Use parentheses, brackets, or braces in numerical expressions, and evaluate expressions with these symbols.
Write simple expressions that record calculations with numbers, and interpret numerical expressions without evaluating them.
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.
Add and subtract fractions with unlike denominators (including mixed numbers) by replacing given fractions with equivalent fractions in such a way as to produce an equivalent sum or difference of fractions with like denominators.
Choose the Equivalent Fraction Up to Twentieths
Choose the Equivalent Fraction
Reduce to Lowest Terms
Reducing Fractions to Lowest Terms
Convert Between Improper Fractions and Mixed Numbers
Add Fractions with Unlike Denominators
Subtract Fractions with Unlike Denominators
Add Multiple Fractions with Unlike Denominators
Addition and Subtraction Equations with Fractions
Inequalities with Similar Fractions Up to 12
Add Mixed Numbers with Unlike Denominators
Subtract Mixed Numbers with Unlike Denominators
Addition and Subtraction Equations with Mixed Numbers
Inequalities with Addition and Subtraction of Mixed Numbers
Solve word problems involving addition and subtraction of fractions referring to the same whole, including cases of unlike denominators, e.g., by using visual fraction models or equations to represent the problem. Use benchmark fractions and number sense of fractions to estimate mentally and assess the reasonableness of answers.
Interpret a fraction as division of the numerator by the denominator (a/b = a ÷ b). Solve word problems involving division of whole numbers leading to answers in the form of fractions or mixed numbers, e.g., by using visual fraction models or equations to represent the problem.
Apply and extend previous understandings of multiplication to multiply a fraction or whole number by a fraction. Interpret the product (a/b) × q as a parts of a partition of q into b equal parts; equivalently, as the result of a sequence of operations a × q ÷ b.
Apply and extend previous understandings of multiplication to multiply a fraction or whole number by a fraction. Find the area of a rectangle with fractional side lengths by tiling it with unit squares of the appropriate unit fraction side lengths, and show that the area is the same as would be found by multiplying the side lengths. Multiply fractional side lengths to find areas of rectangles, and represent fraction products as rectangular areas.
Interpret multiplication as scaling (resizing), by: Comparing the size of a product to the size of one factor on the basis of the size of the other factor, without performing the indicated multiplication.
Interpret multiplication as scaling (resizing), by: Explaining why multiplying a given number by a fraction greater than 1 results in a product greater than the given number (recognizing multiplication by whole numbers greater than 1 as a familiar case); explaining why multiplying a given number by a fraction less than 1 results in a product smaller than the given number; and relating the principle of fraction equivalence a/b = (n×a)/(n×b) to the effect of multiplying a/b by 1.
Solve real world problems involving multiplication of fractions and mixed numbers, e.g., by using visual fraction models or equations to represent the problem.
Multiply Fractions by Whole Numbers
Multiply Fractions
Multiply Fractions
Multiply a Mixed Number by a Whole Number
Multiply a Mixed Number by a Fraction
Multiply Two Mixed Numbers
Multiplication with Mixed Numbers
Mixed Fraction Equations with Mixed Numbers Up to 10
Mixed Equations with Fractions, Mixed Numbers
Mixed Fraction Equations Up to 10
Apply and extend previous understandings of division to divide unit fractions by whole numbers and whole numbers by unit fractions. Interpret division of a unit fraction by a non-zero whole number, and compute such quotients.
Apply and extend previous understandings of division to divide unit fractions by whole numbers and whole numbers by unit fractions. Interpret division of a whole number by a unit fraction, and compute such quotients.
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.
Recognize that in a multi-digit number, a digit in one place represents 10 times as much as it represents in the place to its right and 1/10 of what it represents in the place to its left.
Explain patterns in the number of zeros of the product when multiplying a number by powers of 10, and explain patterns in the placement of the decimal point when a decimal is multiplied or divided by a power of 10. Use whole-number exponents to denote powers of 10.
Place Values and Number Sense: Scientific Notation
Convert Scientific Notation
Multiplication Patterns Over Increasing Place Values
Increasing Multiplication Patterns with Numbers Up to 10,000
Multiply Numbers Up to 1000 Ending in Zeros
Multiplication with Operands Up to 100 III
Multiplication Up to 1000
Increasing Division Patterns
Multiply Decimals Up to 20 Times Factors of 10
Multiply and Divide Decimals by Powers of Ten
Increasing Decimal Division Patterns
Read, write, and compare decimals to thousandths. Read and write decimals to thousandths using base-ten numerals, number names, and expanded form, e.g., 347.392 = 3 × 100 + 4 × 10 + 7 × 1 + 3 × (1/10) + 9 × (1/100) + 2 × (1/1000).
Read, write, and compare decimals to thousandths. Compare two decimals to thousandths based on meanings of the digits in each place, using >, =, and < symbols to record the results of comparisons.
Use place value understanding to round decimals to any place.
Fluently multiply multi-digit whole numbers using the standard algorithm.
