This is the ionic bond.
The number of ions in a 6,58 mole sample of NaCl is 79,25137367812.10e23.
The sample described is a saturated solution because it contains the maximum amount of NaCl that can dissolve in 1.0 liter of water at that temperature.
To find the density of NaCl (sodium chloride), you first need to determine the mass of a known volume of NaCl. This can be done by weighing a sample of NaCl using a balance. Next, measure the volume of the NaCl sample using a graduated cylinder or other measuring device. Finally, divide the mass of the NaCl sample by its volume to calculate the density, which is typically expressed in grams per cubic centimeter (g/cm^3).
1.3g
The molarity is 6.
2.044 g AgCl / 143.33 g per mole = 0.01426 moles of AgClNaCl + AgNO3 --> AgCl + NaNO31 mole of AgCl = 1 mole of NaClThe sample contained 0.01426 moles of NaCl0.01426 moles NaCl x 58.44 g per mole = 0.8334 g NaCl0.8334 / 0.8421 = 98.97% pureI'm pretty sure this is the correct answer.
The formula mass of NaCl is 23.0 + 35.5 = 58.5Amount of NaCl = 60/58.5 = 1.03mol So there is 1.03 moles of NaCl in a 60 gram pure sample.
79,9 g NaCl is equivalent to 1,367 moles.The formula mass of the compound sodium chloride, NaCl is 23.0 + 35.5 = 58.5Amount of NaCl = 79.9/58.5 = 1.37molThere are 1.37 moles of sodium chloride in a 79.9 gram pure sample of the compound.
NaOH + HCl = NaCl + H2O
NaCl is an ionic compound. Na ions are positive charged and Cl ions are negative charged. A Coulomb force is existing between the two kinds of ions, making NaCl an ionic compound.
*the attractive force between opposite electrical charges
Sodium chloride "formula units" form a very large lattice.