
(a)
Interpretation: The solution that produces the greatest number of solute particles per liter from the given solutions is to be identified.
Concept introduction: The solution that gives more number of cation and anion after dissociation will produce greater number of particles.
To determine: The number of moles of the solute produced by the dissociation of a one molar solution of
(b)
To determine: The number of moles of the solute produced by the dissociation of a one molar solution of
(c)
To determine: The number of moles of the solute produced by the dissociation of a four molar solution of ethanol.
(d)
To determine: The number of moles of the solute produced by the dissociation of a four molar solution of acetic acid.

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Chapter 4 Solutions
CHEMISTRY:SCI.IN CONTEXT (CL)-PACKAGE
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- Using 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_forwardCan you help me understand the CBC method on metal bridging by looking at this problem?arrow_forward
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