What force stops a car from sinking into the road surface?

Answers

Answer 1
Answer:

Answer:

Explanation:

There are so many factors which works to stop a car from sinking into road surface. One is reaction force other factors are density of material from which the car is made of, mass and shape of car.but the most important force is the reaction force. According to the Newton's 3rd law of motion:- every force have equal force acting in opposite direction.

Answer 2
Answer: I believe it's technically referred to as the Normal force.
However I like to think of it as the reaction force, as it is the force that is a result of obeying Newton's 3rd law ("For every action, there is an equal and opposite reaction"). The upward force from the ground is the reaction to the downward force of gravity.

Related Questions

Gold alloys are _____.much harder than pure golddo not last as long as pure goldmuch more valuable than pure goldmuch softer than pure gold
Explain why atoms move at different speeds depending on whether they are in liquid or solids
What does the path of an object look like when it is in uniform motion ?
When the speed of the bottle is 2 m/s, the KE is _____ kg m2/s2. When the speed of the bottle is 3 m/s, the KE is _____ kg m2/s2. When the speed of the bottle is 4 m/s, the KE is _____ kg m2/s2. When the speed of the bottle is 5 m/s, the KE is _____ kg m2/s2.When the speed of the bottle is 6 m/s, the KE is _____ kg m2/s2.(it dident have the subject so i just picked something that deals with science)
Plz help me with this!

18. In an airplane flying at a constant speed, theforce pushing the airplane forward is exerted
by the engine and is equal to the opposite
force of air resistance. Describe how these
forces compare when the plane speeds up
and slows down. In which direction is the
net force on the airplane in each case?

Answers

Explanation:

In an airplane flying a constant speed, the force exerted by the engines pushing the plane forward is equal to the opposite force exerted by air resistance.

Does the depth of a pan affect how water freezes?

Answers

Yes it affects how long it'll take to freeze because of the amount of liquid that need to be frozen.
The more surface area exposed, the faster it freezes. The less surface area exposed, the slower it freezes.

Which of the following phases changes at point B on the diagram shown below? A)deposition
B)freezing
C)melting
D)boiling

Answers

At point B, the substance undergoes deposition, transitioning directly from a gas phase to a solid phase.  The correct option is a.

At point B on the phase diagram, the phase transition occurring is deposition. Deposition is a physical process in which a substance transitions directly from a gas phase to a solid phase without passing through the liquid phase. This change is driven by a decrease in temperature or an increase in pressure.

During deposition, gas particles lose energy, causing them to slow down and come together to form a solid structure. This process is exemplified in nature when water vapor in the atmosphere turns directly into frost or ice crystals on a cold surface. Deposition is the opposite of sublimation, where a substance transitions from a solid to a gas without becoming a liquid.

To know more about Deposition:

brainly.com/question/34428083

#SPJ3

Answer:

C. melting

option C is correct answer.

true or false the speed of sound traveling through steel is much less than the speed of sound traveling through air

Answers

This is false. Sound travels faster through steel. That is why you can see people in movies putting their ear on the railroads to see whether a train is coming. That is because they can't hear it through air, but the sound travels through the steel.
True because steel is much heavier and will make the sound travel through it slower

2 cups of the same side are filled to the brim with clear liquids cup a hold water cup be contains alcohol your teacher challenges you to figure out which cup How to water because of your grade science knowledge you know that all substances have their on specific properties you and your lab partner and I an ice cube in each cup ice floats in one like what do you predict it is the water and I sinks in the other like would you predict the liquid is alcohol what property of matter do used to identify liquid

Answers

The property is smell

Answer:

You used the property of density.

Explanation:

The ice cube floats in water because it is less dense and sinks in alcohol because it is more dense than the alcohol.

Name:Per:
PT HW 3.1
(linear) Kinetic Energy and Wor
1.a. A bicycler has a mass of 80. kg. He pedals the bike 100 min 20 seconds. What is
his kinetic energy (KE;)?
Given, Unknown:
Equation, Substitute:
Solution:
1.b. The bicycler (still 80.kg of mass) doubled his speed to 200m in 20 seconds, What
his new kinetic energy (KE)? What is the ratio of KE; and KE?
Given, Unknown:
Solution
Equation, Substitute:
1.c. The bicycler doubled his speed. What happened to his KE?
2.a. Car A has a mass of 250. kg. It's engine accelerates it from 0.0 to 20. m/s in 6.0
ndo (a) what is the car's acceleration in m s?
tio hstitute:
Solution:​

Answers

Answer:

1.a) 1 kJ

1.b) 4 kJ

     ratio 1:4

1.c) 4 times as before

2.a)  3.33 m/s2

Explanation:

1.a) bicycle's velocity =Displacement/time

                                   =100/20 m/s

                                   =5 m/s

bicycler's KE =1/2 *mass*(velocity)^2

                      =1/2*80*5^2

                       =1000 J = 1 kJ

1.b) bicycle's new velocity =200/20 m/s

                                   =10 m/s

bicycler's new KE =1/2*80*10^2

                             =4000 J = 4 kJ

Ratio= KE 1 :KE new

        = 1 :4

1.c)  when bicycler's speed was doubled it increased the KE by 4 times (2^2). because In KE we consider the square of the speed , so the factor we increase the speed , the KE will get increased with the square value of it

ex : speed is triple the prior value , then the KE is as 3^2 times as before. that is 9 times

2.a) car acceleration = (20-0)/6 m/s2

                                  = 3.33 m/s2