Answer:
8.70 seconds.
Explanation:
1. Use the kinematic equation: v = u + at,
v = final velocity
u = initial velocity
a = acceleration
t = time.
Find variables and numbers:
v = ?
u = 20 m/s
a = -2.3 m²
v = 0 m/s
Rearrange values: t = (v - u) / a.
Plugging in the values: t = (0 - 20) / (-2.3) = 20 / 2.3
Answer:
they are dangrous to boats
Explanation:
Angular frequency of pendulum is given by
for both pendulum we have
For other pendulum
now we have relate angular frequency given as
[tex\omega_1 - \omega_2 = 3.13 - 2.98 = 0.15 rad/s[/tex]
now time taken to become in phase again is given as
now number of oscillations complete in above time