A small, spherical bead of mass 2.50 g is released from rest at t = 0 from a point under the surface of a viscous liquid. The terminal speed is observed to be v, = 1.60 cm/s (a) Find the value of the constant b in the equation R = -bv. N•s/m (b) Find the time t at which the bead reaches 0.632v,. (c) Find the value of the resistive force when the bead reaches terminal speed. N

Principles of Physics: A Calculus-Based Text
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Chapter5: More Applications Of Newton’s Laws
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A small, spherical bead of mass 2.50 g is released from rest at t = 0 from a point under the surface of a viscous liquid. The terminal speed is observed to be v, = 1.60 cm/s.
(a) Find the value of the constant b in the equation R = -bv.
N-s/m
(b) Find the time t at which the bead reaches 0.632v..
(c) Find the value of the resistive force when the bead reaches terminal speed.
Transcribed Image Text:A small, spherical bead of mass 2.50 g is released from rest at t = 0 from a point under the surface of a viscous liquid. The terminal speed is observed to be v, = 1.60 cm/s. (a) Find the value of the constant b in the equation R = -bv. N-s/m (b) Find the time t at which the bead reaches 0.632v.. (c) Find the value of the resistive force when the bead reaches terminal speed.
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