What are the properties of iron?

Some iron properties include severe high temperatures resistance, to be moderate and towing material and to be an excellent conductor for electricity and heat. In terms of physical structure, some iron properties include metal and solid. In terms of appearance, iron has properties such as gray color, shine or shine and general hardness. A very unique feature of iron is its ability to generate a strong magnetic field around it, which explains why the Earth has a magnetic field, because the core of the planet is very abundant in molten iron. Since it is solid metal, iron requires an unusually high temperature to melt, cook and evaporate. In the physical category, the iron properties include a melting point of 2800.4 ° F (about 1538 ° C) and boiling point 5183.6 ° F (about 2862 ° C). It also requires a significant amount of energy, more precisely 340 kJ/mol -1, iron transformation into its gas phase and evaporation. These truly high temperatures indicate that iron is a strong and effective material for building machines and INFGruing - in fact most widely and commonly used among all metals.

iron, as a solid element, can have particles that are compactly pushed against each other, but these particles have the ability to either slide over and below other particles or spread at very high temperatures. In this way, there are high gentleness and the ductility is iron properties. High tradability means that iron can be hammered into flat pieces or bend into different shapes without breaking. On the other hand, high ductility means that iron can be stretched into thin wires without rupture.

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iron properties, as with most metals, include high conductivity of temperature and electricity. This simply means that iron has the ability to transmit heat and electric currents from one object to another. The reason is that iron, as already mentioned, contain atoms that are very compactnThey have very few but regular gaps between them. When the heat or electricity touches one end of the iron, an atom that catches energy, somehow "vibrates" and transmits the energy of the atom beside him until he reaches the object at the other end.

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