i think this is right..........sorry if not.....i was stuck too xx
a piece of soft iron used to connect the two poles of a magnet, or electro-magnet, in order to complete the circuit, or to receive and apply the magnetic force. In the ordinary horseshoe magnet, it serves to prevent the dissipation of the magnetic force
so it's made of iron
yeah...hope this helps dude
The armature of a bulb is typically made from tungsten wire. This material is chosen because of its high melting point, which allows the bulb filament to operate efficiently at high temperatures without degrading quickly.
A suitable material for an armature could be aluminum wire because it is lightweight, flexible, and strong enough to hold the shape of a sculpture or model. It is also easy to bend and mold into different forms.
armature reactant means loss in armature associated with inductive properties of the coil, while armature reaction include losses due to magnetizing component of current flowing through armature.
The main difference between a 12-volt armature and a 24-volt armature is the voltage rating at which they operate. A 12-volt armature is designed to run on a 12-volt electrical system, while a 24-volt armature is designed for a 24-volt electrical system. This difference determines the power and speed capabilities of the armature when used in electrical devices.
An armature is a component in an electric motor that interacts with the magnetic field to produce motion. It consists of windings where electrical current flows, creating a magnetic field that interacts with the field from the stator to generate torque and rotate the motor.
The armature of a bulb is typically made from tungsten wire. This material is chosen because of its high melting point, which allows the bulb filament to operate efficiently at high temperatures without degrading quickly.
The children all made a small armature with soft metal rods.
A suitable material for an armature could be aluminum wire because it is lightweight, flexible, and strong enough to hold the shape of a sculpture or model. It is also easy to bend and mold into different forms.
n sculpture, an armature is a framework around which the sculpture is built. This framework provides structure and stability, especially when a plastic material such as wax, newspaper or clay is being used as the medium.
An armature is a crucial component in electrical machines, such as motors and generators, consisting of a coil or winding through which current flows. It typically includes a core made of ferromagnetic material to enhance magnetic field strength and efficiency. The armature interacts with a magnetic field, enabling the conversion of electrical energy into mechanical energy or vice versa. In some contexts, it can also refer to a structural framework used in sculpture or modeling.
The framework used to support material being molded or formed in sculpture is called an "armature." An armature provides structural support to the sculpture, allowing the artist to build up materials like clay, wax, or other media around it. This framework can be made from various materials, such as metal, wood, or wire, depending on the specific requirements of the sculpture.
Instead of a single piece of metal, the armature is made up of laminated thin metal plates. The thickness of the laminations is determined by the supply frequency. They are approximately 0.5mm thick. For the armature core, silicon steel laminates are used to reduce eddy currents and hysteresis losses.
armature reactant means loss in armature associated with inductive properties of the coil, while armature reaction include losses due to magnetizing component of current flowing through armature.
The armature winding coil is typically placed on the rotor of an electrical machine, such as a motor or generator. In a rotating machine, the armature winding is situated on the core, which is often made of laminated iron to reduce eddy current losses. In some designs, such as in certain types of generators, the armature can also be located on the stator. The placement of the armature winding is crucial for the efficient generation of magnetic fields and the conversion of electrical energy.
Copper plates on a steel armature structure.
It does have armature resistance.
The main difference between a 12-volt armature and a 24-volt armature is the voltage rating at which they operate. A 12-volt armature is designed to run on a 12-volt electrical system, while a 24-volt armature is designed for a 24-volt electrical system. This difference determines the power and speed capabilities of the armature when used in electrical devices.