yes
Platinum is Nonmagnetic.
Magnetism can be destroyed by subjecting the material to high temperatures or by introducing a strong magnetic field in the opposite direction. This disrupts the alignment of magnetic moments and reduces the overall magnetic field of the material.
A permanent magnet is the type of magnet that retains its magnetic properties indefinitely without the need for an external power source. These magnets are typically made from materials like neodymium, samarium-cobalt, or ferrite, which maintain their magnetism over time. However, they can lose their magnetism if subjected to high temperatures or strong external magnetic fields.
Magnets can lose their magnetic properties if exposed to high heat or are made subject to high impact. The temperature at which magnets lose magnetic properties is referred to as the Curie Temperature for ferromagnetic materials.
A neodymium magnet is a type of magnet that is unlikely to lose its magnetism. These magnets are made from a combination of neodymium, iron, and boron, which results in a very strong and durable magnet with high resistance to demagnetization.
The magnetism of a piece of magnetized iron can be weakened by exposing it to high temperatures, hammering or dropping it, or by placing it near other strong magnets that have opposite polarity.
Exposure to heat, strong vibrations, or being dropped can cause a magnet to lose its magnetic properties. Additionally, exposure to strong magnetic fields in the opposite direction can demagnetize a magnet.
over time it will lose its magnetism. It will also lose its magnetism if it is temperature is to high or when it's vibrate too much.
Two plates with a voltage between them have an electric field in the space between them equal to the voltage divided by the distance. A single sphere at a high voltage has an electric field round it that decreases with distance. High voltage components have a strong electric field round them, and this can be dangerous, so it is usual to specify the maximum acceptable field and set a safe distance for people on that basis.
Platinum is Nonmagnetic.
A Tesla coil works by using a transformer to increase the voltage from a power source to create high-voltage electrical currents. This high voltage creates a strong electric field that ionizes the air around the coil, allowing electricity to flow through the air in the form of sparks or arcs.
Neutron's path is not affected by radiation or magnetism.
step up transformer output gives the high voltage which is useful for transmiission of electricity
step up transformer output gives the high voltage which is useful for transmiission of electricity
step up transformer output gives the high voltage which is useful for transmiission of electricity
Yes, magnets can lose their magnetism over time, especially if they are exposed to high temperatures or strong magnetic fields. This process is known as demagnetization.
THE MAGNITUDE OF ELECTRIC FIELD IS kq/radius-square . IF THE Q[THAT IS CHARGE ] IS BIGGER IN MAGNITUDE OR IF THE DISTANCE BETWEEN THE CHARGE PARTICLE AND POINT CHARGE IS MINIMUM THAN WE CAN SAY THAT IT IS A STRONG ELECTRIC FIELD