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Test Bank For Genetics and Genomics in Nursing and Health Care First Edition by Theresa A. Beery, M. Linda Workman||ISBN NO:10,0803624883||ISBN NO:13,978-0803624887||All Chapters Covered||Complete Guide A+

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Test Bank For Genetics and Genomics in Nursing and Health Care First Edition by Theresa A. Beery, M. Linda Workman||ISBN NO:10,0803624883||ISBN NO:13,978-0803624887||All Chapters Covered||Complete Guide A+

Institución
Genetics And Genomics In Nursing And Health Care
Grado
Genetics and Genomics in Nursing and Health Care











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Institución
Genetics and Genomics in Nursing and Health Care
Grado
Genetics and Genomics in Nursing and Health Care

Información del documento

Subido en
20 de junio de 2025
Número de páginas
232
Escrito en
2024/2025
Tipo
Examen
Contiene
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TEST BANK
@zx



Genetics and Genomics in Nursing and Health Care
@zx @zx @zx @zx @zx @zx @zx




by Theresa A. Beery, M. Linda Workman
@zx @zx @zx @zx @zx @zx



First Edition
@zx




FULL TEST BANK!!! @zx @zx

, Chapter 1: DNA Structure and Function

Multiple Choice
Identify the choice that best completes the statement or answers the question.

A. 1. In which body or cell area are most genes in humans located?
A. Nucleus
B. Mitochondrion
C. Cytoplasm
D. Plasma membrane

A. 2. Which condition or statement exemplifies the concept of genomics rather than genetics?
A. The gene for insulin is located on chromosome 11 in all people.
B. Expression of any single gene is dependent on inheriting two alleles.
C. Sex-linked recessive disorders affect males more often than females.
D. One allele for each gene is inherited from the mother, and one is inherited from the
father.
A. 3. What is the purpose of phosphorous in a DNA strand?
A. Linking the nucleotides into a strand
B. Holding complementary strands together
C. Ensuring that a purine is always paired with a pyrimidine
D. Preventing the separation of double-stranded DNA into single-stranded DNA

A. 4. What is the term used to define alternative forms of a gene that may result in different expression
of the trait coded for by that gene?
A. Alleles
B. Bases
C. Centromeres
D. Diploids

D. 5. What percentage of bases in a stretch of double-stranded DNA that contains 30% guanine (G)
bases would be adenine (A)?
A. 70%
B. 60%
C. 30%
D. 20%

C. 6. What is the term used to describe the organized picture of the paired chromosomes within a cell
used to determine whether chromosome numbers, structures, and banding patterns are normal?
A. Pedigree
B. Phenotype
C. Karyotype
D. Autotype

D. 7. What would be the sequence of DNA that is complementary to a DNA section with the base
sequence of GGTCAATCCTTAG?
A. GATTCCTAACTGG
B. TTGACCGAAGGCT
C. AACTGGCTTCCGA
D. CCAGTTAGGAATC

, @ z x @ z x B. 8. @ z x Which @zxof @zxthese @zxcomplementary @zxbase @zxpairs @zxform @zxthe @zxstrongest @zxor @zx“tightest”
association?
@zx

A. Adenine @zxand @zxthymine
B. Cytosine @zxand @zxguanine
C. Guanine @zxand @zxthymine
D. Cytosine @zxand @zxadenine
@ z x @ z x A 9. @ z x What @zxactivity @zxoccurs @zxduring @zxM @zxphase @zxof @zxthe @zxcell @zxcycle?
A. The @zxcell @zxundergoes @zxcytokinesis.
B. Activity @zxstops, @zxand @zxthe @zxcell @zx“sleeps.”
C. All @zxDNA @zxis @zxcompletely @zxreplicated.
D. The @zxcell @zxgreatly @zxincreases @zxprotein @zxsynthesis.

@ z x @ z x B. @ z x @zx 10. @ z x Which @zxchromosome @zxnumber @zxrepresents @zxthe @zxeuploid @zxstate @zxfor @zxnormal @zxhuman
@zx somatic @zxcells?
A. 44
B. 46
C. 47
D. 48

@ z x @ z x A. @ z x 11. @ z x How @zxdoes @zxthe @zxproteome @zxdiffer @zxfrom @zxthe @zxgenome?

