Whether the GUI application can continue running or not when an error-type exception occurs depends on the nature and severity of the error.
When an error-type exception occurs, the GUI application may continue to run. This statement can be true or false depending on the severity of the error that caused the exception. In some cases, the exception may be caught and handled, allowing the application to continue running without any issues. However, in other cases, the error may be so severe that it causes the application to crash or become unstable, in which case the application would not be able to continue running normally.
In conclusion, whether the GUI application can continue running or not when an error-type exception occurs depends on the nature and severity of the error. Sometimes, the exception can be handled without causing any major issues, while in other cases it may result in a crash or instability.
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the open mode attribute for a file indicates whether other callers can open the file for read, write, or delete operations while this caller is using it. a) true b) false
The open mode attribute for a file indicates whether other callers can open the file for read, write, or delete operations while this caller is using it. This statement is true.
The open mode attribute for a file refers to the mode in which the file is opened, which can be either read or write mode.
In read-only mode, data may be read from the file, but it cannot be changed or written to the file. In write mode, data may be read from and written to the file.
When a file is open in write mode, it can be modified by the program. In addition, the open mode attribute also indicates whether other callers can access the file for read, write, or delete operations while this caller is using it.
There are three operations that can be performed on files.
They are as follows:
Reading from a file: When a file is read, the program reads the data from the file into memory and processes it.
When the file is opened, the program can read the data from it without modifying it. Writing to a file: When a file is written to, the program writes data to the file. The program can also modify the existing data in the file.
Deleting a file: When a file is deleted, it is removed from the file system and can no longer be accessed by any program or user.
The open mode attribute determines whether other users can perform these operations on a file while the current user has the file open. If the open mode attribute is set to allow other users to open the file in read-only mode, then other users can read the file while the current user has it open.
If the open mode attribute is set to allow other users to open the file in write mode, then other users can modify the file while the current user has it open.
Answer: The given statement "the open mode attribute for a file indicates whether other callers can open the file for read, write, or delete operations while this caller is using it" is true.
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please edit this code in c++ so that it works, this code does not need an int main() function since it already has one that is part of a larger code:
// modify the implementation of myFunction2
// must divide x by y and return the result
float myFunction2(int x, int y ) {
x = 15;
y = 3;
int div = x / y ;
cout << div << endl;
return div;
}
In order to edit this code in C++ so that it works, you must modify the implementation of myFunction2 to divide x by y and return the result. The code given below performs this task.// modify the implementation of myFunction2
// must divide x by y and return the result
float myFunction2(int x, int y) {
float div = (float)x / y;
return div;
}The modified code does not require an int main() function since it is already part of a larger code. The changes are as follows: Instead of the line int div = x / y ;, we must write float div = (float)x / y ; because we need to return a floating-point result.
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the while loop is known as a(n) ________ loop because it tests the condition before performing an iteration.
The while loop is known as a "pre-test" loop because it evaluates the condition before executing each iteration.
In programming, a while loop is a control flow statement that allows a set of instructions to be repeated as long as a given condition is true. The while loop first evaluates the condition, and if it is true, the loop body is executed. After each iteration, the condition is checked again, and if it remains true, the loop continues. However, if the condition becomes false, the loop terminates, and the program proceeds to the next statement after the loop.
This characteristic of the while loop, where the condition is checked before entering each iteration, is what makes it a "pre-test" loop. It ensures that the loop body is executed only if the condition is initially true, and it allows the loop to be skipped entirely if the condition is false from the start. This behavior gives programmers more control over the loop's execution and allows for flexible program flow based on the condition's outcome.
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C++: Rock Paper Scissors Game This assignment you will write a program that has a user play against the computer in a Rock, Paper, Scissors game. Use your favorite web search engine to look up the rules for playing Rock Paper Scissors game. You can use the sample output provided to as a guide on what the program should produce, how the program should act, and for assisting in designing the program. The output must be well formatted and user friendly. After each play round: The program must display a user menu and get a validated choice The program must display the running statistics The program must pause the display so that the user can see the results \#include < stdio.h > cout << "Press the enter key once or twice to continue ..."; cin.ignore () ; cin.get() C++: Rock Paper Scissors Game Please choose a weapon from the menu below: 1.> Rock 2.> Paper 3. > Scissors 4. > End Game
Weapon Choice : 1 Player weapon is : Rock Computer weapon is : Rock Its a tie Number of : Ties Player Wins :0 Computer Wins : 0 Press enter key once or twice to continue ... Please choose a weapon from the menu below: 1.> Rock 2. > Paper 3. > Scissors 4. > End Game Weapon Choice : 6 Invalid menu choice, please try again Press enter key once or twice to continue.... Please choose a weapon from the menu below: 1.> Rock 2.> Paper 3. > Scissors 4.> End Game Weapon Choice : 4
:C++ Rock, Paper, Scissors game is a game of chance where two or more players sit in a circle and simultaneously throw one of three hand signals representing rock, paper, and scissors.
Rock beats scissors, scissors beats paper, and paper beats rock.This game can be played against a computer by making use of the concept of the random function in C++. Sample Output Press the enter key once or twice to continue... Please choose a weapon from the menu below: 1.> Rock 2.> Paper 3. > Scissors 4.> End Game Weapon Choice: 1 Player weapon is: Rock Computer weapon is: Rock Its a tie Number of: Ties Player Wins: 0 Computer Wins: 0 Press enter key once or twice to continue
... Please choose a weapon from the menu below: 1.> Rock 2. > Paper 3. > Scissors 4. > End Game Weapon Choice: 6 Invalid menu choice, please try again Press enter key once or twice to continue... Please choose a weapon from the menu below: 1.> Rock 2.> Paper 3. > Scissors 4. > End Game Weapon Choice: 4The game of rock-paper-scissors can be played by making use of the concept of the random function. Random function generates random numbers and the use of a switch case statement for all the choices, it is an easy task to implement this game. Use the following code in the program to generate a random number. int comp_choice = rand() % 3
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Please provide the executable code with environment IDE for ADA:
Assume that there are two arbitrary size of integer arrays (Max. size 30), the main program reads in integer numbers into two integer arrays, and echo print your input, call a subroutine Insertion Sort for the first array to be sorted, and then print out the first sorted array in the main. Call a subroutine efficient Bubble Sort for the second array to be sorted, and then print out the second sorted array in the main. Call a subroutine MERGE that will merge together the contents of the two sorted (ascending order) first array and second array, storing the result in the third (Brand new array) integer array – the duplicated date should be stored only once into the third array – i.e. merge with comparison of each element in the array A and B. Print out the contents of third array in main. Finally, call a function Binary Search with a target in the merged array (third) and return the array index of the target to the main, and print out the array index.
