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mr_godi [17]
2 years ago
14

The rainbow of visible colors in the electromagnetic spectrum varies continuously from the longest wavelengths (the reddest colo

rs) to the shortest wavelengths (the deepest violet colors) our eyes can detect. Wavelengths near 655 nm are perceived as red. Those near 515 nm are green and those near 475 nm are blue. Calculate the frequency of light (in Hz) with a wavelength of 655 nm, 515 nm, and 475 nm.
Physics
1 answer:
Bogdan [553]2 years ago
3 0

Answer:

4.58\times 10^{14}Hz 5.825\times 10^{14}Hz 6.31\times 10^{14}Hz

Explanation:

We know that there is a relation between the speed of light ,frequency and wavelength.This relation can be given as v=\nu \lambda where v is speed of light \nu is frequency of light \lambda is wavelength of light

In first case we have given λ=655 nm

so using formula  v=\nu \lambda

3\times 10^8=655\times 10^{-9}\times \nu

\nu =4.58\times 10^{14} Hz

In second case we have wavelength 515 nm so by using above formula

3\times 10^8=515\times 10^{-9}\times \nu

\nu =5.825\times 10^{14}\ Hz

In third case we have wavelength 475 nm

so 3\times 10^8=475\times 10^{-9}\times \nu

\nu =6.31\times 10^{14}Hz

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Marianna [84]

(a) 134.4 J

The total mechanical energy of the ball at the moment of launch is just equal to its initial kinetic energy:

E=K_i = \frac{1}{2}mu^2

where

m = 0.05 kg is the mass of the ball

u = 78.2 m/s is the initial speed

Substituting,

E=\frac{1}{2}(0.05)(78.2)^2=152.9 J

At the pinnacle of its trajectory, the total mechanical energy is sum of kinetic energy and potential energy:

E=K_f + U_f = K_f + mgh

where

g=9.8 m/s^2 is the acceleration of gravity

h = 37.8 m is the maximum height

Since the total energy must be conserved,

E = 152.9 J

Therefore, we can solve to find the kinetic energy of the ball at the pinnacle:

K_f = E-mgh=152.9-(0.05)(9.8)(37.8)=134.4 J

b) 74.2 m/s

When the ball is 5.60 m below the pinnacle point, the heigth of the ball is

h=37.8-5.6=32.2 m

So its potential energy is

U=mgh=(0.05)(9.8)(32.2)=15.8 J

The total energy is again the sum of potential and kinetic energy:

E = K + U

So the kinetic energy at that point is

K=E-U=152.9-15.8=137.1 J

And since the kinetic energy is

K=\frac{1}{2}mv^2

We can find the speed:

v=\sqrt{\frac{2K}{m}}=\sqrt{\frac{2(137.1)}{0.05}}=74.2 m/s

3 0
2 years ago
Sebuah benda dijatuhkan bebas dari ketinggian 200 m jika grafitasi setempat 10 m/s maka hitunglah kecepatan dan ketinggian benda
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Please post in English so i or someone else can help you.
7 0
2 years ago
Sea level is currently rising at 3.2 mm/yr, and scientists predict that global warming could cause a rise in sea level of 7 m if
Dovator [93]

Answer:

2188 years

Explanation:

given,                                              

see level rising at the rate = 3.2 mm/yr

height of the sea level to rise = 7 m        

time it will take rise 7 m = ?              

we know,                                      

           1 m = 1000 mm                          

           1 mm = 0.001 m                          

rate of increase of rate = 0.0032 m/year                  

time taken to rise = \dfrac{7}{0.0032}\ years

                             = 2187.5 years                                    

Now, time taken by the sea level to rise 7 m is equal to 2188 years.

7 0
2 years ago
There is a 120 V circuit in a house that is a dedicated line for the dishwasher, meaning the dishwasher is the only resistor on
aliya0001 [1]

The info given in the question:

Voltage= 120V

Current=18A

Now we have to find the resistance. To find it use the following formula:

V=IR

Now making R to be the subject of the formula

R=V/I

R=120/18

The answer is 6.67 ohms

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7 0
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Answer:

0.28

0.56

Explanation:

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