A. The @zxproteome @zxchanges @zxin @zxresponse @zxto @zxintracellular @zxand @zxextracellular @zxsignals.
B. The @zxgenome @zxchanges @zxin @zxresponse @zxto @zxintracellular @zxand @zxextracellular @zxsignals.
C. The @zxproteome @zxis @zxstable @zxin @zxsomatic @zxcells @zxand @zxunstable @zxin @zxgerm
cells, @zxwhereas @zxthe @zxgenome @zxis @zxstable @zxin @zxboth @zxsomatic @zxcells @zxand
@zx

germ @zxcells.
@zx

D. The @zxgenome @zxis @zxstable @zxin @zxsomatic @zxcells @zxand @zxunstable @zxin @zxgerm
@zxcells, @zxwhereas @zxthe @zxproteome @zxis @zxstable @zxin @zxboth @zxsomatic @zxcells

@zxand @zxgerm @zxcells.



@ z x @ z x C. @ z x @zx 12. @ z x What @zxis @zxthe @zxmost @zxoutstanding @zxfeature @zxof @zxa @zxmature @zxhaploid @zxcell?
A. It @zxis @zxusually @zxhomozygous.
B. The @zxsex @zxchromosomes @zxare @zxmissing.
C. Only @zxone @zxchromosome @zxof @zxeach @zxpair @zxis @zxpresent.
D. DNA @zxsynthesis @zxoccurs @zxafter @zxmitosis @zxinstead @zxof @zxbefore.
@ z x @ z x D. @ z x @zx 13. @ z x At @zxwhat @zxphase @zxof @zxthe @zxcell @zxcycle @zxare @zxchromosomes @zxvisible @zxas @zxseparate
structures?
@zx

A. G1
B. G2
C. S
D. M
@ z x @ z x B. @ z x 14. Which @zxstatement @zxabout @zxthe @zxcell @zxcycle @zxphase @zxof @zxG0 @ z x is @zxtrue?
@ z x

A. Hyperplastic @zxgrowth @zxin @zxplace @zxof @zxhypertrophic @zxgrowth
B. Performance @zxof @zxspecific @zxdifferentiated @zxfunctions
C. Initiation @zxand @zxcompletion @zxof @zxnucleokinesis
D. Replication @zxof @zxDNA
@ z x @ z x B. @ z x 15. What @zxis @zxthe @zxresult @zxof @zxnormal @zxDNA @zxreplication?
@ z x

A. Formation @zxof @zxtwo @zxnew @zxdaughter @zxcells
B. Formation @zxof @zxtwo @zxidentical @zxsets @zxof @zxDNA
C. Disappearance @zxof @zxthe @zxoriginal @zxparent @zxcell
D. Activation @zxand @zxattachment @zxof @zxspindle @zxfibers

, @ z x @ z x A. @ z x 16. @ z x Which @zxstatement @zxregarding @zxchromosome @zxstructure @zxor @zxfunction @zxis @zxtrue?

A. The @zxchromatids @zxof @zxany @zxsingle @zxchromosome @zxare @zxknown @zxas @zx“sister @zxchromatids.”
B. The @zxgenes @zxlocated @zxon @zxthe @zxtelomeres @zxof @zxchromosomes @zxare @zxidentical
@zx to @zxthe @zxgenes @zxin @zxthe @zxcentromeres.
C. Immediately @zxbefore @zxthe @zxmitosis @zxphase @zxof @zxcell @zxdivision, @zxthe
chromosomes @zxof @zxall @zxsomatic @zxcells @zxare @zxhaploid.
@zx

D. A @zxspecific @zxgene @zxallele @zxon @zxone @zxchromosome @zxhas @zxa @zxcomplementary
@zxallele @zxon @zxthe @zxother @zxchromosome @zxof @zxa @zxpair.



@ z x C. @ z x @ z x 17. @ z x Why @zxdoes @zxa @zxperson @zxwith @zxnormal @zxchromosomes @zxonly @zxhave @zxtwo @zxalleles @zxfor
@ z x

@zx any @zxsingle @zxgene @zxtrait?
A. A @zxminimum @zxof @zxtwo @zxalleles @zxis @zxrequired @zxfor @zxthe @zxexpression @zxof @zxmonogenic @zxtraits.
B. When @zxa @zxdominant @zxallele @zxis @zxpaired @zxwith @zxa @zxrecessive @zxallele, @zxonly @zxthe
@zxdominant @zxallele @zxis @zxexpressed, @zxand @zxthe @zxrecessive @zxallele @zxis @zxsilent.

