How does the steady state theory of the origin of the universe differ from the Big Bang and oscillating theories?

Answers

Answer 1
Answer:

Answer:

Big bang describes an ever expanding model of the universe.

Steady state theory explains a universe that always existed in the same state.

Explanation:

The two theories Big bang and Steady state are two of the theories that  explain the origin of the universe in two different ways.

The Big bang model states that the universe is ever expanding and began from a singularity. It says that from that time universe is ever expanding creating new clusters of galaxies.

This was proved using mathematical formulae and models .

Steady state theory states that the density of matter remains unchanged due to the creation of matter. Observable universe is the same at any point of time is its summary.

Answer 2
Answer:

Answer:

The big bang is the theory that describes how the universe emerges, it tells us that in the beginning all the space was contained in a space that was too small, and from there, it expanded rapidly until it reached the state of the universe that we know today, and that continues in expansion.

The theory of the oscillating universe describes a universe that begins and ends cyclically, it  beging with something like the big bang, end ends in what is known as the big crunch, and so on. It says that the universe did not have a beginning but has always been restarting.

The theory of the static  or steady state universe describes a type of universe uniform in space and time. And in which the universe has always remained the same regardless of where it is observed, wich is different from the other theories since the big bang theory says the universe had a beginning. In this theory it is claimed that the universe is homogeneous and isotropic. This theory is not very popular today.


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When a potassium atom forms an ion, it loses one electron. What is the electrical charge of the potassium ion? A.
-1

B.
-2

C.
+1

D.
+2

Answers

The correct answer is answer choice C. +1. Since electrons have negative charges, losing one electron will cause the atom to have a positive charge of 1. This charge comes from the protons, which, until one electron was lost, balanced out the negative charge of the electrons and caused the atom to be neutral.

Identify each wave interaction based on how it changes direction. The wave changes direction as it bends and scatters. _______

The wave changes direction as it changes its speed. _______

The wave changes direction at an angle equal to the angle of incidence. ________
diffraction
reflection
refraction

PLEASE HELP!!

Answers

Answer:

Here is the answer.

Explanation:

The answers are:

1. Diffraction

2. Refraction

3. Reflection

Hope this helps!

A squirrel (mass 0.9 kg) is running across the road at a speed 4.0 m/s. What is thesquirrel's kinetic energy?

Answers

The kinetic energy of the squirrel with a mass of 0.9 Kg running with a speed of 4 m/s is  7.5 J.

What is kinetic energy?

Kinetic energy of an object is a form of energy generated by virtue of the motion of the object. Kinetic energy is dependent on the mass and velocity of the body.

When a body starts to move its potential energy starts to convert to kinetic energy and the kinetic energy will be maximum at the highest speed. When the object slow down and pause in a position it gains potential energy again.

The kinetic energy KE = 1/2 mv²

Given mass = 0.9 Kg

velocity = 4 m/s.

KE = 1/2 0.9 Kg × 4² m/s

     = 7.5 J

Therefore, the kinetic energy of the squirrel is 7.5 J.

To find more on kinetic energy, refer here:

brainly.com/question/26472013

#SPJ2

Answer:

A). Option A

B). Option B

C). Option B

Explanation:

A golf ball reaches a height of 150 m before it stops rising and starts to fall to the ground. What is the golf balls speed (rounded to the nearest whole number) right before it hits the ground?

Answers

Answer:

v = 54 m/s

Explanation:

Given,

The maximum height of the flight of golf ball, h = 150 m

The velocity at height h, u = 0

The velocity of the golf ball right before it hits the ground, v = ?

Using the III equations of motion

                                 v² = u² + 2gh

Substituting the given values in the above equation,

                                 v² = 0 + 2 x 9.8 x 150 m

                                     = 2940

                                  v = 54 m/s

Hence, the speed of the golf ball right before it hits the ground, v = 54 m/s

A rural mail carrier logged the mileage on the odometer at the start of the mail route as 31,500 miles. After 6.5 hours, the carrier returned the truck and recorded the mileage at 31,713 miles. What was the average velocity of the mail truck? Explain your reasoning.

Answers

Answer:32.77\ mi/hr

Explanation:

Given

Initially Reading on the odometer is 31,500\ miles

Final reading on the odometer is 31,713\ miles

Time taken is t=6.5\ hr

average velocity =\frac{\text{Displacement}}{\text{time}}

v_(avg)=(31713-31500)/(6.5)

v_(avg)=(213)/(6.5)

v_(avg)=32.77\ mi/hr

Thus the average velocity of mail truck is 32.77\ mi/hr

What happens in a change in temperature as it is heated

Answers

It increases in temperature