9.1 Be sure you understand why a pendulum in equilibrium hanging in a car that is accelerating forward tilts backward, and then consider the following: A helium balloon is anchored by a massless string to the floor of a car that is accelerating forward with acceleration A. Explain clearly why the balloon tends to tilt forward and find its angle of tilt in equilibrium. [Hint: Helium balloons float because of the buoyant Archimedean force, which results from a pressure gradient in the air. What is the relation between the directions of the gravitational field and the buoyant force?]

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9.1 Be sure you understand why a pendulum in equilibrium hanging in a car that is accelerating
forward tilts backward, and then consider the following: A helium balloon is anchored by a massless
string to the floor of a car that is accelerating forward with acceleration A. Explain clearly why the
balloon tends to tilt forward and find its angle of tilt in equilibrium. [Hint: Helium balloons float
because of the buoyant Archimedean force, which results from a pressure gradient in the air. What is
the relation between the directions of the gravitational field and the buoyant force?]
Transcribed Image Text:9.1 Be sure you understand why a pendulum in equilibrium hanging in a car that is accelerating forward tilts backward, and then consider the following: A helium balloon is anchored by a massless string to the floor of a car that is accelerating forward with acceleration A. Explain clearly why the balloon tends to tilt forward and find its angle of tilt in equilibrium. [Hint: Helium balloons float because of the buoyant Archimedean force, which results from a pressure gradient in the air. What is the relation between the directions of the gravitational field and the buoyant force?]
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