C. One @zxallele @zxfor @zxthe @zxmonogenic @zxtrait @zxis @zxon @zxthe @zxpaternally @zxderived
@zxchromosome, @zxand @zxthe @zxother @zxallele @zxis @zxon @zxthe @zxmaternally @zxderived

@zxchromosome.

D. Expression @zxof @zxmore @zxthan @zxtwo @zxalleles @zxof @zxany @zxsingle-gene @zxtrait
@zxresults @zxin @zxenhanced @zxexpression @zxof @zxrecessive @zxalleles @zxand

@zxsuppressed @zxexpression @zxof @zxdominant @zxalleles.



@ z x @ z x C 18. Under @zxwhat @zxnormal @zxcondition @zxare @zxgenotype @zxand @zxphenotype @zxalways @zxthe @zxsame?
@ z x

A. Euploidy @zxof @zxalleles
B. Aneuploidy @zxof @zxalleles
C. Homozygosity @zxof @zxalleles
D. Heterozygosity @zxof @zxalleles
@z x @z x D. @ z x 19. @ z x What @zxwould @zxbe @zxthe @zxexpected @zxresult @zxof @zxa @zxdrug @zxthat @zxaffected @zxa
@zxparticular @zxtissue @zxby @zxcausing @zxnew @zxDNA @zxto @zxform @zxwith @zxcovalent @zxbonds
@zxinstead @zxof @zxhydrogen @zxbonds?

A. None @zxof @zxthe @zxcells @zxin @zxthe @zxaffected @zxtissue @zxwould @zxbe @zxable @zxto @zxleave
@zxG0 @ z x and @zxenter @zxthe @zxcell @zxcycle.

B. Replication @zxof @zxDNA @zxwould @zxresult @zxin @zxidentical @zxDNA @zxstrands
@zxinstead @zxof @zxcomplementary @zxstrands.

C. Mitosis @zxof @zxcells @zxin @zxthe @zxtissue @zxwould @zxresult @zxin @zxthe @zxproduction @zxof
@zxthree @zxnew @zxdaughter @zxcells @zxinstead @zxof @zxjust @zxtwo.

D. The @zxnew @zxcells @zxthat @zxformed @zxwithin @zxthis @zxtissue @zxwould @zxnot @zxbe @zxable @zxto
@zxcomplete @zxthe @zxnext @zxround @zxof @zxmitosis @zxsuccessfully.



@ z x @ z x B. @ z x 20. @ z x How @zxdoes @zxthe @zxDNA @zxenzyme @zxtopoisomerase @zxcontribute @zxto @zxDNA @zxreplication?

A. Unwinds @zxthe @zxdouble @zxhelix @zxand @zxseparates @zxthe @zxdouble-stranded @zxDNA
B. Creates @zxa @zx“nick” @zxin @zxthe @zxDNA @zxsupercoils, @zxallowing @zxthem @zxto
@zxstraighten @zxbefore @zxreplication
C. Initiates @zxDNA @zxsynthesis @zxin @zxmultiple @zxsites @zxdown @zxthe @zxstrand, @zxmaking @zxthe
@zxprocess @zxmore @zxefficient
D. Connects @zxand @zxlinks @zxthe @zxindividual @zxpieces @zxof @zxnewly @zxsynthesized
@zx DNA @zxto @zxform @zxa @zxsingle @zxstrand
@ z x @ z x A. @ z x 21. Where @zxis @zxtelomeric @zxDNA @zxlocated?
@ z x

A. At @zxthe @zxtips @zxof @zxthe @zxp @zxand @zxq @zxarms @zxof @zxchromosomes.
B. In @zxthe @zxmitochondria @zxof @zxall @zxsomatic @zxcells
C. Only @zxin @zxthe @zxgerm @zxcells @zx(ova @zxand @zxsperm)
D. Within @zxthe @zxhistones @zxof @zxthe @zxsolenoid
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