Answer:
a) 137.6 m
b) 137.632 m
Step-by-step explanation:
T = Temperature of air = 22.0 °C
v = speed of sound at temperature "T"
speed of sound at temperature "T" is given as


m/s
a)
t = time taken for the sound to reach the physicist = 0.400 s
d = distance of the location of explosion
Distance of the location of explosion is given as
d = v t
d = (344.08) (0.400)
d = 137.6 m
b)
d = distance of the location of explosion
v = speed of sound = 344.08 m/s
c = speed of light = 3 x 10⁸ m/s
= time taken by sound to reach the physicist =
=

= time taken by light to reach the physicist =
=

t = time taken for the sound to reach the physicist = 0.400 s
time taken for the sound to reach the physicist is given as
t =
-
0.400 =
-

d = 137.632 m