Explanation:
Given that,
Voltage, V = 220 V
Current, I = 4 A
We have to find the resistance of the appliance.
Ohm's law gives the relation between the current, resistance and the voltage.
V = I R, R = resistance
So,
Resistance of the appliance is .
Hence, this is the required solution.
The strong nuclear force
Answer:
7.62 x J
Explanation:
Given:
frequency 'f'= 1.15 x Hz
Planck's constant 'h'= 6.63x Js
Energy of photon can be calculated by the formula:
E= hf
Where,
E= energy of photon
f= frequency of photon
h= Planck's constant
Putting the given values in the formula
E= 6.63x x 1.15 x
E= 7.62 x J
Therefore, the energy of photon is 7.62 x J
Answer:
Explanation:
Given:
Frequency, f = 1.15 × 10^15 Hz
Plancks constant, h = 6.63 × 10^-34 Js
Using the formula,
Energy, E = h × f
Inputting values,
Energy, E = 1.15 × 10^15 × 6.63 × 10^-34
= 7.6245 × 10^-19 J
Energy of the photon , E = 7.6245 × 10^-19 J.
B. A feather will fall slower than a bowling ball.
C. A feather and a bowling ball will fall at the same rate.
D. Both a feather and a bowling ball can't fall, but will always remain motionless.
When Tyler drives 50 km north and then drives back 30 km south, we have:
1. The distance that he covers is 80 km.
2. Tylor's displacement is 20 km.
1. The distance is a scalar that is given by the sum of the kilometers traveled by Tyler as follows:
Hence, the distance traveled by Tyler was 80 km.
2. The displacement is a vector that depends on the direction of travel. Takin the north direction as positive we have:
Therefore, Tyler's displacement is 20 km.
You can find more about displacement and distance here: brainly.com/question/4307551?referrer=searchResults
I hope it helps you!
Answer:
80 km is distance and 30km north is displacement
Explanation:
distance= 50+30=80km
displacement= 50-20=30
his displacement is 30km north
Why is gravity an example of scientific law?
Because it is a basic concept that defines a constant and universal behaviour of nature, gravity is seen as an illustration of a scientific law.
Scientific laws are succinct formulations that precisely explain a natural occurrence and are the result of in-depth observation and investigation. Einstein's theory of general relativity or Newton's law of universal gravitation both use the concept of gravity to explain how mass-containing objects interact with one another in space.
It offers a mathematical framework that enables researchers to perform precise projections and estimates about celestial body motion, the behaviour of things close to the surface of the Earth, and the structure of the cosmos.
The fact that gravity is recognised as a scientific rule is a reflection of the fact that it is widely accepted and has been shown to have practical applications.
To know more about gravity :
#SPJ6.