A truck has 2.5 -ft tires (in diameter). a. What distance will the truck travel with one rotation of the wheels? Give the exact distance and an approximation to the nearest tenth of a foot. b. How far will the truck travel with 10 , 000 rotations of the wheels? Give the exact distance and an approximation to the nearest foot. c. If the wheels turn at 672 rpm , what is the angular speed? d. If the wheels turn at 672 rpm , what is the linear speed in feet per minute? Give the exact distance and an approximation to the nearest whole unit. e. If the wheels turn at 672 rpm , what is the linear speed in miles per hour? Round to the nearest mile per hour.
A truck has 2.5 -ft tires (in diameter). a. What distance will the truck travel with one rotation of the wheels? Give the exact distance and an approximation to the nearest tenth of a foot. b. How far will the truck travel with 10 , 000 rotations of the wheels? Give the exact distance and an approximation to the nearest foot. c. If the wheels turn at 672 rpm , what is the angular speed? d. If the wheels turn at 672 rpm , what is the linear speed in feet per minute? Give the exact distance and an approximation to the nearest whole unit. e. If the wheels turn at 672 rpm , what is the linear speed in miles per hour? Round to the nearest mile per hour.
a. What distance will the truck travel with one rotation of the wheels? Give the exact distance and an approximation to the nearest tenth of a foot.
b. How far will the truck travel with
10
,
000
rotations of the wheels? Give the exact distance and an approximation to the nearest foot.
c. If the wheels turn at
672
rpm
, what is the angular speed?
d. If the wheels turn at
672
rpm
, what is the linear speed in feet per minute? Give the exact distance and an approximation to the nearest whole unit.
e. If the wheels turn at
672
rpm
, what is the linear speed in miles per hour? Round to the nearest mile per hour.
nd
ave a
ction and
ave an
48. The domain of f
y=f'(x)
x
1
2
(=
x<0
x<0
= f(x)
possible.
Group Activity In Exercises 49 and 50, do the following.
(a) Find the absolute extrema of f and where they occur.
(b) Find any points of inflection.
(c) Sketch a possible graph of f.
49. f is continuous on [0,3] and satisfies the following.
X
0
1
2
3
f
0
2
0
-2
f'
3
0
does not exist
-3
f"
0
-1
does not exist
0
ve
tes where
X
0 < x <1
1< x <2
2
Numerically estimate the value of limx→2+x3−83x−9, rounded correctly to one decimal place.
In the provided table below, you must enter your answers rounded exactly to the correct number of decimals, based on the Numerical Conventions for MATH1044 (see lecture notes 1.3
Actions
page 3). If there are more rows provided in the table than you need, enter NA for those output values in the table that should not be used.
x→2+
x3−83x−9
2.1
2.01
2.001
2.0001
2.00001
2.000001
Find the general solution of the given differential equation.
(1+x)dy/dx - xy = x +x2
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