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For more information, see pp. 16-18 and Appendix II of the 2017 Massachusetts Curriculum Framework for Mathematics.
Mathematics | PK
Counting and Cardinality | Know number names and the counting sequence.
Counting and Cardinality | Count to tell the number of objects.
Counting and Cardinality | Compare numbers.
Operations and Algebraic Thinking | Understand addition as putting together and adding to, and understand subtraction as taking apart and taking from.
Measurement and Data | Describe and compare measurable attributes.
Measurement and Data | Classify objects and count the number of objects in each category.
Measurement and Data | Work with money.
Geometry | Identify and describe shapes (squares, circles, triangles, rectangles).
Geometry | Analyze, compare, create, and compose shapes.
Mathematics | K
Counting and Cardinality | Know number names and the count sequence.
Number and Operations in Base Ten | Work with numbers 11–19 to gain foundations for place value.
Geometry | Identify and describe shapes (squares, circles, triangles, rectangles, hexagons, cubes, cones, cylinders, and spheres).
Mathematics | 1
Operations and Algebraic Thinking | Represent and solve problems involving addition and subtraction.
Operations and Algebraic Thinking | Understand and apply properties of operations and the relationship between addition and subtraction.
Operations and Algebraic Thinking | Add and subtract within 20.
Operations and Algebraic Thinking | Work with addition and subtraction equations.
Number and Operations in Base Ten | Extend the counting sequence.
Number and Operations in Base Ten | Understand place value.
Number and Operations in Base Ten | Use place value understanding and properties of operations to add and subtract.
Measurement and Data | Measure lengths indirectly and by iterating length units.
Measurement and Data | Tell and write time.
Measurement and Data | Represent and interpret data.
Geometry | Reason with shapes and their attributes.
Mathematics | 2
Operations and Algebraic Thinking | Work with equal groups of objects to gain foundations for multiplication.
Measurement and Data | Measure and estimate lengths in standard units.
Measurement and Data | Relate addition and subtraction to length.
Measurement and Data | Work with time and money.
Mathematics | 3
Operations and Algebraic Thinking | Represent and solve problems involving multiplication and division.
Operations and Algebraic Thinking | Understand properties of multiplication and the relationship between multiplication and division.
Operations and Algebraic Thinking | Multiply and divide within 100.
Operations and Algebraic Thinking | Solve problems involving the four operations, and identify and explain patterns in arithmetic.
Number and Operations in Base Ten | Use place value understanding and properties of operations to perform multi-digit arithmetic.
Number and Operations—Fractions | Develop understanding of fractions as numbers for fractions with denominators 2, 3, 4, 6, and 8.
Measurement and Data | Solve problems involving measurement and estimation of intervals of time, liquid volumes, and masses of objects.
Measurement and Data | Geometric measurement: understand concepts of area and relate area to multiplication and to addition.
Measurement and Data | Geometric measurement: recognize perimeter as an attribute of plane figures and distinguish between linear and area measures.
Mathematics | 4
Operations and Algebraic Thinking | Use the four operations with whole numbers to solve problems.
Operations and Algebraic Thinking | Gain familiarity with factors and multiples.
Operations and Algebraic Thinking | Generate and analyze patterns.
Number and Operations in Base Ten | Generalize place value understanding for multi-digit whole numbers less than or equal to 1,000,000.
Number and Operations in Base Ten | Use place value understanding and properties of operations to perform multi-digit arithmetic on whole numbers less than or equal to 1,000,000.
Number and Operations—Fractions | Extend understanding of fraction equivalence and ordering for fractions with denominators 2, 3, 4, 5, 6, 8, 10, 12, and 100.
Number and Operations—Fractions | Build fractions from unit fractions by applying and extending previous understandings of operations on whole numbers for fractions with denominators 2, 3, 4, 5, 6, 8, 10, 12, and 100.
Number and Operations—Fractions | Understand decimal notation for fractions, and compare decimal fractions.
Measurement and Data | Solve problems involving measurement and conversion of measurements from a larger unit to a smaller unit.
Measurement and Data | Geometric measurement: understand concepts of angle and measure angles.
Geometry | Draw and identify lines and angles, and classify shapes by properties of their lines and angles.
Mathematics | 5
Operations and Algebraic Thinking | Write and interpret numerical expressions.
Operations and Algebraic Thinking | Analyze patterns and relationships.
Number and Operations in Base Ten | Understand the place value system.
Number and Operations in Base Ten | Perform operations with multi-digit whole numbers and with decimals to hundredths.
Number and Operations—Fractions | Use equivalent fractions as a strategy to add and subtract fractions.