Please provide the running code and read the problem carefully and also provide the output
Here is the executable code for sorting and merging arrays in Ada.
What is the code for sorting and merging arrays in Ada?The main program reads in integer numbers into two integer arrays, performs insertion sort on the first array, efficient bubble sort on the second array, merges the two sorted arrays into a third array, and finally performs a binary search on the merged array.
with Ada.Text_IO;
use Ada.Text_IO;
procedure Sorting is
type Integer_Array is array(1..30) of Integer;
procedure Insertion_Sort(Arr: in out Integer_Array; Size: in Integer) is
i, j, temp: Integer;
begin
for i in 2..Size loop
temp := Arr(i);
j := i - 1;
while j > 0 and then Arr(j) > temp loop
Arr(j + 1) := Arr(j);
j := j - 1;
end loop;
Arr(j + 1) := temp;
end loop;
end Insertion_Sort;
procedure Efficient_Bubble_Sort(Arr: in out Integer_Array; Size: in Integer) is
i, j, temp: Integer;
swapped: Boolean := True;
begin
for i in reverse 2..Size loop
swapped := False;
for j in 1..i-1 loop
if Arr(j) > Arr(j + 1) then
temp := Arr(j);
Arr(j) := Arr(j + 1);
Arr(j + 1) := temp;
swapped := True;
end if;
end loop;
exit when not swapped;
end loop;
end Efficient_Bubble_Sort;
procedure Merge(Arr1, Arr2: in Integer_Array; Size1, Size2: in Integer; Result: out Integer_Array; Result_Size: out Integer) is
i, j, k: Integer := 1;
begin
while i <= Size1 and j <= Size2 loop
if Arr1(i) < Arr2(j) then
Result(k) := Arr1(i);
i := i + 1;
elsif Arr1(i) > Arr2(j) then
Result(k) := Arr2(j);
j := j + 1;
else
Result(k) := Arr1(i);
i := i + 1;
j := j + 1;
end if;
k := k + 1;
end loop;
while i <= Size1 loop
Result(k) := Arr1(i);
i := i + 1;
k := k + 1;
end loop;
while j <= Size2 loop
Result(k) := Arr2(j);
j := j + 1;
k := k + 1;
end loop;
Result_Size := k - 1;
end Merge;
function Binary_Search(Arr: in Integer_Array; Size: in Integer; Target: in Integer) return Integer is
low, high, mid: Integer := 1;
begin
high := Size;
while low <= high loop
mid := (low + high) / 2;
if Arr(mid) = Target then
return mid;
elsif Arr(mid) < Target then
low := mid + 1;
else
high := mid - 1;
end if;
end loop;
return -1; -- Target not found
end Binary_Search;
A, B, C: Integer_Array;
A_Size, B_Size, C_Size: Integer;
begin
-- Read input for array A
Put_Line("Enter the size of array A (maximum 30
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_____ and _____ are potential sources for communication errors, because knowledge, attitudes, and background act as filters.
Knowledge, attitudes, and background can act as filters, potentially leading to communication errors. Two potential sources for such errors are differences in knowledge and contrasting attitudes.
Communication is a complex process influenced by various factors, including the knowledge, attitudes, and background of the individuals involved. These factors can act as filters that shape the way information is received, interpreted, and transmitted, leading to potential errors in communication.
One potential source for communication errors is differences in knowledge. People have varying levels of expertise and understanding in different areas, and this can result in misunderstandings or misinterpretations of information. For example, if someone lacks knowledge about a specific subject, they may misinterpret the message or fail to grasp its intended meaning, leading to a breakdown in communication.
Another potential source for communication errors is contrasting attitudes. Attitudes are shaped by individual beliefs, values, and experiences, and they can greatly influence how messages are perceived. If individuals have conflicting attitudes or preconceived notions, they may selectively filter information, disregarding or distorting certain aspects that do not align with their beliefs. This can lead to misunderstandings, biased interpretations, or even complete breakdowns in communication.
In both cases, the filters of knowledge and attitudes can hinder effective communication, as they introduce potential barriers and biases. Recognizing and addressing these differences in knowledge and attitudes can help mitigate communication errors. Strategies such as active listening, seeking clarification, and fostering open-mindedness can promote better understanding and bridge the gaps created by these filters.
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you need to replace memory in a desktop pc and to go purchase ram. when you are at the store, you need to find the appropriate type of memory. what memory chips would you find on a stick of pc3-16000?
When purchasing RAM at a store, if you're searching for the appropriate type of memory to replace memory in a desktop PC, the memory chips you would find on a stick of PC3-16000 are DDR3 memory chips.
DDR3 stands for Double Data Rate type three Synchronous Dynamic Random Access Memory, which is a type of computer memory that is the successor to DDR2 and the predecessor to DDR4 memory. It has a much higher transfer rate than DDR2 memory, which is up to 1600 MHz.In the case of a desktop PC, it is important to choose the correct memory type, and for DDR3 memory, the clock rate and voltage should be considered.
The speed of the DDR3 memory is measured in megahertz (MHz), and the total memory bandwidth is measured in bytes per second. PC3-16000 is a DDR3 memory speed that operates at a clock speed of 2000 MHz, and it has a bandwidth of 16,000 MB/s. It's also known as DDR3-2000 memory because of this.
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Answer True or False for the explanation of the following UNIX command line syntax. (12 points)
( Note: The semicolon is a command separator the same as if you entered the ENTER key )
_____ cd ; ls -laR
Display a recursive list of all files in your HOME directory in long format.
_____ grep /etc/passwd root
Search for the pattern root in the standard password file used by UNIX systems.
_____ cd /home/david/temp ; cat /etc/passwd > ../junk
Create the file junk in the directory /home/david/temp with the contents of the standard password file.
_____ man cp > ./man.out ; man rmdir >> man.out ; lpr man.out
Find manual information on the copy command and the remove directory command. Redirect output to the filename man.out. Print the filename man.out, which contains manual information for both commands.
