The color of silver chloride (AgCl) can change due to various factors such as exposure to light, impurities present, or changes in temperature. When AgCl is exposed to light, a photochemical reaction can occur, leading to a change in color from white to gray or pale yellow. Other impurities or reactions can also lead to color changes in silver chloride.
AgCl has a higher lattice energy than AgBr because Cl- is a smaller ion than Br-, resulting in stronger electrostatic interactions in AgCl.
No, AgCl is not organic. It is an inorganic compound composed of silver and chlorine.
The mole ratio of BaCl2 to AgCl is 1:2. This means that for every 1 mole of BaCl2, 2 moles of AgCl are produced in the chemical reaction.
There's 4 moles.
white
The color of silver chloride (AgCl) can change due to various factors such as exposure to light, impurities present, or changes in temperature. When AgCl is exposed to light, a photochemical reaction can occur, leading to a change in color from white to gray or pale yellow. Other impurities or reactions can also lead to color changes in silver chloride.
AgCl is highly insoluble, as it is a precipitate.
The chemical compound name for AgCl is silver chloride.
AgCl has a higher lattice energy than AgBr because Cl- is a smaller ion than Br-, resulting in stronger electrostatic interactions in AgCl.
No, AgCl is not organic. It is an inorganic compound composed of silver and chlorine.
The mole ratio of BaCl2 to AgCl is 1:2. This means that for every 1 mole of BaCl2, 2 moles of AgCl are produced in the chemical reaction.
There's 4 moles.
Yes, AgCl (silver chloride) has low solubility in water. It is sparingly soluble and forms a white precipitate when it is formed in solution.
AgCl is a solid compound at room temperature and pressure.
The solubility of AgCl decreases in a solution of NaCl due to the common ion effect. NaCl provides Cl- ions which react with Ag+ ions to form AgCl precipitate, reducing the solubility of AgCl.
If Ag+ is added to a dilute solution containing FeCl4-, a white precipitate of AgCl would form. This is because Ag+ ions react with Cl- ions to form AgCl, causing the color of the solution to change from the original color of the FeCl4- solution to white due to the formation of the precipitate.