Molarity of lead ( II ) ion in the original solution if 38.5 mL of lead ( II ) nitrate solution reacts completely with excess sodium iodide solution to yield 0.628 g of precipitate is to be calculated. Concept introduction: Precipitation reaction involves the reaction of two soluble ionic compounds to form an insoluble product. The insoluble product is known as a precipitate. The reason for the precipitation reaction to occur is the formation of a product that is insoluble in nature. The reaction of lead ( II ) nitrate and sodium iodide is an example of precipitation reaction. Pb ( NO 3 ) 2 ( a q ) + 2 NaI ( a q ) → PbI 2 ( s ) + 2 NaNO 3 ( a q ) According to the solubility rules, all the common nitrates are soluble but PbI 2 is insoluble in nature.
Molarity of lead ( II ) ion in the original solution if 38.5 mL of lead ( II ) nitrate solution reacts completely with excess sodium iodide solution to yield 0.628 g of precipitate is to be calculated. Concept introduction: Precipitation reaction involves the reaction of two soluble ionic compounds to form an insoluble product. The insoluble product is known as a precipitate. The reason for the precipitation reaction to occur is the formation of a product that is insoluble in nature. The reaction of lead ( II ) nitrate and sodium iodide is an example of precipitation reaction. Pb ( NO 3 ) 2 ( a q ) + 2 NaI ( a q ) → PbI 2 ( s ) + 2 NaNO 3 ( a q ) According to the solubility rules, all the common nitrates are soluble but PbI 2 is insoluble in nature.
Molarity of lead(II) ion in the original solution if 38.5 mL of lead(II)nitrate solution reacts completely with excess sodium iodide solution to yield 0.628 g of precipitate is to be calculated.
Concept introduction:
Precipitation reaction involves the reaction of two soluble ionic compounds to form an insoluble product. The insoluble product is known as a precipitate.
The reason for the precipitation reaction to occur is the formation of a product that is insoluble in nature. The reaction of lead(II)nitrate and sodium iodide is an example of precipitation reaction.
Pb(NO3)2(aq)+2NaI(aq)→PbI2(s)+2NaNO3(aq)
According to the solubility rules, all the common nitrates are soluble but PbI2 is insoluble in nature.
Explain the difference between the propagated uncertainty and the standard deviation. Which number would you use to describe the uncertainty in the measurement? if the standard deviation is 0.01 and the propagated uncertainty is 0.03
Propagation of uncertainty. Find the absolute and percent relative uncertainty assuming the ±-values are random error.
7.65±0.04 + 5.28±0.02 – 1.12±0.01
85.6±0.9 × 50.2±0.7 ÷ 13.8±0.5
[4.88±0.07 + 3.22±0.05] / 1.53±0.02
Explain the difference between the propagated uncertainty and the standard deviation. Which number would you use to describe the uncertainty in the measurement?