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Probability and Statistics for Engineering and the Sciences 8th Edition by Jay L. Devore test bank with complete solutions

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Probability and Statistics for Engineering and the Sciences 8th Edition by Jay L. Devore test bank with complete solutions

Institution
Probability And Statistics For Engineering And The
Course
Probability and Statistics for Engineering and the

Content preview

TestBank ForProbabilityAnd Statistics ForEngineering
s ss s s ss ss s



And The Sciences 8th Ed by Jay L. Devore.
ss ss ss ss ss ss ss ss ss

,
,Chapter 1 – Overview and Descriptive Statistics
ss ss ss ss ss ss




SHORT s s ANSWER

1. Give s s one s s possible s s sample s s of s s size s s 4 s s from s s each s s of s s the s s following s s populations:

a. All s s daily s s newspapers s s published s s in s s the s s United s s States
b. All s s companies s s listed s s on s s the s s New s s York s s Stock s s Exchange
c. All s s students s s at s s your s s college s s or s s university
d. All s s grade s s point s s averages s s of s s students s s at s s your s s college s s or s s university

ANS:

a. Houston s s Chronicle, s s Des s s Moines s s Register, s s Chicago s s Tribune, s s Washington s s Post
b. Capital s s One, s s Campbell s s Soup, s s Merrill s s Lynch, s s Pulitzer
c. John s s Anderson, s s Emily s s Black, s s Bill Carter, s s Kay s s Davis
d. 2.58. s s 2.96, s s 3.51, s s 3.69

PTS: 1

2. A s s Southern s s State s s University s s system s s consists s s of s s 23 s s campuses. s s An s s administrator s s wishes

ss to s s make s s an s s inference s s about s s the s s average s s distance s s between s s the s s hometowns s s of s s students
s s and s s their s s campuses. s s Describe s s and ssdiscuss s s several s s different s s sampling s s methods s s that s s might

s s be s s employed. s s Would s s this s s be s s an s s enumerative s s or s s an ssanalytic s s study? s s Explain s s your

s s reasoning.



ANS:
One s s could s s take s s a s s simple s s random s s sample s s of s s students s s from s s all s s students s s in s s the s s California
s s State s s University sssystem s s and s s ask s s each s s student s s in s s the s s sample s s to s s report s s the s s distance

s s from s s their s s hometown s s to s s campus.

Alternatively, s s the s s sample s s could s s be s s generated s s by s s taking s s a s s stratified s s random s s sample s s by
s s taking s s a s s simple ssrandom s s sample s s from s s each s s of s s the s s 23 s s campuses s s and s s again s s asking s s each

s s student s s in s s the s s sample s s to s s report s s the ssdistance s s from s s their s s hometown s s to s s campus.

Certain s s problems s s might s s arise s s with s s self s s reporting s s of s s distances, s s such s s as s s recording s s error s s or
s s poor s s recall. s s This ssstudy s s is s s enumerative s s because s s there s s exists s s a s s finite, s s identifiable

s s population s s of s s objects s s from s s which s s to s s sample.



PTS: 1

3. A s s Michigan s s city s s divides s s naturally s s into s s ten s s district s s neighborhoods. s s How s s might s s a s s real

ss estate s s appraiser s s select ssa s s sample s s of s s single-family s s homes s s that s s could s s be s s used s s as s s a
s s basis s s for s s developing s s an s s equation s s to s s predict ssappraised s s value s s from s s characteristics s s such

s s as s s age, s s size, s s number s s of s s bathrooms, s s and s s distance s s to s s the s s nearest ssschool, s s and s s so s s on?

Is s s the s s study s s enumerative s s or s s analytic?

ANS:

One s s could s s generate s s a s s simple s s random s s sample s s of s s all s s single s s family s s homes s s in s s the s s city
s s or s s a s s stratified s s random sssample s s by s s taking s s a s s simple s s random s s sample s s from s s each s s of s s the

s s 10 s s district s s neighborhoods. s s From s s each s s of s s the sshomes s s in s s the s s sample s s the s s necessary

s s variables s s would s s be s s collected. s s This s s would s s be s s an s s enumerative s s study ssbecause s s there s s exists

s s a s s finite, s s identifiable s s population s s of s s objects s s from s s which s s to s s sample.

, PTS: 1

4. An s s experiment s s was s s carried s s out s s to s s study s s how s s flow s s rate s s through s s a s s solenoid s s valve s s in

ss an s s automobile‘s sspollution-control s s system s s depended s s on s s three s s factors: armature s s lengths,
s s spring s s load, s s and s s bobbin s s depth. ssTwo s s different s s levels s s (low s s and s s high) s s of s s each s s factor

s s were s s chosen, s s and s s a s s single s s observation s s on s s flow s s was ssmade s s for s s each s s combination s s of

s s levels.



a. The s s resulting s s data s s set s s consisted s s of s s how s s many s s observations?
b. Is s s this s s an s s enumerative s s or s s analytic s s study? s s Explain s s your s s reasoning.

ANS:
a. Number s s observations s s equal s s 2 2 2=8
b. This s s could s s be s s called s s an s s analytic s s study s s because s s the s s data s s would ss be
s s collected s s on s s an s s existing ssprocess. s s There s s is s s no s s sampling s s frame.




PTS: 1

5. The s s accompanying s s data s s specific s s gravity s s values s s for s s various s s wood s s types s s used s s in s s construction s s .

.41 .41 .42 .42. .42 .42 .42 .43 .44
.54 .55 .58 .62 .66 .66 .67 .68 .75
.31 .35 .36 .36 .37 .38 .40 .40 .40
.45 .46 .46 .47 .48 .48 .48 .51 .54

Construct s s a s s stem-and-leaf s s display s s using s s repeated s s stems s s and s s comment s s on s s any s s interesting s s features
s s of s s the s s display.




ANS:
One s s method s s of s s denoting s s the s s pairs s s of s s stems s s having s s equal s s values s s is s s to s s denote s s the s s stem
s s by s s L, s s for s s ‗low‘ s s and ssthe s s second s s stem s s by s s H, s s for s s ‗high‘. Using s s this s s notation, s s the
s s stem-and-leaf s s display s s would s s appear s s as s s follows:



3L 1 stem:
s s tenths

3H 56678 leaf: hundredths
4L 000112222234
5L 144
5H 58
6L 2
6H 6678
7L
7H s s 5

The s s stem-and-leaf s s display s s on s s the s s previous s s page s s shows s s that s s .45 s s is s s a s s good s s representative

ssvalue s s for s s the s s data. s s In s s addition, s s the s s display s s is s s not s s symmetric s s and s s appears s s to s s be
s s positively s s skewed. The s s spread s s of s s the
s s data s s is

.75 s s - s s .31 s s = s s .44, s s which s s is s s .44/.45 s s = s s .978 s s or s s about s s 98% s s of s s the s s typical s s value s s of
s s .45. This s s constitutes s s a ssreasonably s s large s s amount s s of
s s variation s s in s s the s s data. The s s data s s value s s .75 s s is s s a s s possible s s outlier.

PTS: 1

6. Temperature s s transducers s s of s s a s s certain s s type s s are s s shipped s s in s s batches s s of s s 50. A
ss sample s s of s s 60 s s batches s s was ssselected, s s and s s the s s number s s of s s transducers s s in s s each s s batch
s s not s s conforming s s to s s design s s specifications s s was ssdetermined, s s resulting s s in s s the s s following

s s data:



0 4 2 1 1 3 4 1 2 3 2 2 8 4 5 1 3 1

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Probability and Statistics for Engineering and the
Course
Probability and Statistics for Engineering and the

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Number of pages
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