Concept explainers
(a)
Interpretation:
The percent of protons to the total mass of one selenium atom has to be given.
(a)

Answer to Problem 55AE
The percent of protons in a selenium atom is
Explanation of Solution
Given,
The mass of one selenium atom is
The mass of a proton is
The total number of protons in
The mass percent can be calculated as,
The percent of protons in a selenium atom is
(b)
Interpretation:
The percent of protons to the total mass of one xenon atom has to be given.
(b)

Answer to Problem 55AE
The percent of protons in a xenon atom is
Explanation of Solution
Given,
The mass of one xenon atom is
The mass of a proton is
The total number of protons in
The mass percent can be calculated as,
The percent of protons in a xenon atom is
(c)
Interpretation:
The percent of protons to the total mass of one Chlorine atom has to be given.
(c)

Answer to Problem 55AE
The percent of protons in a Chlorine atom is
Explanation of Solution
Given,
The mass of one Chlorine atom is
The mass of a proton is
The total number of protons in
The mass percent can be calculated as,
The percent of protons in a Chlorine atom is
(d)
Interpretation:
The percent of protons to the total mass of one Barium atom has to be given.
(d)

Answer to Problem 55AE
The percent of protons in a Barium atom is
Explanation of Solution
Given,
The mass of one Barium atom is
The mass of a proton is
The total number of protons in
The mass percent can be calculated as,
The percent of protons in a Barium atom is
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Chapter 5 Solutions
FOUNDATIONS OF COLLEGE CHEM +KNEWTONALTA
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- Draw the major product of the Claisen condensation reaction between two molecules of this ester. Ignore inorganic byproducts. Incorrect, 5 attempts remaining 1. NaOCH3/CH3OH 2. Acidic workup Select to Draw O Incorrect, 5 attempts remaining The total number of carbons in the parent chain is incorrect. Review the reaction conditions including starting materials and/or intermediate structures and recount the number of carbon atoms in the parent chain of your structure. OKarrow_forwardUsing a cell of known pathlength b = 1.25115 x 10-3 cm, a water absorption spectrum was measured. The band at 1645 cm-1, assigned to the O-H bending, showed an absorbance, A, of 1.40. a) Assuming that water density is 1.00 g/mL, calculate the water molar concentration c (hint: M= mole/L) b) Calculate the molar absorptivity, a, of the 1645 cm-1 band c) The transmitted light, I, can be written as I= Ioexp(-xb), where x is the absorption coefficient (sometimes designated as alpha), Io is the input light, and b is the cell pathlength. Prove that x= (ln10)*x*c d) Calculate x for the 1645 cm-1 bandarrow_forwardConvert 1.38 eV into wavelength (nm) and wavenumber (cm-1) (c = 2.998 x 108 m/s; h = 6.626 x 10-34 J*s).arrow_forward
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