Chapter 2: Problem 7
Write an equation that expresses the statement. \(v\) is inversely proportional to \(z\)
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These are the key concepts you need to understand to accurately answer the question.
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Chapter 2: Problem 7
Write an equation that expresses the statement. \(v\) is inversely proportional to \(z\)
These are the key concepts you need to understand to accurately answer the question.
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(a) Show that if the \(x\) . and \(y\) intercepts of a line are nonzero numbers \(a\) and \(b\) , then the equation of the line can be written in the form $$ \frac{x}{a}+\frac{y}{b}=1 $$ This is called the twe-intercept form of the equation of a line. (b) Use part (a) to find an equation of the line whose \(x\) -intercept is 6 and whose \(y\) -intercept is \(-8\) .
\(59-66\) . Find the solutions of the inequality by drawing appropriate graphs. State each answer rounded to two decimals. $$ \sqrt{0.5 x^{2}+1} \leq 2|x| $$
Find an equation of the line that satisfies the given conditions. y-intercept 6 : parallel to the line \(2 x+3 y+4=0\)
Find the slope and y-intercept of the line, and draw its graph. $$ \frac{1}{2} x-1 y+1=0 $$
Crickets and Temperature Biologists have observed that the chirping rate of crickets of a certain species is related to temperature, and the relationship appears to be very nearly linear. A cricket produces 120 chirps per minute at \(70^{\circ} \mathrm{F}\) and 168 chirps per minute at \(80^{\circ} \mathrm{F} .\) (a) Find the linear equation that relates the temperature \(t\) and the number of chirps per minute \(n\) . (b) If the crickets are chirping at 150 chirps per minute, estimate the temperature.
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