my_turtle.penup() my_turtle.goto(polygon_points [0] [0],polygon_points[0][1]) my_turtle.pendown ( ) for i in range(1, len(polygon_points)): my_turtle.goto(polygon_points [i] [0],polygon_points[i] [1]) my_turtle.goto(polygon_points[0] [0],polygon_points[0][1]) # creating turtle pen t = turtle.Turtle() polygon_points=[[10,10],[200,10], [200,200],[10,200]] draw_subregion(t,polygon_points) # replace this line with your implemenation
my_turtle.penup() my_turtle.goto(polygon_points [0] [0],polygon_points[0][1]) my_turtle.pendown ( ) for i in range(1, len(polygon_points)): my_turtle.goto(polygon_points [i] [0],polygon_points[i] [1]) my_turtle.goto(polygon_points[0] [0],polygon_points[0][1]) # creating turtle pen t = turtle.Turtle() polygon_points=[[10,10],[200,10], [200,200],[10,200]] draw_subregion(t,polygon_points) # replace this line with your implemenation
Computer Networking: A Top-Down Approach (7th Edition)
7th Edition
ISBN:9780133594140
Author:James Kurose, Keith Ross
Publisher:James Kurose, Keith Ross
Chapter1: Computer Networks And The Internet
Section: Chapter Questions
Problem R1RQ: What is the difference between a host and an end system? List several different types of end...
Related questions
Question
Language Python
![13
def draw_subregion(my_turtle, polygon_points):
my_turtle.penup( )
my_turtle.goto( polygon_points [0] [0],polygon_points[0] [1])
my_turtle.pendown ( )
for i in range(1, len(polygon_points)):
my_turtle.goto(polygon_points[i] [0],polygon_points[i][1])
my_turtle.goto(polygon_points [0] [0],polygon_points[0] [1])
# creating turtle pen
t = turtle.Turtle()
polygon_points=[[10,10],[200, 10], [200,200]1, [10,200]]
draw_subregion(t,polygon_points)
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# replace this line with your implemenation
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def draw_filled_subregion(my_turtle, polygon_points, style, votes):
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Replace this with a docstring comment with the correct format. ||
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pass
# replace this line with your implemenation
32](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F29f44afc-13bd-4765-a69d-3ff085ad17f9%2Fec9f4cfa-965c-4d51-8ad3-13521361bbf2%2Fz9a4a8f_processed.png&w=3840&q=75)
Transcribed Image Text:13
def draw_subregion(my_turtle, polygon_points):
my_turtle.penup( )
my_turtle.goto( polygon_points [0] [0],polygon_points[0] [1])
my_turtle.pendown ( )
for i in range(1, len(polygon_points)):
my_turtle.goto(polygon_points[i] [0],polygon_points[i][1])
my_turtle.goto(polygon_points [0] [0],polygon_points[0] [1])
# creating turtle pen
t = turtle.Turtle()
polygon_points=[[10,10],[200, 10], [200,200]1, [10,200]]
draw_subregion(t,polygon_points)
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# replace this line with your implemenation
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def draw_filled_subregion(my_turtle, polygon_points, style, votes):
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Replace this with a docstring comment with the correct format. ||
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pass
# replace this line with your implemenation
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Transcribed Image Text:Complete the implementation of draw filled subregion. This function has the following
parameters:
my turtle: A turtle object (which will do the drawing)
polygon points: A list of (x, y) points (i.e. a list of tuples) that defines the points of a
polygon.
style: A string describing the style of drawing. This should be either “black-white",
"red-blue", or “purple" (as described above).
votes: A tuple containing the following information: (number of votes for the
Republican candidate, number of votes for the Democratic candidate, and the
number of votes for other candidates).
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