Use Table 1 to evaluate all integrals involved in any solutions of Problems 71 – 94. 89. Pollution. An oil tanker is producing an oil slick that is radiating outward at a rate given approximatcly by d R d t = 100 t 2 + 9 t ≥ 0 where R is the radius (in feet) of the circular slick after t minutes. Find the radius of the slick after 4 minutes if the radius is 0 when t = 0.
Use Table 1 to evaluate all integrals involved in any solutions of Problems 71 – 94. 89. Pollution. An oil tanker is producing an oil slick that is radiating outward at a rate given approximatcly by d R d t = 100 t 2 + 9 t ≥ 0 where R is the radius (in feet) of the circular slick after t minutes. Find the radius of the slick after 4 minutes if the radius is 0 when t = 0.
Solution Summary: The author explains how the rate of change in radius of a oil tanker is computed.
Use Table 1 to evaluate all integrals involved in any solutions of Problems 71–94.
89. Pollution. An oil tanker is producing an oil slick that is radiating outward at a rate given approximatcly by
d
R
d
t
=
100
t
2
+
9
t
≥
0
where R is the radius (in feet) of the circular slick after t minutes. Find the radius of the slick after 4 minutes if the radius is 0 when t = 0.
With differentiation, one of the major concepts of calculus. Integration involves the calculation of an integral, which is useful to find many quantities such as areas, volumes, and displacement.
12. The amount of heat H (in joules) required to convert one gram of water into vapor is linearly related to thetemperature T (in ?? ) of the atmosphere. At 10?? this conversion requires 2480 joules, and each increasein temperature of 15?? lowers the amount of heat needed by 40 joules. Express H in term of T.
Problem 8. Water flows into a tank at 6t2 + 1 gallons per minute for 0 <
t< 2, with t in minutes. If the tank held 32 gallons when t
water, in gallons, was in the tank when t = 1?
2, how much
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