Anything magnetic and a metal object.
in tag force 1 you need to beat the game, not sure about tag force 2 or 3
We need to know about the material specification of BAKELITE which can be used for industrial purpose
pre tech is the use of available material from the environment to solve mankinds need
Specification of Material is required in engineering technology to maintain the quality & to find the ability to manufacture specific item/ product. such as Engine, computer, Buildings etc. A good product cannot be made without specification of material.
You need to complete all three parts with five different characters
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To detect a force, you typically need a material that can undergo deformation or displacement due to the force. Materials like strain gauges, piezoelectric crystals, or accelerometers are commonly used to detect forces in various applications. These materials can convert the force applied to them into measurable outputs like electrical signals or changes in shape.
You need to do the experiment. If the magnet is strong enough, metal (steel, iron) will jump to the magnet (or pull the magnet towards it).
A magnet is an object that attracts metal due to its magnetic field. When a metal object comes in close proximity to a magnet, it is pulled towards the magnet due to the attractive force between the magnetic poles.
Yes, you can create a magnetic field by using a permanent magnet, such as a bar magnet or a magnet made from a ferromagnetic material. The alignment of the magnetic domains within the material produces a magnetic field without the need for charges to move.
well temperature and material can affect magnet strength but that's all i know cuz i need more for a paper i am doing so if i find anymore ill tell
You need to know the injection pressure and mold volume to determine clamping force. Material is well im-material to the question at hand.
A permanent magnet is a material that produces a magnetic field and retains its magnetism without the need for an external magnetic field. These materials are often used in a variety of applications, from refrigerator magnets to electric motors.
A permanent magnet works by aligning the magnetic domains within its material to create a magnetic field. This alignment is due to the magnetic properties of the material, which allow it to retain its magnetism without the need for an external power source. The principles behind this ability involve the interactions of the electrons within the material, which create a magnetic field that extends beyond the magnet itself.
because every north has a south, So to have a magnet you need to have a force pulling in both directions to create the magnetic field which is required when you have a magnet. To have a true magnetic force stand on the very tip of the north pole and your compass should say south. This is because you are so far over the northern hemisphere, that you are standing in the southern hemisphere.
because battery supplies a direct current and to make a magnet with using the electrical method you need to supply direct current to the material {metal}which must be wounded with a coil {solenoid}.
In general, magnets are brittle and will break before they bend. And yes, refrigerator magnets bend, but in them the magnetic material is powdered. But if we took a bar magnet and bent it, we'd have a horseshoe magnet. It's not quite that simple to make a horseshoe magnet, but it isn't too tough, either.