A large balloon of mass 226 kg is filled with helium gas until its volume is 325 m3. Assume the density of air is 1.20 kg/m3 and the density of helium is 0.179 kg/m3.
(a) Calculate the buoyant force acting on the balloon.
(b) Find the net force on the balloon and determine whether the balloon will rise or fall after it is released.
(c) What maximum additional mass can the balloon support in equilibrium?
(d) If you skip (c), how high the balloon goes up in 4.0s?
A large balloon of mass 226 kg is filled with helium gas until its volume is...
A large weather balloon whose mass is 222 kg is filled with helium gas until its volume is 330 m3. Assume the density of air is 1.20 kg/m3 and the density of helium is 0.179 kg/m3 (a) Calculate the buoyant force acting on the balloon. (b) Find the net force on the balloon and determine whether the balloon will rise or fall after it is released. Fnet- direction - Select (c) What additional mass can the balloon support in equilibrium?...
A large weather balloon whose mass is 222 kg is filled with helium gas until its volume is 322 m3. Assume the density of air is 1.20 kg/m3 and the density of helium is 0.179 kg/m3. (a) Calculate the buoyant force acting on the balloon. 3786.72 N (b) Find the net force on the balloon. N upward (c) What additional mass can the balloon support in equilibrium? kg Please help!
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A spherical weather balloon is filled with hydrogen until its radius is 3.90 m. Its total mass including the instruments it carries is 10.0 kg. (a) Find the buoyant force acting on the balloon, assuming the density of air is 1.29 kg/m3. Incorrect: Your answer is incorrect. kN (b) What is the net force acting on the balloon and its instruments after the balloon is released from the ground? kN
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