CO2 gas is acidic in nature and forms carbonic acid in water so pH value becomes decreased (from 7 to downwards 6,5 or 4)
The chemical reaction is: 2NaBr + F2 = 2NaF + Br2
Distilled water is theoretically neutralDistilled water is water that has many of its impurities removed through distillation.Distillation involves boiling the water and then condensing the steam into a clean container.Hypothetically, distilled water should always be at a neutral pH 7. Immediately upon being exposed to air, however, distilled water's pH decreases and becomes more acidic. Neutralizing distilled water is possible, but its neutral pH does not last.
no..lime water go cloudy only wit CO2 and SO2...
You will see a preciptate of Calcium Carbonate [CaCO3] The Calcium Hydroxied is said to turn 'Milky' or 'Chalky' The chalkyness so described is the water insoluble Calcium Carbonate being deposited as it is formed.
An electric current generally passes more easily through a concentrated solution than through a dilute solution. This is because a concentrated solution contains a higher number of ions, which are charge carriers, allowing for better conductivity. In contrast, a dilute solution has fewer ions, resulting in reduced conductivity and making it harder for the current to flow.
When chlorine gas is bubbled through a solution of distilled water, it reacts with water to form a mixture of hydrochloric acid (HCl) and hypochlorous acid (HOCl). This can lead to the formation of a weak solution of hydrochloric acid along with a small amount of hypochlorous acid, which can further react to produce hypochlorite ions (OCl-).
When carbon dioxide gas is bubbled through a solution of lithium hydroxide, lithium carbonate and water are produced. This reaction is utilized in carbon dioxide scrubbers to remove carbon dioxide from the air in closed environments such as spacecraft or submarines.
When carbon dioxide is bubbled through lime water, the lime water turns milky due to the formation of calcium carbonate, a white precipitate. This is a common test for the presence of carbon dioxide gas.
The chemical reaction is: 2NaBr + F2 = 2NaF + Br2
Distilled water has a lower concentration of solutes compared to a solution, causing it to be hypotonic. When placed across a semipermeable membrane from a solution with a higher solute concentration, water will move through osmosis from the distilled water side to the solution side. This will result in an increase in the volume of the solution as water moves into it.
When hydrogen sulfide gas is bubbled through a solution of iron III chloride, it forms iron III sulfide as a solid precipitate. This reaction is represented by the chemical equation: FeCl3 + 3H2S -> Fe2S3 + 6HCl.
Chlorine is a stronger oxidizer than elemental Bromine. So, when yellowish chlorine gas is bubbled through the Bromide solution, a red colour is formed which is Bromine. Chlorine oxidizes Bromide ions to elemental Bromine while itself is reduced to Chloride ions. So, the total reaction is: Cl2 + Br- ----> Br2 + Cl-
If ammonia is bubbled through an acid, an ammonium salt and hence ion of that acid is formed. Ammonia bubbled through HCl would form ammonium chloride.
Chlorine is a more reactive halogen than bromine, therefore, when chlorine gas is bubbled through a calcium bromide solution, the chlorine will take the place of the bromine. This is called an anionic single replacement (displacement) reaction. Cl2(g) + CaBr2(aq) --> Br2(l) + CaCl2(aq)
It goes cloudy.
The reaction is a redox reaction where chlorine is reduced to chloride ions and iodide ions are oxidized to elemental iodine. Overall, it is a displacement reaction where chlorine displaces iodine from sodium iodide to form sodium chloride and elemental iodine.
If carbon dioxide and oxygen are bubbled through lime water separately the lime water through which carbon dioxide has been bubbled turns milky while the lime water through which oxygen is bubbled remains unaffected.