4. Regarding the labor-leisure trade off. Assume Sue Ellen Walton has the utility function U(C,L) = C^(½)L^(½). She sleeps 8 hours per day, which leaves her 16 hours to allocate between labor and leisure. Her wage is $10 per hour and has no non-labor income.Using the Lagrange multiplier method, what is the optimal amount of leisure she consumes per day? Points are only awarded if the Lagrange multiplier method is used.How many hours per day does she work? What is her level of consumption? Use a labor-leisure graph to show her optimal allocation between consumption and leisure.

Algebra & Trigonometry with Analytic Geometry
13th Edition
ISBN:9781133382119
Author:Swokowski
Publisher:Swokowski
Chapter7: Analytic Trigonometry
Section7.6: The Inverse Trigonometric Functions
Problem 93E
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4. Regarding the labor-leisure trade off. Assume Sue Ellen Walton has the utility
function U(C,L) = C^(½)L^(½). She sleeps 8 hours per day, which leaves her 16
hours to allocate between labor and leisure. Her wage is $10 per hour and has no
non-labor income.Using the Lagrange multiplier method, what is the optimal amount
of leisure she consumes per day? Points are only awarded if the Lagrange multiplier
method is used.How many hours per day does she work? What is her level of
consumption? Use a labor-leisure graph to show her optimal allocation between
%3D
consumption and leisure.
Transcribed Image Text:4. Regarding the labor-leisure trade off. Assume Sue Ellen Walton has the utility function U(C,L) = C^(½)L^(½). She sleeps 8 hours per day, which leaves her 16 hours to allocate between labor and leisure. Her wage is $10 per hour and has no non-labor income.Using the Lagrange multiplier method, what is the optimal amount of leisure she consumes per day? Points are only awarded if the Lagrange multiplier method is used.How many hours per day does she work? What is her level of consumption? Use a labor-leisure graph to show her optimal allocation between %3D consumption and leisure.
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