mirror of
https://github.com/TheAlgorithms/Java.git
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@ -1,8 +1,3 @@
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import java.lang.StringBuilder;
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import java.util.*;
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import java.util.Scanner;
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import javax.swing.*;
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public class HexaDecimalToBinary {
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public class HexaDecimalToBinary {
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private final int LONG_BITS = 8;
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private final int LONG_BITS = 8;
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@ -1,8 +1,4 @@
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import java.io.*;
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import java.util.Scanner;
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import java.util.*;
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import java.text.*;
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import java.math.*;
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import java.util.regex.*;
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public class RootPrecision {
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public class RootPrecision {
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@ -10,14 +6,17 @@ public class RootPrecision {
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// take input
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// take input
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Scanner scn = new Scanner(System.in);
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Scanner scn = new Scanner(System.in);
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int N = scn.nextInt(); //N is the input number
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// N is the input number
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int P = scn.nextInt(); //P is precision value for eg - P is 3 in 2.564 and 5 in 3.80870.
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int N = scn.nextInt();
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// P is precision value for eg - P is 3 in 2.564 and 5 in 3.80870.
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int P = scn.nextInt();
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System.out.println(squareRoot(N, P));
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System.out.println(squareRoot(N, P));
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}
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}
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public static double squareRoot(int N, int P) {
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public static double squareRoot(int N, int P) {
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double rv = 0; //rv means return value
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// rv means return value
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double rv;
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double root = Math.pow(N, 0.5);
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double root = Math.pow(N, 0.5);
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@ -28,6 +27,6 @@ public class RootPrecision {
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so as to have decimal points upto P precision */
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so as to have decimal points upto P precision */
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rv = (int) root;
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rv = (int) root;
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return (double)rv/precision;
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return rv / precision;
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}
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}
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}
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}
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