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- Experiment with cases and illustrate an explanation of the effects on the graph using technology. Include recognizing even and odd functions from their graphs and algebraic expressions for them.
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# Experiment with cases and illustrate an explanation of the effects on the graph using technology. Include recognizing even and odd functions from their graphs and algebraic expressions for them.

## Standards derived from the same national standard

Identify the effect on the graph of replacing π(π₯) by π(π₯) + π, π π(π₯), π(ππ₯), and π(π₯ + π) using transformations for specific values of π (both positive and negative); find the value of π given the graphs. Experiment with cases and illustrate an explanation of the effects on the graph using technology. Include recognizing even and odd functions from their graphs and algebraic expressions for them.

Identify the effect on the graph of replacing π§(πΉ) by π§(πΉ) + π¬, π¬π§(πΉ), π§(π¬πΉ), and π§(πΉ + π¬) for specific values of π¬ (both positive and negative); find the value of π¬ given the graphs. (Include linear, quadratic, exponential, absolute value, simple rational and radical, logarithmic and trigonometric functions.) Utilize technology to experiment with cases and illustrate an explanation of the effects on the graph. (Include recognizing even and odd functions from their graphs and algebraic expressions for them.)

Identify the effect on the graph of replacing π(π₯) by π(π₯) + π, ππ(π₯), π(ππ₯), and π(π₯ + π) for specific values of π (both positive and negative); find the value of k given the graphs. (Include linear, quadratic, exponential, absolute value, simple rational and radical, logarithmic and trigonometric functions.) Utilize technology to experiment with cases and illustrate an explanation of the effects on the graph. (Include recognizing even and odd functions from their graphs and algebraic expressions for them.)