Do Now Time (hours)02357 Height (millimeters)012163242 John placed a container outside during a...

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Do Now Do Now Time (hours) 0 2 3 5 7 Height (millimeters) 0 12 16 32 42 3 1 5 3 2 6 shows the height, in millimeters, of the water in the container. The table below lists the height of water the gauge showed along with the corresponding number of hours after the rainstorm started. What is the average rate of change, in millimeters per hour, of the height of water in the container from time 2 hours to 5 hours?

Transcript of Do Now Time (hours)02357 Height (millimeters)012163242 John placed a container outside during a...

Page 1: Do Now Time (hours)02357 Height (millimeters)012163242 John placed a container outside during a rainstorm. A gauge on the side of the container shows the.

Do NowDo Now

Time (hours) 0 2 3 5 7Height (millimeters) 0 12 16 32 42

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John placed a container outside during a rainstorm. A gauge on the side of the container shows the height, in millimeters, of the water in the container. The table below lists the height of water the gauge showed along with the corresponding number of hours after the rainstorm started. What is the average rate of change, in millimeters per hour, of the height of water in the container from time 2 hours to 5 hours?

a. b. c. 6 d. 8

Page 2: Do Now Time (hours)02357 Height (millimeters)012163242 John placed a container outside during a rainstorm. A gauge on the side of the container shows the.

Academy Algebra IIAcademy Algebra II4.1: Graphing Quadratic Equations,4.1: Graphing Quadratic Equations,

4.2: Graph quadratic function in 4.2: Graph quadratic function in vertex or intercept formvertex or intercept form

HW: 4.1: p.240-242 (8, 12, 14, 22, 28, HW: 4.1: p.240-242 (8, 12, 14, 22, 28, 36, 38, 44-46 all, 58)36, 38, 44-46 all, 58)

Quiz 4.1-4.4: Next week MondayQuiz 4.1-4.4: Next week Monday

Page 3: Do Now Time (hours)02357 Height (millimeters)012163242 John placed a container outside during a rainstorm. A gauge on the side of the container shows the.

4.1: Notes4.1: Notes

Quadratic Equation:Quadratic Equation: Standard Form: y = axStandard Form: y = ax22 + bx + c + bx + c Parabolic shapeParabolic shape Vertical line of symmetryVertical line of symmetry If a is positive parabola will go up, if a is If a is positive parabola will go up, if a is

negative parabola will go down.negative parabola will go down.

Page 4: Do Now Time (hours)02357 Height (millimeters)012163242 John placed a container outside during a rainstorm. A gauge on the side of the container shows the.

NotesNotes

Quadratic Equation:Quadratic Equation: Through the line of symmetry is the vertex Through the line of symmetry is the vertex

which is either the maximum or minimum which is either the maximum or minimum value for the parabola.value for the parabola.• Vertex is maximum if parabola opens down.Vertex is maximum if parabola opens down.• Vertex is minimum if parabola opens up.Vertex is minimum if parabola opens up.

Page 5: Do Now Time (hours)02357 Height (millimeters)012163242 John placed a container outside during a rainstorm. A gauge on the side of the container shows the.

Notes continuedNotes continued Quadratic Equation continued. y = axQuadratic Equation continued. y = ax22 + bx + c + bx + c

Equation for Equation for line of symmetryline of symmetry::

x-coordinate of vertex (find y-value by plugging in x-coordinate of vertex (find y-value by plugging in x-value and solving:x-value and solving:

Page 6: Do Now Time (hours)02357 Height (millimeters)012163242 John placed a container outside during a rainstorm. A gauge on the side of the container shows the.

Tell whether the function has a minimum Tell whether the function has a minimum value or maximum value. Then find the value or maximum value. Then find the

minimum or maximum value.minimum or maximum value.

1.) y = -6x1.) y = -6x22 – 1 – 1 2.) f(x) = 2x2.) f(x) = 2x22 + 8x + 7 + 8x + 7

Page 7: Do Now Time (hours)02357 Height (millimeters)012163242 John placed a container outside during a rainstorm. A gauge on the side of the container shows the.

Steps to graphing a quadratic equationSteps to graphing a quadratic equation

Steps: y = axSteps: y = ax22 + bx + c + bx + c1.) Find the vertex.1.) Find the vertex.

2.) Graph using a table of values with the 2.) Graph using a table of values with the vertex in the middle.vertex in the middle.

Page 8: Do Now Time (hours)02357 Height (millimeters)012163242 John placed a container outside during a rainstorm. A gauge on the side of the container shows the.

Graph y = -2xGraph y = -2x22. . Determine the Determine the

domain and range.domain and range.

XX

YY

Page 9: Do Now Time (hours)02357 Height (millimeters)012163242 John placed a container outside during a rainstorm. A gauge on the side of the container shows the.

Graph y = -xGraph y = -x22 + 2 + 2. . Determine the Determine the

domain and range.domain and range.

XX

YY

Page 10: Do Now Time (hours)02357 Height (millimeters)012163242 John placed a container outside during a rainstorm. A gauge on the side of the container shows the.

Graph y = -4xGraph y = -4x22 + 8x + 2 + 8x + 2. . Determine the Determine the

domain and range.domain and range.XX

YY

Page 11: Do Now Time (hours)02357 Height (millimeters)012163242 John placed a container outside during a rainstorm. A gauge on the side of the container shows the.

p.242 #57p.242 #57

Page 12: Do Now Time (hours)02357 Height (millimeters)012163242 John placed a container outside during a rainstorm. A gauge on the side of the container shows the.

