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magnetic patterns in steel balls?

upon expiramentation(w/e) with the little toys kids have. magnetix or something, any way, i removed the magnets from the plastic and made a sort of triangle with three steel balls from the kit and three magnets. facing the magnets all one way would make the escaping magnetic field signifigantly diffrent than having them in randomly placed. the magnetic attraction to metals is altered enough for me to theorize that harnessing magnetic manipulation is not only a future energy source(more so than now) but possibly the best. hold on b 4 you say im a crock, if everything is made of atoms and atoms all contain a form of electrical charge so to speak, ergo electrons, and in all electrical aspects a magnetic field can be found; then all things with atoms are magnetic. even if to the smallest degree. thereby possibly making the wood of a tree magneticin a distorted yet pointedly objective view

Answer:

Copper isn't interested in a magnet. steel, iron, cobalt, and nickel are the only magnetic metals. The steel utilized in an electromagnet does not would desire to be a magnet textile. copper is the main suitable for this utility. playstation , a US penny is greater often than not zinc with rather of copper plating. .
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In simple terms. if everything is made of atoms and atoms all contain a form of electrical charge so to speak, . right. Atoms are neutral, which means that the negative electrical charge is neutralized by the positive electrical charge of the protons in them. Atoms can form groupsmolecules. Ions are practically atoms with imbalance of positive and negative charge. Electrons, protons and neutrons all play an important role in chemical bonds, reactions etc. The way electrons, in particular, move around each atomic nucleus characterizes the chemical compound-substance they belong to, and it is not something that any external cause can change as simply as you set it. You cannot make wood magnetic because its atomic-molecular-subatomic structure does not allow its charges to form a pattern of an actually strong magnetic field. Metals though, and salt solutions, for example, have such a structure that they allow charge flow (current flow) inside them. Every moving charge creates a magnetic field around -it's a law. But to move charges, if you are allowed to, you need to consume energy -power (so there are prices to pay from different points of view), and this already happens with electricity (which in most cases is made by creating magnetic fields). Of course, scientists have recently been working in innovative ways of energy production. I hope I have helped.
Despite all atoms having electrons, all things are not magnetic in the true meaning of the word. There are varying responses to magnetic fields in materials they are: ferromagnetic, anti-ferromagnetic, ferrimagnetic, paramagnetic and diamagnetic. The first three responses have net magnetizations while the last two require an external magnetic field to be present for the response to be observed. All of these responses rely on electron spin, pauli exlusion principle and the presence of a local magnetic field. Ligand Field Theory does a good job of explaining and showing where the net magnetization comes from in materials. (links are provided below if you wish to learn more about these topics) Despite the fact that you could select a material that behaves as you wish, the issue remains that once you apply your magnetic field, the entire system will reach an equilibrium state (low energy) and will remain there unless it's disturbed (you add energy). You will also need some method to extract any energy that is generated. Extracting energy is never 100% efficient so most likely this will not produce more energy that you must put into the apparatus. Last thing, wood is most likely a diamagnetic material.
Fix your car, and then take the repair bill in to court with you. Most states will drop tickets like this if you do that.

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