Write a Program to calculate: 1) Kinetic Energy 2) Potential Energy 3) Total Energy Requirement for this assignment includes the use of at least 3 Programmer Defined Functions, with at least one of the functions using PASS BY REFERENCE Parameters. Please DO NOT use global variables unless specified. But can use global constant to store "acceleration due to gravity". Formula & Explanation for these three are as follows: KE = kinstis snerKY

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
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write the program in C++

Write a Program to calculate:
1) Kinetic Energy
2) Potential Energy
3) Total Energy
Requirement for this assignment includes the use of at least 3 Programmer Defined Functions, with at least one of the
functions using PASS BY REFERENCE Parameters.
Please DO NOT use global variables unless specified.
But can use global constant to store "acceleration due to gravity".
Formula & Explanation for these three are as follows:
KE = kinetic energy
The definition of kinetic en-
1
KE = mv²
ergy for a mass m with veloc-
ity v.
m = mass
v = velocity
PE = potential energy
m = mass
The potential energy for a
PE = mgh
g = acceleration due
to gravity
mass m at a height h above
some reference level.
h = height
Transcribed Image Text:Write a Program to calculate: 1) Kinetic Energy 2) Potential Energy 3) Total Energy Requirement for this assignment includes the use of at least 3 Programmer Defined Functions, with at least one of the functions using PASS BY REFERENCE Parameters. Please DO NOT use global variables unless specified. But can use global constant to store "acceleration due to gravity". Formula & Explanation for these three are as follows: KE = kinetic energy The definition of kinetic en- 1 KE = mv² ergy for a mass m with veloc- ity v. m = mass v = velocity PE = potential energy m = mass The potential energy for a PE = mgh g = acceleration due to gravity mass m at a height h above some reference level. h = height
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