First of all, the concepts of both magnetism andelectricity involve fields. An electric field is caused by a point source charge (which is + or - in charge) and is characterized by field lines emanating from the point source charge. Magnetic fields are similar, but are actually caused by charges in motion. Another instance of the interrelatedness between the two phenomena is that the magnetic field is perpendicular to the electric field.
Finally, electric fields can cause a current to flow through a wire. As a result of the flow of current, A potential difference is created (voltage) and a magnetic field is formed encircling the length of the wire. The direction of the magnetic field (clockwise or counterclockwise) depends on the direction of current flow.
People use magnetism in various ways, such as in magnetic compasses for navigation, in MRI machines for medical imaging, in electric motors and generators for converting energy, and in data storage devices like hard drives and credit cards. Magnetism is also used in everyday objects like refrigerator magnets and headphones.
You can get magnetism by connecting 2 ends of a wire to a battery. make sure the wire is long enough. the more coil you have the stronger the magnet will be. This is just one way to make magnetism.
1.Similar repel , opposite attract:The two opposite kinds of electric charge are called positive and negative. Oppositecharges attract each other , and similar charges repel each other.A magnet has two opposite poles, referred to as north and south. Opposite magneticpoles attract each other, and similar magnetic poles repel each ,exactly as happenswith electric charges.2. The force with which magnetic poles attract or repel each other depends on the strength of the poles and the distance between them. This relationship is similar to Coulomb's inverse square law for electric charges , which iselectric charge= (coulomb constant x first charge x second charge)/(distance)23.Electricity produces magnetic effects and magnetism produces electric effects.The relationship between electricity and magnetism is called electromagnetism.
Yes, magnetism can pass through some magnetic materials such as iron or steel, but may be blocked or weakened by others like nickel or cobalt. The ability of magnetism to pass through a material depends on its magnetic permeability.
1. Metals are good conductors of electricity.2.An electrolyte solution conducts electricity.3. Wood and nonmetals are not good conductors of electricity.
There isn't one. 1. "Electricity" and "magnetism" are both forces, so they are not acted on ("attracted"), but act on other things. 2. Charged particles are "acted on" by electrostatic and magnetic fields. 3. The main types of charged particles are electrons and protons.
The principles of generators, motors and electromagnetism are the same.They produce either Electricity, Magnetism or Spinning (Motor.)-There are four parts of each equation, 1.) Magnetism, 2.) Conductors, 3.) Spinning or Windings and finally 4.) Electricity. Any combination of three of these components will produce the fourth, (with the exception being a conductor is not necessarily produced when the remaining three are combined.)-Generators produce (E) Electricity through the use of (M) Magnetism, (S) Spinning or windings, and (C) Conductors or E = M + S + C.-Motors produce (S) Spinning through the use of (E) Electricity, (M) Magnetism, and (C) Conductorsor S = E + M + C.-Electromagnetism (M) is produced through the use of (E) Electricity, (S) Spinning or windings and (C) Conductors or M = E + S + C.
As Time Goes By - 1992 Animal Magnetism 8-2 is rated/received certificates of: Australia:G
Two different applications of magnetism are: 1. Construction of a Compass. The indicator needle must be magnetized. 2. Generation of electricity. Conductors must pass through a magnetic field in order to generate a current in the wires.
People use magnetism in various ways, such as in magnetic compasses for navigation, in MRI machines for medical imaging, in electric motors and generators for converting energy, and in data storage devices like hard drives and credit cards. Magnetism is also used in everyday objects like refrigerator magnets and headphones.
1. magnetism induces electricity (law of induction) - i.e. moving a wire in magnetic field induces electricity (this is how a generator works)2. look same structure of the formula both magnetic and electric fieldwire coil(+) ---!---------------!! ! magnet moving back and forwardIIIIIIIIIIIIIIIIIIIIIIIIIIIIII IIIIIIIIIIIIIIIIIIIIIIIIIIIIII! !!---------------!---(-) electrical current
1. By friction. 2. by magnetism
You can get magnetism by connecting 2 ends of a wire to a battery. make sure the wire is long enough. the more coil you have the stronger the magnet will be. This is just one way to make magnetism.
Do you mean? int ex^2 dx This is a integration by parts. uv - int v du u = x^2 du = 2X dv = e v = e ex^2 - int e 2x ex^2 - ex^2 + C -------------------------
1. demographic-descriptive 2. ideological-normative 3. programmatic-political
electricity that can flow from one point 2 another
metal+energy=electricity