Two forces F₁ and F2 act on a 5.80 -kg object. F₁ = 30.0 N and F2 = 16.0 N. 90.0⁰ L 60.0⁰ (a) Find the acceleration of the object for the configuration of forces shown in Figure (a). direction x magnitude Did you forget that the acceleration depends on the mass? m/s² X Draw a careful picture representing the sum of the two forces (draw vectors, 'tip-to-tail') then check your trigonometry definitions. (counterclockwise from F1) (b) Find the acceleration of the object for the configuration of forces shown in Figure (b). m/s² magnitude direction (counterclockwise from F₁)

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Two forces F₁ and F2 act on a 5.80 -kg object. F₁ = 30.0 N and F2 = 16.0
N.
90.0⁰°
for
60.0⁰
direction
b
(a) Find the acceleration of the object for the configuration of forces
shown in Figure (a).
F₁
X
magnitude Did you forget that the acceleration depends on the mass?
m/s²
X
Draw a careful picture representing the sum of the two forces
(draw vectors, 'tip-to-tail') then check your trigonometry
definitions. (counterclockwise from F₁)
(b) Find the acceleration of the object for the configuration of forces
shown in Figure (b).
magnitude
m/s²
direction
(counterclockwise from F₁)
Transcribed Image Text:Two forces F₁ and F2 act on a 5.80 -kg object. F₁ = 30.0 N and F2 = 16.0 N. 90.0⁰° for 60.0⁰ direction b (a) Find the acceleration of the object for the configuration of forces shown in Figure (a). F₁ X magnitude Did you forget that the acceleration depends on the mass? m/s² X Draw a careful picture representing the sum of the two forces (draw vectors, 'tip-to-tail') then check your trigonometry definitions. (counterclockwise from F₁) (b) Find the acceleration of the object for the configuration of forces shown in Figure (b). magnitude m/s² direction (counterclockwise from F₁)
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