McDougal Littell Jurgensen Geometry: Student Edition Geometry
McDougal Littell Jurgensen Geometry: Student Edition Geometry
5th Edition
ISBN: 9780395977279
Author: Ray C. Jurgensen, Richard G. Brown, John W. Jurgensen
Publisher: Houghton Mifflin Company College Division
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Chapter 13.7, Problem 36WE

a.

To determine

To find : the equation of the three lines that contain the medians

a.

Expert Solution
Check Mark

Answer to Problem 36WE

The equation of the three lines SM1 , QM2 and RM3 are 4x+y=12 , x2y=6 and 2x+5y=24

Explanation of Solution

Given information :

  ΔQRS With vertices Q(6,0),R(12,0) and S(0,12)

Formula used :

  the slope of the line =yy1xx1 and the equation of the line yy1=mxx1

Calculation :

Let M1,M2 and M3 be the median of the QR,RS and SQ three lines.

To find the medians

  M1=(12+(6)2,0+02)M1=(1262,0)M1=(62,0)M1=(3,0)M2=(0+122,12+02)M2=(122,122)M2=(6,6)and M3=(6+02,0+122)M3=(62,122)M3=(3,6)

The slope of line SM1

  =01230=123=4

The slope of line QM2

  =606(6)=612=12

The slope of line RM3

  =60312=612=25

The equation of the line SM1

  y0=4(x3)y=4x+124x+y=12

Therefore, the equation of the line SM1 is 4x+y=12

The equation of the line QM2

  y0=12(x(x))y=12x+622y=x+6

Therefore, the equation of the line QM2 is 2y=x+6

The equation of the line RM3

  y0=25(x12)y=25x+2455y=2x+242x+5y=24

Therefore, the equation of the line RM3 is 2x+5y=24

Hence, the equation of the three lines SM1 , QM2 and RM3 are 4x+y=12 , x2y=6 and 2x+5y=24 .

b.

To determine

To proof : the three medians meet in a point G

b.

Expert Solution
Check Mark

Answer to Problem 36WE

The three medians meet in a point G(centroid)

Explanation of Solution

Given information :

  ΔQRS With vertices Q(6,0),R(12,0) and S(0,12)

Calculation :

The equation of the line SM1 is 4x+y=12equation(1)

The equation of the line QM2 is 2y=x+6equation(2)

The equation of the line RM3 is 2x+5y=24equation(3)

From equation(2)

  y=x+62

Putting the value of y in equation(1) ,

  4x+x+62=128x+x+6=249x=2469x=18x=189x=2

Putting the value of x in equation(2) ,

  2y=2+62y=8y=82y=4

Putting the value of x in equation(3) ,

  22+5y=245y=2445y=20y=205y=4

Putting the value of y in equation(3) ,

  2x+54=242x=24202x=4x=42x=2

Hence, the three medians meet in a point G(centroid) .

c.

To determine

To prove : the length QG is 23 of the length of the median from Q

c.

Expert Solution
Check Mark

Answer to Problem 36WE

The length QG is 23 of the length of the median from Q(proved)

Explanation of Solution

Given information :

  ΔQRS With vertices Q(6,0),R(12,0) and S(0,12)

Calculation :

  ΔM3GM2 And ΔQGR corresponding angles are equal so, ΔM3GM2 and ΔQGR are similar.

Therefore, M3M2 is parallel to QR

So,

  M3M2=12QR

The ratios of corresponding sides are

  QGGM2=RGGM3=QRM3M2=21                       since  M3M2=12QR

Therefore, QG:GM2=2:1

The ratio of QG and GM2=2:1

The length of the side QM2=2+1=3

Therefore, the length of QM2=13

And the length of QM2=23

Hence, the length QG is 23 of the length of the median from Q(proved)

