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CASE #4
Read Chapters 15 through 17 of “Think Python: How to Think Like a
Computer Scientist” from
http://www.greenteapress.com/thinkPython/html/index.html.
Or get the pdf file of the book from the same link.
- Finish running all the examples in Chapters 15 through 19 of “Think Python: How to Think Like a Computer Scientist” by yourself in Python shell interactive command mode or IDLE editor window. Collect all output of your running examples and submit them in one text file named “CSC111-Case4-Examples-YourFirstNameLastname”
- Finish coding the following exercises in Python, run them, and collect the running results into a file named “CSC111-Case4-Exercises-YourFirstNameLastName” and submit it.
- Exercise 16.1
- Exercise 16.2
- Exercise 16.4
- Exercise 16.7
- Exercise 17.2
- Exercise 17.3
- Exercise 17.4
- Exercise 17.7
Note: When you program the exercises you can name them whatever you want, such as ex3-1.py or count-nums.py but the submitted file should provide name of the exercise, source code, and running results.
- Finally, write a summary document named “CSC111-Case4Summary-YourFirstNameLastName” to report what you have learned from this SLP assignment and any other learning experience.
ex16-1.py
def print_time(time): print('%.2d:%.2d:%.2d' % (time.hour, time.minute, time.second))
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ex16-2.py
def is_after(t1, t2): return (t1.hour < t2.hour) or \ (t1.hour == t2.hour and t1.minute < t2.minute) or \ (t1.hour == t2.hour and t1.minute == t2.minute and t1.second < t2.second)
ex16-4.py
def increment(time, seconds): newTime = Time() newTime.hour = time.hour newTime.minute = time.minute newTime.second = time.second newTime.second += seconds if newTime.second >= 60: newTime.second -= 60 newTime.minute += 1 if newTime.minute >= 60: newTime.minute -= 60 newTime.hour += 1 return newTime
ex16-7.py
import time import datetime from datetime import date, timedelta print 'current date: ', date.today() print 'day of the week: ', date.today().weekday() year = int(input('year of birthday: ')) month = int(input('month of birthday: ')) day = int(input('day of birthday: ')) print 'age: ', date.today().year - year if datetime.date(date.today().year, month, day) > date.today(): span = datetime.date(date.today().year, month, day) - date.today() print 'There will be %d days until next birthday' % span.days else: span = datetime.date(date.today().year + 1, month, day) - date.today() print 'There will be %d days until next birthday' % span.days
ex17-2.py
class Point: def __init__(self, x, y): self.x = x self.y = y
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ex17-3.py
class Point: def __init__(self, x, y): self.x = x self.y = y def __str__(self): return '(%d, %d)' %(self.x, self.y) p = Point(1, 2) print p
ex17-4.py
class Point: def __init__(self, x, y): self.x = x self.y = y def __str__(self): return '(%d, %d)' %(self.x, self.y) def __add__(self, p): x = self.x + p.x y = self.y + p.y return Point(x, y) p = Point(1, 2) p1 = Point(2, 3) print p + p1
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ex17-7.py
class Kangaroo(object): """a Kangaroo is a marsupial""" def __init__(self, contents=None): """initialize the pouch contents; the default value is an empty list""" if contents == None: contents = [] self.pouch_contents = contents def __str__(self): """return a string representaion of this Kangaroo and the contents of the pouch, with one item per line""" t = [ object.__str__(self) + ' with pouch contents:' ] for obj in self.pouch_contents: s = ' ' + object.__str__(obj) t.append(s) return '\n'.join(t) def put_in_pouch(self, item): """add a new item to the pouch contents""" self.pouch_contents.append(item) kanga = Kangaroo() roo = Kangaroo() kanga.put_in_pouch('wallet') kanga.put_in_pouch('car keys') kanga.put_in_pouch(roo) print kanga print '' print roo
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SLP #4
Read Chapter 18 and Chapter 19 of “Think Python: How to Think Like a
Computer Scientist” from
http://www.greenteapress.com/thinkPython/html/index.html.
Or get the pdf file of the book from the same link.
- Finish running all the examples in Chapter 18 and Chapter 19 of “Think Python: How to Think Like a Computer Scientist” by yourself in Python shell interactive command mode or IDLE editor window. Collect all output of your running examples and submit them in one text file named “CSC111-SLP4-Examples-YourFirstNameLastname”
- Finish coding the following exercises in Python, run them, and collect the running results into a file named “CSC111-SLP4-Exercises-YourFirstNameLastName” and submit it.
- Exercise 18.1
- Exercise 18.2
- Exercise 19.1
- Exercise 19.2
- Exercise 19.3
- Exercise 19.4
Note: When you program the exercises you can name them whatever you want, such as ex3-1.py or count-nums.py but the submitted file should provide name of the exercise, source code, and running results.
