QUESTION IMAGE
Question
a (16.0\text{ kg}) sled initially at rest, slides down a frictionless hill that is inclined at (23.8^{circ}).
what is the acceleration of the sled as it slides down the hill?
(a = ? \text{ m/s}^2)
⚡ Using what you learned: newton's laws of motion
Step 1: Identify forces parallel to the incline
The only force acting along the frictionless incline is the component of gravity pulling the sled down the slope:
$$ F_{\parallel} = m \cdot g \cdot \sin(\theta) $$
Step 2: Apply Newton's Second Law
Set the net force equal to mass times acceleration:
$$ m \cdot a = m \cdot g \cdot \sin(\theta) $$
Divide both sides by mass \( m \):
$$ a = g \cdot \sin(\theta) $$
Step 3: Calculate the acceleration
Using \( g = 9.80 \text{ m/s}^2 \) and \( \theta = 23.8^\circ \):
$$ a = 9.80 \cdot \sin(23.8^\circ) $$
$$ a \approx 9.80 \cdot 0.4035 $$
$$ a \approx 3.95 \text{ m/s}^2 $$
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