Because Gold (Au) is very unreactive, it is placed at the very bottom of the reactivity series with the exception of platinum.
You mix carbon with oxygen to produce carbon dioxide. The chemical equation for this reaction is: C + O2 -> CO2.
If you could, then you mix hydrogen and oxygen. Water is H2O, which is hydrogen 2 parts oxygen. Have fun!
When you mix aluminum and oxygen, you get aluminum oxide. If you mix iron with aluminum oxide, the aluminum will react with the iron oxide, forming a thermite reaction that produces molten iron and aluminum oxide slag.
When gold burns in oxygen, it forms gold oxide (Au2O3). This reaction occurs at very high temperatures and can result in the gold changing in appearance due to the formation of the oxide layer.
you wouldn't get a reaction because you cannot mix two metals. However when you melt them you can mix them, still, no reaction would take place, since they make homogenous solution all over the concentration range
Oxygen and strontium can react to form strontium oxide (SrO) when heated to high temperatures. This reaction occurs when strontium is burned in the presence of oxygen.
When copper is mixed with oxygen, copper oxide is formed. The specific compound formed depends on the ratio of copper to oxygen present during the reaction.
No. Simply mixing hydrogen and oxygen will not get you water. You must burn the mixture.
To mix sugar and oxygen to form carbon dioxide and water, the sugar (glucose) undergoes combustion in the presence of oxygen. This chemical reaction results in the production of carbon dioxide and water as byproducts. The reaction equation is: C6H12O6 + 6O2 → 6CO2 + 6H2O.
When oxygen is mixed with sodium, a chemical reaction occurs, resulting in the formation of sodium oxide. This reaction is highly exothermic and can be violent if not controlled properly. Sodium oxide is a white solid that is commonly used in industry.
When you mix Calcium Hydroxide with Sodium Persulfate, a reaction occurs that produces Calcium Sulfate, Sodium Hydroxide, and Oxygen gas. This reaction is often used in chemical demonstrations to generate oxygen gas.
Yes, the also use ATP and luciferase which catalyzes this oxidation reaction. This reaction produces light and 100% of the energy produced by this reaction is released as light.