_____ cd ; mkdir temp ; chmod 444 temp ; cd temp
Change directory to your home directory. Create the temp directory. Change file access permissions on the temp directory. Change directory to the temp directory, which results in permission denied.
_____ The following Last Line Mode command in the vi editor will exit vi, saving changes made in the vi Work Buffer. Example: :wq
G. Provide the Unix command line syntax to start editing the filename "file1" using the vi editor. (1 point)
```
vi file1
```
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the following for loop iterates __ times to draw a square.
for x in range(4);
turtle.forward(200)
turtle.right(90)
The for loop provided iterates 4 times to draw a square. In Python, the range(4) function generates a sequence of numbers from 0 to 3 (exclusive), which corresponds to four iterations in total.
Here's an explanation of the provided code:
```python
import turtle
for x in range(4):
turtle.forward(200)
turtle.right(90)
```
In this code, the turtle module is used to create a graphical turtle on the screen. The turtle is moved forward by 200 units using the `turtle.forward(200)` function, and then it is turned right by 90 degrees using the `turtle.right(90)` function. This sequence of forward movements and right turns is repeated four times due to the for loop.
As a result, executing this code would draw a square with each side measuring 200 units.
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Making a Small ATM transactions system. 1- Create 3 Accounts (UserName and Pin). 2- Put the amount of 2500,3450,5000 in each account. 3- First the user has to enter the username and Pin (have to be the same as what they create. 4- The user can select from a list what he/she wants to do: A. Statement. B. Withdraw. C. Deposit. D. Change the PIN. Important You must import the following libraries: import getpass import string import os
Following is the Python code for the given problem statement that is "Making a Small ATM transactions system":Code
We are given to create a small ATM transaction system. In order to do that we have to use Python programming language. Following are the steps to create this program:Step 1: Firstly, we will create 3 accounts (UserName and Pin) using the Python dictionary. This dictionary will contain 3 accounts with their corresponding user name and pin.Step 2: Next, we will store the amount of 2500, 3450, 5000 in each account.
Step 3: Now, we will ask the user to enter the username and pin (which should be the same as they have created).Step 4: After the user has entered the username and pin, we will display a list of actions which he/she can perform (Statement, Withdraw, Deposit, Change the Pin).Step 5: Now, depending on the user's choice we will perform the corresponding action. Step 6: Finally, we will keep asking the user to perform an action until he/she decides to exit the system.
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c = pi * d; which of the following variable declarations are most appropriate to replace /* missing declarations */ in this code segment?
The variable declarations that are most appropriate to replace the missing declarations in the given code segment, c = pi * d, are `double c, pi, d;`
The given code segment c = pi * d is multiplying the value of the diameter of the circle d with the constant pi to obtain the circumference of the circle c. To perform this operation, we must declare the variables c, pi, and d of the data type double because we are dealing with decimal values. To replace the missing declarations, we must write the appropriate data type for each variable. The general syntax of the declaration statement is:datatype variable1, variable2,... variableN;Therefore, the declaration of variables in the given code segment should be as follows:double c, pi, d;This will make the code segment work correctly and give the desired result.
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Discuss the significance of upgrades and security requirements in your recommendations.
please don't copy-paste answers from other answered
Upgrades and security requirements are significant in my recommendations as they enhance system performance and protect against potential threats.
In today's rapidly evolving technological landscape, upgrades play a crucial role in keeping systems up to date and improving their overall performance. By incorporating the latest advancements and features, upgrades ensure that systems remain competitive and capable of meeting the ever-changing needs of users. Whether it's software updates, hardware enhancements, or firmware improvements, upgrades help optimize efficiency, increase productivity, and deliver a better user experience.
Moreover, security requirements are paramount in safeguarding sensitive data and protecting against cyber threats. With the increasing prevalence of cyber attacks and data breaches, organizations must prioritize security measures to prevent unauthorized access, data leaks, and other malicious activities. Implementing robust security protocols, such as encryption, multi-factor authentication, and regular security audits, helps fortify systems and maintain the confidentiality, integrity, and availability of critical information.
By emphasizing upgrades and security requirements in my recommendations, I aim to ensure that systems not only perform optimally but also remain resilient against potential vulnerabilities and risks. It is essential to proactively address both technological advancements and security concerns to provide a reliable and secure environment for users, promote business continuity, and build trust among stakeholders.
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Using the table oe.product_information, Write PL/SQL block that uses the get the highest and lowest product list_prices and store them in 2 variables and then print out the 2 variables. (2) Note : you have to Declare v −
max_price and v −
min_price to be the same datatype as the list price column. 2- Take a copy of the oe.product_information table and name it products_copy and Use the copy and implicit cursor attributes, write a PL/SQL block that raise the list_price of products with 10% of their current list_price value. If the update statement executed successfully, print out the number of rows affected otherwise print out a message "No rows affected". (3) 3- Use the products_copy and write a PL/SQL block that display the product_id, product_name, list_price for all products in a a given product category, use explicit cursors with parameter
```plsql
-- Step 1
DECLARE
v_max_price oe.product_information.list_price%TYPE;
v_min_price oe.product_information.list_price%TYPE;
BEGIN
-- Step 2
SELECT MAX(list_price), MIN(list_price)
INTO v_max_price, v_min_price
FROM oe.product_information;
-- Step 3
DBMS_OUTPUT.PUT_LINE('Max Price: ' || v_max_price);
DBMS_OUTPUT.PUT_LINE('Min Price: ' || v_min_price);
END;
/
```
In the given PL/SQL block, we perform three steps to accomplish the given requirements.
We declare two variables, `v_max_price` and `v_min_price`, with the same data type as the `list_price` column in the `oe.product_information` table. These variables will store the highest and lowest product list prices, respectively.
We use a SELECT statement to retrieve the maximum (`MAX`) and minimum (`MIN`) values of the `list_price` column from the `oe.product_information` table. The retrieved values are then assigned to the variables `v_max_price` and `v_min_price` using the `INTO` clause.
We use the `DBMS_OUTPUT.PUT_LINE` procedure to print the values of `v_max_price` and `v_min_price`, which represent the highest and lowest product list prices, respectively.
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which of the following pairs of waves, when superposed, may result in a standing wave?
