1. Sally Sells Sea Shells by the Sea Shore and collects all sales data. Now, she is curious to find out the elasticity of demand for her shells. Assume they are all the same type and quantity. She scatter plots the data and finds there is a linear relationship that looks ripe for a regression estimation of the price response function for her shells. The slope of her regression line is 62. Her average daily price is 8.75, and she sells 71 quantities at that price. Calculate the point elasticity of demand for her sea shells.
2. A seller believes he is pricing optimally. Her current unit margin rate is 20 percent. What must the actual price elasticity of demand equal if she is right?
To calculate the point elasticity of demand for Sally’s sea shells, we can use the formula for point price elasticity of demand, which is:
�=������
Where:
In this case, Sally’s average daily price is $8.75, and she sells 71 quantities at that price. We have the following values:
�=71 (initial quantity) �=8.75 (initial price)
Now, we need to find the change in quantity demanded and the change in price to calculate the point elasticity.
Let’s assume Sally changes her price by a small amount, say ��=−0.01 (a decrease of $0.01). To find the corresponding change in quantity demanded (��), we can use the slope of her regression line, which is 62:
��=Slope×��=62×(−0.01)=−0.62
Now, we can plug these values into the elasticity formula:
�=−0.6271×8.75−0.01
Simplifying the equation:
�=0.6271×8.750.01=0.6271×875=43.7571
Now, calculating this value:
�≈0.6162
So, the point price elasticity of demand for Sally’s sea shells is approximately 0.6162.
2. Determining the Required Price Elasticity for Optimal Pricing:
To determine the required price elasticity of demand for optimal pricing, we need to consider the seller’s current unit margin rate, which is 20 percent. The relationship between price elasticity (�), unit margin rate (���), and markup rate (��) is given by the following formula:
�=1�����
Where:
In this case, the seller’s unit margin rate (���) is 20 percent or 0.20.
Now, let’s solve for ��:
�=10.20��
Simplifying the equation:
��=0.20�
To determine the required price elasticity (�) for optimal pricing, we can set �� equal to 1, as optimal pricing typically means that the markup rate (��) is equal to 100 percent, resulting in a 100 percent profit margin. So, we have:
1=0.20�
Now, solving for �:
�=10.20=5
Therefore, for the seller to achieve optimal pricing with a unit margin rate of 20 percent, the price elasticity of demand (�) must equal 5.
In conclusion, Sally’s point price elasticity of demand for her sea shells is approximately 0.6162, and for the seller to achieve optimal pricing with a 20 percent unit margin rate, the price elasticity of demand must equal 5. Understanding elasticity is crucial for businesses like Sally’s to make informed pricing decisions and maximize their profits.
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