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Geometry 3.1-3.3

Total questions: 24

Worksheet time: 2hrs 0mins

Name
Class
Date
1.

Think of each segment in the diagram as part of a line. Which line(s) contain point G​ and appear to be parallel to line EF?

a)

Line HG

b)

Line FB

c)

Line GC

d)

Line FG

2.

Think of each segment in the diagram as part of a line. Which line(s) contain point G and appear to be perpendicular to line EF

a)

Line HG

b)

Line FB

c)

Line GC

d)

Line FG

3.

Think of each segment in the diagram as part of a line. Which line(s) contain point G​ and appear to be skew to Line EF

a)

Line HG

b)

Line FB

c)

Line CG

d)

Line FG

4.

Think of each segment in the diagram as part of a line. Which planes(s) contain point G​ and appear to be parallel to plane ADE?​

a)

Plane BCG

b)

Plane DCG

c)

Plane ABF

d)

Plane EHG

5.

identify all pairs of consecutive interior angles

a)

<4 and <6

b)

<3 and <6

c)

<1 and <8

d)

<2 and <7

e)

<3 and<5

6.

identify all pairs of alternate interior angles.

a)

<4 and <5

b)

<3 and <6

c)

<1 and <5

d)

<3 and <7

7.

identify all pairs of corresponding angles

a)

<4 and <8

b)

<1 and <5

c)

<3 and <5

d)

<2 and <6

e)

<3 and <7

8.

Identify all pairs of alternate exterior angles

a)

<4 and <6

b)

<2 and <7

c)

<1 and <8

d)

<4 and <8

9.

m<1=__

m<2=__

(a)  

10.

Which theorem did you use to find <1

a)

Linear pair postulate

b)

corresponding angles congruence theorem

c)

vertical angles congruence theorem

d)

alternate exterior angles theorem

11.

which theorem did you use to figure out <2?

a)

linear pair postulate

b)

corresponding angles congruence theorem

c)

alternate exterior angles theorem

d)

vertical angles congruence theorem

12.

m<1=__

m<2=__

(a)  

13.

which theorem did you use to find <1?

a)

alternate exterior angles theorem

b)

vertical angles theorem

c)

alternate interior angles theorem

d)

corresponding angles theorem

14.

Which theorem did you use to find <2?

a)

corresponding angles theorem

b)

alternate exterior angle theorem

c)

vertical angles congruence theorem

d)

alternate interior angle theorem

15.

find m<1

(a)  

16.

find m<2

(a)  

17.

Which theorem did you use to find m<1

a)

alternate interior angles theorem

b)

linear pair postulate

c)

corresponding angles theorem

d)

vertical angles congruence theorem

18.

Which theorem did you use to find m<2?

a)

corresponding angles theorem

b)

vertical angles congruence theorem

c)

alternate interior angles theorem

d)

linear pair postulate

19.

Decide whether there is enough information to prove that  m II n

a)

Yes, alternate interior angles theorem

b)

no

c)

yes, alternate exterior angles theorem

d)

yes, corresponding angles theorem

e)

yes, vertical angle postulate

20.

Decide whether there is enough information to prove that m II n

a)

no

b)

yes, vertical angle theorem

c)

yes, alternative interior angle theorem

d)

yes, corresponding angles theorem

e)

yes, alternative exterior angle theorem

21.

Identify two pairs of parallel lines so that each pair is in a different plane.

a)

k II n

b)

p II q

c)

n II m

d)

k II m

e)

n II p

22.

identify two pairs of perpendicular lines

a)

n is perpendicular to p

b)

k is perpendicular to n

c)

p is perpendicular to q

d)

n is perpendicular to m

e)

k is perpendicular to m

23.

Identify two pairs of skew lines

a)

Lines k and n

b)

Lines l and k

c)

Lines q and m

d)

Lines p and l

e)

Lines n and m

24.

Prove that <1 is congruent to <2

a)

alternate exterior angles theorem

b)

alternate interior angles theorem

c)

corresponding angles theorem

d)

vertical angles theorem