Number and Operations—Fractions | Apply and extend previous understandings of multiplication and division to multiply and divide fractions.
Measurement and Data | Convert like measurement units within a given measurement system.
Measurement and Data | Geometric measurement: understand concepts of volume and relate volume to multiplication and to addition.
Geometry | Graph points on the coordinate plane to solve real-world and mathematical problems.
Geometry | Classify two-dimensional figures into categories based on their properties.
Mathematics | 6
Ratios and Proportional Relationships | Understand ratio and rate concepts and use ratio and rate reasoning to solve problems.
The Number System | Apply and extend previous understandings of multiplication and division to divide fractions by fractions.
The Number System | Compute fluently with multi-digit numbers and find common factors and multiples.
The Number System | Apply and extend previous understandings of numbers to the system of rational numbers.
Expressions and Equations | Apply and extend previous understandings of arithmetic to algebraic expressions.
Expressions and Equations | Reason about and solve one-variable equations and inequalities.
Expressions and Equations | Represent and analyze quantitative relationships between dependent and independent variables.
Geometry | Solve real-world and mathematical problems involving area, surface area, and volume.
Statistics and Probability | Develop understanding of statistical variability.
Statistics and Probability | Summarize and describe distributions.
Mathematics | 7
Ratios and Proportional Relationships | Analyze proportional relationships and use them to solve real-world and mathematical problems.
The Number System | Apply and extend previous understandings of operations with fractions to add, subtract, multiply, and divide rational numbers.
Expressions and Equations | Use properties of operations to generate equivalent expressions.
Expressions and Equations | Solve real-life and mathematical problems using numerical and algebraic expressions and equations.
Geometry | Draw, construct, and describe geometrical figures and describe the relationships between them.
Geometry | Solve real-life and mathematical problems involving angle measure, area, surface area, and volume.
Statistics and Probability | Use random sampling to draw inferences about a population.
Statistics and Probability | Draw informal comparative inferences about two populations.
Statistics and Probability | Investigate chance processes and develop, use, and evaluate probability models.
Mathematics | 8
The Number System | Know that there are numbers that are not rational, and approximate them by rational numbers.
Expressions and Equations | Work with radicals and integer exponents.
Expressions and Equations | Understand the connections between proportional relationships, lines, and linear equations.
Expressions and Equations | Analyze and solve linear equations and pairs of simultaneous linear equations.
Functions | Define, evaluate, and compare functions.
Functions | Use functions to model relationships between quantities.
Geometry | Understand congruence and similarity using physical models, transparencies, or geometry software.
Geometry | Understand and apply the Pythagorean Theorem.
Geometry | Solve real-world and mathematical problems involving volume of cylinders, cones and spheres.
Statistics and Probability | Investigate patterns of association in bivariate data.
Mathematics | Model Algebra I (Traditional Pathway)
The Real Number System | Extend the properties of exponents to rational exponents.
The Real Number System | Use properties of rational and irrational numbers.
Quantities | Reason quantitatively and use units to solve problems.
Seeing Structure in Expressions | Interpret the structure of linear, quadratic, and exponential expressions with integer exponents.
Seeing Structure in Expressions | Write expressions in equivalent forms to solve problems.
Arithmetic with Polynomials and Rational Expressions | Perform arithmetic operations on polynomials.
Creating Equations | Create equations that describe numbers or relationships.
Reasoning with Equations and Inequalities | Understand solving equations as a process of reasoning and explain the reasonin
Reasoning with Equations and Inequalities | Solve equations and inequalities in one variable.
Reasoning with Equations and Inequalities | Solve systems of equations.
Reasoning with Equations and Inequalities | Represent and solve equations and inequalities graphically.
Interpreting Functions | Understand the concept of a function and use function notation.
Interpreting Functions | Interpret linear, quadratic, and exponential functions with integer exponents that arise in applications in terms of the context.
Interpreting Functions | Analyze functions using different representations.
Building Functions | Build a function that models a relationship between two quantities.
Building Functions | Build new functions from existing functions.
Linear, Quadratic, and Exponential Models | Construct and compare linear, quadratic, and exponential models and solve problems.
Linear, Quadratic, and Exponential Models | Interpret expressions for functions in terms of the situation they model.
Interpreting Categorical and Quantitative Data | Summarize, represent, and interpret data on a single count or measurement variable. Use calculators, spreadsheets, and other technology as appropriate.
Interpreting Categorical and Quantitative Data | Summarize, represent, and interpret data on two categorical and quantitative variable.
Interpreting Categorical and Quantitative Data | Interpret linear models.
Mathematics | Model Geometry (Traditional Pathway)
Congruence | Experiment with transformations in the plane.
