Answer:
a) 1.4 x 10⁵ Hz
b) 1.8 x 10³ Hz
Step-by-step explanation:
a)
= speed of sound = 342 m/s
= speed of jet = 1200 km/h = 333.33 m/s
= actual frequency = 3500 Hz
= observed frequency
Observed frequency is given as


= 1.4 x 10⁵ Hz
b)
= speed of sound = 342 m/s
= speed of jet = 1200 km/h = 333.33 m/s
= actual frequency = 3500 Hz
= observed frequency
Observed frequency is given as


= 1.8 x 10³ Hz