AlCl3+ 3NaOH = Al(OH)3+ 3NaCl
NaCl doesn't have a molecular geometry because it is not a molecule. NaCl is an ionic compound that forms a face-centered-cubic lattice of alternating positive (Na+) and negative (Cl-) ions.
SolutionBrine = H2O + NaCl
h2o,Nacl,Co2,O2,O3
Provided that its (NaCl(aq) solution it can also be called (Brine).
You haven't given the volume of solution. M means moles per liter. First off you divide 5 by 1000 and multiply by the amount of mls you have to find out how many moles that you have. then multiply by molecular weight of NaCl
The solution of 0.1M NaCl will have the highest electrical conductivity among the three options provided. This is because NaCl dissociates completely in water to produce more free ions, which increases the conductivity. BaCl2 and AlCl3 do not dissociate as completely as NaCl, resulting in fewer free ions and lower conductivity.
AlCl3 can precipitate with compounds that contain chloride ions, such as NaCl, KCl, or HCl, to form insoluble AlCl3 complexes. This reaction can be used for the precipitation of aluminum ions from a solution.
NaCl (sodium chloride) would be better for putting on roads because it is less corrosive and less damaging to the environment compared to AlCl3 (aluminum chloride). Additionally, NaCl is more cost-effective and readily available for road maintenance purposes.
4,1,2
CaCl2 and AlCl3 do not form crystals with the same structure as NaCl because their cations (Ca2+ and Al3+) have different sizes and charges compared to Na+. As a result, they do not pack together in the same way as Na+ and Cl- ions do in a NaCl crystal lattice. The differences in the sizes and charges of the cations lead to different crystal structures.
NaCl (sodium chloride) is the most effective solute in lowering the vapor pressure of water. This is because NaCl dissociates into ions when dissolved in water, resulting in a greater number of particles in the solution compared to the other solutes listed. More particles in the solution lead to a greater decrease in vapor pressure.
Ionic compounds are salts or oxides as NaCl, LiF, MgCl2, MgO, UCl4, ThO2, CsCl, CaCl2, FeCl3, AlCl3.
Aluminium forms two oxdiation states with the chloride ion, I and III 3AlCl + Na3PO4 ------------> NaCl + Al3PO4 this is for Aluminum I chloride AlCl3 + Na3PO4 ------------> AlPO4 + 3 NaCL for the Aluminum III chloride
NaCl and CaCl2 are ionic compounds that dissociate into ions in solution, allowing them to conduct electricity. AlCl3 is a covalent compound that does not dissociate into ions in solution, so it does not conduct electricity. The ability to conduct electricity depends on the presence of free-moving charged particles that can carry the current.
The balanced chemical equation for the reaction between Na2CO3 and CaCl2 to form CaCO3 and NaCl is: Na2CO3 + CaCl2 -> CaCO3 + 2NaCl. Therefore, the coefficients are 1, 1, 1, and 2 for Na2CO3, CaCl2, CaCO3, and NaCl respectively.
No, the chemical equation is not balanced. The balanced equation is: 2AgNO3 + 2NaCl -> 2AgCl + 2NaNO3
2Fe+3Cl2------>2FeCl3