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TEST BANK FOR BECKER'S WORLD OF THE CELL, 10TH EDITION BY JEFF HARDIN, JAMES P. LODOLCE $18.49   Add to cart

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TEST BANK FOR BECKER'S WORLD OF THE CELL, 10TH EDITION BY JEFF HARDIN, JAMES P. LODOLCE

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TEST BANK FOR BECKER'S WORLD OF THE CELL, 10TH EDITION BY JEFF HARDIN, JAMES P. LODOLCE

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  • September 21, 2024
  • 723
  • 2024/2025
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  • Becker's World of the Cell, 10th Edition
  • Becker's World of the Cell, 10th Edition
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Constantina
Becker's cWorld cof cthe cCell, c10e (Hardin)
cChapter c1 A cPreview cof cCell cBiology


1.1 Multiple cChoice cQuestions

1) Robert cHooke ccoined cthe cterm ccell cwhen cstudying cthin cslices cof ccork. cThese c
cwere cthe cfirst ccells cobserved cbecause c .
A) dead cplant ccells; cthe cthick ccells cwalls cdid cnot crequire chigh cresolution cor cmagnification cto cview
B) dead canimal ccells; cthey cwere cimmobile cand cdid cnot cneed cto cbe cfixed cbefore cviewing
C) compartments; cthey cwere cactually cthe cresult cof cmultiple ccells cthat chad cmerged cand
cdied cto cform clarge ccompartments cthat cwere ceasy cto cview
D) immune ccells; cthey cproduce cantibodies cthat cembed cin cthe ccell cmembrane cto cmake cit cvisible
E) "little crooms"; cthey cwere c100 cnm cin cdiameter, cmuch clarger cthan cmost
cplant ccells cAnswer: c A
Chapter cSection: c c 1.1
Bloom's cTaxonomy: c Remembering/Understanding
cLearning cOutcome: c 1.1
Global cLO: c G1
cV&C cLO: c VC-
SF

2) The cLatin cphrase comnis ccellula ce ccellula crefers cto ca ccellular cprinciple. cWhich cof cthe
cfollowing cstatements cis cthe cbest cinterpretation cof cthis cphrase?
A) Tissues care ccomposed cof csimilar ccells.
B) Cells cgenerally care cfound cin cclusters.
C) All ccells carise conly cfrom cpreexisting ccells.
D) Organs care ccomposed cof ctissues cand ccells.
E) The ccell cis cthe cbasic cunit cof
cstructure. cAnswer: c C
Chapter cSection: c c 1.1
Bloom's cTaxonomy: c Remembering/Understanding
cLearning cOutcome: c 1.1
Global cLO: c G7
cV&C cLO: c VC-
SF




1

,3) cimproved cthe coriginal clight cmicroscope cin cthe clate c1600s, callowing cthe
cvisualization cof c .
A) Theodor cSchwann; cthe cinternal cstructures cof ccells, csuch cas cribosomes, cnuclei, cand
cGolgi cbodies
B) Robert cHooke; cbacteria cand cviruses
C) Antonie cvan cLeeuwenhoek; csperm ccells, cbacteria, calgae, cand cother cprotists
D) Robert cBrown; ccell cstructures cusing cfluorescent cantibodies
E) Rudolf cVirchow; ccollagen cand cmuscle
ccells cAnswer: c C
Chapter cSection: c c 1.1
Bloom's cTaxonomy: c Remembering/Understanding
cLearning cOutcome: c 1.2
Global cLO: c G1
cV&C cLO: c c VC-S


4) Which corganelle cstores cmost cof cthe cDNA cin cplant cand canimal ccells?
A) Golgi ccomplex
B) Mitochondrion
C) Chloroplast
D) Nucleus
E) Lysosome
cAnswer:
c D
Chapter cSection: c c 1.2
Bloom's cTaxonomy: c Remembering/Understanding
cLearning cOutcome: c 1.2
Global cLO: c G1
cV&C cLO: c c VC-E


