objective: apply algebraic techniques to rate problems

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Objective: Apply algebraic techniques to rate problems.

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Page 1: Objective: Apply algebraic techniques to rate problems

Objective: Apply algebraic techniques to rate problems.

Page 2: Objective: Apply algebraic techniques to rate problems

VocabularyDirect Variation kxy

Constant of Variation

Page 3: Objective: Apply algebraic techniques to rate problems

#1 Find an equation of variation where y varies directly as x.

12 when 84 xy

kxy

k1284

7kxy 7

Page 4: Objective: Apply algebraic techniques to rate problems

#2 Find an equation of variation where y varies directly as x.

80 when 50 xy

kxy

k8050 k = 5/8

y = 5/8x

Page 5: Objective: Apply algebraic techniques to rate problems

x

ky

VocabularyInverse Variation

Page 6: Objective: Apply algebraic techniques to rate problems

#3 Find an equation of variation where y varies inversely as x.

6.0 when 105 xy

x

ky

6.0105

k

63kx

y63

Page 7: Objective: Apply algebraic techniques to rate problems

#4 Find an equation of variation where y varies inversely as x.

20 when 45 xyx

ky

2045

k

900kx

y900

Page 8: Objective: Apply algebraic techniques to rate problems

#5 Solve the problem using direct variation.The Weight (V) of an object on Venus varies

directly as its weight (E) on Earth. A person weighing 120 lb on Earth would weigh 106 lb on Venus. How much would a person weighing 150 lb on Earth weigh on Venus?

V lb 106

E lb 120

Page 9: Objective: Apply algebraic techniques to rate problems

#5 Solve the problem using direct variation.EvV ith directly w aries

150 is E when for Solve Vequationan Find

kEV

k120106

88.0k

EV 88.0

EV 88.0)150(88.0V

lb 132V

Page 10: Objective: Apply algebraic techniques to rate problems

#6 Solve the problem using inverse variation.The time (t) required to drive a fixed

distance varies inversely as the speed (r). It takes 5 hours at 60 km/h to drive a fixed distance. How long would it take to drive the same distance at 40 km/h?

t hours 5r km/h 60

Page 11: Objective: Apply algebraic techniques to rate problems

#6 Solve the problem using direct variation.

rvt with inversely aries 40 is when for Solve rtequationan Find

r

kt

605

k

300k

rt

300

rt

300

40

300t

hours 5.7t

Page 12: Objective: Apply algebraic techniques to rate problems

kxzy VocabularyJoint Variation

Page 13: Objective: Apply algebraic techniques to rate problems

#7 Find an equation of variation where w varies jointly as x, y, and z.

6 and ,5 ,3 ,36 zyxwkxyzw

k)6)(5(336

5

2k

xyzw5

2

k9036

Page 14: Objective: Apply algebraic techniques to rate problems

#8 Find an equation of variation where Q varies jointly as R and S.

3 and ,1 ,2 SRQ

kRSQ k)3(12

3

2k

RSQ3

2

k32

Page 15: Objective: Apply algebraic techniques to rate problems

y

kxz

VocabularyCombined Variation

Page 16: Objective: Apply algebraic techniques to rate problems

#9 Find an equation of combined variation where P varies directly as q and inversely as r.

5 and ,16 ,064.0 rqP

r

kqP

5

16064.0

k

k1632.0 02.0k

r

qP

02.0

Page 17: Objective: Apply algebraic techniques to rate problems

#10 Solve the problem using combined variation.Find an equation of combined variation where A

varies directly as b and inversely as c. One set of values is A = 4, b = 12, and c = 9. Find A when b = 7 and c = 3.

c

kbA

Page 18: Objective: Apply algebraic techniques to rate problems

#10 Solve the problem using combined variation. 9 and ,12 ,4 cbA

9

124

k

k1236

3k

c

bA

3

3

)7(3A

3 and 7 when Find cbA

3

21A

7A

Page 19: Objective: Apply algebraic techniques to rate problems

#11 Solve the problem using variation.The interest earned at Whole World Savings

& Loan varies jointly as the amount deposited in the bank and the time elapsed since the deposit. If a $500 deposit earns $120 interest after 3 years, how much does an $800 deposit earn after 5 years?

I 120$

D 500$t years 3

Page 20: Objective: Apply algebraic techniques to rate problems

#11 Solve the problem using variation.

tDvI and th jointly wi aries years 5after deposit 800$equationan Find

kDtI

k)3(500120

08.0k

DtI 08.0

)5)(800(08.0I

)4000(08.0I

320$Ik1500120