Congruence | Understand congruence in terms of rigid motions.
Congruence | Prove geometric theorems and, when appropriate, the converse of theorems.
Congruence | Make geometric constructions.
Similarity, Right Triangles, and Trigonometry | Understand similarity in terms of similarity transformations.
Similarity, Right Triangles, and Trigonometry | Prove theorems involving similarity.
Similarity, Right Triangles, and Trigonometry | Define trigonometric ratios and solve problems involving right triangles.
Similarity, Right Triangles, and Trigonometry | Apply trigonometry to general triangles.
Circles | Understand and apply theorems about circles.
Circles | Find arc lengths and areas of sectors of circles.
Expressing Geometric Properties with Equations | Translate between the geometric description and the equation for a conic section.
Expressing Geometric Properties with Equations | Use coordinates to prove simple geometric theorems algebraically.
Geometric Measurement and Dimension | Explain volume formulas and use them to solve problems.
Geometric Measurement and Dimension | Visualize relationships between two-dimensional and three-dimensional objects.
Modeling with Geometry | Apply geometric concepts in modeling situations.
Conditional Probability and the Rules of Probability | Understand independence and conditional probability and use them to interpret data from simulations or experiments.
Conditional Probability and the Rules of Probability | Use the rules of probability to compute probabilities of compound events in a uniform probability model.
Mathematics | Model Algebra II (Traditional Pathway)
The Complex Number System | Perform arithmetic operations with complex numbers.
The Complex Number System | Use complex numbers in polynomial identities and equations.
Vector and Matrix Quantities | Represent and model with vector quantities.
Vector and Matrix Quantities | Perform operations on matrices and use matrices in applications.
Seeing Structure in Expressions | Interpret the structure of exponential, polynomial, and rational expressions.
Arithmetic with Polynomials and Rational Expressions | Understand the relationship between zeros and factors of polynomials.
Arithmetic with Polynomials and Rational Expressions | Use polynomial identities to solve problems.
Arithmetic with Polynomials and Rational Expressions | Rewrite rational expressions.
Reasoning with Equations and Inequalities | Understand solving equations as a process of reasoning and explain the reasoning.
Interpreting Functions | Interpret functions that arise in applications in terms of the context (polynomial, rational, square root and cube root, trigonometric, and logarithmic functions).
Trigonometric Functions | Extend the domain of trigonometric functions using the unit circle.
Trigonometric Functions | Model periodic phenomena with trigonometric functions.
Trigonometric Functions | Prove and apply trigonometric identities.
Making Inferences and Justifying Conclusions | Understand and evaluate random processes underlying statistical experiments.
Making Inferences and Justifying Conclusions | Make inferences and justify conclusions from sample surveys, experiments, and observational studies.
Using Probability to Make Decisions | Use probability to evaluate outcomes of decisions.
Mathematics | Model Mathematics I (Integrated Pathway)
Seeing Structure in Expressions | Interpret the structure of linear and exponential expressions with integer exponents.
Interpreting Functions | Interpret linear and exponential functions having integer exponents that arise in applications in terms of the context.
Linear, Quadratic, and Exponential Models | Construct and compare linear and exponential models and solve problems.
Interpreting Categorical and Quantitative Data | Summarize, represent, and interpret data on two categorical and quantitative variables.
Mathematics | Model Mathematics II (Integrated Pathway)
Seeing Structure in Expressions | Interpret the structure of quadratic and exponential expressions.
Seeing Structure in Expressions | Write quadratic and exponential expressions in equivalent forms to solve problems.
Interpreting Functions | Interpret quadratic and exponential function with integer exponents that arise in applications in terms of the context.
Similarity, Right Triangles, and Trigonometry | Prove theorems involving similarity using a variety of ways of writing proofs, showing validity of underlying reasoning.
Expressing Geometric Properties with Equations | Use coordinates to prove simple geometric thereoms algebraically.
Mathematics | Model Mathematics III (Integrated Pathway)
Seeing Structure in Expressions | Interpret the structure of polynomial and rational expressions.
Interpreting Functions | Interpret functions that arise in applications in terms of the context (rational, polynomial, square root, cube root, trigonometric, logarithmic).
Mathematics | Model Precalculus (Advanced Course)
The Complex Number System | Represent complex numbers and their operations on the complex plane.
Vector and Matrix Quantities | Perform operations on vectors.
Mathematics | Model Advanced Quantitative Reasoning (Advanced Course)
Circles | [ AQR.G-C.A ] - Understand and apply theorems about circles.
Using Probability to Make Decisions | Calculate expected values and use them to solve problems.
Last Updated: June 27, 2026