Answer:
The friction coefficient is .
Explanation:
Given that,
Mass of first box = m
Mass of second box = 3m
Let the static friction force on the less massive box is .
Since the small box is not slide, they have the same acceleration.
We need to calculate the acceleration
Using balance equation
....(I)
....(II)
Adding both the equation
Put the value of a in equation (II)
We need to calculate the friction coefficient
Using formula of frictional force
Hence, The friction coefficient is .
peaks compressions dips rarefactions
The gravitational force of attraction acting on the earth due to sun is or .
Further Explanation:
The Newton’s law of Gravitation states that the gravitational force of attraction acting between two bodies is directly proportional to the product of the mass of the two bodies and inversely proportional to the square of the distance between the two bodies.
Given:
The mass of the sun is .
The distance between the Earth and the sun is .
Concept:
The gravitational force of attraction between the two bodies can be represented mathematically as:
Here, is the gravitational force of attraction, is the gravitational constant, is the mass of the first body, is the mass of the second body and is the distance between them.
Since the two bodies are Sun and the Earth so the masses of the two are considered.
The mass of the Earth is and the value of Gravitational constant is .
Substitute for , for , for and for in above equation.
Therefore, the gravitational force of attraction acting on the earth due to sun is or .
Learn More:
1. Calculate the total force on the earth due to Venus, Jupiter and Saturn brainly.com/question/2887352
2. A rocket being thrust upward as the force of the fuel being burned pushes downward brainly.com/question/11411375
3. A 50-kg meteorite moving at 1000 m/s strikes earth. Assume the velocity is along the line brainly.com/question/6536722
Answer details:
Grade: High school
Subject: Physics
Chapter: Newton’s law of Gravitation
Keywords:
Gravitational force, attraction, newton’s law, earth, sun, mass of the sun, distance, 1.99*10^30 kg, 1.50*10^11 m, 6.67x10^-11, gravitational constant.
Answer:
It is because some of the heat is lost in the surroundings.
Explanation:
To calculate the specific heat of the metal, the following steps are performed.
Take a piece of metal whose mass and the initial temperature is known.
Now take a beaker filled with some measured amount of water and the temperature of water is known.
Drop the heated metal piece in the water so that the equilibrium is reached.
According to the principle of calorimetery,
Heat lost by the metal = heat gained by the water
here, some of the heat is lost in the surroundings so we don't get the correct value of the specific heta of the metal.
B) The frequency will increase
C) The frequency will decrease
D) The frequency will increase or decrease depending on the diameter of the horn.
E) The frequency will remain same
Answer:
B) The frequency will increase
Explanation:
The length of the instrument is given by
Wavelength is given by
It can be seen that the length is inversely proportional to the frequency.
Here, the length of the trombone is decreasing so the frequency will increase.
I'm assuming you're asking for the elevator's final velocity.
Consider the following equation:
Vf = Vi + aΔt
Vf is the final velocity.
Vi is the initial velocity.
a is the acceleration.
Δt is the amount of elapsed time.
Given values:
Vi = 12.60m/s
a = -3.60m/s²
Δt = 2.97s
Substitute the terms in the equation with the given values and solve for Vf:
Vf = 12.60 - 3.60×2.97