L = ['Adam', 'Lisa', 'Paul', 'Bart']
L.pop(2)
L.pop(2)
print L
L.pop(2)
L.pop(2)
print L
2016-11-14
Type "copyright", "credits" or "license()" for more information.
>>> L = ['Adam', 'Lisa', 'Bart']
>>> L.insert(2,'Paul')
>>> print L
['Adam', 'Lisa', 'Paul', 'Bart']
>>>
>>> L = ['Adam', 'Lisa', 'Bart']
>>> L.insert(2,'Paul')
>>> print L
['Adam', 'Lisa', 'Paul', 'Bart']
>>>
2016-11-14
d = { 'Adam': 95, 'Lisa': 85, 'Bart': 59, 'Paul': 74 }
sum = 0.0
for value in d.itervalues():
sum+=value
print sum/len(d)
sum = 0.0
for value in d.itervalues():
sum+=value
print sum/len(d)
2016-11-14
import math
def quadratic_equation(a, b, c):
delta = b**2-4*a*c
if delta < 0:
print("This equation has none solution")
else:
solution1 = (-b + math.sqrt(b**2-4*a*c))/(2*a)
solution2 = (-b - math.sqrt(b**2-4*a*c))/(2*a)
return solution1, solution2
def quadratic_equation(a, b, c):
delta = b**2-4*a*c
if delta < 0:
print("This equation has none solution")
else:
solution1 = (-b + math.sqrt(b**2-4*a*c))/(2*a)
solution2 = (-b - math.sqrt(b**2-4*a*c))/(2*a)
return solution1, solution2
2016-11-14
sum = 0
x = 1
while (x<=100)&&(x%2==1):
sum=sum+x
print sum
x = 1
while (x<=100)&&(x%2==1):
sum=sum+x
print sum
2016-11-14
def firstCharUpper(s):
return s[0:1].upper()+s[1:]
print firstCharUpper('hello')
print firstCharUpper('sunday')
print firstCharUpper('september')
return s[0:1].upper()+s[1:]
print firstCharUpper('hello')
print firstCharUpper('sunday')
print firstCharUpper('september')
2016-11-14
L = range(1, 101)
print L[0:10]
print L[2:len(L):3]
print L[4:50:5]
print L[0:10]
print L[2:len(L):3]
print L[4:50:5]
2016-11-14
from __future__ import division
def average(*args):
if len(args)==0:
return 0.0
else:
return sum(args)/len(args)
print average()
print average(1, 2)
print average(1, 2, 2, 3, 4)
def average(*args):
if len(args)==0:
return 0.0
else:
return sum(args)/len(args)
print average()
print average(1, 2)
print average(1, 2, 2, 3, 4)
2016-11-14