Answer:
Power your home with renewable energy.
Weatherize, weatherize, weatherize.
Invest in energy-efficient appliances.
Reduce water waste.
Actually eat the food you buy—and make less of it meat.
Explanation:
The frequency of light for which the wavelength is is .
Further explanation:
The frequency is a measure of number of wave’s that passes through a fixed point or place in a given time interval. The S.I unit of frequency is Hertz .
Wavelength is defined as the distance between two successive crests or troughs of a travelling wave.
Examples of waves are sound wave, light wave, mechanical waves, surface waves etc.
Given:
The wavelength of the light used is .
The speed of the light is .
Concept:
Light is an electromagnetic wave which carries energy in the form of electric field and magnetic field. The speed of light in vacuum is .
The speed of light can be expressed in terms of wavelength of the light and the frequency of the light.
The speed of light is:
Rearrange the above expression.
…… (1)
Here, is the frequency of the light, is the speed of the light in vacuum and is the wavelength of the light.
Substitute for and for in equation (1).
Thus, the frequency of light for which the wavelength is is .
Learn More:
1. What is the threshold frequency ν0 of cesium? Note that 1 ev (electron volt)=1.60×10−19 j. brainly.com/question/6953278
2. Calculate the wavelength of an electron (m = 9.11 × 10-28 g) moving at 3.66 × 106 m/s brainly.com/question/1979815
3. What is the frequency of light for which the wavelength is 7.1 × 102 nm brainly.com/question/9559140
Answer Details:
Grade: High School
Subject: Physics
Chapter: Electromagnetic Waves
Keywords:
Frequency, light, wavelength, 420 nm, 4.20x10^-7 m, 7.14x10^14 Hz, vacuum, air, crests, troughs, sound wave, light wave, mechanical wave.
Answer:
I’m so sorry I tried solving it but I don’t understand it can you explain the question a little bit more ty
Explanation:
She can measure the volume and mass of the marble, the volume and mass of the water, and the volume and mass of the graduated cylinder.
She can measure the volume and mass of the marble, the volume and mass of the water, and the mass of the graduated cylinder.
She can measure the volume of the marble and water, and the mass of the graduated cylinder.
She can measure the mass of the marble and water, and the volume of the graduated cylinder.
Answer:
Its B. She can measure the volume and mass of the marble, the volume and mass of the water, and the mass of the graduated cylinder.
Explanation:
I just did it
Answer:
The awnser is actually B.
Explanation:
She can measure the mass of the water, marble and the graduated cylinder with the balance.
The volume of the water can be shown on the marked graduated cylinder, the volume of the marble can be measured by the volume difference of the water before and after the marble is put in.
Answer:
Explanation:
given,
two identical spring have identical spring constant
mass 'm' is hanging on one spring and mass of '2m' on another wall.
energy of the two system is same
energy of the system having mass 'm'
energy of the system having mass '2m'
now, Energy are same
we know