Mathematics Standards
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Arithmetic with Polynomials and Rational Expressions
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Number and Operations—Fractions
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Operations and Algebraic Thinking
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Statistics and Probability
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The Real Number System
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Showing 61 - 70 of 110 Standards
Standard Identifier: 5.NF.7.c
Grade:
5
Domain:
Number and Operations—Fractions
Cluster:
Apply and extend previous understandings of multiplication and division to multiply and divide fractions.
Standard:
Apply and extend previous understandings of division to divide unit fractions by whole numbers and whole numbers by unit fractions. Solve real-world problems involving division of unit fractions by non-zero whole numbers and division of whole numbers by unit fractions, e.g., by using visual fraction models and equations to represent the problem. For example, how much chocolate will each person get if 3 people share 1/2 lb of chocolate equally? How many 1/3-cup servings are in 2 cups of raisins?
Apply and extend previous understandings of multiplication and division to multiply and divide fractions.
Standard:
Apply and extend previous understandings of division to divide unit fractions by whole numbers and whole numbers by unit fractions. Solve real-world problems involving division of unit fractions by non-zero whole numbers and division of whole numbers by unit fractions, e.g., by using visual fraction models and equations to represent the problem. For example, how much chocolate will each person get if 3 people share 1/2 lb of chocolate equally? How many 1/3-cup servings are in 2 cups of raisins?
Standard Identifier: 5.OA.1
Grade:
5
Domain:
Operations and Algebraic Thinking
Cluster:
Write and interpret numerical expressions.
Standard:
Use parentheses, brackets, or braces in numerical expressions, and evaluate expressions with these symbols.
Write and interpret numerical expressions.
Standard:
Use parentheses, brackets, or braces in numerical expressions, and evaluate expressions with these symbols.
Standard Identifier: 5.OA.2
Grade:
5
Domain:
Operations and Algebraic Thinking
Cluster:
Write and interpret numerical expressions.
Standard:
Write simple expressions that record calculations with numbers, and interpret numerical expressions without evaluating them. For example, express the calculation “add 8 and 7, then multiply by 2” as 2 × (8 + 7). Recognize that 3 × (18932 + 921) is three times as large as 18932 + 921, without having to calculate the indicated sum or product.
Write and interpret numerical expressions.
Standard:
Write simple expressions that record calculations with numbers, and interpret numerical expressions without evaluating them. For example, express the calculation “add 8 and 7, then multiply by 2” as 2 × (8 + 7). Recognize that 3 × (18932 + 921) is three times as large as 18932 + 921, without having to calculate the indicated sum or product.
Standard Identifier: 5.OA.2.1
Grade:
5
Domain:
Operations and Algebraic Thinking
Cluster:
Write and interpret numerical expressions.
Standard:
Express a whole number in the range 2–50 as a product of its prime factors. For example, find the prime factors of 24 and express 24 as 2 × 2 × 2 × 3. CA
Write and interpret numerical expressions.
Standard:
Express a whole number in the range 2–50 as a product of its prime factors. For example, find the prime factors of 24 and express 24 as 2 × 2 × 2 × 3. CA
Standard Identifier: 5.OA.3
Grade:
5
Domain:
Operations and Algebraic Thinking
Cluster:
Analyze patterns and relationships.
Standard:
Generate two numerical patterns using two given rules. Identify apparent relationships between corresponding terms. Form ordered pairs consisting of corresponding terms from the two patterns, and graph the ordered pairs on a coordinate plane. For example, given the rule “Add 3” and the starting number 0, and given the rule “Add 6” and the starting number 0, generate terms in the resulting sequences, and observe that the terms in one sequence are twice the corresponding terms in the other sequence. Explain informally why this is so.
Analyze patterns and relationships.
Standard:
Generate two numerical patterns using two given rules. Identify apparent relationships between corresponding terms. Form ordered pairs consisting of corresponding terms from the two patterns, and graph the ordered pairs on a coordinate plane. For example, given the rule “Add 3” and the starting number 0, and given the rule “Add 6” and the starting number 0, generate terms in the resulting sequences, and observe that the terms in one sequence are twice the corresponding terms in the other sequence. Explain informally why this is so.
Standard Identifier: 6.SP.1
Grade:
6
Domain:
Statistics and Probability
Cluster:
Develop understanding of statistical variability.
Standard:
Recognize a statistical question as one that anticipates variability in the data related to the question and accounts for it in the answers. For example, “How old am I?” is not a statistical question, but “How old are the students in my school?” is a statistical question because one anticipates variability in students’ ages.
Develop understanding of statistical variability.
Standard:
Recognize a statistical question as one that anticipates variability in the data related to the question and accounts for it in the answers. For example, “How old am I?” is not a statistical question, but “How old are the students in my school?” is a statistical question because one anticipates variability in students’ ages.
Standard Identifier: 6.SP.2
Grade:
6
Domain:
Statistics and Probability
Cluster:
Develop understanding of statistical variability.
Standard:
Understand that a set of data collected to answer a statistical question has a distribution which can be described by its center, spread, and overall shape.
Develop understanding of statistical variability.
Standard:
Understand that a set of data collected to answer a statistical question has a distribution which can be described by its center, spread, and overall shape.
Standard Identifier: 6.SP.3
Grade:
6
Domain:
Statistics and Probability
Cluster:
Develop understanding of statistical variability.
Standard:
Recognize that a measure of center for a numerical data set summarizes all of its values with a single number, while a measure of variation describes how its values vary with a single number.
Develop understanding of statistical variability.
Standard:
Recognize that a measure of center for a numerical data set summarizes all of its values with a single number, while a measure of variation describes how its values vary with a single number.
Standard Identifier: 6.SP.4
Grade:
6
Domain:
Statistics and Probability
Cluster:
Summarize and describe distributions.
Standard:
Display numerical data in plots on a number line, including dot plots, histograms, and box plots.
Summarize and describe distributions.
Standard:
Display numerical data in plots on a number line, including dot plots, histograms, and box plots.
Standard Identifier: 6.SP.5.a
Grade:
6
Domain:
Statistics and Probability
Cluster:
Summarize and describe distributions.
Standard:
Summarize numerical data sets in relation to their context, such as by: Reporting the number of observations.
Summarize and describe distributions.
Standard:
Summarize numerical data sets in relation to their context, such as by: Reporting the number of observations.
Showing 61 - 70 of 110 Standards
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