1.
![8.91\cdot 10^(-7) m](https://img.qammunity.org/2020/formulas/physics/high-school/p69298r9dekbqu511ptgmaowj5r2kq5sdg.png)
The wavelength of a wave is given by the formula
![\lambda=(v)/(f)](https://img.qammunity.org/2020/formulas/physics/high-school/3mt29el0otp87hhrg01vubljucwyu8v3a1.png)
where
v is the speed of the wave
f is the frequency
For the electromagnetic wave in this problem,
is the frequency
is the speed of the wave
Substituting into the equation, we find
![\lambda=(2.05\cdot 10^8 m/s)/(2.30\cdot 10^(14)Hz)=8.91\cdot 10^(-7) m](https://img.qammunity.org/2020/formulas/physics/high-school/dltlxsk9cwutnv3fcilorvfyzi81kw0dfn.png)
2.
![22.1^(\circ)](https://img.qammunity.org/2020/formulas/physics/high-school/z6tkhbr86pv2b59xdlkig4968vp0p55uc1.png)
The angle of refraction can be found by using Snell's law:
![n_i sin \theta_i = n_r sin \theta_r](https://img.qammunity.org/2020/formulas/physics/high-school/p7u7upiov9p4dihabss41aju5cwocm3mw4.png)
where
is the refractive index of the first medium (air)
is the refractive index of the second medium (water)
is the angle of incidence in air
Solving the equation for
, we find the angle of refraction of the light ray in water:
![\theta_r = sin^(-1) ((n_i sin \theta_i)/(n_r))=sin^(-1) (((1.00293)(sin 30^(\circ)))/(1.333))=22.1^(\circ)](https://img.qammunity.org/2020/formulas/physics/high-school/kztdlnbf4146ryxjj8w2gyes039e27qhr1.png)