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melomori [17]
3 years ago
7

Factors to consider when selecting an operating system to install in a computer ​

Computers and Technology
1 answer:
dusya [7]3 years ago
7 0

Answer:

what do you want your computer to do, how do you want your computer to look, how fast do you want your computer to run, etc

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Write a program that takes as input a number of kilometers and prints the corresponding number of nautical miles. Use the follow
Dmitrij [34]
<h2>Answer:</h2>

import java.util.Scanner;

public class NauticalMiles{

   public static void main (String [ ] args){

      Scanner input = new Scanner(System.in);

      System.out.println("Please enter the number of kilometers");

      double km = input.nextDouble();

      double nm = 0.54 * km;

      System.out.println("The corresponding number of nautical miles is "  + nm);

    }

}

<h2>Explanation:</h2><h2></h2>

<em>1 => Pre-code analysis</em>

According to the question,

(a) <em>A nautical mile (nm) is 1 minute of an arc.</em>

=> 1 nm = 1 minute of an arc

(b)<em>There are 90 degrees, each containing 60 minutes of arc, between the North pole and the equator.</em>

=> Each of the degrees in 90 degrees has 60 minutes of arc

=> 1^{0} = 60 minutes of arc

=> 90^{0} = 90 x 60 minutes of arc

=> 90^{0} = 5400 minutes of arc

(c) <em>A kilometer (km) represents 1/10,000 of the distance between the North pole and the equator. </em>

=> A kilometer = (1 / 10000) x distance between the North pole and equator.

Remember that the distance between the North pole and the equator as shown in (b) above is 90 degrees which is equal to 5400 minutes of arc.

=> 1 km = (1 / 10000) x 5400 minutes of arc

=> 1 km = (1 / 10000) x 5400 x 1 minute of arc

As shown in (a) above, 1 minute of arc is 1 nautical mile(nm).

=> 1 km = (1 / 10000) x 5400 x 1 nm

<em>=> 1 km = 0.54 nm.</em>

=========================================================

<em>2 => The code analysis</em>

The code has been written in Java.

The following is the line-by-line explanation of the code written as comments.

// Import the scanner class to allow for user's inputs

import java.util.Scanner;

// Declare the main class to hold and run the application

public class NauticalMiles {

   // Write the main method where execution will begin

   public static void main (String [ ] args) {

      // Create an object <em>input </em>of the Scanner class  

      Scanner input = new Scanner(System.in);

     

      // Prompt the user to enter the number of kilometers

      System.out.println("Please enter the number of kilometers");

      // Store the user's input in a double variable called <em>km</em>

      double km = input.nextDouble();

      // Convert the input to nautical miles using the formula from the

      // pre-code analysis above. i.e 1km = 0.54nm.

      // Store the result in a double variable called <em>nm</em>

      double nm = 0.54 * km;

      // Print out the result (the nautical mile)

      System.out.println("The corresponding number of nautical miles is "  + nm);

    }       // End of main method

}            // End of class declaration

=========================================================

<em>3 => Sample output</em>

<em></em>

> Please enter the number of kilometers

>> <em>45</em>

> The corresponding number of nautical miles is 24.3

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To build a framework for security policies and controls, one can use the following approach: 1) document the concepts and princi
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The ticketing system at the airport is broken, and passengers have lined up to board the plane in the incorrect order. This line
wolverine [178]

Answer:

See explaination

Explanation:

The program code

import java.util.ArrayList;

public class Main

{

public static void main(String[] args)

{

ArrayList<AirlineTicket> tickets = new ArrayList<AirlineTicket>();

//This creates a randomized list of passengers

addPassengers(tickets);

for(AirlineTicket elem: tickets)

{

System.out.println(elem);

}

//This creates a TicketOrganizer object

TicketOrganizer ticketOrganizer = new TicketOrganizer(tickets);

//These are the methods of the ticketOrganizer in action

System.out.println("\nPassengers Ordered by Boarding Group:");

ticketOrganizer.printPassengersByBoardingGroup();

System.out.println("\nPassengers in line who can board together:");

ticketOrganizer.canBoardTogether();

}

//Do not touch this method! It is adding random passengers to the AirlineTicket array

public static void addPassengers(ArrayList<AirlineTicket> tickets)

{

String[] seats = {"A","B","C","D","E","F"};

for(int index = 0; index< 15; index++)

{

int random = (int)(Math.random() * 5);

AirlineTicket ticket = new AirlineTicket("Passenger " + (index+1), seats[random], ((int)(Math.random()*5)+1), ((int)(Math.random()*8)+1));

tickets.add(ticket);

}

}

}

class TicketOrganizer

{

private ArrayList<AirlineTicket> tickets ;

//constructor with parameter as an arraylist of AirlineTicket

public TicketOrganizer(ArrayList<AirlineTicket> tickets)

{

this.tickets = tickets;

}

//methhods to return the arraylist of airlines

public ArrayList<AirlineTicket> getTickets()

{ //re-organize the ticket first

ArrayList<AirlineTicket> tickets_organized = new ArrayList<AirlineTicket>();

for(int i=1; i<=5; i++)

{

for(AirlineTicket ticket: tickets)

{

if(ticket.getBoardingGroup() == i)

{

tickets_organized.add(ticket);

}

}

}

return tickets_organized;

}

//print the tickets based on boardingGroup

public void printPassengersByBoardingGroup()

{

int count = 0;

for(int i=1; i<=5; i++)

{

System.out.println("Boarding Group " + i + ":");

for(AirlineTicket ticket : tickets)

{

if(ticket.getBoardingGroup() == i)

{

System.out.println("Passenger " + ticket.getName());

}

}

}

See attachment for sample output

4 0
4 years ago
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