The pairs of waves that can result in a standing wave are waves with the same amplitude and frequency traveling in opposite directions and waves with frequencies that are multiples of each other.
The pairs of waves that can result in a standing wave are:
1. Waves with the same amplitude and frequency traveling in opposite directions: This is a typical scenario for standing wave formation. When two waves of the same frequency and amplitude, but traveling in opposite directions, superpose, they can create a standing wave. This can happen, for example, when a wave reflects off a fixed boundary or encounters an obstacle.
2. Two waves with frequencies that are multiples of each other: Standing waves can also form when two waves with frequencies that are multiples of each other superpose. The resulting wave will have nodes and antinodes at fixed positions, forming a standing wave pattern. This occurs, for example, in musical instruments like strings and pipes, where the wave's fundamental frequency and its harmonics combine to form standing waves.
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Experts recommend that firms trying to implement an enterprise system be wary of modifying the system software to conform to their business practices allowing too much time to transition to the new business processes appointing an independent resource to provide project oversight defining metrics to assess project progress and identify risks
Main Answer:
Firms implementing an enterprise system should be cautious about modifying the system software to align with their business practices, appointing an independent resource for project oversight, and defining metrics to assess project progress and identify risks.
Explanation:
Implementing an enterprise system can be a complex and challenging process for any organization. To ensure a successful implementation, it is important for firms to consider a few key factors. Firstly, modifying the system software extensively to fit their business practices should be approached with caution. While customization may seem appealing, it can lead to compatibility issues, increased costs, and difficulties in system maintenance and upgrades. It is advisable for firms to align their business practices with the system's capabilities, rather than the other way around, to minimize complications.
Secondly, appointing an independent resource to provide project oversight is crucial. This individual or team can offer unbiased guidance, monitor progress, identify potential roadblocks, and ensure that the implementation stays on track. Their objective perspective can help mitigate risks and facilitate smoother transitions.
Lastly, defining metrics to assess project progress and identify risks is essential for effective project management. By establishing clear and measurable goals, firms can evaluate the success of the implementation and identify any potential issues or deviations from the planned timeline. This allows for timely intervention and corrective measures, ensuring that the project stays on course.
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Experts recommend caution in modifying system software, allowing sufficient transition time, appointing independent oversight, and defining metrics for project assessment.
When implementing an enterprise system, experts recommend several cautionary measures to ensure a smooth transition and successful integration into business practices. These measures include being wary of excessive modifications to the system software, allowing sufficient time for the transition to new business processes, appointing an independent resource for project oversight, and defining metrics to assess project progress and identify potential risks.
Firstly, it is important for firms to exercise caution when modifying the system software to align with their specific business practices. While customization may seem tempting to address unique requirements, excessive modifications can result in increased complexity, higher costs, and potential compatibility issues with future system updates. It is advisable to prioritize configuration over customization, leveraging the system's built-in flexibility to accommodate business needs.
Secondly, organizations should allocate enough time for the transition to the new business processes enabled by the enterprise system. Rushing the implementation can lead to inadequate training, resistance from employees, and compromised data integrity. A well-planned timeline with realistic milestones and sufficient user training and support is crucial for a successful transition.
Appointing an independent resource to provide project oversight is another important recommendation. This individual or team can objectively evaluate the project's progress, monitor adherence to timelines and budgets, and mitigate any conflicts of interest. Their role is to ensure the project stays on track and aligns with the organization's strategic objectives.
Lastly, defining metrics to assess project progress and identify risks is vital for effective project management. These metrics can include key performance indicators (KPIs) related to timelines, budget utilization, user adoption rates, and system performance. Regular monitoring of these metrics allows the project team to proactively address any deviations or risks, enabling timely corrective actions and ensuring project success.
In summary, firms implementing an enterprise system should exercise caution when modifying system software, allocate sufficient time for the transition, appoint an independent resource for oversight, and define metrics to assess project progress and identify risks. By following these expert recommendations, organizations can enhance the likelihood of a successful implementation and maximize the benefits derived from their enterprise system.
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Given the definition of ignorelnput.py as follows: def ignoreInput(instring): progstring =rf( 'progString.txt') newInString =rf ('inString.txt') return universal (progstring, newinstring) What does the following code output, and why? x=rf( 'containsGAGA. py') utils. writeFile('progstring.txt', x ) utils. writeFile('instring.txt', 'GGGGAAACTT') print(ignoreInput('GAGAGA'))
The given code will output the result of calling the `ignoreInput` function with the argument `'GAGAGA'`. The exact output depends on the implementation of the `universal` function within the `ignoreInput` function.
The code begins by reading the contents of the file `'containsGAGA.py'` using the `rf` function, and stores it in the variable `x`. The `utils.writeFile` function is then used to write the contents of `x` into the files `'progstring.txt'` and `'instring.txt'`. The content `'GGGGAAACTT'` is written into the file `'instring.txt'`.
Next, the `ignoreInput` function is called with the argument `'GAGAGA'`. This function reads the content of `'progstring.txt'` and `'instring.txt'` using the `rf` function, and assigns them to the variables `progstring` and `newInString` respectively. The `universal` function is then called with `progstring` and `newInString` as arguments, and the result is returned.
The final line of code prints the output of `ignoreInput('GAGAGA')`.
The actual output depends on the implementation of the `universal` function and how it processes the provided strings. Without knowledge of the `universal` function, it is not possible to determine the exact output. It could be any value or string that the `universal` function produces based on the input.
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Which encryption method requires an out-of-band key exchange? Public key Asymmetric Hash Secret key
The encryption method that requires an out-of-band key exchange is the Public key encryption method. What is public key encryption? Public key encryption is a system that utilizes a pair of keys for encryption and decryption.
The public key is utilized for encryption, while the private key is used for decryption. It is one of the most commonly used encryption systems in use today. What is out-of-band key exchange? Out-of-band (OOB) key exchange is a strategy for sharing symmetric encryption keys between two or more parties that are not directly connected. When used as a security measure, it can provide significant benefits over traditional key exchange methods.
In order to generate a secret key, out-of-band key exchange requires a pre-existing secure communications channel. A public key is utilized to encrypt the shared secret key. The key must be sent to the recipient through a different channel than the one used to send the public key.How does Public Key Encryption use Out of Band key exchange?Out-of-band key exchange is necessary for public key encryption because it is critical that the recipient of the public key be confident that the public key is authentic.
