Answer:
A
Explanation:
Which image below represents the electric field lines between two positively charged particles? (2 points)
A positive particle sits in the center of a dotted circle. There is a negative particle along the dotted circle.
Two particles sit side by side. There are curved field lines that point from one particle to the other in a counter clockwise direction above the particles and a clockwise direction below the particles.
Two particles sit side by side. There are curved field lines that point away from each particle. The particle on the right has field lines pointing to the right. The particle on the left has field lines pointing to the left.
One particle sits in the center of curved field lines that extend beyond the particle then return to the particle. Arrows along the curved field lines point in a clockwise direction above the particle and a counter clockwise direction below the particle.
The electric field is defined as the aura of electrons in which it exerts force and attracts the negetivily charged particles.
The electric field line depends on the following:-
The magnitude of the electrons.The correct option is as C.
The flow of the electric field line is from Positive to negative and it always attracts the negative particle. The alike particles attract each other while the like particles are repealed each other.
Hence the correct option is C that is two particles sitting side by side. There are curved field lines that point away from each particle. The particle on the right has field lines pointing to the right. The particle on the left has field lines pointing to the left.
For more information, refer to the link:-
https://brainly.com/question/2127750
Write difference between upstroke and downstroke of water pump
Explanation:
Upstroke is a mechanism which helps to raise the plunger and downstroke helps to help lower the plunger. On the up-stroke of the plunger, the lower valve opens and the upper valve is closed. ... Whereas, on the downstroke, the lower valve closes and the upper one opens.
The speed of electromagnetic waves in a vacuum __________. The speed of electromagnetic waves in a vacuum __________. is larger for longer wavelengths is the same for all waves regardless of wavelength is the same as the speed of sound is larger for higher energies
Answer:
is the same for all waves regardless of wavelength
Explanation:
Electromagnetic waves are often collectively called light. Light has become a generic name that is applied to all electromagnetic waves. The arrangement of electromagnetic waves according to their respective wavelengths is called the electromagnetic spectrum.
When passing through a vacuum, all electromagnetic waves irrespective of their individual wavelengths must possess the same speed. This is called the speed of light in a vacuum. The speed of light in a given medium is a constant and applies to all electromagnetic waves irrespective of their frequency and wavelength.