ASSIGNMENT · Answer the following problems regarding the application of theorems on triangle inequalities and proving inequality in triangles. (Show your solutions) Suppose we have given three left billiard balls on the table. Use the expressions to determine which two balls are furthest apart. Suppose we have given three left billiard balls on the table. Use the expressions to determine which two balls are furthest apart. 80° * Figure not drawn to scale x+10) (2x)

Elementary Geometry For College Students, 7e
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ISBN:9781337614085
Author:Alexander, Daniel C.; Koeberlein, Geralyn M.
Publisher:Alexander, Daniel C.; Koeberlein, Geralyn M.
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O.
ASSIGNMENT
Answer the following problems regarding the application of
theorems on triangle inequalities and proving inequality in
triangles. (Show your solutions)
Suppose we have given three left billiard balls on the
table. Use the expressions to determine which two balls
are furthest apart.
ASSIGNMENT-
L
56154
12
12
O
E
2x V x + 5
Applying the Hinge Theorem, what inequality can
give the correct restriction on the possible values of x?
<1>
<3>
A
Suppose we have given three left billiard balls on the
table. Use the expressions to determine which two balls
are furthest apart.
8
80°
* Figure not drawn to scale
2
m
T
x+10)°
(2x)
ASSIGNMENT
Given:
T is the midpoint of AH
MA< MH
Prove: LMTA < MTH
X
H
Transcribed Image Text:O. ASSIGNMENT Answer the following problems regarding the application of theorems on triangle inequalities and proving inequality in triangles. (Show your solutions) Suppose we have given three left billiard balls on the table. Use the expressions to determine which two balls are furthest apart. ASSIGNMENT- L 56154 12 12 O E 2x V x + 5 Applying the Hinge Theorem, what inequality can give the correct restriction on the possible values of x? <1> <3> A Suppose we have given three left billiard balls on the table. Use the expressions to determine which two balls are furthest apart. 8 80° * Figure not drawn to scale 2 m T x+10)° (2x) ASSIGNMENT Given: T is the midpoint of AH MA< MH Prove: LMTA < MTH X H
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