Clinical Chemistry: Principles, Techniques, and Correlations
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by Michael L. Bishop, Edward P. Fody, Carleen Van
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Siclen, James March Mistler
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9th Edition #nb
FULL TEST BANK!!! #nb #nb
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,Import Settings:
Base Settings: Brownstone Default
Information Field: Complexity
Information Field: Ahead
Information Field: Subject
Information Field: Title
Highest Answer Letter: D
Multiple Keywords in Same Paragraph: No
NAS ISBN13: 9781284238884, add to Ahead, Title tags
Chapter: Chapter 01 – Test Bank
Multiple Choice
1. One nanogram is equivalent to how many grams?
A) 10-6
B) 10-9
C) 10-12
D) 10-15
Ans: B
Complexity: RL2
Ahead: Units of Measure
Subject: Chapter 1
Title: Basic Principles and Practices of Clinical Chemistry
2. How many milliliters of 0.5N NaOH are required to make 100 milliliters of 0.2N NaOH?
A) 250
B) 40
C) 25
D) 4
Ans: B
Complexity: RL2
Ahead: Laboratory Mathematics and Calculations
Subject: Chapter 1
Title: Basic Principles and Practices of Clinical Chemistry
3. A patient sample for uric acid gave an absorbance reading of 0.4, and the 50 mg/dL standard gave an
absorbance reading of 0.1. What is the concentration of uric acid in the patient's sample in grams per
deciliter?
A) 0.2
B) 12.5
C) 125
D) 200
Ans: D
Complexity: RL2
Ahead: Laboratory Mathematics and Calculations
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,Subject: #nbChapter #nb1
Title: #nbBasic #nbPrinciples #nband #nbPractices #nbof #nbClinical #nbChemistry
4. How #nbmany #nbmillimoles #nbof #nbNaCl #nbare #nbcontained #nbin #nb300 #nbmL #nbof #nba #nb4M #nbsolution? #nb(gmw #nb= #nb58.5)
A) 70
B) 120
C) 234
D) 1200
Ans: #nbD
#nbComplexity:
#nbRL2
Ahead: #nbLaboratory #nbMathematics #nband
#nbCalculations #nbSubject: #nbChapter #nb1
Title: #nbBasic #nbPrinciples #nband #nbPractices #nbof #nbClinical #nbChemistry
5. How #nbis #nb10 #nbmg/dL #nbof #nbcalcium #nbreported #nbin #nbmmol/L? #nb(gmw #nb= #nb40)
A) 2.5
B) 5.0
C) 10
D) 25
Ans: #nbA
#nbComplexity:
#nbRL2
Ahead: #nbLaboratory #nbMathematics #nband
#nbCalculations #nbSubject: #nbChapter #nb1
Title: #nbBasic #nbPrinciples #nband #nbPractices #nbof #nbClinical #nbChemistry
6. How #nbmany #nbmilliliters #nbof #nbconcentrated #nbsulfuric #nbacid #nb(H2S04), #nbG.M.W. #nb= #nb98 #nbgrams,
#nbspecific #nbgravity #nb= #nb1.500, #nbpurity #nb= #nb80%, #nbare #nbneeded #nbto #nbmake #nb400 #nbmL #nbof #nba #nb2N
#nbsolution?
A) 26.1
B) 32.7
C) 52.3
D) 65.3
Ans: #nbB
#nbComplexity:
#nbRL2
Ahead: #nbLaboratory #nbMathematics #nband
#nbCalculations #nbSubject: #nbChapter #nb1
Title: #nbBasic #nbPrinciples #nband #nbPractices #nbof #nbClinical #nbChemistry
7. How #nbmany #nbgrams #nbof #nbhydrated #nbMgSO4 #nb #nb5 #nbH20 #nb(M.W.: #nbMgSO4 #nb= #nb119, #nbH20 #nb= #nb18)
#nbare #nbrequired #nbto #nbmake #nba #nb10% #nbsolution #nbof #nbMgS04?
A) 5.7 #nbg/dL
B) 11.9 #nbg/dL
C) 17.6 #nbg/dL
D) 20.9 #nbg/dL
#nbAns: #nbC
#nbComplexity:
#nbRL2
Ahead: #nbLaboratory #nbMathematics #nband
#nbCalculations #nbSubject: #nbChapter #nb1
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, Title: #nbBasic #nbPrinciples #nband #nbPractices #nbof #nbClinical #nbChemistry
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