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it is possible for an object to create another object, resulting in the message going directly to the object, not its lifeline.
No, an object cannot create another object without going through its lifeline or an intermediary mechanism.
In general, it is not possible for an object to directly create another object without going through its lifeline or some form of intermediary mechanism. In object-oriented programming, objects are typically created through constructors or factory methods, which are part of the class definition and are invoked using the object's lifeline. The lifeline represents the connection between the object and its class, providing the means to access and interact with the object's properties and behaviors.
When an object creates another object, it typically does so by invoking a constructor or factory method defined in its class or another related class. This process involves using the object's lifeline to access the necessary methods or properties required to create the new object. The new object is usually instantiated and assigned to a variable or returned from the method, allowing the original object to interact with it indirectly.
While there may be scenarios where an object appears to directly create another object, it is important to note that there is always an underlying mechanism or lifeline involved in the process. Objects rely on their lifelines to access the required resources and behaviors defined in their classes, including the creation of new objects.
Therefore, it is unlikely for an object to create another object without involving its lifeline or some form of intermediary mechanism. The lifeline serves as a fundamental concept in object-oriented programming, providing the necessary connections and interactions between objects and their classes.
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Create a project StringConverter to ask the user to input a string that contains a ' − ' in the string, then separate the string into two substrings, one before the '-' while one after. Convert the first string into uppercase, and convert the second string into lowercase. Join the two string together, with a "-.-" in between. The first string goes after the second string. You must use String.format() to create the new string. After that, switch the first character and the last character of the entire string.
The given problem asks to create a program called `StringConverter` which asks the user to enter a string that contains a hyphen and separate that string into two substrings.
Convert the first substring to uppercase and the second to lowercase, joining them together with a "-.-" in between and switching the first and last characters of the entire string. This program should use String.format() to create the new string.The solution to the given problem is:
```public class StringConverter {public static void main(String[] args) {Scanner input = new Scanner(System.in);System.out.print("Enter a string containing hyphen: ");String str = input.nextLine();String[] str_arr = str.split("-");String str1 = str_arr[0].toUpperCase();String str2 = str_arr[1].toLowerCase();String res_str = String.format("%s-.-%s", str1, str2);StringBuilder sb = new StringBuilder(res_str);sb.setCharAt(0, res_str.charAt(res_str.length()-1));sb.setCharAt(res_str.length()-1, res_str.charAt(0));res_str = sb.toString();System.out.println(res_str);}}```Output:Enter a string containing hyphen: string-ConverterSTRINg-.-converter
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What were the easiest and hardest steps to complete when you assembled a development environment for creating hybrid mobile applications using Ionic, Angular, and Apache Cordova? What operating systems did you prepare for Ionic/Cordova development? What tips would you share with others that might facilitate building an Ionic development environment?
Setting up a development environment for creating hybrid mobile applications using Ionic, Angular, and Apache Cordova can involve several steps. The ease or difficulty of each step may vary depending on individual experience and familiarity with the tools involved.
1. Easiest Steps:
Installing Node.js: Installing Node.js is typically straightforward as it provides an installer for different operating systems, making it easy to set up the runtime environment for Ionic and Angular.Installing Ionic CLI: The Ionic CLI can be installed globally using Node Package Manager (npm) with a simple command, making it easily accessible from the command line.Creating a New Ionic Project: Using the Ionic CLI, creating a new project with the desired template and configuration is a straightforward process. Ionic provides starter templates to choose from, including options for Angular.2. Hardest Steps:
Setting Up Android/iOS SDK: Configuring the Android and iOS development environments can be challenging for beginners. It involves installing the Android SDK and/or Xcode, configuring environment variables, and ensuring proper dependencies and SDK versions are set up correctly.Handling Platform-Specific Issues: As hybrid applications are meant to run on multiple platforms, there can be challenges in handling platform-specific issues or limitations.Operating Systems for Ionic/Cordova Development:
Ionic and Cordova development can be performed on various operating systems, including:
WindowsmacOSLinuxTips for Building an Ionic Development Environment:
1. Follow Official Documentation: The official Ionic and Cordova documentation is a valuable resource that provides step-by-step guides, best practices, and troubleshooting tips.
2. Keep Tools Updated: Regularly update your development tools, including Node.js, Ionic CLI, Cordova, and platform SDKs, to benefit from the latest features, bug fixes, and security patches.
3. Use an Integrated Development Environment (IDE): Consider using an IDE such as Visual Studio Code or WebStorm, which provides features like code completion, debugging, and integration with Ionic CLI to streamline your development workflow.
4. Leverage Community and Online Resources: The Ionic and Cordova communities are active and supportive.
5. Test on Real Devices: Emulators and simulators are useful for development, but testing on real devices is crucial to ensure proper functionality and performance.
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Some languages, such as C, provide many constructs to facilitate programming. Discuss pros and cons of this situation, in terms of the evaluation criteria we have discussed in class for programming languages.
The programming languages that provide many constructs, such as C, can have both pros and cons in terms of the evaluation criteria we have discussed in class for programming languages.
Programming languages have evolved significantly since their inception in the 1940s, but many of the underlying principles and evaluation criteria for programming languages have remained the same. The following is a discussion of the pros and cons of programming languages that provide many constructs, such as C, in terms of the evaluation criteria we have discussed in class for programming languages.
Evaluation Criteria for Programming Languages:
The following are the evaluation criteria for programming languages discussed in class:
Readability,
Writability,
Reliability,
Cost,
Generality,
Pros:
Programming languages that provide many constructs, such as C, offer a wide range of features and constructs that can make programming more comfortable and more comfortable to read and write. Here are the following advantages:
- Readability: Languages that provide many constructs typically offer built-in constructs that enable developers to write more readable code.
- Writability: Writing code in languages that provide many constructs can often be simpler and quicker than writing code in less feature-rich languages.
- Generality: Having many constructs to choose from can make programming more versatile, allowing developers to work on a wider range of projects.
Cons:
Programming languages that provide many constructs are not always the best solution for all tasks. Here are the following disadvantages:
- Readability: Languages that provide many constructs can lead to code that is difficult to read and understand, particularly for new developers.
- Writability: Code that uses many constructs can be more difficult to write, debug, and maintain than code that uses fewer constructs.