- Finally, write a summary document named as “CSC111-SLP4Summary-YourFirstNameLastName” to report what you have learned from this Case Assignment and any other learning experience.
ex18-1.py
class Time: def __cmp__(self, other): t1 = self.hour, self.minute, self.second t2 = other.hour, other.minute, other.second return cmp(t1, t2)
ex18-2.py
class Card(object): """Represents a standard playing card.""" def __init__(self, suit=0, rank=2): self.suit = suit self.rank = rank suit_names = ['Clubs', 'Diamonds', 'Hearts', 'Spades'] rank_names = [None, 'Ace', '2', '3', '4', '5', '6', '7', '8', '9', '10', 'Jack', 'Queen', 'King'] def __str__(self): return '%s of %s' % (Card.rank_names[self.rank], Card.suit_names[self.suit]) def __cmp__(self, other): # check the suits if self.suit > other.suit: return 1 if self.suit < other.suit: return -1 # suits are the same... check ranks if self.rank > other.rank: return 1 if self.rank < other.rank: return -1 # ranks are the same... it's a tie return 0 import random class Deck: def __init__(self): self.cards = [] for suit in range(4): for rank in range(1, 14): card = Card(suit, rank) self.cards.append(card) def __str__(self): res = [] for card in self.cards: res.append(str(card)) return '\n'.join(res) def shuffle(self): random.shuffle(self.cards) def sort(self): self.cards.sort() deck = Deck() deck.shuffle() deck.sort() print deck
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ex19-1.py
from swampy.Gui import * g = Gui() g.title('') def callback1(): g.bu(text='Now press me.', command=callback2) def callback2(): g.la(text='Nice job.') g.bu(text='Press me.', command=callback1) g.mainloop()
ex19-2.py
from swampy.Gui import * g = Gui() g.title('') def callback1(): canvas.config(bg='white') item = canvas.circle([0,0], 100, fill='red') g.bu(text='Press me.', command=callback1) g.mainloop()
ex19-3.py
from swampy.Gui import * g = Gui() g.title('circle demo') canvas = g.ca(width=500, height=500, bg='white') circle = None def callback1(): """called when the user presses 'Create circle' """ global circle circle = canvas.circle([0,0], 100) def callback2(): """called when the user presses 'Change color' """ # if the circle hasn't been created yet, do nothing if circle == None: return # get the text from the entry and try to change the circle's color color = entry.get() try: circle.config(fill=color) except TclError, message: # probably an unknown color name print message # create the widgets g.bu(text='Create circle', command=callback1) entry = g.en() g.bu(text='Change color', command=callback2) g.mainloop()
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ex19-4.py
import os, sys from Gui import * import Image as PIL # to avoid name conflict with Tkinter import ImageTk class ImageBrowser(Gui): """An image browser that scans the files in a given directory and displays any images that can be read by PIL. """ def __init__(self): Gui.__init__(self) # clicking on the image breaks out of mainloop self.button = self.bu(command=self.quit, relief=FLAT) def image_loop(self, dirname='.'): """loop through the files in (dirname), displaying images and skipping files PIL can't read. """ files = os.listdir(dirname) for file in files: try: self.show_image(file) print file self.mainloop() except IOError: continue except: break def show_image(self, filename): """Use PIL to read the file and ImageTk to convert to a PhotoImage, which Tk can display. """ image = PIL.open(filename) self.tkpi = ImageTk.PhotoImage(image) self.button.config(image=self.tkpi) def main(script, dirname='.'): g = ImageBrowser() g.image_loop(dirname) main(*sys.argv)
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CS 1300 Assignment 3
Objectives:
- Design an algorithm (a set of steps for solving a particular problem).
- Be able to use a for loop to repeat code Getting Started
Start IDLE and create a new Python program file named: FirstnameLastnameAssignment3.py, e.g., SallyWhiteAssignment3.py. Note: In order to receive full credit, all code must have meaningful comments.
- Part 1 – Display the current 16 GOP Presidential Candidates using a for loop (4 points) In your Python program file, write code to display the current 16 GOP Presidential Canditates in a list using a for loop.1 Beginning Comments
Add a comment at the top of the file that states the following:
Part 1 – Display 16 GOP Presidential Candidates2 Output of GOP Presidential Candidates
As of August 2015 there are seventeen GOP presidential hopefuls. Print out the entire
list using a for loop. The candidates are: Jeb Bush, Ben Carson, Chris Christie, Ted
Cruz, Carly Fiorina, Jim Gilmore, Lindsey Graham, Mike Huckabee, Bobby Jindal, John
Kasich, George Pataki, Rand Paul, Rick Perry, Marco Rubio, Rick Santorum, Donald J.
