A practical problem solved using subtraction in an algebraic expression.
The amount of weight a shelf can hold varies with the length, width, and thickness of the board. Finding how much weight a specific board can hold combines direct, joint, and inverse variation and is illustrated here.
Using multiplication of polynomials in a practical problem.
A practical application of the slope-intercept equation involving rate of change is demonstrated.
Using the slope-intercept form of equation, a practical problem involving the rate of growth of a stack of newspapers is calculated.
Using the elimination method to solve a practical problem involving a scale, a spring, and some weights.
Using a quadratic equation to describe the relationship between variables in a practical problem involving the flight time of a golf ball.
A practical problem involving the speeds of two pulleys of different diameters is solved using inverse variation.
Direct variation is used in a practical problem to find the threshold weight for men of different heights.
A practical work problem that requires finding out how long it will take two workers with different work speeds to complete a task is solved using an equation with a rational expression. Two different approaches to findi..