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denis23 [38]
2 years ago
4

LAB: Divide input integers

Computers and Technology
1 answer:
Brums [2.3K]2 years ago
7 0
Mark Brainliest please


Answer:
# The user is prompted to enter number as dividend
# The received number is assigned to userNum
userNum = int(input("Enter the number you want to divide: "))
# The user is prompted to enter number as divisor
# The divisor is assigned to x
x = int(input("Enter the number of times to divide: "))
# divideNumber function is defined to do the division
def divideNumber(userNum, x):
# counter is declared to control the loop
counter = 1
# the while-loop loop 3 times
# the division is done 3 times
while counter <= 3:
# integer division is done
# truncating the remainder part
userNum = userNum // x
# the result of the division is printed
print(userNum, end=" ")
# the counter is incremented
counter += 1
# the divideNumber function is called
# the received input is passed as parameter
# to the function
divideNumber(userNum, x)
# empty line is printed
print("\n")
Explanation:
The // operator in python works like the / operator in C. The // operator returns only the integer part of division operation. For instance 6 // 4 = 1. The fraction part is discarded
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Modify the TimeSpan class from Chapter 8 to include a compareTo method that compares time spans by their length. A time span tha
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Answer:

Check the explanation

Explanation:

Here is the modified code for

TimeSpan.java and TimeSpanClient.java.

// TimeSpan.java

//implemented Comparable interface, which has the compareTo method

//and can be used to sort a list or array of TimeSpan objects without

//using a Comparator

public class TimeSpan implements Comparable<TimeSpan> {

   private int totalMinutes;

   // Constructs a time span with the given interval.

   // pre: hours >= 0 && minutes >= 0

   public TimeSpan(int hours, int minutes) {

        totalMinutes = 0;

        add(hours, minutes);

   }

   // Adds the given interval to this time span.

   // pre: hours >= 0 && minutes >= 0

   public void add(int hours, int minutes) {

        totalMinutes += 60 * hours + minutes;

   }

   // Returns a String for this time span such as "6h15m".

   public String toString() {

        return (totalMinutes / 60) + "h" + (totalMinutes % 60) + "m";

   }

   // method to compare this time span with other

   // returns a negative value if this time span is shorter than other

   // returns 0 if both have same duration

   // returns a positive value if this time span is longer than other

   public int compareTo(TimeSpan other) {

        if (this.totalMinutes < other.totalMinutes) {

            return -1; // this < other

        } else if (this.totalMinutes > other.totalMinutes) {

            return 1; // this > other

        } else {

            return 0; // this = other

        }

   }

}

// TimeSpanClient.java

public class TimeSpanClient {

   public static void main(String[] args) {

        int h1 = 13, m1 = 30;

        TimeSpan t1 = new TimeSpan(h1, m1);

        System.out.println("New object t1: " + t1);

        h1 = 3;

        m1 = 40;

        System.out.println("Adding " + h1 + " hours, " + m1 + " minutes to t1");

        t1.add(h1, m1);

        System.out.println("New t1 state: " + t1);

        // creating another TimeSpan object, testing compareTo method using the

        // two objects

        TimeSpan t2 = new TimeSpan(10, 20);

        System.out.println("New object t2: " + t2);

        System.out.println("t1.compareTo(t2): " + t1.compareTo(t2));

        System.out.println("t2.compareTo(t1): " + t2.compareTo(t1));

        System.out.println("t1.compareTo(t1): " + t1.compareTo(t1));

   }

}

/*OUTPUT*/

New object t1: 13h30m

Adding 3 hours, 40 minutes to t1

New t1 state: 17h10m

New object t2: 10h20m

t1.compareTo(t2): 1

t2.compareTo(t1): -1

t1.compareTo(t1): 0

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2 years ago
In the game Singularity, broken objects can be restored to their original condition by reversing time. This is an example of whi
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Solution:

In the game Singularity, broken objects can be restored to their original condition by reversing time. This is an example of which time element of player adjustment.

Thus the required answer is player adjusted.

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Suppose Host A sends two TCP segments back to back to Host B over a TCP connection. The first segment has sequence number 90; th
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Answer:

a)   Consider sequence numbers,First segment=90

Second segment=110

Data in the first segment = 110-90  =20

b) Consider the first segment is lost but the second segment arrives at B. In the acknowledgment that Host B sends to Host A, then the acknowledgment number will be first segment of sequence number, that is 90.

Explanation:

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Given the macro definition and global declarations shown in the image below, provide answers to the following questions:
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Answer:

A. 243

B. True

C. 0

Explanation:

Macro instruction is a line of coding used in computer programming. The line coding results in one or more coding in computer program and sets variable for using other statements. Macros allows to reuse code. Macro has two parts beginning and end. After the execution of statement of quiz4 x, 4 the macro x will contain 243. When the macro is invoked the statement will result in an error. When the macro codes are executed the edx will contain 0. Edx serve as a macro assembler.

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2 years ago
In a single file, you wrote a bike class and used this line of code in the program.
Elza [17]

Answer:

Explanation:

Based on the available options the one that would be correct would be that the code to define your class (beginning with "class bike") must come before the line "bikeA = bike('Acme' 111)." This is because the line of code declaring the object and initializing it needs to be able to grab the information of the class that it is creating an object of. To do this, the class would need to have already been compiled by the program. It is good practice to have each class definitions as its own separate files but this is not a necessity.

5 0
2 years ago
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