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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
100%
See below
![08:28 GE GE
TMA 02
output list [16, 4, 2].
NO 46 83%
i. Describe the type of the input and output
data for this first task and describe the
allowable values for each.
ii. Specify one further test list in addition to
the list you have created using your Pl
number. Make sure that you state the test
input, the expected output and a brief
explanation of why you selected this test.
iii. Write an algorithm based on Pattern 2.3
Note that you will need to modify step 4ai.
iv. Implement your algorithm as Python code.
Your code must match the steps of your
algorithm and you should use comments in
the code to make it clear how the two
correspond. Marks will be lost if the
program does not follow the algorithm.
Copy your Python code, as text, into your
Solution document. Name your Python file
Q2a_OUCU.py, where 'OUCU' is your OU
computer username, e.g. abc123. Then
include the code file in your TMA zip file.
You should aim to use only the Python features
that are introduced in the module. If you decide
to use techniques or language features that
TM112 does not cover, you must give a
justification for your decisions, otherwise marks
|||
<](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F98d014f4-d7c3-4331-98d7-2a50cf9bf0ce%2Fea81853c-9ac7-49d9-84d7-2e6183416006%2Fjzz91f8_processed.jpeg&w=3840&q=75)
Transcribed Image Text:08:28 GE GE
TMA 02
output list [16, 4, 2].
NO 46 83%
i. Describe the type of the input and output
data for this first task and describe the
allowable values for each.
ii. Specify one further test list in addition to
the list you have created using your Pl
number. Make sure that you state the test
input, the expected output and a brief
explanation of why you selected this test.
iii. Write an algorithm based on Pattern 2.3
Note that you will need to modify step 4ai.
iv. Implement your algorithm as Python code.
Your code must match the steps of your
algorithm and you should use comments in
the code to make it clear how the two
correspond. Marks will be lost if the
program does not follow the algorithm.
Copy your Python code, as text, into your
Solution document. Name your Python file
Q2a_OUCU.py, where 'OUCU' is your OU
computer username, e.g. abc123. Then
include the code file in your TMA zip file.
You should aim to use only the Python features
that are introduced in the module. If you decide
to use techniques or language features that
TM112 does not cover, you must give a
justification for your decisions, otherwise marks
|||
<
![08:28 GE GE
← TMA 02
This question provides an opportunity for you to
demonstrate your understanding of the problem-solving
approach taught in TM112 and the patterns introduced
in Block 1 Part 4 and Block 2 Part 2. You can find an
overview of the problem-solving approach and a list of
all the patterns TM112 teaches in the Problem solving
and Python quick reference and you will need to refer to
this document as you work on the question.
No. 83%
Important note: you do not need to get a working
program in part a. in order to attempt part b.
A student wants to design and implement a Python
program to convert any 6-bit unsigned binary number to
its decimal equivalent. There are many ways of doing
this, but here is their initial top-level decomposition:
> Convert binary to decimal
|||
>> Input a list of six 1s and Os
corresponding to the binary number to be
converted
>> Input a list of six column weightings
consisting of powers of two
>> Create a new list that contains the
decimal values of each binary digit of 1 in
the input list
>> Add up the decimal values in the new list
and print result
a. In this part of the question you will consider only
<](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F98d014f4-d7c3-4331-98d7-2a50cf9bf0ce%2Fea81853c-9ac7-49d9-84d7-2e6183416006%2Feucjebv4_processed.jpeg&w=3840&q=75)
Transcribed Image Text:08:28 GE GE
← TMA 02
This question provides an opportunity for you to
demonstrate your understanding of the problem-solving
approach taught in TM112 and the patterns introduced
in Block 1 Part 4 and Block 2 Part 2. You can find an
overview of the problem-solving approach and a list of
all the patterns TM112 teaches in the Problem solving
and Python quick reference and you will need to refer to
this document as you work on the question.
No. 83%
Important note: you do not need to get a working
program in part a. in order to attempt part b.
A student wants to design and implement a Python
program to convert any 6-bit unsigned binary number to
its decimal equivalent. There are many ways of doing
this, but here is their initial top-level decomposition:
> Convert binary to decimal
|||
>> Input a list of six 1s and Os
corresponding to the binary number to be
converted
>> Input a list of six column weightings
consisting of powers of two
>> Create a new list that contains the
decimal values of each binary digit of 1 in
the input list
>> Add up the decimal values in the new list
and print result
a. In this part of the question you will consider only
<
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