QUESTION IMAGE
Question
question 16 (1 point)
an old lady rolls down a hill at 3 meters/second. the hill is 36 meters long. how many
seconds does it take the old lady to reach the bottom of the hill?
a) 39 seconds b) 12 seconds
c) 15 seconds d) 33 seconds
a
b
c
d
question 17 (1 point)
an object accelerates at a rate of 1.2 m/s² w for 2.0 s and has an initial velocity of
5.0 m/s e. what is its final velocity?
(a) 1.4 m/s e (b) 2.6 m/s e
(c) 6.2 m/s w (d) 7.4 m/s w
a
b
c
d
Question 16
Step1: Recall the formula for time
The formula for time \(t\) when given distance \(d\) and speed \(v\) is \(t=\frac{d}{v}\).
Step2: Substitute the values
Here, \(d = 36\) meters and \(v=3\) meters/second. So \(t=\frac{36}{3}\).
Step3: Calculate the value
\(\frac{36}{3}=12\)
Step1: Recall the formula for final velocity
The formula for final velocity \(v_f\) is \(v_f=v_i + at\), where \(v_i\) is the initial velocity, \(a\) is the acceleration and \(t\) is the time.
Step2: Substitute the values
Given \(v_i = 5.0\) m/s, \(a = 1.2\) m/s² and \(t = 2.0\) s. Then \(v_f=5.0+1.2\times2.0\).
Step3: Calculate the value
First, calculate \(1.2\times2.0 = 2.4\). Then \(v_f=5.0 + 2.4=7.4\) m/s
Snap & solve any problem in the app
Get step-by-step solutions on Sovi AI
Photo-based solutions with guided steps
Explore more problems and detailed explanations
B. 12 seconds