An action at a distance is a term used to describe how masses attract when they are held at a certain distance. If one of these objects is charged is creates an electric field that can be felt by all other masses within a certain distance.
It doesn't cause you can still get artillery and such *Um somehow I don't think they mean in a battle field :P I would assume that you are talking about physics? In which case the answer would be that the concept of a field eliminates the idea of action at a distance because the objects are thought to be in constant contact with the field.
there is no contact between th objects,and the forces are acting at a distance putting this in terms of the field concept, we can say that the orbiting satellite and electron interact with the force fields of the object.
An electric field is created by a charged object. The field extends outward from the object in all directions and its strength decreases with distance. The electric field is a fundamental concept in physics that helps explain the interactions between charged particles.
Michael Faraday introduced the idea of electric field to explain action-at-a-distance forces between charged objects. He used this concept to describe how charges create a force that acts on other charges in space, providing a more intuitive understanding of electrical interactions. This laid the foundation for the modern understanding of electromagnetism.
Spooky action at a distance refers to the phenomenon in quantum mechanics where particles can instantaneously influence each other's states, regardless of the distance separating them. This challenges our understanding of quantum mechanics because it suggests that information can travel faster than the speed of light, which goes against the principles of causality and locality in traditional physics. This concept was famously described by Albert Einstein as "spooky action at a distance" and remains a topic of debate and research in the field of quantum physics.
It doesn't cause you can still get artillery and such *Um somehow I don't think they mean in a battle field :P I would assume that you are talking about physics? In which case the answer would be that the concept of a field eliminates the idea of action at a distance because the objects are thought to be in constant contact with the field.
It doesn't cause you can still get artillery and such *Um somehow I don't think they mean in a battle field :P I would assume that you are talking about physics? In which case the answer would be that the concept of a field eliminates the idea of action at a distance because the objects are thought to be in constant contact with the field.
there is no contact between th objects,and the forces are acting at a distance putting this in terms of the field concept, we can say that the orbiting satellite and electron interact with the force fields of the object.
An electric field is created by a charged object. The field extends outward from the object in all directions and its strength decreases with distance. The electric field is a fundamental concept in physics that helps explain the interactions between charged particles.
Michael Faraday introduced the idea of electric field to explain action-at-a-distance forces between charged objects. He used this concept to describe how charges create a force that acts on other charges in space, providing a more intuitive understanding of electrical interactions. This laid the foundation for the modern understanding of electromagnetism.
Spooky action at a distance refers to the phenomenon in quantum mechanics where particles can instantaneously influence each other's states, regardless of the distance separating them. This challenges our understanding of quantum mechanics because it suggests that information can travel faster than the speed of light, which goes against the principles of causality and locality in traditional physics. This concept was famously described by Albert Einstein as "spooky action at a distance" and remains a topic of debate and research in the field of quantum physics.
The concept of distance over time, known as speed or velocity, measures how far an object travels in a certain amount of time. In physics, this concept is used to calculate motion, acceleration, and other important factors in understanding the behavior of objects in the physical world.
explain the term broard field curriculum
I'm pretty sure it doesn't, and my knowledge on the subject is pretty vast. I think you should consider the field of theology for your question.
An electric field can be represented diagrammatically as a set of lines with arrows on, called electric field-lines, which fill space. Electric field-lines are drawn according to the following rules: The direction of the electric field is everywhere tangent to the field-lines, in the sense of the arrows on the lines. The magnitude of the field is proportional to the number of field-lines per unit area passing through a small surface normal to the lines. Thus, field-lines determine the magnitude, as well as the direction, of the electric field. In particular, the field is strong at points where the field-lines are closely spaced, and weak at points where they are far apart. Electric Field intensity It was stated that the electric field concept arose in an effort to explain action-at-a-distance forces. All charged objects create an electric field which extends outward into the space which surrounds it. The charge alters that space, causing any other charged object that enters the space to be affected by this field. The strength of the electric field is dependent upon how charged the object creating the field is and upon the distance of separation from the charged object. In this section of Lesson 4, we will investigate electric field from a numerical viewpoint - the electric field strength. An electric field can be represented diagrammatically as a set of lines with arrows on, called electric field-lines, which fill space. Electric field-lines are drawn according to the following rules: The direction of the electric field is everywhere tangent to the field-lines, in the sense of the arrows on the lines. The magnitude of the field is proportional to the number of field-lines per unit area passing through a small surface normal to the lines. Thus, field-lines determine the magnitude, as well as the direction, of the electric field. In particular, the field is strong at points where the field-lines are closely spaced, and weak at points where they are far apart. Electric Field intensity It was stated that the electric field concept arose in an effort to explain action-at-a-distance forces. All charged objects create an electric field which extends outward into the space which surrounds it. The charge alters that space, causing any other charged object that enters the space to be affected by this field. The strength of the electric field is dependent upon how charged the object creating the field is and upon the distance of separation from the charged object. In this section of Lesson 4, we will investigate electric field from a numerical viewpoint - the electric field strength.
The relationship between magnetic field strength and distance in a magnetic field is inversely proportional. This means that as the distance from the source of the magnetic field increases, the strength of the magnetic field decreases.
According to the concept of mastering physics, the electric field inside a conductor is zero.