Compute the acceleration of gravity for a given distance from the earth's center, distCenter, assigning the result to accelGravity. The expression for the acceleration of gravity is: (G * M) / (d²), where G is the gravitational constant 6.673 x 10-11, M is the mass of the earth 5.98 x 1024 (in kg) and d is the distance in meters from the earth's center (stored in variable distCenter). 1 import java.util.Scanner; 2 public class GravityCalculation { public static void main(String[] args) { Scanner scnr = new Scanner(System.in); 6.673e-11; 3 4 double G 5.98e24; double accelGravity; double distCenter; double M %3D 7 8 9. 10 distCenter scnr.nextDouble(); %3D 11 12 /* Your solution goes here */ 13 System.out.println(accelGravity); } 14 15 16 }
Compute the acceleration of gravity for a given distance from the earth's center, distCenter, assigning the result to accelGravity. The expression for the acceleration of gravity is: (G * M) / (d²), where G is the gravitational constant 6.673 x 10-11, M is the mass of the earth 5.98 x 1024 (in kg) and d is the distance in meters from the earth's center (stored in variable distCenter). 1 import java.util.Scanner; 2 public class GravityCalculation { public static void main(String[] args) { Scanner scnr = new Scanner(System.in); 6.673e-11; 3 4 double G 5.98e24; double accelGravity; double distCenter; double M %3D 7 8 9. 10 distCenter scnr.nextDouble(); %3D 11 12 /* Your solution goes here */ 13 System.out.println(accelGravity); } 14 15 16 }
Database System Concepts
7th Edition
ISBN:9780078022159
Author:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Publisher:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Chapter1: Introduction
Section: Chapter Questions
Problem 1PE
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![Compute the acceleration of gravity for a given distance from the earth's center, distCenter, assigning the result to
accelGravity. The expression for the acceleration of gravity is: (G * M) / (d²), where G is the gravitational constant
6.673 x 10-11, M is the mass of the earth 5.98 x 1024 (in kg) and d is the distance in meters from the earth's center
(stored in variable distCenter).
1 import java.util.Scanner;
2 public class GravityCalculation {
public static void main(String[] args) {
Scanner scnr = new Scanner(System.in);
6.673e-11;
3
4
double G
5.98e24;
double accelGravity;
double distCenter;
double M
%3D
7
8
9.
10
distCenter
scnr.nextDouble();
%3D
11
12
/* Your solution goes here
*/
13
System.out.println(accelGravity);
}
14
15
16 }](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F96e8a255-6b70-420c-b5ef-4b46ae1f8d5e%2F9675d94e-0190-4623-af56-221749640045%2Fehkopu8.png&w=3840&q=75)
Transcribed Image Text:Compute the acceleration of gravity for a given distance from the earth's center, distCenter, assigning the result to
accelGravity. The expression for the acceleration of gravity is: (G * M) / (d²), where G is the gravitational constant
6.673 x 10-11, M is the mass of the earth 5.98 x 1024 (in kg) and d is the distance in meters from the earth's center
(stored in variable distCenter).
1 import java.util.Scanner;
2 public class GravityCalculation {
public static void main(String[] args) {
Scanner scnr = new Scanner(System.in);
6.673e-11;
3
4
double G
5.98e24;
double accelGravity;
double distCenter;
double M
%3D
7
8
9.
10
distCenter
scnr.nextDouble();
%3D
11
12
/* Your solution goes here
*/
13
System.out.println(accelGravity);
}
14
15
16 }
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