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The presence of halide ions
In water, sodium chloride will dissociate into Na+ ions and Cl- ions. Due to the presence of charges, ions are good conductors of electricity.
Silver ions could be detected with the use of a silver ion selective electrode, mass spectrometry, or using certain chemical reactions (ie precipitation when a source of chloride ions is added, complexation using ammonia, etc).
To detect the presence of CI- ion, add silver nitrate solution. A white opalescence to cloudy precipitate of silver chloride will form and confirm the presence of CI- ion.
In presence of chlorine, sodium atoms will discharge electrons to give sodium ions to combine with chloride ions followed by forming a lattice of sodium chloride.
The presence of halide ions
This test is never used for detection of tyrosine in urine, because urine contain chloride that chloride ions interfere with this test by combining with mercury chloride (HgCl2)
In water, sodium chloride will dissociate into Na+ ions and Cl- ions. Due to the presence of charges, ions are good conductors of electricity.
To detect the presence of CI- ion, add silver nitrate solution. A white opalescence to cloudy precipitate of silver chloride will form and confirm the presence of CI- ion.
Yes it is, due to the presence of movable ions
yes it does, due to the presence of ions.
Silver ions could be detected with the use of a silver ion selective electrode, mass spectrometry, or using certain chemical reactions (ie precipitation when a source of chloride ions is added, complexation using ammonia, etc).
To detect the presence of CI- ion, add silver nitrate solution. A white opalescence to cloudy precipitate of silver chloride will form and confirm the presence of CI- ion.
In presence of chlorine, sodium atoms will discharge electrons to give sodium ions to combine with chloride ions followed by forming a lattice of sodium chloride.
By adding silver nitrate to the compound. If a White precipitate is formed, then it means chloride ion is present.
yes, due the presence of movable free ions.
It conducts due to the presence of free ions in molten and solution state.