Suppose the return and cost of entrepreneurship curves are described by the following equations (with numbers measured in the thousands): R= 600 – 100N C= 200 + 150N, where R= returns to entrepreneurship, C= cost of entrepreneurship, and N= number of entrepreneurs. %3D

ENGR.ECONOMIC ANALYSIS
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Chapter1: Making Economics Decisions
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Suppose the return and cost of entrepreneurship curves are described by the following equations (with numbers measured in the thousands):
R= 600 – 100N
C= 200 + 150N,
where R= returns to entrepreneurship, C= cost of entrepreneurship, and N= number of entrepreneurs.
Transcribed Image Text:Suppose the return and cost of entrepreneurship curves are described by the following equations (with numbers measured in the thousands): R= 600 – 100N C= 200 + 150N, where R= returns to entrepreneurship, C= cost of entrepreneurship, and N= number of entrepreneurs.
The equilibrium number of entrepreneurs is N=
thousand. (Round your response to two decimal places.)
The equilibrium returns to entrepreneurship is R= S thousand. (Round your response to two decimal places.)
The government enacts a license fee of $100 thousand to file the paperwork necessary to start a firm.
The new equilibrium number of entrepreneurs is N= thousand. (Round your response to two decimal places.)
The new equilibrium returns to entrepreneurship is R= $
thousand. (Round your response to two decimal places.)
Transcribed Image Text:The equilibrium number of entrepreneurs is N= thousand. (Round your response to two decimal places.) The equilibrium returns to entrepreneurship is R= S thousand. (Round your response to two decimal places.) The government enacts a license fee of $100 thousand to file the paperwork necessary to start a firm. The new equilibrium number of entrepreneurs is N= thousand. (Round your response to two decimal places.) The new equilibrium returns to entrepreneurship is R= $ thousand. (Round your response to two decimal places.)
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