you get gravity because your holding them together tightly
NO. North-North Repel South-South Repel North-South Attract South-North Attract
When iodine and magnesium are mixed, a chemical reaction occurs in which magnesium reacts with iodine to form magnesium iodide (MgI₂). This reaction typically involves the magnesium metal oxidizing while iodine is reduced, resulting in the formation of a white or yellowish solid compound. The process is exothermic, releasing heat. The reaction highlights the strong affinity of magnesium for halogens like iodine.
When you mix Epsom salts (magnesium sulfate) with calcium chloride, a chemical reaction occurs that produces magnesium chloride and calcium sulfate. This reaction is exothermic, meaning it releases heat. The resulting mixture can lead to the formation of solid precipitates, depending on the concentrations used. It's important to handle these chemicals with care, as the heat generated can be significant.
The products are calcium and magnesium chlorides, water and carbon dioxide.
When magnesium is mixed with copper sulfide (CuS) and heated, a chemical reaction occurs, resulting in the formation of magnesium sulfide (MgS) and metallic copper. The reaction can be represented by the equation: 2Mg + CuS → MgS + 2Cu. This process also involves the release of heat, making it an exothermic reaction. The products include solid magnesium sulfide and elemental copper.
To obtain crystals from the reaction of magnesium and sulfuric acid, you can follow these steps: 1) Mix magnesium ribbon with diluted sulfuric acid in a beaker. 2) Allow the reaction to occur, which will produce hydrogen gas and magnesium sulfate. 3) Filter the mixture to remove any excess magnesium or impurities. 4) Evaporate the filtered solution to allow the magnesium sulfate to crystallize and form crystals.
When magnesium carbonate reacts with nitric acid, it forms magnesium nitrate, carbon dioxide, and water. This is a chemical reaction where the carbonate group in magnesium carbonate is replaced by the nitrate ion from nitric acid. The reaction also releases carbon dioxide gas.
When magnesium is mixed with copper nitrate, a single displacement reaction occurs. The magnesium will displace the copper in the copper nitrate, forming magnesium nitrate and copper metal. This reaction is also a redox reaction as magnesium is oxidized and copper is reduced.
When you mix Epsom salt (magnesium sulfate) with ammonia, it forms a white precipitate of magnesium hydroxide. This reaction occurs because the ammonia reacts with the magnesium sulfate, causing the magnesium to precipitate out as magnesium hydroxide.
When you mix magnesium with copper nitrate, a single displacement reaction occurs. Magnesium will replace copper in the compound, forming magnesium nitrate and copper metal. This reaction is represented by the equation Mg + Cu(NO3)2 -> Mg(NO3)2 + Cu.
When iodine and magnesium are mixed, a chemical reaction occurs in which magnesium reacts with iodine to form magnesium iodide (MgI₂). This reaction typically involves the magnesium metal oxidizing while iodine is reduced, resulting in the formation of a white or yellowish solid compound. The process is exothermic, releasing heat. The reaction highlights the strong affinity of magnesium for halogens like iodine.
When magnesium is mixed with hydrochloric acid, a chemical reaction occurs which releases hydrogen gas and forms magnesium chloride. This reaction is exothermic, meaning it releases heat. It is important to handle this reaction carefully as it can be vigorous and produce flammable hydrogen gas.
magnesium nitride (Mg3N2) is formed upon heating magnesium and nitrogen.
When Epsom salts (magnesium sulfate) are mixed with sulfuric acid (H2SO4), a reaction occurs where the magnesium sulfate is protonated by the sulfuric acid to form magnesium bisulfate and water. This reaction releases heat and should be handled carefully due to the corrosive nature of sulfuric acid.
When citric acid and carbonate mix, a chemical reaction occurs that produces carbon dioxide gas, water, and a salt. This reaction is commonly used in effervescent tablets and in baking as a leavening agent.
When you mix hydrochloric acid (HCl) with magnesium (Mg), a chemical reaction will occur, producing hydrogen gas and magnesium chloride. The reaction can be written as: 2HCl + Mg -> MgCl2 + H2. This reaction will also release heat.
When carbon dioxide is mixed with water, it forms carbonic acid. This reaction can lead to a decrease in the pH level of the water, making it more acidic.
When Epsom salt (magnesium sulfate) is mixed with aluminum sulfate, a double displacement reaction occurs. The magnesium ions from Epsom salt switch places with the aluminum ions from aluminum sulfate, forming magnesium sulfate and aluminum hydroxide. This reaction results in a white precipitate of aluminum hydroxide forming in the solution, while magnesium sulfate remains dissolved.