Calculate the number of cations and anions in each of the following compounds: (a) 0.764 g of CsI, (b) 72.8 g of K 2 Cr 2 O 7 , (c) 6.54 g of Hg 2 (NO 3 ) 2 .
Calculate the number of cations and anions in each of the following compounds: (a) 0.764 g of CsI, (b) 72.8 g of K 2 Cr 2 O 7 , (c) 6.54 g of Hg 2 (NO 3 ) 2 .
Calculate the number of cations and anions in each of the following compounds: (a) 0.764 g of CsI, (b) 72.8 g of K2Cr2O7, (c) 6.54 g of Hg2(NO3)2.
(a)
Expert Solution
Interpretation Introduction
Interpretation:
From the given mass of CsI, the number of cations and anions in CsI has to be calculated.
Concept Introduction:
Molar mass:
Molar mass of a molecule can be calculated from its molecular formula by taking the sum of atomic masses of all the elements present in it.
Conversion formula for mass of a molecule into number moles,
Numberofmoles=MassingramsMolarmass
Answer to Problem 3.121QP
The number of iodide ions is 1.77×1021I−ions
The number of cesium ions is 1.77×1021I−ions
Explanation of Solution
Given,
Mass of CsI is 0.764g
The number of cesium ions and iodide ions are calculated using molar mass of CsI and Avogadro number as,
0.764 g CsI×1 mol CsI259.8 g CsI×6.022×1023CsI1molCsI×1Cs+ion1CsI=1.77×1021Cs+ions
The ratio of cesium ion and iodide ion is 1:1. Hence, the number of iodide ions 1.77×1021I−ions and number of cesium ions is 1.77×1021I−ions
(b)
Expert Solution
Interpretation Introduction
Interpretation:
From the given mass of K2Cr2O7, the number of cations and anions in K2Cr2O7 has to be calculated.
Concept Introduction:
Molar mass:
Molar mass of a molecule can be calculated from its molecular formula by taking the sum of atomic masses of all the elements present in it.
Conversion formula for mass of a molecule into number moles,
Numberofmoles=MassingramsMolarmass
Answer to Problem 3.121QP
The number of chromate ions is 1.49×1023Cr2O72−ions
The number of potassium ion is 2.98×1023K+ions
Explanation of Solution
Given,
Mass of K2Cr2O7 is 72.8g
The number of potassium ions and chromate ions are calculated using molar mass of K2Cr2O7 and Avogadro number as,
72.8 g K2Cr2O7×1 mol K2Cr2O7294.2 g K2Cr2O7×6.022×1023K2Cr2O71molK2Cr2O7×2K+ion1K2Cr2O7=2.98×1023K+ions
The ratio of potassium ion and chromate ion is 2:1 . Hence, the number of chromate ions is 1.49×1023Cr2O72−ions and number of potassium ion is 2.98×1023K+ions
(c)
Expert Solution
Interpretation Introduction
Interpretation:
From the given mass of Hg2(NO3)2, the number of cations and anions in Hg2(NO3)2 have to be calculated.
Concept Introduction:
Molar mass:
Molar mass of a molecule can be calculated from its molecular formula by taking the sum of atomic masses of all the elements present in it.
Conversion formula for mass of a molecule into number moles,
Numberofmoles=MassingramsMolarmass
Answer to Problem 3.121QP
The number of nitrate ions is 1.50×1022NO3−ions
The number of mercury ion is 7.50×1021Hg22+ions
Explanation of Solution
Given,
Mass of Hg2(NO3)2 is 72.8g
The number of mercury ions and nitrate ions are calculated using molar mass of Hg2(NO3)2 and Avogadro number as,
6.54g Hg2(NO3)2×1 mol Hg2(NO3)2294.2 g Hg2(NO3)2×6.022×1023Hg2(NO3)21molHg2(NO3)2×1Hg22+ion1Hg2(NO3)2=7.50×1021Hg22+ions
The ratio of mercury ions and nitrate ions is 1:2 . Hence, the number of nitrate ions is 1.50×1022NO3−ions and number of mercury ion is 7.50×1021Hg22+ions
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