The figure below shows an overhead view of a lemon half and two of the three horizontal forces that act on it as it is on a frictionless table. Force F₁ has a magnitude of 4.40 N and is at 0₁ = 27°. Force F2 has a magnitude of 7.00 N and is at 8₂ = 27°. The lemon half has mass 0.0200 kg. 8₁ F₂ (a) What is the third force if the lemon half has zero velocity? N (b) What is the third force if the lemon half has constant velocity=(13.01 - 14.0ĵ) m/s? N (c) What is the third force if the lemon half has a varying velocity=(13.0tî - 14.0tĵ) m/s, where t is time in seconds? N

Principles of Physics: A Calculus-Based Text
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Chapter1: Introduction And Vectors
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The figure below shows an overhead view of a lemon half and two of the three horizontal forces that act on it as it is on a frictionless table. Force ₁ has a magnitude of 4.40 N and is at 0₁ = 27°. Force F₂ has a
magnitude of 7.00 N and is at 0₂ = 27°. The lemon half has mass 0.0200 kg.
0₁
09
(a) What is the third force if the lemon half has zero velocity?
F3 =
N
(b) What is the third force if the lemon half has constant velocity
N
3 =
✓ = (13.0î – 14.0ĵ) m/s?
(c) What is the third force if the lemon half has a varying velocity = (13.0tî - 14.0tĵ) m/s, where t is time in seconds?
N
Transcribed Image Text:The figure below shows an overhead view of a lemon half and two of the three horizontal forces that act on it as it is on a frictionless table. Force ₁ has a magnitude of 4.40 N and is at 0₁ = 27°. Force F₂ has a magnitude of 7.00 N and is at 0₂ = 27°. The lemon half has mass 0.0200 kg. 0₁ 09 (a) What is the third force if the lemon half has zero velocity? F3 = N (b) What is the third force if the lemon half has constant velocity N 3 = ✓ = (13.0î – 14.0ĵ) m/s? (c) What is the third force if the lemon half has a varying velocity = (13.0tî - 14.0tĵ) m/s, where t is time in seconds? N
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