Wave C has an amplitude of 1 and wave D has an amplitude of 3 as shown below. What will happen when the trough of wave C meets the crest of wave D?

Answers

Answer 1
Answer:

Answer:

They will interfere to create a crest with an amplitude of 2.

Explanation:

  If the crest of one wave meets the trough of another wave, destructive interference occurs and the combined amplitude will be less than that of either wave alone. If the amplitudes of the two waves are equal, when the crest and trough superimpose, the combined amplitude will be zero.


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A solar eclipse might be observed from Earth when the moon is in which position

Answers

A solar eclipse might be observed from Earth when the moon is in the newmoon phase.

What would be observed from the Moon while Earth is experiencing a solar eclipse?

During the lead-up to a solar eclipse from the Moon, a viewer on the Moon would see the Sun approach the dark disk of Earth, with the planet's nightside facing the Moon. Earth's atmosphere would be lit from behind, creating a reddish ring around the planet that would glow brighter as the eclipse proceeded.

When can you see the solar eclipse?

We will finally see a total solareclipse on April 8, 2024, in North America and Central America. The total phase will be visible from Mexico, the central United States, and eastern Canada. Another eclipse in 2024, an annular one, will take place on Oct. 2.

Learn more about the solar eclipse here brainly.com/question/1287289

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i think it's New Moon. hope this helped! :)

Which is best example of s force counteracting Fp?

Answers

Answer:

two children pulling apart a wishbone

Explanation:

Which type of wire would have the least resistance?A. thick, short, hot
B. thick, long, hot
C. thin, short, hot
D. thin, long, cold
E. thick, short, cold

Answers

The answer is E. Short and thick while cold.

Which action is due to field forces?Select one of the options below as your answer: A. an apple falling from a tree B. a moving car stopping when the brakes are applied C. the rowing of a boat D. pushing a chair against the wall

Answers

Field force is when the force which you  exert on prticular subject acts only on this subject, other subjects that sorround yours are not included, whereas the  like gravity acts equally on everything. So the correct answer is D. pushing a chair against the wall.

Answer:

D. pushing a chair against the wall.

Explanation:

an electron is very far away from a proton (fixed in place) and is released from rest. how fast will the electron be travelling when it is 0.03 m away from the proton?

Answers

The speed of electron be 183.73 m/s.

What is potential energy?

The energy held within an object is known as potential energy. There are several different types of potential energy, including gravitational potential energy, elastic potential energy, and electric potential energy. An object's energy as a result of the overall charge it contains is known as its electric potential.

Given parameters:

Distance between proton and electron: d = 0.03 m.

Let, at that point the speed of the electron be v.

So from conservation of energy:

Kinetic energy of electron + potential energy of electron = 0

1/2×mv² - 1/(4πε₀)(e²/d) = 0

⇒v = √(2e²/m(4πε₀)(d))

= √( 2 × (1.6 ×10⁻19)²× 9 × 10⁹/9.1093837 × 10⁻³¹×0.03) m/s

= 183.73 m/s.

The speed of electron be 183.73 m/s.

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the electron won't be traveling because it is as u say "fixed in place".

Two objects move toward each other because of gravitational attraction. As the objects get closer and closer, the force between them _____. A. remains constant B. decreases C. increases

Answers

As 2 objects get closer and closer due to the gravitational attraction, the force between them C. increases.

Two objects move toward each other because of gravitational attraction. To understand the gravitational force, we need to consider Newton's law of universal gravitation, which states that every particle attracts every other particle in the universe with a force that is directly proportional to the product of their masses and inversely proportional to the square of the distance between their centers. Mathematically,

F = G (m_1m_2)/(r^(2) )

where,

  • F: gravitational force
  • G: gravitational constant
  • m₁: mass of object 1
  • m₂: mass of object 2
  • r: distance between centers of the masses

As the objects get closer, the distance between them decreases, and consequently the gravitational force increases.

As 2 objects get closer and closer due to the gravitational attraction, the force between them C. increases.

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Answer:

C. increases

Explanation:

Law of Universal Gravitation

This law establishes that bodies, by simply having mass, experience a force of attraction to other bodies with mass, called gravitational force or gravitational force.

The gravitational force between two bodies is directly proportional to the product of their masses and inversely proportional to the square of the distance that separates them.

F_(g) =G((M*m)/(r^(2) ) )Formula (1)

where:

G is the universal gravitation constant, G = 6.67 · 10-11 N · m² / kg²

M and m are the masses of the bodies that interact  (kg)

r is the distance that separates them. (m)

Problem development

As objects get closer and closer the distance (r) that separates them decreases and because M, m and G remain constant, in formula (1):

F_(g) =G((M*m)/(r^(2) ) )

, if r decreases then Fg increases.