (2) find the area of a region between intersecting.
Calculus Final Exam Review By: Bryant Nelson. Common Trigonometric Values x-value0π/6π/3π/22π/35π/6π7π/64π/33π/25π/311π/62π sin(x)0½1½0-½-½0 cos(x)1½0-½-½0½1.
Sec. 4.5: Integration by Substitution. T HEOREM 4.12 Antidifferentiation of a Composite Function Let g be a function whose range is an interval I, and.
Integrals 5. Integration by Parts Integration by Parts Every differentiation rule has a corresponding integration rule. For instance, the Substitution.
1 5.5 – The Substitution Rule. 2 Example – Optional for Pattern Learners 1. Evaluate 3. Evaluate Use WolframAlpha to evaluate the following. 2. Evaluate.
MTH 252 Integral Calculus Chapter 8 – Principles of
Homework Homework Assignment #6 Review Section 5.6 Page 349, Exercises: 1 – 57(EOO) Quiz next time Rogawski Calculus Copyright © 2008 W. H. Freeman and.
Integration by Substitution Lesson 5.5. Substitution with Indefinite Integration This is the “backwards” version of the chain rule Recall … Then …
Copyright © Cengage Learning. All rights reserved. 7 Techniques of Integration.
Lesson 7-2 Hard Trig Integrals. Strategies for Hard Trig Integrals ExpressionSubstitutionTrig Identity sin n x or cos n x, n is odd Keep one sin x or.
More Trigonometric Integrals Lesson Recall Basic Identities Pythagorean Identities Half-Angle Formulas These will be used to integrate powers of.
CHAPTER Continuity Integration by Parts The formula for integration by parts  f (x) g’(x) dx = f (x) g(x) -  g(x) f’(x) dx. Substitution Rule that.
Integration by Substitution Example 1 If you cannot see the answer for integral by inspection, then the method of substitution is deployed. Make dx the.
Integration by parts Product Rule:. Integration by parts Let dv be the most complicated part of the original integrand that fits a basic integration Rule.
Integration Techniques, L’Hôpital’s Rule, and Improper Integrals Copyright © Cengage Learning. All rights reserved.
Sec 7.4: INTEGRATION OF RATIONAL FUNCTIONS BY PARTIAL FRACTIONS Example Find Example Find Example Find Example Find Example Find Rational function:
AP Calculus BC Monday, 14 September 2015 OBJECTIVE TSW (1) define the slope of a curve at a point, and (2) define the derivative. Tests are graded. TODAY’S.
Section 6.2: Integration by Substitution
4029 u-du: Integrating Composite Functions
AP Calculus BC Monday, 21 September 2015 OBJECTIVES TSW find (1) derivatives using the product and quotient rules, and (2) higher-order derivatives. ASSIGNMENT.
Substitution Rule. Basic Problems Example (1)
Friday, August 21, 2015MAT 146. Friday, August 21, 2015MAT 146 CHANGE ACCUMULATE LIMITS FUNCTIONS CALCULUS! PRE-CALCULUS!
Lecture 12 – Trig Integrals Use u-sub, trig identities, and/or by parts. 1.
Aim: Integrate Inverse Trig Functions Course: Calculus Do Now: Aim: How do we integrate Inverse Trig functions? Complete the square, express as the sum.
CHAPTER 6: DIFFERENTIAL EQUATIONS AND MATHEMATICAL MODELING SECTION 6.2: ANTIDIFFERENTIATION BY SUBSTITUTION AP CALCULUS AB.
The General Power Formula Lesson Power Formula … Other Views.
Integration by Substitution
Nonhomogeneous Linear Differential Equations (Part 2)
INDEFINITE INTEGRALS Indefinite Integral Note1:is traditionally used for an antiderivative of is called an indefinite integral Note2: Example:
Review Calculus (Make sure you study RS and WS 5.3)
In this section, we introduce the idea of the indefinite integral. We also look at the process of variable substitution to find antiderivatives of more.
AP Calculus BC Tuesday, 22 September 2015 OBJECTIVE TSW apply the Chain Rule to differentiate functions. ASSIGNMENT DUE TOMORROW/THURSDAY –Sec. 3.4: pp.
AP Calculus BC Monday, 16 November 2015
Copyright © Cengage Learning. All rights reserved. 7 Techniques of Integration.
AP Calculus BC Wednesday, 18 November 2015 OBJECTIVE TSW review for the test covering sec – 11.4 and vectors. ASSIGNMENTS DUE FRIDAY –Sec. 11.4:
