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M Geom Test Chapter 5

Total questions: 40

Worksheet time: 3hrs 16mins

Name
Class
Date
1.
Name the parallel segment.
a)
CP
b)
CA
c)
CB
d)
AB
2.
If AC=42, find DF
a)
21
b)
84
c)
14
d)
28
3.
Find x
a)
0
b)
9
c)
-1.5
d)
2
4.
Find the length of AB
a)
6
b)
11
c)
17
d)
68
5.
Name the parallel segment.
a)
WY
b)
YX
c)
WX
d)
PN
6.

X is the centroid of the triangle. If BX = 8, find BY.

a)

4

b)

8

c)

12

d)

16

7.

X is the centroid of the triangle. If ZX = 3, find AZ.

a)

3

b)

6

c)

9

d)

12

8.

Is segment AB a median, altitude, neither or both?

a)

median

b)

altitude

c)

neither

d)

both

9.

Is segment AB a median, altitude, neither or both?

a)

median

b)

altitude

c)

neither

d)

both

10.

What type of segment is segment AH?

a)

median

b)

altitude

c)

angle bisector

d)

perpendicular bisector

11.

What type of segment is segment CJ?

a)

median

b)

altitude

c)

angle bisector

d)

perpendicular bisector

12.

X is the centroid of the triangle. If AZ = 24, find AX.

a)

4

b)

8

c)

12

d)

16

13.
a)

9

b)

4

c)

8

d)

11

14.
a)

9

b)

18

c)

6

d)

2

15.

As segment from a vertex of a triangle to the midpoint of the opposite side is called the __________.

a)

median

b)

centroid

c)

midpoint

d)

perpendicular bisector

16.

The three medians of a triangle meet at a point of concurrency called the ____________.

a)

center point

b)

midpoint

c)

centroid

d)

median point

17.
Define: CIRCUMCENTER OF A TRAINGLE
a)
the intersection point of the three perpendicular bisectors of a triangle 
b)
when a circle passes through the three vertices of a triangle 
c)
the point of intersection of three or more lines 
d)
the intersection point of the three angle bisectors of a triangle 
18.
Define: INCENTER OF A TRIANGLE
a)
the intersection point of the three angle bisectors of a triangle 
b)
when three or more lines intersect at a single point 
c)
the intersection point of the three perpendicular bisectors of a triangle 
d)
the point of intersection of three or more lines 
19.
Which point is equidistant from the sides?
a)
Circumcenter
b)
Incenter
c)
Neither
d)
Bilateral
20.
Point P is the circumcenter, which segment is equal to PB
a)
DA
b)
AC
c)
PC
d)
PF
21.
If m∠CAP = 34° , find m∠CAB.
a)
17°
b)
34°
c)
68°
d)
90°
22.

Does a triangle with these side lengths exist?

15, 12, 9

a)

Yes

b)

No

c)

I don't know.

d)

Cannot be determined

23.

Which of the following would NOT work to make a triangle with the two side lengths of 2 and 6?

a)

6

b)

7

c)

5

d)

4

24.
Given are the lengths of two sides of a triangle. Find the range of lengths for the third side. 7 ft, 13 ft
a)
more than 6 but less than 20
b)
more than 20 but less than 6
c)
less than 6 but more than 20
25.
List the side measures in order, shortest to longest.
a)
QM, QP, MP
b)
MQ, MP, QP
c)
MP, MQ, QP
26.
List the angles in order by measure, smallest to largest.
a)
∠B, ∠A, ∠C
b)
∠A∠,B, ∠C
c)
∠A, ∠C, ∠B
27.
What is the range of values of x for a triangle's third side given side measures of 8 and 15?
a)
between 8 and 15
b)
between 7 and 23
c)
less than 7, greater than 23
28.
What assumption would you make to start the indirect proof of ∆ABC≅∆DEF?
a)
∆ABC≠∆DEF
b)
∆ABC≇∆DEF
c)
<ABC≠<DEF
d)
AB≅DE
29.

Which TWO statements below contradict each other.

a)

a ∥ b

b)

b ⊥ a

c)

a ∥ c

30.
Which statement is a contradiction of the statement XY≅RT?
a)
XY<RT
b)
TR≅YX
c)
XY≈RT
d)
XY≤RT
31.

What can you conclue from the given diagram?

a)

SQ > QR

b)

PQ > RQ

c)

PQ < RQ

d)

SQ < QR

32.
a)

EF = 12

b)

DG = 12

c)

DF = 24

d)

Nothing can be concluded from the diagram

33.

Find the value of x.

a)

27

b)

3

c)

15

d)

30

34.
a)

AJ = BJ

b)

< IAK is a right angle

c)

A is the midpoint of segment IK

d)

BI = BK

35.

Find the value of x.

a)

23/42

b)

90

c)

30

d)

6

36.

a)

I and II

b)

I and III

c)

II and III

d)

None of the statements contradict each other.

37.

a)

I and II

b)

I and III

c)

II and III

d)

None of the statements contradict each other

38.

What can you conclude by the SAS inequality(or hinge) theorem?

a)

PR > RT

b)

PR < RT

c)

QP > ST

d)

QP < ST

39.

What can you conclude by the SAS triangle inequality (or Hinge) Theorem?

a)

ST > BC

b)

ST < BC

c)

SC > BT

d)

SC < BT

40.

What can you conclude?

a)

JK < MO

b)

JK > MO

c)

JL < MO

d)

JL > MO