Multiply Two Numbers Up to 100
Multiply Two Numbers Up to 100 and Up to 1000
Multiply Three or More Numbers Up to 1000
Multiply 3, 4 Numbers Up to 100
Multiply Three Digit Numbers Up to 1000
Multiply Three Numbers Up to 1000
Multiply Three or More Numbers
Multiply Three or More Numbers Up to 100
Find whole-number quotients of whole numbers with up to four-digit dividends and two-digit divisors, using strategies based on place value, the properties of operations, and/or the relationship between multiplication and division. Illustrate and explain the calculation by using equations, rectangular arrays, and/or area models.
Choose Properties of Multiplication
Factors of Multiplication
Properties of Multiplication with Factors Up to 12
Divide Two Numbers with Operands Up to 12
Division with Dividends Up to 60
Division with Divisors Up to 100
Division Patterns with Zeroes
Divide Numbers Ending in Zeroes
Division with Remainder with Dividend Up to 1000
Division with Remainder with Dividend Up to 10,000
Division with Remainder with Divisor Up to 1000
Division with Divisors Up to 10
Division with Divisors Up to 100
Division with Divisors Up to 100 II
Choose Numbers with a Particular Quotient
Add, subtract, multiply, and divide decimals to hundredths, using concrete models or drawings and strategies based on place value, properties of operations, and/or the relationship between addition and subtraction; relate the strategy to a written method and explain the reasoning used.
Add and Subtract Decimal Numbers Up to 2 Places
Add and Subtract Decimal Numbers Up to 3 Places
Add and Subtract Decimals Up to 10
Add and Subtract Decimal Up to 100
Add and Subtract Decimals
Choose Decimals with a Particular Sum or Difference
Complete the Addition or Subtraction Sentence
Inequalities with Decimal Addition and Subtraction
Multiply Decimals with Numbers Up to 1000
Multiply Decimals with Numbers Up to 10
Multiply Decimals and Whole Numbers
Multiply Decimals with Numbers Up to 10 II
Multiply Decimals with 3 Numbers Up to 10
Multiply Decimals Using Grids
Division with Decimals
Division with Decimal Quotients
Division with Decimal Quotients and Rounding
Division with Decimal Quotients
Mixed Decimal Equations
Mixed Decimal Equations
Add and Subtract Money: Up to $10,000
Multiply Money Amounts
Divide Money Amounts
Price Lists
Consumer Math: Price Lists
Consumer Math: Unit Prices
Use a pair of perpendicular number lines, called axes, to define a coordinate system, with the intersection of the lines (the origin) arranged to coincide with the 0 on each line and a given point in the plane located by using an ordered pair of numbers, called its coordinates. Understand that the first number indicates how far to travel from the origin in the direction of one axis, and the second number indicates how far to travel in the direction of the second axis, with the convention that the names of the two axes and the coordinates correspond (e.g., x-axis and x-coordinate, y-axis and y-coordinate).
Represent real world and mathematical problems by graphing points in the first quadrant of the coordinate plane, and interpret coordinate values of points in the context of the situation.
Understand that attributes belonging to a category of two-dimensional figures also belong to all subcategories of that category.
Classify and organize two-dimensional figures into Venn diagrams based on the attributes of the figures.
Convert among different-sized standard measurement units (i.e., km, m, cm; kg, g; lb, oz.; l, ml; hr, min, sec) within a given measurement system (e.g., convert 5 cm to 0.05 m), and use these conversions in solving multi-step, real world problems.
Convert Time Units
Add and Subtract Mixed Time Units
Find the Change in Time I
Change in Time Review
Find Start and End Times
Compare and Convert Customary Units
Compare Metric Units by Multiplying
Compare and Convert Metric Units
Compare Customary Units by Multiplying
Compare Metric Units by Multiplying
Convert Metric Units Involving Fractions
Convert Customary Units Involving Fractions
Convert Mixed Customary Units
Add and Subtract Customary Units
Add and Subtract Mixed Customary Units
Make a line plot to display a data set of measurements in fractions of a unit (1/2, 1/4, 1/8). Use operations on fractions for this grade to solve problems involving information presented in line plots.
Recognize volume as an attribute of solid figures and understand concepts of volume measurement.
Recognize volume as an attribute of solid figures and understand concepts of volume measurement. A cube with side length 1 unit, called a "unit cube," is said to have "one cubic unit" of volume, and can be used to measure volume.
Recognize volume as an attribute of solid figures and understand concepts of volume measurement. A solid figure which can be packed without gaps or overlaps using n unit cubes is said to have a volume of n cubic units.
Measure volumes by counting unit cubes, using cubic cm, cubic in, cubic ft, and improvised units.
Relate volume to the operations of multiplication and addition and solve real world and mathematical problems involving volume. Find the volume of a right rectangular prism with whole-number side lengths by packing it with unit cubes, and show that the volume is the same as would be found by multiplying the edge lengths, equivalently by multiplying the height by the area of the base. Represent threefold whole-number products as volumes, e.g., to represent the associative property of multiplication.
Relate volume to the operations of multiplication and addition and solve real world and mathematical problems involving volume. Apply the formulas V = l × w × h and V = B × h for rectangular prisms to find volumes of right rectangular prisms with whole-number edge lengths in the context of solving real world and mathematical problems.
Relate volume to the operations of multiplication and addition and solve real world and mathematical problems involving volume. Recognize volume as additive. Find volumes of solid figures composed of two non-overlapping right rectangular prisms by adding the volumes of the non-overlapping parts, applying this technique to solve real world problems.