The figure shows an overhead view of a 0.024 kg 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 6 N and is at 0₁ = 32°. Force F₂ has a magnitude of 4 N and is at 02 = 34°. In unit- vector notation, what is the third force if the lemon half (a) is stationary, (b) has the constant velocity = (141-163) m/s, and (c) has the (10 - 1317) m/s2, where t is time? = 0₂ AF₂

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The figure shows an overhead view of a 0.024 kg lemon half and
two of the three horizontal forces that act on it as it is on a
frictionless table. Force 7, has a magnitude of 6 N and is at
0₁ = 32°. Force 7₂ has a magnitude of 4 N and is at 02 = 34°. In unit-
vector notation, what is the third force if the lemon half (a) is
stationary, (b) has the constant velocity = (141 – 16)) m/s, and (c)
has the = (107-131)) m/s2, where t is time?
(a) Number 2.85
15B
F
0₁7
i+ .1366
AF₂
x
j
Units
N
Transcribed Image Text:The figure shows an overhead view of a 0.024 kg lemon half and two of the three horizontal forces that act on it as it is on a frictionless table. Force 7, has a magnitude of 6 N and is at 0₁ = 32°. Force 7₂ has a magnitude of 4 N and is at 02 = 34°. In unit- vector notation, what is the third force if the lemon half (a) is stationary, (b) has the constant velocity = (141 – 16)) m/s, and (c) has the = (107-131)) m/s2, where t is time? (a) Number 2.85 15B F 0₁7 i+ .1366 AF₂ x j Units N
(a) Number 2.85
(b) Number 2.85
(c) Number 3.09
i+
i+
i+
F
0₁
.1366
.1366
?
0₂
AF₂
x
j
Units
j
Units
Units
N
N
N
Transcribed Image Text:(a) Number 2.85 (b) Number 2.85 (c) Number 3.09 i+ i+ i+ F 0₁ .1366 .1366 ? 0₂ AF₂ x j Units j Units Units N N N
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