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1.1: Domain, Range, and End Behavior |
1.2: Characteristics of Function Graphs |
1.3: Inverses of Functions |
2.1: Graphing Absolute Value Functions |
2.2: Solving Absolute Value Equations |
2.3: Solving Absolute Value Inequalities |
3.1: Understanding Rational Exponents and Radicals |
3.2: Simplifying Expressions with Rational Exponents |
4.1: Understanding Polynomial Expressions |
4.2: Adding Polynomial Expressions |
4.3: Subtracting Polynomial Expressions |
5.1: Multiplying Polynomial Expressions by Monomials |
5.2: Multiplying Polynomial Expressions |
5.3: Special Products of Binomials |
6.1: Understanding Quadratic Functions |
6.2: Transforming Quadratic Functions |
6.3: Interpreting Vertex Form and Standard Form |
7.1: Connecting Intercepts and Zeros |
7.2: Connecting Intercepts and Linear Factors |
7.3: Applying the Zero Product Property to Solve Equations |
8.1: Solving Equations by Factoring x2 + bx + c |
8.2: Solving Equations by Factoring ax2 + bx + c |
8.3: Using Special Factors to Solve Equations |
9.1: Solving Equations by Taking Square Roots |
9.2: Solving Equations by Completing the Square |
9.3: Using the Quadratic Formula to Solve Equations |
9.4: Choosing a Method for Solving Quadratic Equations |
9.5: Solving Nonlinear Systems |
10.1: Fitting a Linear Model to Data |
10.2: Graphing Exponential Functions |
10.3: Modeling Exponential Growth and Decay |
10.4: Modeling with Quadratic Functions |
10.5: Comparing Linear, Exponential, and Quadratic Models |
11.1: Solving Quadratic Equations by Taking Square Roots |
11.2: Complex Numbers |
11.3: Finding Complex Solutions of Quadratic Equations |
12.1: Circles |
12.2: Parabolas |
12.3: Solving Linear-Quadratic Systems |
13.1: Graphing Polynomial Functions |
13.2: Understanding Inverse Functions |
13.3: Graphing Square Root Functions |
13.4: Graphing Cube Root Functions |
14.1: Angles Formed by Intersecting Lines |
14.2: Transversals and Parallel Lines |
14.3: Proving Lines are Parallel |
14.4: Perpendicular Lines |
15.1: Interior and Exterior Angles |
15.2: Isosceles and Equilateral Triangles |
15.3: Triangle Inequalities |
15.4: Perpendicular Bisectors of Triangles |
15.5: Angle Bisectors of Triangles |
15.6: Properties of Parallelograms |
15.7: Conditions for Rectangles, Rhombuses, and Squares |
16.1: Dilations |
16.2: Proving Figures Are Similar Using Transformations |
16.3: Corresponding Parts of Similar Figures |
16.4: AA Similarity of Triangles |
17.1: Triangle Proportionality Theorem |
17.2: Subdividing a Segment in a Given Ratio |
17.3: Using Proportional Relationships |
17.4: Similarity in Right Triangles |
18.1: Tangent Ratio |
18.2: Sine and Cosine Ratio |
18.3: Special Right Triangles |
18.4: Problem Solving with Trigonometry |
18.5: Using a Pythagorean Identity |
19.1: Central Angles and Inscribed Angles |
19.2: Angles in Inscribed Quadrilaterals |
19.3: Tangents and Circumscribed Angles |
19.4: Segment Relationships in Circles |
19.5: Angle Relationships in Circles |
20.1: Justifying Circumference and Area of a Circle |
20.2: Arc Length and Radian Measure |
20.3: Sector Area |
21.1: Volume of Prisms and Cylinders |
21.2: Volume of Pyramids |
21.3: Volume of Cones |
21.4: Volume of Spheres |
21.5: Scale Factor |
22.1: Probability and Set Theory |
22.2: Permutations and Probability |
22.3: Combinations and Probability |
22.4: Mutually Exclusive and Overlapping Events |
23.1: Conditional Probability |
23.2: Independent Events |
23.3: Dependent Events |
24.1: Using Probability to Make Fair Decisions |
24.2: Analyzing Decisions |