Chapter 13 Solutions

McDougal Littell Jurgensen Geometry: Student Edition Geometry

Ch. 13.1 - Prob. 11CECh. 13.1 - Prob. 12CECh. 13.1 - Prob. 1WECh. 13.1 - Prob. 2WECh. 13.1 - Prob. 3WECh. 13.1 - Prob. 4WECh. 13.1 - Prob. 5WECh. 13.1 - Prob. 6WECh. 13.1 - Prob. 7WECh. 13.1 - Prob. 8WECh. 13.1 - Prob. 9WECh. 13.1 - Prob. 10WECh. 13.1 - Prob. 11WECh. 13.1 - Prob. 12WECh. 13.1 - Prob. 13WECh. 13.1 - Prob. 14WECh. 13.1 - Prob. 15WECh. 13.1 - Prob. 16WECh. 13.1 - Prob. 17WECh. 13.1 - Prob. 18WECh. 13.1 - Prob. 19WECh. 13.1 - Prob. 20WECh. 13.1 - Prob. 21WECh. 13.1 - Prob. 22WECh. 13.1 - Prob. 23WECh. 13.1 - Prob. 24WECh. 13.1 - Prob. 25WECh. 13.1 - Prob. 26WECh. 13.1 - Prob. 27WECh. 13.1 - Prob. 28WECh. 13.1 - Prob. 29WECh. 13.1 - Prob. 30WECh. 13.1 - Prob. 31WECh. 13.1 - Prob. 32WECh. 13.1 - Prob. 33WECh. 13.1 - Prob. 34WECh. 13.1 - Prob. 35WECh. 13.1 - Prob. 36WECh. 13.1 - Prob. 37WECh. 13.1 - Prob. 38WECh. 13.1 - Prob. 39WECh. 13.1 - Prob. 40WECh. 13.1 - Prob. 41WECh. 13.1 - Prob. 42WECh. 13.1 - Prob. 43WECh. 13.1 - Prob. 44WECh. 13.1 - Prob. 45WECh. 13.1 - Prob. 3ECh. 13.2 - 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Prob. 6MRECh. 13.4 - Prob. 7MRECh. 13.4 - Prob. 8MRECh. 13.4 - Prob. 9MRECh. 13.4 - Prob. 10MRECh. 13.4 - Prob. 11MRECh. 13.4 - Prob. 12MRECh. 13.5 - Prob. 1CECh. 13.5 - Prob. 2CECh. 13.5 - Prob. 3CECh. 13.5 - Prob. 4CECh. 13.5 - Prob. 5CECh. 13.5 - Prob. 6CECh. 13.5 - Prob. 7CECh. 13.5 - Prob. 8CECh. 13.5 - Prob. 9CECh. 13.5 - Prob. 10CECh. 13.5 - Prob. 1WECh. 13.5 - Prob. 2WECh. 13.5 - Prob. 3WECh. 13.5 - Prob. 4WECh. 13.5 - Prob. 5WECh. 13.5 - Prob. 6WECh. 13.5 - Prob. 7WECh. 13.5 - Prob. 8WECh. 13.5 - Prob. 9WECh. 13.5 - Prob. 10WECh. 13.5 - Prob. 11WECh. 13.5 - Prob. 12WECh. 13.5 - Prob. 13WECh. 13.5 - Prob. 14WECh. 13.5 - Prob. 15WECh. 13.5 - Prob. 16WECh. 13.5 - Prob. 17WECh. 13.5 - Prob. 18WECh. 13.5 - Prob. 19WECh. 13.5 - Prob. 20WECh. 13.5 - Prob. 21WECh. 13.5 - Prob. 22WECh. 13.5 - Prob. 23WECh. 13.5 - Prob. 24WECh. 13.5 - Prob. 1ST1Ch. 13.5 - Prob. 2ST1Ch. 13.5 - Prob. 3ST1Ch. 13.5 - Prob. 4ST1Ch. 13.5 - Prob. 5ST1Ch. 13.5 - Prob. 6ST1Ch. 13.5 - Prob. 7ST1Ch. 13.5 - Prob. 8ST1Ch. 13.5 - 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Prob. 30WECh. 13.6 - Prob. 31WECh. 13.6 - Prob. 32WECh. 13.6 - Prob. 33WECh. 13.6 - Prob. 34WECh. 13.6 - Prob. 35WECh. 13.6 - Prob. 36WECh. 13.6 - Prob. 37WECh. 13.6 - Prob. 38WECh. 13.6 - Prob. 39WECh. 13.6 - Prob. 1CCh. 13.7 - Prob. 1CECh. 13.7 - Prob. 2CECh. 13.7 - Prob. 3CECh. 13.7 - Prob. 4CECh. 13.7 - Prob. 5CECh. 13.7 - Prob. 6CECh. 13.7 - Prob. 7CECh. 13.7 - Prob. 8CECh. 13.7 - Prob. 9CECh. 13.7 - Prob. 10CECh. 13.7 - Prob. 11CECh. 13.7 - Prob. 12CECh. 13.7 - Prob. 13CECh. 13.7 - Prob. 14CECh. 13.7 - Prob. 1WECh. 13.7 - Prob. 2WECh. 13.7 - Prob. 3WECh. 13.7 - Prob. 4WECh. 13.7 - Prob. 5WECh. 13.7 - Prob. 6WECh. 13.7 - Prob. 7WECh. 13.7 - Prob. 8WECh. 13.7 - Prob. 9WECh. 13.7 - Prob. 10WECh. 13.7 - Prob. 11WECh. 13.7 - Prob. 12WECh. 13.7 - Prob. 13WECh. 13.7 - Prob. 14WECh. 13.7 - Prob. 15WECh. 13.7 - Prob. 16WECh. 13.7 - Prob. 17WECh. 13.7 - Prob. 18WECh. 13.7 - Prob. 19WECh. 13.7 - Prob. 20WECh. 13.7 - Prob. 21WECh. 13.7 - Prob. 22WECh. 13.7 - Prob. 23WECh. 13.7 - Prob. 24WECh. 13.7 - Prob. 25WECh. 13.7 - Prob. 26WECh. 13.7 - Prob. 27WECh. 13.7 - Prob. 28WECh. 13.7 - Prob. 29WECh. 13.7 - Prob. 30WECh. 13.7 - Prob. 31WECh. 13.7 - Prob. 32WECh. 13.7 - Prob. 33WECh. 13.7 - Prob. 34WECh. 13.7 - Prob. 35WECh. 13.7 - Prob. 36WECh. 13.7 - Prob. 37WECh. 13.7 - Prob. 38WECh. 13.7 - Prob. 39WECh. 13.8 - Prob. 1CECh. 13.8 - Prob. 2CECh. 13.8 - Prob. 3CECh. 13.8 - Prob. 4CECh. 13.8 - Prob. 5CECh. 13.8 - Prob. 6CECh. 13.8 - Prob. 1WECh. 13.8 - Prob. 2WECh. 13.8 - Prob. 3WECh. 13.8 - Prob. 4WECh. 13.8 - Prob. 5WECh. 13.8 - Prob. 6WECh. 13.8 - Prob. 7WECh. 13.8 - Prob. 8WECh. 13.8 - Prob. 9WECh. 13.8 - Prob. 10WECh. 13.8 - Prob. 11WECh. 13.8 - Prob. 12WECh. 13.8 - Prob. 13WECh. 13.9 - Prob. 1CECh. 13.9 - Prob. 2CECh. 13.9 - Prob. 3CECh. 13.9 - Prob. 4CECh. 13.9 - Prob. 5CECh. 13.9 - Prob. 1WECh. 13.9 - Prob. 2WECh. 13.9 - Prob. 3WECh. 13.9 - Prob. 4WECh. 13.9 - Prob. 5WECh. 13.9 - Prob. 6WECh. 13.9 - Prob. 7WECh. 13.9 - Prob. 8WECh. 13.9 - Prob. 9WECh. 13.9 - Prob. 10WECh. 13.9 - Prob. 11WECh. 13.9 - Prob. 12WECh. 13.9 - Prob. 13WECh. 13.9 - Prob. 14WECh. 13.9 - Prob. 1ST2Ch. 13.9 - Prob. 2ST2Ch. 13.9 - Prob. 3ST2Ch. 13.9 - Prob. 4ST2Ch. 13.9 - Prob. 5ST2Ch. 13.9 - Prob. 6ST2Ch. 13.9 - Prob. 7ST2Ch. 13.9 - Prob. 8ST2Ch. 13.9 - Prob. 9ST2Ch. 13.9 - Prob. 1AECh. 13.9 - Prob. 2AECh. 13.9 - Prob. 3AECh. 13.9 - Prob. 4AECh. 13.9 - Prob. 1BECh. 13.9 - Prob. 2BECh. 13.9 - Prob. 3BECh. 13.9 - Prob. 4BECh. 13.9 - Prob. 5BECh. 13.9 - Prob. 6BECh. 13.9 - Prob. 7BECh. 13.9 - Prob. 8BECh. 13.9 - Prob. 9BECh. 13.9 - Prob. 10BECh. 13.9 - Prob. 11BECh. 13.9 - Prob. 12BECh. 13.9 - Prob. 13BECh. 13.9 - Prob. 14BECh. 13.9 - Prob. 15BECh. 13.9 - Prob. 16BECh. 13 - Prob. 1CRCh. 13 - Prob. 2CRCh. 13 - Prob. 3CRCh. 13 - Prob. 4CRCh. 13 - Prob. 5CRCh. 13 - Prob. 6CRCh. 13 - Prob. 7CRCh. 13 - Prob. 8CRCh. 13 - Prob. 9CRCh. 13 - Prob. 10CRCh. 13 - Prob. 11CRCh. 13 - Prob. 12CRCh. 13 - Prob. 13CRCh. 13 - Prob. 14CRCh. 13 - Prob. 15CRCh. 13 - Prob. 16CRCh. 13 - Prob. 17CRCh. 13 - Prob. 18CRCh. 13 - 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