yes
Well, I want to know where I can get a free pair of solid gold pants, but I'm not bothering you about it. Lesson learned.
A magnetic field is created by moving electric charges. When electric charges move, they generate a magnetic field that exerts a force on other moving charges within the field. materials such as iron and nickel can also create magnetic fields due to the alignment of their atomic magnetic moments.
Electric and magnetic fields contain energy and information. They transport this energy and information through space. In the case of electric fields, they are generated by stationary electric charges and transport energy and information by interacting with other charges. Magnetic fields, on the other hand, are generated by moving charges or changing electric fields and also transport energy and information through their interactions with other magnetic fields or moving charges.
Opposites attract, like charges repel each other.
In a conductor - only if the field is moving, thus changing.
Yes, a changing magnetic field will induce an electric field, leading to the movement of electric charges. This phenomenon is described by Faraday's law of electromagnetic induction.
Electric fields are created by electric charges and exert forces on other charges, while magnetic fields are created by moving electric charges and exert forces on other moving charges. In summary, electric fields are produced by stationary charges, while magnetic fields are produced by moving charges.
The main difference between magnetic and electric fields is that electric fields are created by electric charges, while magnetic fields are created by moving electric charges. Electric fields exert forces on other electric charges, while magnetic fields exert forces on moving electric charges.
Electric fields are created by electric charges and exert forces on other charges, while magnetic fields are created by moving electric charges and exert forces on moving charges. Electric fields are produced by stationary charges, while magnetic fields are produced by moving charges. Additionally, electric fields can be shielded by conductive materials, while magnetic fields can penetrate most materials.
Moving electric charges will interact with an electric field. Moving electric charges will also interact with a magnetic field.
Well, I want to know where I can get a free pair of solid gold pants, but I'm not bothering you about it. Lesson learned.
The magnetic force is exerted by moving electric charges, such as electrons. When these charges move, they create a magnetic field. This magnetic field can interact with other moving charges to produce a force.
Electric charges must be in motion to produce a magnetic field. When electric charges move, they generate a magnetic field around them. The strength of the magnetic field depends on the speed and direction of the moving charges.
Moving electric charges create both electric and magnetic fields. The electric field is produced by the charge itself, while the magnetic field is generated by the motion of the charge. When a charged particle moves, it creates a magnetic field around it perpendicular to its direction of motion, as described by the right-hand rule.
The electric field is a force field that surrounds electric charges and exerts a force on other charges, while the magnetic field is a force field that surrounds magnets and moving electric charges, exerting a force on other magnets or moving charges.
Electromagnetic fields are a combination of electric and magnetic fields that oscillate and propagate through space, carrying energy. Magnetic fields, on the other hand, are produced by moving electric charges and exert forces on other moving charges. In summary, electromagnetic fields involve both electric and magnetic components, while magnetic fields are solely produced by moving electric charges.
Moving or spinning electric charges generate a magnetic field. This magnetic field can create a force of attraction or repulsion between the charges involved, depending on their relative orientation and movement.