a.
To identify the dependent and independent variables.
It is found that
Given:
Given that the variable
Calculation:
Observe that the number of widgets sold increases as the price of the widget decrease.
Thus, the number of widgets sold
That is,
Conclusion:
It is found that
b.
To write a linear equation that relates price and quantity demanded.
The linear relation connecting the demand
Given:
Given that
That is,
Again, it is given that
That is,
Concept Used:
Equation of a line passing through two points:
The equation of the line passing through the points
Calculation:
Observe that
That is, the graph of the linear equation representing the relation would pass through the points
Now, the equation of the line:
Thus, the linear relation existing between the demand
Conclusion:
The linear relation connecting the demand
c.
To write a linear relation connecting the price and quantity supplied.
Given:
Given that the shop can make
Concept Used:
Equation of a line passing through two points:
The equation of the line passing through the points
Calculation:
Suppose that
Now, since the shop can make
Now, the equation of the line:
Thus, the relationship existing between supply
Conclusion:
The relationship existing between supply
d.
To find the equilibrium point and to explain its meaning.
The equilibrium price of the widget is about
The equilibrium quantity of the widgets is about
It has the implication that, when the price of the widget is
Calculation:
The demand function is found in part b:
The supply function is found in part c:
Equilibrium occurs when the demand of the product equals its supply.
That is, the equilibrium occurs when
Solve the equation
Thus, the equilibrium price of the widget is about
Substitute
Thus, the equilibrium quantity of widgets is
It has the implication that, when the price of the widget is
Conclusion:
The equilibrium price of the widget is about
The equilibrium quantity of the widgets is about
It has the implication that, when the price of the widget is
Chapter 3 Solutions
High School Math 2015 Common Core Algebra 2 Student Edition Grades 10/11
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