Slope Y-Intercept Project Data can be modeled by a linear equation. Two values that define a linear equation are the slope and y intercept In this project you wil create a program that inputs the coordinates of two points and determines the slope (if it exists) and the y-intercept of the equation of the line through those points. You are given starter code in a file named Slopelntercept py. You will finish two functions get_slope(p1, p2) and get_intercept(p1, p2). First finish get_slope. The function header contains tvo parameters. Each parameter contains to values which represent the x and y coordinates of their points. The first two lines of this function obtain the x and y coordinates of each point. Check to see if the two x values are the same. If they are they return None. If the values are not the same then use the slope formula for the slope of a line through two points to calculate the slope and retum its value. Second complete the get_intercept function. This function also receives two points as parameters. Call the get_slope function with the two parameters. If the get_slope function returns None then return None from the get_intercept function. Otherwise use the slope intercept equation of a line to find the value of the y-intercept. Retum this value.

C++ for Engineers and Scientists
4th Edition
ISBN:9781133187844
Author:Bronson, Gary J.
Publisher:Bronson, Gary J.
Chapter7: Arrays
Section: Chapter Questions
Problem 8PP: (Statistical) In many statistical analysis programs, data values considerably outside the range of...
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Slope Y-Intercept Project
Data can be modeled by a linear equation. Two values that define a linear equation are the
slope and y intercept. In this project you will create a program that inputs the coordinates of two
points and determines the slope (if it exists) and the y-intercept of the equation of the line
through those points.
You are given starter code in a file named Slopelntercept py. You will finish two functions
get_slope(p1, p2) and get_interceptíp1, p2).
First finish get_slope. The function header contains two parameters. Each parameter contains
to values which represent the x and y coordinates of their points. The first two lines of this
function obtain the x and y coordinates of each point. Check to see if the two x values are the
same. If they are they return None. If the values are not the same then use the slope formula
for the slope of a line through two points to calculate the slope and retum its value.
Second complete the get_intercept function. This function also receives two points as
parameters. Call the get_slope function with the two parameters. If the get_slope function
returns None then return None from the get_intercept function. Otherwise use the slope
intercept equation of a line to find the value of the y-intercept. Return this value.
The main module is written for you. When your functions are complete test its accuracy using
the following data.
x1
y1
x2
y2
slope
y-intercept
3
4
5
1.00
1.00
3
5
5
-1.50
9.50
4
7
4
8
No slope
5
7
2.00
1.00
2.
3.
2.
Transcribed Image Text:Slope Y-Intercept Project Data can be modeled by a linear equation. Two values that define a linear equation are the slope and y intercept. In this project you will create a program that inputs the coordinates of two points and determines the slope (if it exists) and the y-intercept of the equation of the line through those points. You are given starter code in a file named Slopelntercept py. You will finish two functions get_slope(p1, p2) and get_interceptíp1, p2). First finish get_slope. The function header contains two parameters. Each parameter contains to values which represent the x and y coordinates of their points. The first two lines of this function obtain the x and y coordinates of each point. Check to see if the two x values are the same. If they are they return None. If the values are not the same then use the slope formula for the slope of a line through two points to calculate the slope and retum its value. Second complete the get_intercept function. This function also receives two points as parameters. Call the get_slope function with the two parameters. If the get_slope function returns None then return None from the get_intercept function. Otherwise use the slope intercept equation of a line to find the value of the y-intercept. Return this value. The main module is written for you. When your functions are complete test its accuracy using the following data. x1 y1 x2 y2 slope y-intercept 3 4 5 1.00 1.00 3 5 5 -1.50 9.50 4 7 4 8 No slope 5 7 2.00 1.00 2. 3. 2.
def get_point (O:
x = float (input("Enter x coordinate"))
y = float (input ("Enter Y coordinate"))
return (x, y)
def get_slope(p1, p2):
x1, y1 = p1
x2, y2 = p2
def get_intercept(p1, p2):
x1, y1 = p1
#main program
if
name ==
_main_":
pointa = get_point()
points = get_point()
slope = get_slope(pointa, pointB)
intercept = get_intercept (pointa, pointB)
if slope is None:
print ("No slope")
else:
print("slope: %5.2f
y-intercept: %s.2f" % (slope, intercept))Slope Y-Intercept Project.pdf
Transcribed Image Text:def get_point (O: x = float (input("Enter x coordinate")) y = float (input ("Enter Y coordinate")) return (x, y) def get_slope(p1, p2): x1, y1 = p1 x2, y2 = p2 def get_intercept(p1, p2): x1, y1 = p1 #main program if name == _main_": pointa = get_point() points = get_point() slope = get_slope(pointa, pointB) intercept = get_intercept (pointa, pointB) if slope is None: print ("No slope") else: print("slope: %5.2f y-intercept: %s.2f" % (slope, intercept))Slope Y-Intercept Project.pdf
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