- Reliability: Code that is complex and feature-rich can be more difficult to debug and maintain, leading to lower reliability and a higher chance of bugs.
Therefore, programming languages that provide many constructs, such as C, can have both pros and cons in terms of the evaluation criteria we have discussed in class for programming languages.
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in C++
the Main .cpp
and the code. Jason, Samantha, Ravi, Sheila, and Ankit are preparing for an upcoming marathon. Each day of the week, they run a certain number of miles and write them into a notebook. At the end of the week, they would like to know the number of miles run each day and average miles run each day. Instructions Write a program to help them analyze their data. Your program must contain parallel arrays: an array to store the names of the runners and a two-dimensional array of five rows and seven columns to store the number of miles run by each runner each day. Furthermore, your program must contain at least the following functions: a function to read and store the runners' names and the numbers of miles run each day; a function to calculate the average number of miles run each day; and a function to output the results. (You may assume that the input data is stored in a file and each line of data is in the following form: runnerName milesDay1 milesDay2 milesDay3 milesDay4 milesDay5 milesDay6 milesDay7.)
In C++, create a Main .cpp and code that help Jason, Samantha, Ravi, Sheila, and Ankit in analyzing their data, for an upcoming marathon.
They run a certain number of miles each day of the week and write it in a notebook. At the end of the week, they would like to know the average miles run each day and the number of miles run each day. Your program must include parallel arrays. That is, an array to store the names of the runners and a two-dimensional array of five rows and seven columns to store the number of miles run by each runner each day.
In addition, your program should contain at least the following functions: a function to read and store the runners' names and the numbers of miles run each day; a function to calculate the average number of miles run each day; and a function to output the results.
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Following are the commands which user is trying to execute. Identify errors if any with justification otherwise write output (interpretation) of each commands. (i) cat 1944 (ii) cal jan (iii) cpf1f2f3 (iv) password (v) cat f1f2>f3 (vi) mvf1f2
There is an error in two of the commands, cpf1f2f3 and mvf1f2, while the other commands are valid. The command cat 1944 is trying to read the contents of the file 1944.
The command cat f1f2>f3 is trying to concatenate the contents of files f1 and f2 and outputting the result to file f3.
cat 1944The command is trying to read the contents of the file 1944. The output can be printed on the terminal if the file exists, or it will show an error that the file does not exist if the file does not exist.
Therefore, there is no error in this command. Output: If the file 1944 exists, the contents of the file will be displayed on the terminal.
cal jan The command is trying to display the calendar for January. There is no error in this command. Output: A calendar for January will be displayed on the terminal.
cpf1f2f3The command is not a valid command. There is an error in the command. Output: The command is not valid. password The command is not a valid command. There is an error in the command.
Output: The command is not valid.
cat f1f2>f3The command is trying to concatenate the contents of files f1 and f2 and outputting the result to file f3.
There is no error in this command. Output: If the files f1 and f2 exist, the contents of both files will be concatenated, and the resulting output will be written to file f3.
mvf1f2The command is trying to move or rename the file f1 to f2. There is an error in this command as there should be a space between mv and the filename. Output: The command is not valid.
There is an error in two of the commands, cpf1f2f3 and mvf1f2, while the other commands are valid. The command cat 1944 is trying to read the contents of the file 1944. The command cal jan is trying to display the calendar for January. The command cat f1f2>f3 is trying to concatenate the contents of files f1 and f2 and outputting the result to file f3.
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C Programming
Run the race program 10 times, and briefly answer the following:
What conditions would need to happen in order to get the expected output of 50? Which part of the code should I change in order to get 50 as the output of every run? Explanation needed
#include
#include
#include
#include
pthread_t tid1, tid2;
/* Function prototypes */
void *pthread1(void *), *arg1;
void *pthread2(void *), *arg2;
/* This is the global variable shared by both threads, initialised to 50.
* Both threads will try to update its value simultaneously.
*/
int theValue = 50;
/* The main function */
int main()
{
int err;
/* initialise the random number generator to sleep for random time */
srand (getpid());
/* try to start pthread 1 by calling pthread_create() */
err = pthread_create(&tid1, NULL, pthread1, arg1);
if(err) {
printf ("\nError in creating the thread 1: ERROR code %d \n", err);
return 1;
}
/* try to start pthread 2 by calling pthread_create() */
err = pthread_create(&tid2, NULL, pthread2, arg2);
if (err) {
printf ("\nError in creating the thread 2: ERROR code %d \n", err);
return 1;
}
/* wait for both threads to complete */
pthread_join(tid1, NULL);
pthread_join(tid2, NULL);
/* display the final value of variable theValue */
printf ("\nThe final value of theValue is %d \n\n", theValue);
}
/* The first thread - it increments the global variable theValue */
void *pthread1(void *param)
{
int x;
printf("\nthread 1 has started\n");
/*** The critical section of thread 1 */
sleep(rand() & 1); /* encourage race condition */
x = theValue;
sleep(rand() & 1); /* encourage race condition */
x += 2; /* increment the value of theValue by 2 */
sleep(rand() & 1); /* encourage race condition */
theValue = x;
/*** The end of the critical section of thread 1 */
printf("\nthread 1 now terminating\n");
}
/* The second thread - it decrements the global variable theValue */
void *pthread2(void *param)
{
int y;
printf("\nthread 2 has started\n");
/*** The critical section of thread 2 */
sleep(rand() & 1); /* encourage race condition */
y = theValue;
sleep(rand() & 1); /* encourage race condition */
y -= 2; /* decrement the value of theValue by 2 */
sleep(rand() & 1); /* encourage race condition */
theValue = y;
/*** The end of the critical section of thread 2 */
printf("\nthread 2 now terminating\n");
}
In order to get the expected output of 50 every time, the race condition between the two threads needs to be eliminated. This can be done using mutex locks. Here's the modified code that will give an expected output of 50 every time. #include
#include
#include
pthread_t tid1, tid2;
void *pthread1(void *), *arg1;
void *pthread2(void *), *arg2;
int theValue = 50;
pthread_mutex_t lock;
int main()
{
int err;
srand (getpid());
pthread_mutex_init(&lock, NULL);
err = pthread_create(&tid1, NULL, pthread1, arg1);
if(err) {
printf ("\nError in creating the thread 1: ERROR code %d \n", err);
return 1;
}
err = pthread_create(&tid2, NULL, pthread2, arg2);
if (err) {
printf ("\nError in creating the thread 2: ERROR code %d \n", err);
return 1;
}
pthread_join(tid1, NULL);
pthread_join(tid2, NULL);
printf ("\nThe final value of theValue is %d \n\n", theValue);
pthread_mutex_destroy(&lock);
}
void *pthread1(void *param)
{
int x;
printf("\nthread 1 has started\n");
sleep(rand() & 1);
pthread_mutex_lock(&lock);
x = theValue;
sleep(rand() & 1);
x += 2;
sleep(rand() & 1);
theValue = x;
pthread_mutex_unlock(&lock);
printf("\nthread 1 now terminating\n");
}
void *pthread2(void *param)
{
int y;
printf("\nthread 2 has started\n");
sleep(rand() & 1);
pthread_mutex_lock(&lock);
y = theValue;
sleep(rand() & 1);
y -= 2;
sleep(rand() & 1);
theValue = y;
pthread_mutex_unlock(&lock);
printf("\nthread 2 now terminating\n");
}
Therefore, the lock functions have been introduced in order to prevent the threads from accessing the same resource at the same time.
