A sample of acid rain collected from a pond was shown to have a pH = 4.65. What concentration of HNO 3 does this pH correspond to has to be calculated Concept Information: Strong acids: In strong acids, the ionization of acid is complete. This implies that the concentration of the hydrogen ion or hydronium ion will be equal to the initial concentration of the acid at equilibrium. For example: Consider ionization of HCl (a strong acid) 0.10- M HCl solution contains 0.10 M hydronium ions [H 3 O + ] in it, because all the HCl molecules ionizes. At equilibrium (after the completion of ionization), the concentration of [HCl] will be zero since no HCl molecules remains after ionization. The concentration after ionization will be as follows, [HCl] = 0 M [H 3 O + ] = 0.10 M [Cl - ] =0.1 M pH definition: The concentration of hydrogen ion is measured using pH scale. The acidity of aqueous solution is expressed by pH scale. The pH of a solution is defined as the negative base-10 logarithm of the hydrogen or hydronium ion concentration. pH = -log[H + ] To Calculate: The concentration of HNO 3 corresponding to the pH = 4.65
A sample of acid rain collected from a pond was shown to have a pH = 4.65. What concentration of HNO 3 does this pH correspond to has to be calculated Concept Information: Strong acids: In strong acids, the ionization of acid is complete. This implies that the concentration of the hydrogen ion or hydronium ion will be equal to the initial concentration of the acid at equilibrium. For example: Consider ionization of HCl (a strong acid) 0.10- M HCl solution contains 0.10 M hydronium ions [H 3 O + ] in it, because all the HCl molecules ionizes. At equilibrium (after the completion of ionization), the concentration of [HCl] will be zero since no HCl molecules remains after ionization. The concentration after ionization will be as follows, [HCl] = 0 M [H 3 O + ] = 0.10 M [Cl - ] =0.1 M pH definition: The concentration of hydrogen ion is measured using pH scale. The acidity of aqueous solution is expressed by pH scale. The pH of a solution is defined as the negative base-10 logarithm of the hydrogen or hydronium ion concentration. pH = -log[H + ] To Calculate: The concentration of HNO 3 corresponding to the pH = 4.65
Solution Summary: The author explains how the pH of a pond's acid rain is calculated using the pH scale.
A sample of acid rain collected from a pond was shown to have a
pH = 4.65. What concentration of
HNO3 does this pH correspond to has to be calculated
Concept Information:
Strong acids:
In strong acids, the ionization of acid is complete. This implies that the concentration of the hydrogen ion or hydronium ion will be equal to the initial concentration of the acid at equilibrium.
For example:
Consider ionization of
HCl (a strong acid)
0.10-MHCl solution contains 0.10 M hydronium ions
[H3O+] in it, because all the
HCl molecules ionizes.
At equilibrium (after the completion of ionization), the concentration of
[HCl] will be zero since no
HCl molecules remains after ionization.
The concentration after ionization will be as follows,
[HCl]= 0M
[H3O+] = 0.10 M
[Cl-]=0.1 M
pH definition:
The concentration of hydrogen ion is measured using
pH scale. The acidity of aqueous solution is expressed by
pH scale.
The
pH of a solution is defined as the negative base-10 logarithm of the hydrogen or hydronium ion concentration.
pH=-log[H+]
To Calculate: The concentration of
HNO3 corresponding to the
pH = 4.65
9. OA. Rank the expected boiling points of the compounds shown below from highest to lowest. Place your answer
appropriately in the box. Only the answer in the box will be graded. (3) points)
OH
OH
بر بد بدید
2
3
There is an instrument in Johnson 334 that measures total-reflectance x-ray fluorescence (TXRF) to do elemental analysis (i.e., determine what elements are present in a sample). A researcher is preparing a to measure calcium content in a series of well water samples by TXRF with an internal standard of vanadium (atomic symbol: V). She has prepared a series of standard solutions to ensure a linear instrument response over the expected Ca concentration range of 40-80 ppm. The concentrations of Ca and V (ppm) and the instrument response (peak area, arbitrary units) are shown below. Also included is a sample spectrum. Equation 1 describes the response factor, K, relating the analyte signal (SA) and the standard signal (SIS) to their respective concentrations (CA and CIS).
Ca, ppm
V, ppm
SCa, arb. units
SV, arb. units
20.0
10.0
14375.11
14261.02
40.0
10.0
36182.15
17997.10
60.0
10.0
39275.74
12988.01
80.0
10.0
57530.75
14268.54
100.0…
A mixture of 0.568 M H₂O, 0.438 M Cl₂O, and 0.710 M HClO are enclosed in a vessel at 25 °C.
H₂O(g) + C₁₂O(g) = 2 HOCl(g)
K = 0.0900 at 25°C
с
Calculate the equilibrium concentrations of each gas at 25 °C.
[H₂O]=
[C₁₂O]=
[HOCI]=
M
Σ
M
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Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell
Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell