From Doppler effect we have that the frequency observed for the relation between the velocities is equivalent to the frequency observed. That is mathematically,
![F_r = (v)/(v+v_s)F_s](https://img.qammunity.org/2021/formulas/physics/college/3likophnic8j0btvc74eio2p100k5i1f9x.png)
Here,
Speed of sound in water
![v = 1522m/s](https://img.qammunity.org/2021/formulas/physics/college/ew939af7choswgdwbwyq91u3jpkwm0flt7.png)
The Dolphin swims directly away from the observer with a velocity
![v_s = 8.5m/s](https://img.qammunity.org/2021/formulas/physics/college/466m612hwatjl4z2wl6th83dqdla2c21oa.png)
Observed frequency of the clicks produced by the dolphin
![F_r = 2770Hz](https://img.qammunity.org/2021/formulas/physics/college/9rnby2njfbba4kgodujkwxyi41tz8sbi6e.png)
Replacing we have,
![F_r = (v)/(v+v_s)F_s](https://img.qammunity.org/2021/formulas/physics/college/3likophnic8j0btvc74eio2p100k5i1f9x.png)
![F_s = (v+v_s)/(v)](https://img.qammunity.org/2021/formulas/physics/college/pc2102ig8xitjyr5bz2x5szjl1aw3q3kbo.png)
![F_s = 2770 ((1522)/(1522+8.5))](https://img.qammunity.org/2021/formulas/physics/college/en0sl02ey969mgexsd18wrvd8nsphiprsu.png)
![F_s = 2754.61Hz](https://img.qammunity.org/2021/formulas/physics/college/lqeoujuof30dvlbo21yc6nbopom3wq6b6h.png)
Therefore the frequency emitted by the dolphin is 2754.61Hz