Integration Substitution Method. Please integrate … You Can’t … at least not now, right?! There are several integration techniques we can employ … the.
E joke Tan x Sin x ex Log x.
Substitution Lesson 7.2. Review Recall the chain rule for derivatives We can use the concept in reverse To find the antiderivatives or integrals of complicated.
AP Calculus BC Monday, 31 August 2015 OBJECTIVE TSW find infinite limits FORM DUE (only if it is signed) –Information Sheet (wire basket) If you have t-shirt.
Exponential Functions – Differentiation and Integration.
Trigonometric Integrals Lesson 8.3. Recall Basic Identities Pythagorean Identities Half-Angle Formulas These will be used to integrate powers of sin and.
Clicker Question 1 What is  x sin(3x) dx ? – A. (1/3)cos(3x) + C – B. (-1/3)x cos(3x) + (1/9)sin(3x) + C – C. -x cos(3x) + sin(3x) + C – D. -3x cos(3x)
AP Calculus BC Friday, 05 February 2016 OBJECTIVE TSW (1) explore properties of inverse trigonometric functions, (2) differentiate inverse trig functions,
AP Calculus BC Monday, 01 February 2016 OBJECTIVE TSW (1) differentiate and integrate exponential functions that have bases other than e, and (2) use exponential.
Ch. 9 Review AP Calculus. Test Topics -- INTEGRATION NO CALCULATOR!!!!
CHAPTER Continuity Fundamental Theorem of Calculus In this lecture you will learn the most important relation between derivatives and areas (definite.
AP Calculus BC Tuesday, 01 March 2016 OBJECTIVE TSW review for the test covering area, volume, and arc length. ASSIGNMENT DUE TEST DAY –Polar Area (problems.
AP Calculus BC Wednesday, 09 March 2016 OBJECTIVE TSW (1) solve integrals using trig substitution, and (2) quiz over basic integration rules and integration.
AP Calculus BC Tuesday, 09 February 2016 OBJECTIVE TSW review for tomorrow's test differentiation and integration of transcendental functions and their.
OBJECTIVE TSW (1) list the terms of a sequence; (2) determine whether a sequence converges or diverges; (3) write a formula for the nth term of a sequence;
Solving Differential Equations Slope Fields. Solving DE: Slope Fields Slope Fields allow you to approximate the solutions to differential equations graphically.
OBJECTIVE TSW (1) evaluate improper integrals, and (2) review for the test covering integration techniques. ASSIGNMENT DUE TOMORROW, FRIDAY, 04/01/16 –Improper.
Aim: Integration by Substitution Course: Calculus Do Now: Aim: What is Integration by Substitution?
7-2 Antidifferentiation by substitution
AP Calculus BC October 11, 2016.
More Trigonometric Integrals
Integration.
مدير المدرسة أ. عقيل محمد مهنا الموجهه الأولى أ. حصة العلي
Integration review.
The General Power Formula
Sec 5.5: THE SUBSTITUTION RULE
Integration by Substitution
4.5 Integration by substitution
The Indefinite Integral
Section 4.1 Day 2 Antiderivatives and Indefinite Integration
Integration by Substitution
Presentation transcript:

AP Calculus BC Monday, 18 November 2013 OBJECTIVE TSW use integration by subsitution. ASSIGNMENT DUE –Sec. 4.1  wire basket Tests are graded. Look on line for your score. –Due to time constraints, we will not go over them in class. –If you would like to look at your test, arrange to come in during lunch, before school, or after school. The test for indefinite integration has been pushed back to this Friday, 22 November 2013.

Sec. 4.5: Integration by Substitution

Rewrite the integral:

Sec. 4.5: Integration by Substitution u = 7x du = 7 dx

Sec. 4.5: Integration by Substitution u = x 2 – 4 du = 2x dx 1/2 du = x dx

Sec. 4.5: Integration by Substitution u = sin 3x du = (cos 3x) 3 dx 1/3 du = cos 3x dx

Sec. 4.5: Integration by Substitution u = 5x + 3 du = 5 dx 1/5 du = dx

Sec. 4.5: Integration by Substitution Rearranging u u = x + 3 du = dx u – 3 = x

Sec. 4.5: Integration by Substitution u = 2x – 1 du = 2 dx u + 1 = 2x 1/2 du = dx (u + 1) / 2 = x