Clinical Chemistry: Principles, Techniques, and Correlations
nn nn nn nn nn
Michael nnL. nnBishop, nnEdward nnP. nnFody, nnCarleen nnVan nnSiclen nn& nnJames nnMarch nnMistler
9TH Edition
nn
TESTBANK n
,Clinical nnChemistry: nnPrinciples, nnTechniques, nnand nnCorrelations, nnNinth
nnEdition
Test nnbank
Import nnSettings:
Base nnSettings: nnBrownstone
nnDefaultnInformation nnField:
nnComplexity nnInformation nnField:
nnAhead nnInformation nnField:
nnSubject nnInformation nnField:
nnTitle
Highest nnAnswer nnLetter: nnD
Multiple nnKeywords nnin nnSame nnParagraph: nnNo
NAS nnISBN13: nn9781284238884, nnadd nnto nnAhead, nnTitle nntags
Chapter: nnChapter nn01 nn– nnTest nnBank
Multiple nnChoice
1. One nnnanogram nnis nnequivalent nnto nnhow nnmany
-6
nngrams?nA) nn10
-9
B) nn10
C) nn10-12
D) nn10-15
Ans: nnB
nnComplexity:
nnRL2
Ahead: nnUnits nnof
nnMeasurenSubject:
nnChapter nn1
Title: nnBasic nnPrinciples nnand nnPractices nnof nnClinical nnChemistry
2. How nnmany nnmilliliters nnof nn0.5N nnNaOH nnare nnrequired nnto nnmake nn100 nnmilliliters
nnof nn0.2N nnNaOH?nA) nn250
B) 40
C) 25
D) 4
nnAns:
nnB
Complexity: nnRL2
Ahead: nnLaboratory nnMathematics nnand
nnCalculationsnSubject: nnChapter nn1
Title: nnBasic nnPrinciples nnand nnPractices nnof nnClinical nnChemistry
3. A nnpatient nnsample nnfor nnuric nnacid nngave nnan nnabsorbance nnreading nnof nn0.4, nnand nnthe nn50 nnmg/dL
nnstandard nngave nnannabsorbance nnreading nnof nn0.1. nnWhat nnis nnthe nnconcentration nnof nnuric nnacid nnin
nnthe nnpatient's nnsample nnin nngrams nnper nndeciliter?
A) nn0.2
B) nn12.5
C) nn125
D) nn200
Ans: nnD
nnComplexity:
nnRL2
© nnJones nn& nnBartlett nnLearning, nnLLC, nnan nnAscend nnLearning 1-1
nnCompany
,Clinical nnChemistry: nnPrinciples, nnTechniques, nnand nnCorrelations, nnNinth
nnEdition
Ahead: nnLaboratory nnMathematics nnand nnCalculations
Test nnbank
© nnJones nn& nnBartlett nnLearning, nnLLC, nnan nnAscend nnLearning 1-2
nnCompany
, Clinical nnChemistry: nnPrinciples, nnTechniques, nnand nnCorrelations, nnNinth
nnEdition
Test nnbank
Subject: nnChapter nn1
Title: nnBasic nnPrinciples nnand nnPractices nnof nnClinical nnChemistry
4. How nnmany nnmillimoles nnof nnNaCl nnare nncontained nnin nn300 nnmL nnof nna nn4M nnsolution? nn(gmw nn= nn58.5)
A) nn70
B) nn120
C) nn234
D) nn1200
Ans: nnD
nnComplexity:
nnRL2
Ahead: nnLaboratory nnMathematics nnand
nnCalculationsnSubject: nnChapter nn1
Title: nnBasic nnPrinciples nnand nnPractices nnof nnClinical nnChemistry
5. How nnis nn10 nnmg/dL nnof nncalcium nnreported nnin nnmmol/L?
nn(gmw nn= nn40)nA) nn2.5
B) nn5.0
C) 10
D) 25
nnAns:
nnA
Complexity: nnRL2
Ahead: nnLaboratory nnMathematics nnand
nnCalculationsnSubject: nnChapter nn1
Title: nnBasic nnPrinciples nnand nnPractices nnof nnClinical nnChemistry
6. How nnmany nnmilliliters nnof nnconcentrated nnsulfuric nnacid nn(H2S04), nnG.M.W. nn= nn98 nngrams, nnspecific
nngravity nn= nn1.500,npurity nn= nn80%, nnare nnneeded nnto nnmake nn400 nnmL nnof nna nn2N nnsolution?
A) nn26.1
B) nn32.7
C) nn52.3
D) nn65.3
Ans: nnB
nnComplexity:
nnRL2
Ahead: nnLaboratory nnMathematics nnand
nnCalculationsnSubject: nnChapter nn1
Title: nnBasic nnPrinciples nnand nnPractices nnof nnClinical nnChemistry
7. How nnmany nngrams nnof nnhydrated nnMgSO4 nn nn5 nnH20 nn(M.W.: nnMgSO4 nn= nn119, nnH20 nn= nn18)
nnare nnrequired nnto nnmake nnan10% nnsolution nnof nnMgS04?
A) 5.7 nng/dL
B) 11.9 nng/dL
C) 17.6 nng/dL
D) 20.9 nng/dL
nnAns: nnC
nnComplexity:
nnRL2
Ahead: nnLaboratory nnMathematics nnand
nnCalculationsnSubject: nnChapter nn1
Title: nnBasic nnPrinciples nnand nnPractices nnof nnClinical nnChemistry
© nnJones nn& nnBartlett nnLearning, nnLLC, nnan nnAscend nnLearning 1-3
nnCompany