5) Which cof cthe cfollowing cstatements cis cfalse?
A) All corganisms cconsist cof cone cor cmore ccells.
B) All ccells carise cfrom cpreexisting ccells.
C) The ccell cis cthe cbasic cunit cof cstructure cfor call corganisms.
D) All ccells chave ca cmembrane-bound cnucleus.
E) Cells ccome cin ca cwide cvariety cof csizes cand
cshapes. cAnswer: c D
Chapter cSection: c c 1.2
Bloom's cTaxonomy: c Applying/Analyzing
cLearning cOutcome: c 1.1
Global cLO: c G7
cV&C cLO: c VC-
PS




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,6) Which cof cthe cfollowing cis ctrue cof ca cnanometer?
A) A cnanometer cis cabout cthe csize cof ca ccommon cbacterial ccell.
B) A cnanometer cis cone cmillionth cof ca cmeter.
C) A cnanometer cis cequivalent cto c10 cAngstroms c(Å).
D) The cnanometer cis cthe cmost ccommon cmeasurement cused cin cmeasuring cwhole ccells.
E) None cof cthe
cabove. cAnswer: c C
Chapter cSection: c c 1.2
Bloom's cTaxonomy: c Remembering/Understanding
cLearning cOutcome: c 1.2
Global cLO: c G4
cV&C cLO: c VC-
PS

7) Which cof cthe cfollowing cis cclosest cto ca cmicrometer cin csize?
A) The cwidth cof ca cstrand cof cDNA
B) The clength cof ca cplant ccell
C) The clength cof ca cchicken cegg
D) A ctypical cprokaryotic ccell
E) The csize cof ca
cribosome cAnswer: c D
Chapter cSection: c c 1.2
Bloom's cTaxonomy: c Applying/Analyzing
cLearning cOutcome: c 1.2
Global cLO: c G4
cV&C cLO: c VC-
PS

8) Cell cbiology cemerged cfrom cwhich cof cthe cfollowing cfields cof cbiology?
A) Biochemistry
B) Cytology
C) Genetics
D) Biochemistry, ccytology, cand cgenetics
E) Cytology cand
cbiochemistry cAnswer: c D
Chapter cSection: c c 1.2
Bloom's cTaxonomy: c Remembering/Understanding
cLearning cOutcome: c 1.1
Global cLO: c G1
cV&C cLO: c c VC-E




3

, 9) Which cof cthe cfollowing cis csmallest?
A) Ribosome
B) Virus
C) Protein
D) Mitochondrion
E) Prokaryote
cAnswer: c C
Chapter cSection: c c 1.2
Bloom's cTaxonomy: c Applying/Analyzing
cLearning cOutcome: c 1.2
Global cLO: c G4
cV&C cLO: c VC-
SF

10) Early cmicroscopes cdid cnot callow cclear cvisualization cof ccells cbecause cthey cwere climited cby
A) magnification.
B) number cof ckernels.
C) resolution.
D) refraction.
E) both cmagnification cand
cresolution. cAnswer: c E
Chapter cSection: c c 1.1
Bloom's cTaxonomy: c Remembering/Understanding
cLearning cOutcome: c 1.2
Global cLO: c G4
cV&C cLO: c VC-
SF

11) You care cworking con ca cproject cthat cinvolves cthe cdirect cobservation cof cDNA
cmolecules. cThe cmicroscope cthat cwould cgive cyou cthe cbest cinformation cat cthis ctime
cwould cbe cthe
A) light cmicroscope.
B) phase-contrast cmicroscope.
C) transmission celectron cmicroscope.
D) digital cvideo cmicroscope.
E) fluorescent
cmicroscope. cAnswer: c C
Chapter cSection: c c 1.2
Bloom's cTaxonomy: c Applying/Analyzing
cLearning cOutcome: c 1.2
Global cLO: c G4
cV&C cLO: c VC-
PS




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