A 10,000 litre rainwater tank is to be built in the shape of a cylinder. It must be at most 3 metres tall, and have radius at most 2 metres. Its base costs 50 dollars per square metre, and the sides and top cost 30 per square metre. What are the cheapest and most expensive shapes that satisfy these conditions? (a) Give the total cost as a function of the height H and radius R. Use units of metres for both H and R. Note that it is case sensitive - you must use exactly the variable names given in the question. (b) Give an equation that connects the height H and radius R. Your answer must be an equation including "=". Remember to use consistent units. BA R. (c) Write the cost as a function just of QP (d) For which value of R does this cost function have a local minimum? Enter in metres, accurate within a centimetre. (e) What is the smallest allowed radius R, that keeps the height within bounds? Answer as a decimal in metres, accurate within a centimetre. QP (f) What is the largest allowed radius R? 数字 (g) Enter the cheapest cost, accurate to within a dollar. P

Calculus: Early Transcendentals
8th Edition
ISBN:9781285741550
Author:James Stewart
Publisher:James Stewart
Chapter1: Functions And Models
Section: Chapter Questions
Problem 1RCC: (a) What is a function? What are its domain and range? (b) What is the graph of a function? (c) How...
Question
A 10,000 litre rainwater tank is to be built in the shape of a cylinder. It must be at most 3 metres tall, and have radius at most 2 metres. Its base costs 50
dollars per square metre, and the sides and top cost 30 per square metre. What are the cheapest and most expensive shapes that satisfy these conditions?
(a) Give the total cost as a function of the height H and radius R. Use units of metres for both H and R. Note that it is case sensitive - you must use exactly
the variable names given in the question.
(b) Give an equation that connects the height
H and radius R. Your answer must be an equation including "=".
Remember to use consistent units.
BA
R.
(c) Write the cost as a function just of
QP
(d) For which value of
R does this cost function have a local minimum? Enter in metres, accurate within a centimetre.
(e) What is the smallest allowed radius
R, that keeps the height within bounds? Answer as a decimal in metres, accurate
within a centimetre.
QP
(f) What is the largest allowed radius
R?
数字
(g) Enter the cheapest cost, accurate to within a dollar.
P
Transcribed Image Text:A 10,000 litre rainwater tank is to be built in the shape of a cylinder. It must be at most 3 metres tall, and have radius at most 2 metres. Its base costs 50 dollars per square metre, and the sides and top cost 30 per square metre. What are the cheapest and most expensive shapes that satisfy these conditions? (a) Give the total cost as a function of the height H and radius R. Use units of metres for both H and R. Note that it is case sensitive - you must use exactly the variable names given in the question. (b) Give an equation that connects the height H and radius R. Your answer must be an equation including "=". Remember to use consistent units. BA R. (c) Write the cost as a function just of QP (d) For which value of R does this cost function have a local minimum? Enter in metres, accurate within a centimetre. (e) What is the smallest allowed radius R, that keeps the height within bounds? Answer as a decimal in metres, accurate within a centimetre. QP (f) What is the largest allowed radius R? 数字 (g) Enter the cheapest cost, accurate to within a dollar. P
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