Sponsor Area
Inheritance
Write two methods in python using concept of Function Overloading (Polymorphism) to perform the following operations:
(i) A function having one argument as Radius, to calculate Area of Circle as 3.14#Radius#Radius
(ii) A function having two arguments as Base and Height, to calculate Area of right-angled triangle as 0.5#Base#Height.
def Area(R):
print 3.14*R*R
def Area(B,H):
print 0.5*B*H
What will be the status of the following list after the First, Second and Third pass of the bubble sort method used for arranging the following elements in ascending order ?
Note: Show the status of all the elements after each pass very clearly underlining the changes.
52, 42, -10, 60, 90, 20
I Pass
| 52 | 42 | -10 | 60 | 90 | 20 |
| 42 | 52 | -10 | 60 | 90 | 20 |
| 42 | -10 | 52 | 60 | 90 | 20 |
| 42 | -10 | 52 | 60 | 90 | 20 |
| 42 | -10 | 52 | 60 | 90 | 20 |
| 42 | -10 | 52 | 60 | 20 | 90 |
II Pass
| 42 | -10 | 52 | 60 | 20 | 90 |
| -10 | 42 | 52 | 60 | 20 | 90 |
| -10 | 42 | 52 | 60 | 20 | 90 |
| -10 | 42 | 52 | 60 | 20 | 90 |
| -10 | 42 | 52 | 20 | 60 | 90 |
III Pass
|
-10
|
42
|
52
|
20
|
60
|
90
|
|
-10
|
42
|
52
|
20
|
60
|
90
|
|
-10
|
42
|
52
|
20
|
60
|
90
|
|
-10
|
42
|
20
|
52
|
60
|
90
|
Write Addnew(Member) and Remove(Member) methods in python to Add a new Member and Remove a Member from a List of Members, considering them to act as INSERT and DELETE operations of the data structure Queue.
class queue:
Member=[]
def Addnew(self):
a=input('enter member name: ')
queue.Member.append(a)
def Remove(self):
if (queue.Member==[]):
print 'Queue empty'
else:
print 'deleted element is: ',queue.Member[0]
del queue.Member[0] # queue.Member.delete()
Write definition of a Method MSEARCH(STATES) to display all the state names from a list of STATES, which are starting with alphabet M.
For example:
If the list STATES contains
['MP','UP','WB','TN','MH','MZ','DL','BH','RJ','HR']
The following should get displayed
MP
MH
MZ
def MSEARCH(STATES):
for i in STATES:
if i[0]=='M':
print i
Sponsor Area
Mock Test Series
Mock Test Series



