Number of equivalents of SO 4 2 − present in the solution containing 5 .0 mEq SO 4 2 − ions has to be determined. Concept-Introduction: Body fluids have small amounts of different type electrolytes and its concentration is measured in equivalents or milliequivalents per liter. An Equivalent ( E q ) of an ion is the molar amount of a certain ion required for supplying one mole of negative or positive charge. Few examples for the relationship between number of equivalent and charge of an ion is given below, 1 mole = 1 equivalent ( For ions with charge 1+ or 1 − ) 1 mole = 2 equivalent ( For ions with charge 2+ or 2 − ) 1 mole = 3 equivalent ( For ions with charge 3+ or 3 − ) Unit Conversion: 1 Eq = 10 3 mEq
Number of equivalents of SO 4 2 − present in the solution containing 5 .0 mEq SO 4 2 − ions has to be determined. Concept-Introduction: Body fluids have small amounts of different type electrolytes and its concentration is measured in equivalents or milliequivalents per liter. An Equivalent ( E q ) of an ion is the molar amount of a certain ion required for supplying one mole of negative or positive charge. Few examples for the relationship between number of equivalent and charge of an ion is given below, 1 mole = 1 equivalent ( For ions with charge 1+ or 1 − ) 1 mole = 2 equivalent ( For ions with charge 2+ or 2 − ) 1 mole = 3 equivalent ( For ions with charge 3+ or 3 − ) Unit Conversion: 1 Eq = 10 3 mEq
Solution Summary: The author explains that the number of equivalents of SO_42- present in the solution is determined.
Number of equivalents of SO42− present in the solution containing 5.0 mEq SO42− ions has to be determined.
Concept-Introduction:
Body fluids have small amounts of different type electrolytes and its concentration is measured in equivalents or milliequivalents per liter. An Equivalent (Eq) of an ion is the molar amount of a certain ion required for supplying one mole of negative or positive charge.
Few examples for the relationship between number of equivalent and charge of an ion is given below,
1 mole = 1 equivalent(For ions with charge 1+ or 1−)1 mole = 2 equivalent(For ions with charge 2+ or 2−)1 mole = 3 equivalent(For ions with charge 3+ or 3−)
Unit Conversion:
1 Eq = 103 mEq
(b)
Interpretation Introduction
Interpretation:
Number of moles present in the solution containing 5.0 mEq SO42− has to be determined.
Concept-Introduction:
Body fluids have small amounts of different type electrolytes and its concentration is measured in equivalents or milliequivalents per liter. An Equivalent (Eq) of an ion is the molar amount of a certain ion required for supplying one mole of negative or positive charge.
Few examples for the relationship between number of equivalent and charge of an ion is given below,
1 mole = 1 equivalent(For ions with charge 1+ or 1−)1 mole = 2 equivalent(For ions with charge 2+ or 2−)1 mole = 3 equivalent(For ions with charge 3+ or 3−)
1) Draw the control charts for the following data and
interpret the result and also develop control limts for
future use. 24 samples are taken each with a subgroup
size of 3.
Don't Use the standard excel template and analyze.
1) Draw the control charts for the following data and interpret the result and also develop
control limts for future use. 24 samples are taken each with a subgroup size of 3.
Problem to be solved both as an assignment and laboratory.
Subgroup
X₁
X2
X3
1
7
8
10
2
9
9
14
3
15
16
10
4
14
13
15
5
12
11
10
6
10
11
9
I
7
10
9
9
8
15
17
13
9
10
7
8
10
9
8
9
11
8
8
10
12
17
13
10
13
10
12
11
14
9
9
10
15
10
8
8
16
11
10
9
17
10
10
8
18
8
9
7
19
9
8
9
22222
10
10
11
9
10
9
11
9
10
12
12
11
14
2012 4
How much of each solution should be
used to prepare 1L of a buffer
solution with a pH of 9.45 using 3M
Na2CO3 and 0.2M HCI? Given: Ka
1 = 4.3 × 10-7, Ka2 = 4.69 × 10-11
Chapter 10 Solutions
General, Organic, And Biological Chemistry, Hybrid (with Owlv2 Quick Prep For General Chemistry Printed Access Card)
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