Slide 1 - Cobb Learning
... When an electric current is passed through a coil of wire wrapped around a metal core, a very strong magnetic field is produced. This is called an electromagnet. The more coils wrapped around the core, the stronger the magnetic field that is produced. This stronger magnetic field leads to a stro ...
... When an electric current is passed through a coil of wire wrapped around a metal core, a very strong magnetic field is produced. This is called an electromagnet. The more coils wrapped around the core, the stronger the magnetic field that is produced. This stronger magnetic field leads to a stro ...
Chapter S23
... Rules for Drawing Field Lines • The electric field, E , is tangent to the field lines. • The number of lines leaving/entering a charge is proportional to the charge. • The number of lines passing through a unit area normal to the lines is proportional to the strength of the field in that region. # ...
... Rules for Drawing Field Lines • The electric field, E , is tangent to the field lines. • The number of lines leaving/entering a charge is proportional to the charge. • The number of lines passing through a unit area normal to the lines is proportional to the strength of the field in that region. # ...
Magnetic Effect of Current and
... accidental, by which an electric circuit or equipment is connected to earth or the ground plane. By "grounding" a tool or electrical system, a low-resistance path to the earth is intentionally created. When properly done, this path offers sufficiently low resistance and has sufficient current carryi ...
... accidental, by which an electric circuit or equipment is connected to earth or the ground plane. By "grounding" a tool or electrical system, a low-resistance path to the earth is intentionally created. When properly done, this path offers sufficiently low resistance and has sufficient current carryi ...
Slide 1
... Experiment shows that the electric force between two charges is proportional to the product of the charges and inversely proportional to the distance between them. ...
... Experiment shows that the electric force between two charges is proportional to the product of the charges and inversely proportional to the distance between them. ...
Student practical Name Class Date Charging by friction
... Most objects, most of the time, are neutral – they have zero charge overall. Electrostatics is the study of static electricity. Static electricity is when an object (or part of an object) is not neutral, but is positively or negatively charged. We notice static electricity when we see ordinary objec ...
... Most objects, most of the time, are neutral – they have zero charge overall. Electrostatics is the study of static electricity. Static electricity is when an object (or part of an object) is not neutral, but is positively or negatively charged. We notice static electricity when we see ordinary objec ...
Physics 241 Exam 1 February 19, 2004 1
... Consider two concentric conducting spheres as shown below. The outer sphere is hollow and has a total charge of +5 mC charge on it; its inner radius is R 1= 9 cm and its outer radius is R 2 = 10 cm. The inner sphere has a radius of 1 cm, is solid, and has a charge –3 mC on it. What is the potential ...
... Consider two concentric conducting spheres as shown below. The outer sphere is hollow and has a total charge of +5 mC charge on it; its inner radius is R 1= 9 cm and its outer radius is R 2 = 10 cm. The inner sphere has a radius of 1 cm, is solid, and has a charge –3 mC on it. What is the potential ...
lecture16
... Notice that the equipotential surfaces are perpendicular to the electric field lines everywhere! Remember that work is only done when a charge moves parallel to the electric field lines. So no work is done by the electric field as a charge moves along an equipotential surface. ...
... Notice that the equipotential surfaces are perpendicular to the electric field lines everywhere! Remember that work is only done when a charge moves parallel to the electric field lines. So no work is done by the electric field as a charge moves along an equipotential surface. ...
Electrostatics
Electrostatics is a branch of physics that deals with the phenomena and properties of stationary or slow-moving electric charges with no acceleration.Since classical physics, it has been known that some materials such as amber attract lightweight particles after rubbing. The Greek word for amber, ήλεκτρον electron, was the source of the word 'electricity'. Electrostatic phenomena arise from the forces that electric charges exert on each other. Such forces are described by Coulomb's law.Even though electrostatically induced forces seem to be rather weak, the electrostatic force between e.g. an electron and a proton, that together make up a hydrogen atom, is about 36 orders of magnitude stronger than the gravitational force acting between them.There are many examples of electrostatic phenomena, from those as simple as the attraction of the plastic wrap to your hand after you remove it from a package, and the attraction of paper to a charged scale, to the apparently spontaneous explosion of grain silos, the damage of electronic components during manufacturing, and the operation of photocopiers. Electrostatics involves the buildup of charge on the surface of objects due to contact with other surfaces. Although charge exchange happens whenever any two surfaces contact and separate, the effects of charge exchange are usually only noticed when at least one of the surfaces has a high resistance to electrical flow. This is because the charges that transfer to or from the highly resistive surface are more or less trapped there for a long enough time for their effects to be observed. These charges then remain on the object until they either bleed off to ground or are quickly neutralized by a discharge: e.g., the familiar phenomenon of a static 'shock' is caused by the neutralization of charge built up in the body from contact with insulated surfaces.