The magnetic field will be perpendicular to the electric field and vice versa.
More DetailAn electric field is the area which surrounds an electric charge within which it is capable of exerting a perceptible force on another electric charge.A magnetic field is the area of force surrounding a magnetic pole, or a current flowing through a conductor, in which there is a magnetic flux. A magnetic field can be produced when an electric current is passed through an electric circuit wound in a helix or solenoid.
The relationship that exists between an electric field and a magnetic field is one of electromagnetic interaction as a consequence of associating elementary particles.
The electrostatic force between charged particles is an example of this relationship.
Distinguish between a public law relationship and a private law relationship.
What is the relationship between ethics and WHAT? You need at least two things to have a relationship.
a relationship between brothers should be sacred and good....
there is no relationship
well the relationship between mass and force is..........*relationship... Force=mass x acceleration
No, electricity and magnetism are not the same things. Electricity refers to the flow of charged particles through a conductor, while magnetism is a force that arises from the movement of charged particles and is characterized by the attraction or repulsion between objects. However, they are closely related through electromagnetism, which describes their interaction.
electricity and mass
because they are both aspects of the electromagnetic force.
Electromagnestism. The definition of electromagnestism is the relationship between electircity and magnestism!
Hans Christian Oersted established the relationship between electricity and magnetism in 1820.
they both produce electricity.
The relationship between electricity and magnetism is important because it allows us to generate and utilize electricity through devices like generators and electric motors. This relationship also forms the basis for many technologies we use in everyday life, such as power generation, electric motors, and communication devices like smartphones and computers. Understanding this relationship has led to significant advancements in various fields, affecting how we live, work, and communicate.
speakers, microphones and electric motors
Hans Christian Oersted discovered the relationship between electricity and magnetism in 1820 when he observed that an electric current flowing through a wire caused a nearby compass needle to deflect. This observation demonstrated that an electric current produces a magnetic field.
Static electricity is the buildup of electric charge on the surface of an object, while current electricity is the flow of electric charge through a conductor. Static electricity involves stationary charges, whereas current electricity involves moving charges. When static electricity is discharged, it can create a current flow.
Static electricity is a result of an imbalance of positive and negative charges on objects. Atoms contain protons (positively charged) and electrons (negatively charged) that interact with each other. When objects rub against each other, electrons can be transferred between atoms, creating a build-up of static electricity.
Electromagnetism is a fundamental force of nature that describes the relationship between electric fields and magnetic fields. It explains how charged particles interact with each other and with electromagnetic fields, and plays a crucial role in many phenomena, including light, electricity, and magnetism.