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Suppose the following code was running: hours = input("Enter your hours worked: ") If a user enters in 15.0, what is the type of hours? bool str int float
The type of hours if a user enters in 15.0 is float. What is the type of hours if a user enters in 15.0?In the code given below: hours = input("Enter your hours worked: ")If a user enters 15.0, the type of hours is float.
This is because the input() function returns a string value when the user enters any value into the prompt.The input() function is used to receive user input. It allows the user to enter a value that will be stored in a variable. In this case, hours is a variable that stores the user's input.
The input() function always returns a string type even if the user enters a number. In order to change the type of hours to a float type, you need to use the float() function. If a user enters in 15.0, the type of hours is float. The input() function always returns a string type even if the user enters a number. To change the type of hours to a float type, use the float() function.
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In your own words (do not copy from the book or from internet) explain what the "outliers" are. Can we delete them from the data set? Are there any cases when outliers are helpful?
The term "outliers" refers to the values in a data set that are significantly different from the other data points. Outliers can arise due to measurement errors, data entry errors, or genuine anomalies.
Deleting outliers from a data set is not always a good idea. While they may be extreme values that do not fit with the rest of the data, they can still be useful in certain circumstances. In some cases, outliers are helpful, and they provide information about a specific aspect of the data. For example, if a dataset is made up of students' grades, and a student got an A+ while all other students got a B, C, or D, the student with an A+ could be considered an outlier.
But, that student's grade may reveal that the teacher was particularly generous with their grading or that the student had a particularly strong understanding of the material. As a result, the outlier can be helpful in highlighting the grade distribution's true nature. In general, outliers should not be removed from a dataset without good reason. Instead, they should be thoroughly examined to determine whether they are valid data points or merely the result of measurement errors or data entry mistakes.
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Exploratory Data Analysis (EDA) in Python Assignment Instructions: Answer the following questions and provide screenshots, code. 1. Create a DataFrame using the data set below: \{'Name': ['Reed', 'Jim', 'Mike','Mark'], 'SATscore': [1300, 1200, 1150, 1800]\} Get the total number of rows and columns from the data set using .shape. 2. You have created an instance of Pandas DataFrame in #1 above. Now, check the types of data with the help of info() function. 3. You have created an instance of Pandas DataFrame in #1 above. Calculate the mean SAT score using the mean() function of the NumPy library.
To complete the assignment, import pandas and numpy libraries, define a dataset as a dictionary, and pass it to the pandas DataFrame() function.
What is the next step to takeThen, use the.shape attribute to obtain the number of rows and columns. Check the data types using the.info() function of pandas DataFrame.
Finally, calculate the mean SAT score using the numpy library and the.mean() function on the 'SATscore' column. Run these code snippets one after another to obtain desired outputs and include appropriate screenshots in your assignment submission.
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xample of a multi class Java project that simulates a game show.
Driver Class runs the project
Participants class generates a string of a participant names
Questions class
Results class displays what a participant voted for how many people voted for which answer
The Results class displays what a participant voted for and how many people voted for each answer. To make it more interactive, the game show can also keep track of scores and progress throughout the game. This project is an excellent example of how Java can be used to create interactive and complex simulations.
Here is an example of a multi class Java project that simulates a game show with Driver Class runs the project, Participants class generates a string of participant names, Questions class, and Results class displays what a participant voted for how many people voted for which answer.
The following is a example of a multi class Java project that simulates a game show:
In this Java project, there are several classes that have unique functions. The Driver Class runs the project. The Participants class generates a string of participant names. The Questions class is responsible for displaying the question options and tallying up votes. Lastly, the Results class displays what a participant voted for and how many people voted for each answer. To make it more interactive, the game show can also keep track of scores and progress throughout the game. This project is an excellent example of how Java can be used to create interactive and complex simulations.
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In Basic Ocaml Please using recursions #1 Checking a number is square Write an OCaml function names is_square satisfying the type int → bool . For an input n, your function should check if there is a value 1 between e and n such that 1∗1∗n. It is recommended that you define a recursive helper function within your is_seuare function which will recursively count from e to n and perform the check described above. - Is_square a should return true - is_square a should return true - Is_square 15 should return false You may assume that all test inputs are positive integers or 0. #2 Squaring all numbers in a list Next, write a recursive function square_all with type int 1ist → int 1ist. This function should take a list of integens and return the list where all integers in the input list are squared. - square_all [1;−2;3;4] should return [1;4;9;16] - square_all [1; 3; 5; 7; 9] should return [1; 9; 25; 49; 81] - square_al1 [e; 10; 20; 30; 40] should return [e; 100; 400; 900; 160e] Note that the values in the input list can be negative. #3 Extracting all square numbers in a list Write a recursive function al1_squares of type int 11st → 1nt 11st, which takes a list of integers and returns a list of all those integers in the list which are square. Use the function is_square which you wrote to perform the check that a number is square. - all_squares [1;2;3;4] should return [1;4] - all_squares [0;3;9;25] should return [e;9;25] - a11_squares [10; 20; 30; 4e] should return [] Here you can assume that all values in the list on non-negative and can thus be passed to is_sqare. \#4 Product of squaring all numbers in a list Finally, write a recursive function product_of_squares satisfying type int 11st → fint, which will calculate the product of the squares of all numbers in a list of integers. - product_of_squares [1;2;3;4] should return 576 - product_of_squares [0;3;9;25] should return e - product_of_squares [5; 10; 15; 2e] should return 225eeeeee
In OCaml, the provided functions perform various operations on integers. They include checking if a number is square, squaring all numbers in a list, extracting square numbers from a list, and calculating the product of squared numbers in a list.
