3 (struct Person* person) { person->BMI = person->weight / (person->height person->height); return person->BMI; } //Q10: Why is the return type char*? char* determineWeightCategory(struct Person* person) {//assumes BMI is known e{ const double UNDERWEIGHT = 18.5; const double NORMALWEIGHT = 24.9; const double OVERWEIGHT = 29.9; //Q11: If the value in person->BMI is equal to 18.5 and person is athletic, what wi //Q12: The first if statement validates against certain conditions. //What are the conditions it is validating against? //HINT: Think about what causes BMI to be less than 0. if (person->BMI <= 0) { strcpy(person->weightCategory, "ERROR"); } else if (person->BMI < NORMALWEIGHT && athletic == 0) { strcpy(person->weightCategory, "Normalweight"); } else if (person->BMI < UNDERWEIGHT) { strcpy(person->weightCategory, "Underweight"); -Ise if (person->BMI weightCategory, "Overweight");

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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No need for explanation only the answer or what to write please and thank you
}
BMI (struct Person* person) {
person->BMI = person->weight / (person->height person->height);
return person->BMI;
}
//Q10: Why is the return type char*?
char* determineWeightCategory(struct Person* person) {//assumes BMI is known
else {
const double UNDERWEIGHT = 18.5;
const double NORMALWEIGHT = 24.9;
const double OVERWEIGHT = 29.9;
//Q11: If the value in person->BMI is equal to 18.5 and person is athletic, what will be //stored in p-
//Q12: The first if statement validates against certain conditions.
//What are the conditions it is validating against?
//HINT: Think about what causes BMI to be less than 0.
if (person->BMI <= 0) {
strcpy(person->weightCategory, "ERROR");
}
else if (person->BMI < UNDERWEIGHT) {
strcpy(person->weightCategory, "Underweight");
}
else if (person->BMI < NORMALWEIGHT && athletic == 0) {
strcpy(person->weightCategory, "Normalweight");
}
else if (person->BMI <OVERWEIGHT && athletic == 0) {
strcpy(person->weightCategory, "Overweight");
strcpy(person->weightCategory, "Obese");
return person->weightCategory;
//Q13: Why do we return person->weightCategory?
}
//Q14: Why is provider passed by value?
Transcribed Image Text:} BMI (struct Person* person) { person->BMI = person->weight / (person->height person->height); return person->BMI; } //Q10: Why is the return type char*? char* determineWeightCategory(struct Person* person) {//assumes BMI is known else { const double UNDERWEIGHT = 18.5; const double NORMALWEIGHT = 24.9; const double OVERWEIGHT = 29.9; //Q11: If the value in person->BMI is equal to 18.5 and person is athletic, what will be //stored in p- //Q12: The first if statement validates against certain conditions. //What are the conditions it is validating against? //HINT: Think about what causes BMI to be less than 0. if (person->BMI <= 0) { strcpy(person->weightCategory, "ERROR"); } else if (person->BMI < UNDERWEIGHT) { strcpy(person->weightCategory, "Underweight"); } else if (person->BMI < NORMALWEIGHT && athletic == 0) { strcpy(person->weightCategory, "Normalweight"); } else if (person->BMI <OVERWEIGHT && athletic == 0) { strcpy(person->weightCategory, "Overweight"); strcpy(person->weightCategory, "Obese"); return person->weightCategory; //Q13: Why do we return person->weightCategory? } //Q14: Why is provider passed by value?
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