(Modeling) Measuring Speed by Radar Any offset between a stationary radar gun and a moving target creates a "cosine effect" that reduces the radar read- ing by the cosine of the angle between the gun and the vehicle. That is, the radar speed reading is the product of the actual speed and the cosine of the angle. (Source: Fischetti, M., "Working Knowledge," Scientific American.) 89. Find the radar readings, to the nearest unit, for Auto A and Auto B shown in the figure. Radar gun 10 angle Actual speed: 70 mph Auto A 20° angle Actual speed: 70 mph Auto B

Functions and Change: A Modeling Approach to College Algebra (MindTap Course List)
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Chapter2: Graphical And Tabular Analysis
Section2.2: Graphs
Problem 26E
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rately
per hour, to the nearest unit) is the car traveling when it hits the truck? (Use the
applies the brakes. Assuming that a collision cannot be avoided, how fast (in miles
same values for K, and K, as in Exercise 85.)
(Modeling) Measuring Speed by Radar Any offset
between a stationary radar gun and a moving target
creates a "cosine effect" that reduces the radar read-
ing by the cosine of the angle between the gun and the
vehicle. That is, the radar speed reading is the product
of the actual speed and the cosine of the angle. (Source:
Fischetti, M., "Working Knowledge," Scientific American.)
89. Find the radar readings, to the nearest unit, for
Auto A and Auto B shown in the figure.
Radar gun
10° angle
Actual speed: 70 mph
HOLIOE
Auto A
20° angle
Actual speed: 70 mph
Auto B
Radar gun
90. The speed reported by a radar gun is reduced by
the cosine of angle 0, shown in the figure, where
Transcribed Image Text:rately per hour, to the nearest unit) is the car traveling when it hits the truck? (Use the applies the brakes. Assuming that a collision cannot be avoided, how fast (in miles same values for K, and K, as in Exercise 85.) (Modeling) Measuring Speed by Radar Any offset between a stationary radar gun and a moving target creates a "cosine effect" that reduces the radar read- ing by the cosine of the angle between the gun and the vehicle. That is, the radar speed reading is the product of the actual speed and the cosine of the angle. (Source: Fischetti, M., "Working Knowledge," Scientific American.) 89. Find the radar readings, to the nearest unit, for Auto A and Auto B shown in the figure. Radar gun 10° angle Actual speed: 70 mph HOLIOE Auto A 20° angle Actual speed: 70 mph Auto B Radar gun 90. The speed reported by a radar gun is reduced by the cosine of angle 0, shown in the figure, where
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