Suppose water is leaking from a tank through a circular hole of area A, at its bottom. When water leaks through a hole, friction and contraction of the stream near the hole reduce the volume of water leaving the tank per second to CA,V 2gh, where c (0

Advanced Engineering Mathematics
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Chapter2: Second-order Linear Odes
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If the tank is initially full, how long (in minutes) will it take the tank to empty? (Round your answer to two decimal places.)
14.31
V minutes
(b) Suppose the tank has a vertex angle of 60° and the circular hole has radius 4 inches. Determine the differential equation governing the height h of water. Use c = 0.6 and
g = 32 ft/s?.
dh
dt
Solve the initial value problem that assumes the height of the water is initially 10 feet.
h(t) =
If the height of the water is initially 10 feet, how long (in minutes) will it take the tank to empty? (Round your answer to two decimal places.)
X minutes
Transcribed Image Text:If the tank is initially full, how long (in minutes) will it take the tank to empty? (Round your answer to two decimal places.) 14.31 V minutes (b) Suppose the tank has a vertex angle of 60° and the circular hole has radius 4 inches. Determine the differential equation governing the height h of water. Use c = 0.6 and g = 32 ft/s?. dh dt Solve the initial value problem that assumes the height of the water is initially 10 feet. h(t) = If the height of the water is initially 10 feet, how long (in minutes) will it take the tank to empty? (Round your answer to two decimal places.) X minutes
Suppose water is leaking from a tank through a circular hole of area A, at its bottom. When water leaks through a hole, friction and contraction of the stream near the hole reduce the
volume of water leaving the tank per second to CA,V 2gh, where c (0 < c< 1) is an empirical constant.
A tank in the form of a right-circular cone standing on end, vertex down, is leaking water through a circular hole in its bottom. (Assume the removed apex of the cone is of negligible heig
and volume.)
(a) Suppose the tank is 20 feet high and has radius 8 feet and the circular hole has radius 2 inches. The differential equation governing the height h in feet of water leaking from a tank
after t seconds is
dh
dt
6h 3/2
In this model, friction and contraction of the water at the hole are taken into account with c = 0.6, and g is taken to be 32 ft/s?. See the fiqure below.
8 ft
Aw
20 ft
`circular hole
Solve the initial value problem that assumes the tank is initially full.
25t
h(t) =
800 5
12
Transcribed Image Text:Suppose water is leaking from a tank through a circular hole of area A, at its bottom. When water leaks through a hole, friction and contraction of the stream near the hole reduce the volume of water leaving the tank per second to CA,V 2gh, where c (0 < c< 1) is an empirical constant. A tank in the form of a right-circular cone standing on end, vertex down, is leaking water through a circular hole in its bottom. (Assume the removed apex of the cone is of negligible heig and volume.) (a) Suppose the tank is 20 feet high and has radius 8 feet and the circular hole has radius 2 inches. The differential equation governing the height h in feet of water leaking from a tank after t seconds is dh dt 6h 3/2 In this model, friction and contraction of the water at the hole are taken into account with c = 0.6, and g is taken to be 32 ft/s?. See the fiqure below. 8 ft Aw 20 ft `circular hole Solve the initial value problem that assumes the tank is initially full. 25t h(t) = 800 5 12
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