Algebra 1 - Reporting Categories Flashcards

1
Q

MA.912.NSO.1.1: Extend previous understanding of the Laws of Exponents to include rational
exponents. Apply the Laws of Exponents to evaluate numerical expressions
and generate equivalent numerical expressions involving rational exponents.

A

PER: Polynomials, Exponents, Radicals

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2
Q

MA.912.NSO.1.2: Generate equivalent algebraic expressions using the properties of exponents.

A

PER: Polynomials, Exponents, Radicals

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3
Q

MA.912.NSO.1.4: Apply previous understanding of operations with rational numbers to add,
subtract, multiply and divide numerical radicals.

A

PER: Polynomials, Exponents, Radicals

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4
Q

MA.912.AR.1.3: Add, subtract and multiply polynomial expressions with rational number
coefficients.

A

PER: Polynomials, Exponents, Radicals

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5
Q

MA.912.AR.1.4: Divide a polynomial expression by a monomial expression with rational
number coefficients.

A

PER: Polynomials, Exponents, Radicals

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6
Q

MA.912.AR.1.7: Rewrite a polynomial expression as a product of polynomials over the real number system.

A

PER: Polynomials, Exponents, Radicals

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7
Q

MA.912.AR.1.1: Identify and interpret parts of an equation or expression that represent a
quantity in terms of a mathematical or real-world context, including viewing
one or more of its parts as a single entity.

A

AM: Algebraic Modeling

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8
Q

MA.912.AR.2.2: Write a linear two-variable equation to represent relationships between
quantities from a graph, a written description or a table of values within a
mathematical or real-world context.

A

AM: Algebraic Modeling

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9
Q

MA.912.AR.2.3: Write a linear two-variable equation for a line that is parallel or perpendicular
to a given line and goes through a given point.

A

AM: Algebraic Modeling

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10
Q

MA.912.AR.2.4: Given a table, equation or written description of a linear function, graph that
function, and determine and interpret its key features.

A

AM: Algebraic Modeling

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11
Q

MA.912.AR.2.5: Solve and graph mathematical and real-world problems that are modeled with
linear functions. Interpret key features and determine constraints in terms of
the context.

A

AM: Algebraic Modeling

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12
Q

MA.912.AR.3.4:

A

AM: Algebraic Modeling

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13
Q

MA.912.AR.3.5:

A

AM: Algebraic Modeling

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14
Q

MA.912.AR.3.6:

A

AM: Algebraic Modeling

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15
Q

MA.912.AR.3.7:

A

AM: Algebraic Modeling

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16
Q

MA.912.AR.3.8:

A

AM: Algebraic Modeling

17
Q

MA.912.AR.4.3:

A

AM: Algebraic Modeling

18
Q

MA.912.AR.5.3:

A

AM: Algebraic Modeling

19
Q

MA.912.AR.5.4:

A

AM: Algebraic Modeling

20
Q

MA.912.AR.5.6:

A

AM: Algebraic Modeling

21
Q

MA.912.F.1.8:

A

AM: Algebraic Modeling

22
Q

MA.912.FL3.4:

A

AM: Algebraic Modeling

23
Q

MA.912.AR.1.2: Rearrange equations or formulas to isolate a quantity of interest.

A

EIS: Equations, Inequalities, and Systems

24
Q

MA.912.AR.2.6: Given a mathematical or real-world context, write and solve one-variable
linear inequalities, including compound inequalities. Represent solutions
algebraically or graphically.

A

EIS: Equations, Inequalities, and Systems

25
Q

MA.912.AR.2.7: Write two-variable linear inequalities to represent relationships between
quantities from a graph or a written description within a mathematical or real-
world context.

A

EIS: Equations, Inequalities, and Systems

26
Q

MA.912.AR.2.8: Given a mathematical or real-world context, graph the solution set to a two-
variable linear inequality.

A

EIS: Equations, Inequalities, and Systems