A Cyclist Rides At An Average Speed Of 31 Miles Per Hour. The Cyclist’s Speed, S, Can Differ From The Average By As Much As 8 Miles Per Hour. The Absolute Value Inequality Represents This Situation. If The Compound Inequality And Also Represents This Situation, What Is The Value Of X In The Compound Inequality? –8 –8 Or 8 8 8 And –8

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A Cyclist Rides At An Average Speed Of 31 Miles Per Hour. The Cyclist’s Speed, S, Can Differ From The Average By As Much As 8 Miles Per Hour. The Absolute Value Inequality Represents This Situation. If The Compound Inequality And Also Represents This Situation, What Is The Value Of X In The Compound Inequality? –8 –8 Or 8 8 8 And –8. A cyclist rides at an average speed of 31 miles per hour. The absolute value inequality represents this.

A cyclist rides at an average speed of 31 miles per hour. The cyclist’s
A cyclist rides at an average speed of 31 miles per hour. The cyclist’s from brainly.com

A a cyclist rides at an average speed of 31 milles per hour. A cyclist rides at an average speed of 31 miles per hour. The cyclist's speed, s, can differ from the average by as much as 8 miles per hour.

The Cyclist's Speed, S, Can Differ From The Average By As Much As 8 Miles Per Hour.


The absolute value inequality represents this. The cyclist's speed, s, can differ from the average by as much as 8 miles per hour. If the compound much as 8 miles per.

The Equation Y = 20X Shows The Distance, Y, The Cyclist.


A cyclist rides at an average speed of 31 miles per hour. A a cyclist rides at an average speed of 31 milles per hour. In the given problem, we determined that the value of x in the compound inequality is 8, as it represents the range of variation in the cyclist's speed around the average speed of.

A Cyclist Rides At An Average Speed Of 31 Miles Per Hour.


The cyclist's speed, s, can differ from the average by as much as 8 miles per hour. The cyclist's speed, s, gah differ from the average by as much as 8 miles per hour.

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