Do NowDo NowThe figure shows the graph of the profit function for a company. In the graph, y represents the profit, in thousands of dollars, that the company earns for selling x thousand items. Interpret the meaning of the two intercepts shown in the context of the problem.

Page 13: Do Now Time (hours)02357 Height (millimeters)012163242 John placed a container outside during a rainstorm. A gauge on the side of the container shows the.

Academy Algebra IIAcademy Algebra II4.1: Graphing Quadratic Equations,4.1: Graphing Quadratic Equations,

4.2: Graph quadratic function in 4.2: Graph quadratic function in vertex or intercept formvertex or intercept form

HW: 4.2: p.249-251 (4, 8, 10, 16, 18, HW: 4.2: p.249-251 (4, 8, 10, 16, 18, 34, 52, 54)34, 52, 54)

Page 14: Do Now Time (hours)02357 Height (millimeters)012163242 John placed a container outside during a rainstorm. A gauge on the side of the container shows the.

4.2: Vertex Form4.2: Vertex Form

y = a(x – h)y = a(x – h)22 + k + k Vertex: (h, k)Vertex: (h, k) Graph using tableGraph using table

Page 15: Do Now Time (hours)02357 Height (millimeters)012163242 John placed a container outside during a rainstorm. A gauge on the side of the container shows the.

Graph y = 2(x – 4)Graph y = 2(x – 4)22 – 1 – 1. . Determine the Determine the

domain and range.domain and range.XX

YY

Page 16: Do Now Time (hours)02357 Height (millimeters)012163242 John placed a container outside during a rainstorm. A gauge on the side of the container shows the.

Graph y = (x + 1)Graph y = (x + 1)22 + 3 + 3. . Determine the Determine the

domain and range.domain and range.XX

YY

Page 17: Do Now Time (hours)02357 Height (millimeters)012163242 John placed a container outside during a rainstorm. A gauge on the side of the container shows the.

Graph y = 2(x + 1)Graph y = 2(x + 1)22 + 3 + 3. . Determine the Determine the

domain and range.domain and range.XX

YY

Page 18: Do Now Time (hours)02357 Height (millimeters)012163242 John placed a container outside during a rainstorm. A gauge on the side of the container shows the.

4.2: Intercept form4.2: Intercept form Steps in graphing intercept formSteps in graphing intercept form

y = a(x – p)(x – q)y = a(x – p)(x – q) Plot the x-intercepts: points p and qPlot the x-intercepts: points p and q Find x-coordinate of vertex by averaging p Find x-coordinate of vertex by averaging p

and q:and q:

Find y-coordinate of vertex by plugging in Find y-coordinate of vertex by plugging in x-coordinate and solving. Plot the vertex.x-coordinate and solving. Plot the vertex.

Page 19: Do Now Time (hours)02357 Height (millimeters)012163242 John placed a container outside during a rainstorm. A gauge on the side of the container shows the.

Graph y = (x + 2)(x – 2)Graph y = (x + 2)(x – 2) . . Determine the Determine the

domain and range.domain and range.

Page 20: Do Now Time (hours)02357 Height (millimeters)012163242 John placed a container outside during a rainstorm. A gauge on the side of the container shows the.

Graph y = 3(x + 3)(x + 5)Graph y = 3(x + 3)(x + 5) . . Determine the Determine the

domain and range.domain and range.

Page 21: Do Now Time (hours)02357 Height (millimeters)012163242 John placed a container outside during a rainstorm. A gauge on the side of the container shows the.

p.247 example 4p.247 example 4

Page 22: Do Now Time (hours)02357 Height (millimeters)012163242 John placed a container outside during a rainstorm. A gauge on the side of the container shows the.

p.251 #55p.251 #55

Page 23: Do Now Time (hours)02357 Height (millimeters)012163242 John placed a container outside during a rainstorm. A gauge on the side of the container shows the.

3 types of graphs3 types of graphs1.) Stand. form: 1.) Stand. form: y = axy = ax22 + bx + c + bx + c

1.) x-coordinate of vertex: 1.) x-coordinate of vertex: 2.) chart with vertex in the middle2.) chart with vertex in the middle

2.) Vertex form: y = a(x – h)2.) Vertex form: y = a(x – h)22 + k + k1.) vertex: (h, k)1.) vertex: (h, k)2.) chart with vertex in the middle2.) chart with vertex in the middle

3.) Intercept form: 3.) Intercept form: y = a(x – p)(x – q)y = a(x – p)(x – q)1.) x-intercepts: p and q1.) x-intercepts: p and q

2.) x-coordinate of vertex: average 2.) x-coordinate of vertex: average p and q. Find y by plugging in.p and q. Find y by plugging in.

Page 24: Do Now Time (hours)02357 Height (millimeters)012163242 John placed a container outside during a rainstorm. A gauge on the side of the container shows the.

1.) y = 3x1.) y = 3x22

2.) y = (x – 4)(x – 2)2.) y = (x – 4)(x – 2)3.) y = -2x3.) y = -2x22 + 5 + 54.) y = ½x4.) y = ½x22

5.) y = (x – 2)5.) y = (x – 2)2 2

6.) y = 3x6.) y = 3x22 + 6x – 4 + 6x – 47.) y = ½(x + 1)(x – 2) 7.) y = ½(x + 1)(x – 2) 8.) f(x) = -x8.) f(x) = -x22 - 2x - 1 - 2x - 1

Graph and Graph and determine determine the domain the domain and range.and range.