class Vehicle: OUTPUT: Part 1 def _init_(self): self.x = e self.y - e def rovelp( self): self.y+-1 def novebown(self): (0.0) (0. 1) (-1, 1) (-1,0) (0.0) self.y-1 def roveright(self): Part 2 self.x+1 def noveleft(self): (0.0) (-1.-1) False return (*+str(self.x)+' , '+str(self.y)+')' True self.x-1 def _str_(self): write your code here print('Part 1') print("---.--') car - Vehicle(O print(car) car. novelp() print(car) car.moveleft() print(car) car.moveDown() print(car) car.noveRight () print(car) print(-----') print ('Part 2') print("------) carl - Vehicle2010() print(cari) carl.novelowerLeft() print(cari) car2 - Vehicle2010() car2.noveleft () print (carl.eguals(car2))
class Vehicle: OUTPUT: Part 1 def _init_(self): self.x = e self.y - e def rovelp( self): self.y+-1 def novebown(self): (0.0) (0. 1) (-1, 1) (-1,0) (0.0) self.y-1 def roveright(self): Part 2 self.x+1 def noveleft(self): (0.0) (-1.-1) False return (*+str(self.x)+' , '+str(self.y)+')' True self.x-1 def _str_(self): write your code here print('Part 1') print("---.--') car - Vehicle(O print(car) car. novelp() print(car) car.moveleft() print(car) car.moveDown() print(car) car.noveRight () print(car) print(-----') print ('Part 2') print("------) carl - Vehicle2010() print(cari) carl.novelowerLeft() print(cari) car2 - Vehicle2010() car2.noveleft () print (carl.eguals(car2))
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
![Task - 2
|class Vehicle:
def _init_(self):
self.x0
self.y - 0
def moveup(self):
self.y+-1
def moveDown (self):
self.y--1
def moveright(self):
self.x+1
OUTPUT:
Part 1
(0.0)
(0.1)
(-1, 1)
(-1,0)
(0.0)
Part 2
def moveleft(self):
self.x-1
(0.0)
(-1,-1)
False
def _str_(self):
return '('+str(self.x)+', +str(self.y)+')' True
write your code here
print('Part 1')
print( ------)
car - Vehicle()
print(car)
car.moveup()
print(car)
car.moveleft()
print(car)
car.moveDown()
print(car)
car.moveRight ()
print(car)
print('------')
print('Part 2')
print('------')
cari - Vehicle2010()
print(cari)
car1.novelowerLeft()
print(cari)
car2 - Vehicle2010()
car2.noveleft()
print(carl.equals(car2))
car2.moveDown ()
print(carl.equals(car2))](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fd83c5c93-8ef5-4e9d-848b-eccfc2cbfaff%2F0f1bf3bf-efe5-459d-8e7d-b728e58b3498%2Fp5p08r_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Task - 2
|class Vehicle:
def _init_(self):
self.x0
self.y - 0
def moveup(self):
self.y+-1
def moveDown (self):
self.y--1
def moveright(self):
self.x+1
OUTPUT:
Part 1
(0.0)
(0.1)
(-1, 1)
(-1,0)
(0.0)
Part 2
def moveleft(self):
self.x-1
(0.0)
(-1,-1)
False
def _str_(self):
return '('+str(self.x)+', +str(self.y)+')' True
write your code here
print('Part 1')
print( ------)
car - Vehicle()
print(car)
car.moveup()
print(car)
car.moveleft()
print(car)
car.moveDown()
print(car)
car.moveRight ()
print(car)
print('------')
print('Part 2')
print('------')
cari - Vehicle2010()
print(cari)
car1.novelowerLeft()
print(cari)
car2 - Vehicle2010()
car2.noveleft()
print(carl.equals(car2))
car2.moveDown ()
print(carl.equals(car2))
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