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Polynomial Power and Rational Functions Homework (Unit 2)

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Flamingo Math by Jean Adams
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Grade Levels
10th - 12th, Higher Education
Resource Type
Standards
Formats Included
  • Zip
Pages
35 pages
$10.50
$10.50
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Description

Polynomial, Power & Rational Funtions Homework Bundle:

This resource is a bundled set of homework practice sets and daily content quizzes for Unit 2: POLYNOMIAL,POWER & RATIONAL FUNCTIONS designed for Pre-AP PreCalculus and PreCalculus Honors students. The file includes 35 pages of homework assignments and two different forms of a daily content quiz that you can use as a homework check, group work, or exit tickets.

The unit includes the following topics:

1) Quadratic Functions & Graphs Review

2) Power Functions

3) Polynomial Functions of Higher Degree

4) Real Zeros of Polynomial Functions

5) Complex Zeros of Polynomials

6) Graphs of Rational Functions

7) Analyzing Rational Functions

8) Solving Rational Equations & Inequalities


Click HERE to SAVE 20% by buying all POLYNOMIAL, POWER & RATIONAL FUNCTIONS products, including cooperative activities, in UNIT 2 MEGA BUNDLE.

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Polynomial Power and Rational Functions Match Activity

Polynomial Power and Rational Functions Stations Activity

Activities & Assessments Bundle

Foldables Only

Guided Notes

SMART Board® Lessons Only

Polynomial Power & Rational Functions Essentials

Here are two FREE ITEMS that complements the unit.

Quadrtic Formula Calculator FREEBIE

Rational Functions 4-Way Activity FREEBIE

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Total Pages
35 pages
Answer Key
Included
Teaching Duration
Lifelong tool
Last updated 8 months ago
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Standards

to see state-specific standards (only available in the US).
Understand that polynomials form a system analogous to the integers, namely, they are closed under the operations of addition, subtraction, and multiplication; add, subtract, and multiply polynomials.
Know and apply the Remainder Theorem: For a polynomial 𝘱(𝘹) and a number 𝘢, the remainder on division by 𝘹 – 𝘢 is 𝘱(𝘢), so 𝘱(𝘢) = 0 if and only if (𝘹 – 𝘢) is a factor of 𝘱(𝘹).
Rewrite simple rational expressions in different forms; write 𝘢(𝘹)/𝘣(𝘹) in the form 𝘲(𝘹) + 𝘳(𝘹)/𝘣(𝘹), where 𝘢(𝘹), 𝘣(𝘹), 𝘲(𝘹), and 𝘳(𝘹) are polynomials with the degree of 𝘳(𝘹) less than the degree of 𝘣(𝘹), using inspection, long division, or, for the more complicated examples, a computer algebra system.
Understand that rational expressions form a system analogous to the rational numbers, closed under addition, subtraction, multiplication, and division by a nonzero rational expression; add, subtract, multiply, and divide rational expressions.
Explain each step in solving a simple equation as following from the equality of numbers asserted at the previous step, starting from the assumption that the original equation has a solution. Construct a viable argument to justify a solution method.

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