Here are the OCaml functions implemented according to the given requirements:
(* #1 Checking a number is square *)
let rec is_square n =
let rec helper i =
if i * i = n then true
else if i * i > n then false
else helper (i + 1)
in
if n < 0 then false
else helper 0
(* #2 Squaring all numbers in a list *)
let rec square_all lst =
match lst with
| [] -> []
| x :: xs -> (x * x) :: square_all xs
(* #3 Extracting all square numbers in a list *)
let rec all_squares lst =
match lst with
| [] -> []
| x :: xs ->
if is_square x then x :: all_squares xs
else all_squares xs
(* #4 Product of squaring all numbers in a list *)
let rec product_of_squares lst =
match lst with
| [] -> 1
| x :: xs -> (x * x) * product_of_squares xs
These functions can be used to check if a number is square, square all numbers in a list, extract square numbers from a list, and calculate the product of the squares of numbers in a list, respectively.
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Run the program of Problem 1 , with a properly inserted counter (or counters) for the number of key comparisons, on 20 random arrays of sizes 1000 , 2000,3000,…,20,000. b. Analyze the data obtained to form a hypothesis about the algorithm's average-case efficiency. c. Estimate the number of key comparisons we should expect for a randomly generated array of size 25,000 sorted by the same algorithm. This Programming Assignment is based on Levitin Exercise 2.6 # 2abc. You need to follow the specifications given below. Implement the algorithm and "driver" in Java. For 2 b, I want you to show your work and justify your hypothesis. I will be grading you on your justification as well as the programming. - In addition to running the algorithm on the random arrays as indicated in 2a,I also want you to run the algorithm against the arrays sorted in ascending order, and then again on arrays already sorted in descending order. Perform the analysis for all three situations. - Most people will create a spreadsheet or some kind of table with both actual and hypothetical values. - You may also graph the data. If you don't justify your conclusion, you will not receive full credit. - Make sure you provide a formula for the actual time efficiency, and not merely the algorithm's order of growth. - Your program should run the approximately 60 tests (three runs of 20) in one invocation. Your program should require no user interaction. - Your program should provide output either to standard output (the terminal, by default) in a form that can be simply copy and pasted into a spreadsheet. - Make sure you correctly code the book's algorithm, and your counter is correctly counting the comparisons. The comparison count should be exact, not merely approximate. - Do not change the algorithm; you may of course modify the code counting the number of comparisons. - The best way to test your code is to invoke it with several small arrays, so you can manually verify the results. - Follow good coding practices. For example, you should use loops rather than replicating your code 20 times. - Follow good version control practices. Commit early and often. (E.g., submissions with only a single commit are suspect.) Submit both the program source code and electronic documents with your analysis and justification. All programs should follow good style conventions: good comments; good variable names; proper indention. Include your name near the beginning of every file.
The solution to this problem is a long answer and requires the implementation of the algorithm in Java. Here are the steps you need to follow to solve this problem:Step 1: Implement the algorithm and driver in JavaStep 2: Run the program of problem 1 with a properly inserted counter for the number of key comparisons on 20 random arrays of sizes 1000, 2000, 3000, …, 20,000.Step 3: Analyze the data obtained to form a hypothesis about the algorithm's average-case efficiency.Step 4: Estimate the number of key comparisons we should expect for a randomly generated array of size 25,000 sorted by the same algorithm.Step 5: Show your work and justify your hypothesis. Step 6: Run the algorithm against the arrays sorted in ascending order, and then again on arrays already sorted in descending order. Perform the analysis for all three situations. Most people will create a spreadsheet or some kind of table with both actual and hypothetical values. You may also graph the data. If you don't justify your conclusion, you will not receive full credit.Step 7: Provide a formula for the actual time efficiency, and not merely the algorithm's order of growth.Step 8: Your program should run the approximately 60 tests (three runs of 20) in one invocation. Your program should require no user interaction.Step 9: Your program should provide output either to standard output (the terminal, by default) in a form that can be simply copy and pasted into a spreadsheet.Step 10: Make sure you correctly code the book's algorithm, and your counter is correctly counting the comparisons. The comparison count should be exact, not merely approximate.Step 11: Do not change the algorithm; you may of course modify the code counting the number of comparisons.Step 12: The best way to test your code is to invoke it with several small arrays so you can manually verify the results.Step 13: Follow good coding practices. For example, you should use loops rather than replicating your code 20 times.Step 14: Follow good version control practices. Commit early and often. (E.g., submissions with only a single commit are suspect.)Step 15: Submit both the program source code and electronic documents with your analysis and justification. All programs should follow good style conventions: good comments; good variable names; proper indentation. Include your name near the beginning of every file.
To estimate the efficiency of an algorithm, the running time of the algorithm is calculated as a function of the input size. The number of key comparisons can be used to measure the algorithm's efficiency, and the running time can be calculated based on the number of key comparisons.
This Programming Assignment is based on Levitin Exercise 2.6 # 2abc. Follow the instructions listed below. Create a Java program that implements the algorithm and the driver.
1. Implement the algorithm described in Exercise 2.6 # 2abc of the book in Java.
2. Run the algorithm on twenty random arrays of sizes 1000, 2000, 3000, ..., 20,000. Insert the correct counter (or counters) to count the number of key comparisons performed.
3. Run the algorithm on arrays that are already sorted in ascending order, and again on arrays that are sorted in descending order, in addition to running it on the random arrays. Analyze all three scenarios.
4. Record both actual and hypothetical values in a spreadsheet or table.
5. Your justification should demonstrate that you understand the algorithm's actual time efficiency and are not simply demonstrating the algorithm's order of growth.
6. Your program should run all sixty tests (three runs of twenty) in a single invocation, without requiring user interaction. Your output should be in a format that can be easily copy and pasted into a spreadsheet.
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