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Episode 7 Supports
Episode Description
Reflecting: Keoni and Sasha examine a table with the equations they have explored so far. They use the table to predict an equation for a parabola with any given vertex.
Focus Questions
For use in a classroom, pause the video and ask these questions:
1. [Pause video at 0:47]. 1. Where would the parabola be on the coordinate grid when h is 9 and k is 13?
2. [Pause video at 0:52]. Predict the equation for this parabola.
Supporting Dialogue
Provide opportunities to for students to revoice a mathematical proposition. Ask a few students to revoice the propositions of this episode:
Math Extensions
1. Take a moment to use the methods from this episode to derive the equation of a parabola with a vertex at (9, 13) and a p-value of 3.
2. Where do you see the (x – 9) term in the diagram that you drew to derive the equation? Where is the +13?
Mathematics in this Lesson
Lesson Description
Targeted Understanding
CC Math Standards
CC Math Practices
Lesson Description
Sasha and Keoni use a GeoGebra applet to move parabolas to the left, right, up, and down. Then they develop equations for several different parabolas where the vertex is not at the origin.
Targeted Understandings
This lesson can help students:
Common Core Math Standards
• CCSS.M.HSF.BF.B.3: Identify the effect on the graph of replacing f(x) by f(x) + k, k f(x), f(kx), and f(x + k) for specific values of k (both positive and negative); find the value of k given the graphs. Experiment with cases and illustrate an explanation of the effects on the graph using technology.
In this lesson, Sasha and Keoni connect graphical translations of a base parabola (up, down, left, right, and a combination of these movements) with changes in the algebraic expression of the function. For example, shifting a base parabola with p = 3 and vertex at the origin to the right 7 units means that the term x – 7 will be in the numerator for the translated parabola (y = (x – 7)2/12)). When the same base parabola is translated up 2 units, the effect is the addition of 2 units to the equation (which is y = x2/12 for the base parabola and y = x2/12 + 2 for the translated parabola)
Common Core Math Practices
CCSS.Math.Practice.MP5. Use appropriate tools strategically.
According to the Common Core’s description of Math Practice 2, mathematically proficient students “know that technology can enable them to visualize the results of varying assumptions, explore consequences, and compare predictions with data.” In this lesson, Sasha and Keoni use the visual tool of a function-translation applet in GeoGebra to decompose the translation of a parabola into horizontal and vertical movements [Episode 1, 1:18 – 1:29 and 2:46 – 2:59]. This imagery is powerful for helping Keoni and Sasha conceive of the effect of translation on the lengths of the right triangle that they use to derive the equation of a parabola [see for example, 4:05 – 4:34 in Episode 2].