Trump, and Scott Walker. Note, you must use a for loop.Example output for Part 1: The sixteen candidates are: Jeb Bush Ben Carson Chris Christie Ted Cruz Carly Fiorina Jim Gilmore Lindsey Graham Mike Huckabee Bobby Jindal John Kasich George Pataki Rand Paul Rick Perry Marco Rubio Rick Santorum Donald J. Trump Scott Walker
- Part 2 – Print total and average flight costs for the Code Evangelist at Pear, Inc. (8 points) Add code to your Python program file, after the code for Part 1, that:
- prompts the user for the number of cities to which you will fly in a given year, then
- uses a for loop to prompt the user for the number of trips taken within one year, and
- finally, calculates and displays the total cost incurred by Pear, Inc. and the average cost of each flight.1 Beginning Comments
Add a comment after the code for part 1:
Part 2 – Determine total and average airline flight cost for a specified number of
cities visited by the code evangelist at Pear, Inc.2 General algorithm for the program
The algorithm is as follows:
1. Prompt the user for the number of cities to which the code evangelist will fly in the
coming year and assign it to a variable
2. Convert the variable in step 1 to an integer.
3. Create a variable that will hold the total cost of the plane tickets and assign it a value of 0
4. Create a for loop that will loop the number of times specified by the user. The loop body
will
1. Prompt the user for the cost of each flight. Please note the following:
1. Specify which flight number you are looking for 0, 1, 2, …
2. Remember in order to concatenate/add a number to a string you must
convert it to a string.
3. All costs will be specified in integer values.
2. Convert the cost entered to an integer
3. Add the cost of the flight to the total cost
5. After the for loop calculate the average cost of the flights.
6. Print out the total cost of all trips
7. Print out the average cost per flight
Save and execute the program and verify it works correctly. Example output of part 2 is below:
How many trips were taken? 5 Cost of flight 0? 510 Cost of flight 1? 434 Cost of flight 2? 1237 Cost of flight 3? 564 Cost of flight 4? 798 Total cost incurred for 5 trips is $3543 Average cost per flight is $708.6
- Part 3 – Turtle graphics figure (8 points) Add code to your Python program file, after the code for Part 2 that draws a figure using turtle graphics. The requirements for this figure are as follows:
- Beginning comments
Add a comment after the code for part 2:
Part 3 – Drawing a figure - Specifications
You may draw any figure you want, e.g., a house, a star, trees etc. Whatever figure you draw must have at least two triangles in it and each time you draw a triangle the sides must be drawn using a for loop.
- Beginning comments
Use you first name as the variable name for your turtle object. For example, in the Lab 3 exercises, the variable name that held the turtle object in the Turtle hex trot was alex . The variable name for Sally White would be sally .
If you only draw two triangles and there is not a recognizable figure you will not receive full points for Part 3.
Submission
Make sure your Python file is named FirstnameLastnameAssignment3.py, e.g.,
SallyWhiteAssignment3.py and submit the file in Moodle by the due date.
Grading
- Part 1 – 4 points
- Part 2 – 8 points
- Part 3 – 8 points
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assignment3.py
#Part 1 - Display 16 GOP Presidential Candidates # create a list for the 16 GOP presidential Candidates gop = ['Jeb Bush', 'Ben Carson', 'Chris Christie', 'Ted Cruz', 'Carly Fiorina', 'Jim Gilmore', 'Lindsey Graham', 'Mike Huckabee', 'Bobby Jindal', 'John Kasich', 'George Pataki', 'Rand Paul', 'Rick Perry', 'Marco Rubio', 'Rick Santorum', 'Donald J. Trump', 'Scott Walker'] for i in range(len(gop)): #display 16 GOP presidential Candidates using a for loop print(gop[i]) #Part 2 - Determine total and average airline flight cost for a specified number of #cities visited by the code evangelist at Pear, Inc. #prompts the user for the number of cities to which you will fly in a given year # and Convert the variable to an integer numTrips = int(input('How many trips were taken? ')) # variable that used to hold the total cost of the plane tickets and assign it a value of 0 totalCost = 0 #Create a for loop that will loop the number of times specified by the user for i in range(numTrips): cost = int(input('Cost of flight %d? ' % i)) #get the cost for a single trip totalCost = totalCost + cost # add the single cost to totalCost #calculate the average cost of the flights. avgCost = totalCost / numTrips #Print out the total cost of all trips print('\nTotal cost incurred for %d trips is $%d' % (numTrips, totalCost)) #Print out the average cost per flight print('Average cost per flight is $%.2f' % avgCost) #Part 3 - Drawing a figure import turtle window = turtle.Screen() #initialize the screen timothy = turtle.Turtle() # get the turtle object timothy.hideturtle() # hide the cursor # draw a five-point star timothy.forward(100) for i in range(4): timothy.right(144) timothy.forward(100) window.exitonclick() #click 'X' to close the window
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