Ticket prices. An outdoor amphitheater has 25 , 000 seats. Ticket prices are $ 8 , $ 12 , and $ 20 , and the number of tickets priced at $ 8 must equal the number priced at $ 20 . How many tickets of each type should be sold (assuming that all seats can be sold) to bring in each of the returns indicated in the table? Solve using the inverse of the coefficient matrix.
Ticket prices. An outdoor amphitheater has 25 , 000 seats. Ticket prices are $ 8 , $ 12 , and $ 20 , and the number of tickets priced at $ 8 must equal the number priced at $ 20 . How many tickets of each type should be sold (assuming that all seats can be sold) to bring in each of the returns indicated in the table? Solve using the inverse of the coefficient matrix.
Solution Summary: The author calculates the total number of tickets that should be sold to obtain a return of 330,000.
Ticket prices. An outdoor amphitheater has
25
,
000
seats. Ticket prices are
$
8
,
$
12
,
and
$
20
, and the number of tickets priced at
$
8
must equal the number priced at
$
20
. How many tickets of each type should be sold (assuming that all seats can be sold) to bring in each of the returns indicated in the table? Solve using the inverse of the coefficient matrix.
Help me with the accurate answer and solution asap pls pls thank yo u
Pls help me with accurate answer and solution as soon as possible pls
thank you
Help me with step by step solution and accurate answer as soon as possible pls
Chapter 4 Solutions
Finite Mathematics for Business, Economics, Life Sciences and Social Sciences Plus NEW MyLab Math with Pearson eText -- Access Card Package (13th Edition)
A Problem Solving Approach To Mathematics For Elementary School Teachers (13th Edition)
Knowledge Booster
Learn more about
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, subject and related others by exploring similar questions and additional content below.