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We Used Two Extraction Queries that Utilize the Bkeywordsb &#39induce&#39, &#39induces&#39, Bioinformatics Oxfor

We Used Two Extraction Queries that Utilize the Bkeywordsb &#39induce&#39, &#39induces&#39, Bioinformatics Oxfor

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in today's video we're going to see how we can use electrolysis to extract reactive metals from their oxides by first melting them into their molten ionic compounds as we've already seen in other videos metals often exist as oxides like aluminium oxide or copper oxide if we want to remove the oxygen to isolate the pure metal though then we're going to need to reduce the metal in the oxide which is just the fancy way of saying remove the oxygen now the cheap and easy way to do this is by reduction with carbon where the carbon atoms displace the metal in the metal oxide to form pure metal and carbon dioxide however this only works for metals that are less reactive than carbon like zinc iron and copper for all of these more reactive ones though we have to instead rely on electrolysis which is much more expensive because it requires loads of energy as you saw in the last video electrolysis is a process by which we can separate ionic compounds into their pure

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