Copper is more malleable and can be formed easier. However, it is much softer than iron and doesn't carry weight well. Copper is more corrosion resistant than iron is and oxidizes very slowly.
A magnetic core made of iron laminations, forming a closed loop, and two or more coils of copper wire wound to intersect the core.
some of the main features are things like... gates stairs windows windows sills gargoyles... even more
because the pipes don't rust as easy, and silver and gold are too expensive. That is another persons answer. Here are the main 3 reasons plumbers use copper pipes. Copper pipes are relatively non-toxic-unlike lead. Copper pipes do not suffer corrosion-as iron does. Copper pipes are relatively soft and easy to work with-unlike both iron and lead. However more and more homes are now using the plastic pipe such as Pvc and Cpvc which seems to serve the same purpose and are also safe, although both can be used, you still need to find out what code calls for in your city or town an abide by it.
Carbon steel is an iron alloy with less than 2% carbon, no chromium, and contains copper and magnesium not more than 0.6% Stainless steel is an iron alloy with less than 2% carbon and it contains chromium and it's resistive to corrosion
Copper is NOT good for plumbing. It was once, when there was no alternative. Now many superior products like PEX are available. They are cheaper, more lasting and more efficient to fit than copper.
Iron is more reactive than copper, so when iron is added to copper sulfate solution, iron displaces copper in the reaction and forms iron sulfate. This process is known as a displacement reaction. This allows copper to be extracted from copper sulfate solution using iron.
Iron is more reactive than copper
No, copper does not have more volume than iron for the same weight or mass. Copper is denser than iron, so a given mass of copper will have a smaller volume than the same mass of iron.
Iron is more reactive than copper.
Iron is more reactive than copper, so when iron is added to a copper sulfate solution, a single displacement reaction occurs where iron displaces copper from the copper sulfate, forming iron sulfate and copper. This is because iron has a greater ability to attract the sulfate ions compared to copper.
Iron can displace copper in a chemical reaction because it is a more reactive metal. When iron is added to a copper sulfate solution, the iron atoms will replace the copper atoms in the solution, forming iron sulfate and causing copper metal to be deposited. This process is known as a displacement reaction.
Copper is less reactive than iron, so it cannot displace iron from iron sulfate solution through a displacement reaction. Iron is higher in the reactivity series than copper, meaning that it can displace less reactive metals like copper from their compounds in a chemical reaction.
Iron is more reactive than copper, so it can displace copper from copper sulfate in a single displacement reaction. This occurs because iron has a higher tendency to lose electrons and form positive ions compared to copper.
Iron is more reactive than copper, allowing it to displace copper from copper sulfate solution through a single displacement reaction. This process forms iron sulfate and solid copper metal, as iron has a higher affinity for sulfate ions than copper does.
because copper is below iron in electrochemical series that's why it doesnt react with iron sulphate.
Iron will not deposit onto a copper plate when it is dipped in iron sulfate because copper has a lower reactivity than iron. In a displacement reaction, a more reactive metal will displace a less reactive metal from its compound. In this case, since iron is more reactive than copper, it displaces copper in the iron sulfate solution forming iron sulfate and preventing the deposition of iron on the copper plate.
It is an electrochemical reaction. Iron is more reactive than copper, meaning it is more easily loses electrons to form a compound. So the copper essentially "steals" electrons from the iron. Forming copper metal and iron sulfate.