Solar eclipse. On July 2, 2019, a total solar eclipse will occur over the South Pacific Ocean and parts of South America. ( Source : eclipse.gsfc.nasa.gov. ) The path of the eclipse is modeled by f ( t ) = 0.00259 t 2 − 0.457 t + 36.237 , Where f ( t ) is the latitude in degrees south of the equator at t minutes after the start of the total eclipse. What is the latitude closest to the equator, in degrees, at which the total eclipse will be visible?
Solar eclipse. On July 2, 2019, a total solar eclipse will occur over the South Pacific Ocean and parts of South America. ( Source : eclipse.gsfc.nasa.gov. ) The path of the eclipse is modeled by f ( t ) = 0.00259 t 2 − 0.457 t + 36.237 , Where f ( t ) is the latitude in degrees south of the equator at t minutes after the start of the total eclipse. What is the latitude closest to the equator, in degrees, at which the total eclipse will be visible?
Solar eclipse. On July 2, 2019, a total solar eclipse will occur over the South Pacific Ocean and parts of South America. (Source: eclipse.gsfc.nasa.gov.) The path of the eclipse is modeled by
f
(
t
)
=
0.00259
t
2
−
0.457
t
+
36.237
,
Where
f
(
t
)
is the latitude in degrees south of the equator at t minutes after the start of the total eclipse. What is the latitude closest to the equator, in degrees, at which the total eclipse will be visible?
5
Use the method of disks to find the volume of the solid that is obtained
when the region under the curve y = over the interval [4,17] is rotated
about the x-axis.
3. Use the method of washers to find the volume of the solid that is obtained
when the region between the graphs f(x) = √√2 and g(x) = secx over the
interval ≤x≤ is rotated about the x-axis.
4. Use cylindrical shells to find the volume of the solid generated when the
region enclosed by the given curves is revolved about the x-axis.
y = √√x, y = 0, y = √√3
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