Syllabus:
a2h-u02-syllabus_2017.pdf | |
File Size: | 246 kb |
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Notes:
4.6_notes.pdf | |
File Size: | 174 kb |
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4.8_notes.pdf | |
File Size: | 80 kb |
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5.1_foldable_properties_of_exponents.pdf | |
File Size: | 108 kb |
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5.2_notes.pdf | |
File Size: | 134 kb |
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5.2_end_behavior_foldable.pdf | |
File Size: | 88 kb |
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5.3_notes.pdf | |
File Size: | 107 kb |
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5.4_notes.pdf | |
File Size: | 405 kb |
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5.5_notes.pdf | |
File Size: | 395 kb |
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5.6_notes.pdf | |
File Size: | 328 kb |
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5.7_notes_page_1.pdf | |
File Size: | 213 kb |
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5.7_notes_page_2___5.8_notes.pdf | |
File Size: | 245 kb |
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5.9_notes.pdf | |
File Size: | 145 kb |
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Learning Targets:
I can solve a quadratic equation using complex numbers.
I can add, subtract, multiply, and divide complex numbers.
I can plot complex numbers in a coordinate plane.
I can solve quadratic equations using the quadratic formula.
I can find the discriminant of a quadratic equation and identify the number and type of solutions.
I can evaluate numerical expressions involving powers
I can simply expressions involving powers using the properties of exponents.
I can identify and evaluate polynomial functions.
I can use direct and synthetic substitution to evaluate polynomial functions.
I can identify the end behavior and graph a polynomial function.
I can add, subtract, and multiply polynomials
I can completely factor a polynomial function using sum/difference of two cubes, difference of two squares, grouping, and/or trinomials methods.
I can find all real number solutions to polynomials functions after factoring.
I can divide polynomials using long division and/or synthetic division.
I can use the Factor Theorem and Remainder Theorem to solve polynomial functions.
I can use the Rational Zero Theorem to find all real zeros of a polynomial function.
I can use the Fundamental Theorem of Algebra to find the number of solutions to a polynomial function.
I can use the Fundamental Theorem of Algebra to find all zeros of a polynomial function.
I can use the Conjugates Theorem to write the equation of a polynomial function given the zeros.
I can use x-intercepts to graph a polynomial function.
I can identify turning points of a polynomial functions to help graph the function.
I can write the equation of a higher-degree polynomial function given points that lie on the function
I can use the Properties of Finite Differences to write the equation of a higher-degree polynomial function.
I can use a graphing calculator to find a polynomial function that fits given data points.
I can add, subtract, multiply, and divide complex numbers.
I can plot complex numbers in a coordinate plane.
I can solve quadratic equations using the quadratic formula.
I can find the discriminant of a quadratic equation and identify the number and type of solutions.
I can evaluate numerical expressions involving powers
I can simply expressions involving powers using the properties of exponents.
I can identify and evaluate polynomial functions.
I can use direct and synthetic substitution to evaluate polynomial functions.
I can identify the end behavior and graph a polynomial function.
I can add, subtract, and multiply polynomials
I can completely factor a polynomial function using sum/difference of two cubes, difference of two squares, grouping, and/or trinomials methods.
I can find all real number solutions to polynomials functions after factoring.
I can divide polynomials using long division and/or synthetic division.
I can use the Factor Theorem and Remainder Theorem to solve polynomial functions.
I can use the Rational Zero Theorem to find all real zeros of a polynomial function.
I can use the Fundamental Theorem of Algebra to find the number of solutions to a polynomial function.
I can use the Fundamental Theorem of Algebra to find all zeros of a polynomial function.
I can use the Conjugates Theorem to write the equation of a polynomial function given the zeros.
I can use x-intercepts to graph a polynomial function.
I can identify turning points of a polynomial functions to help graph the function.
I can write the equation of a higher-degree polynomial function given points that lie on the function
I can use the Properties of Finite Differences to write the equation of a higher-degree polynomial function.
I can use a graphing calculator to find a polynomial function that fits given data points.