Answer: (C) The production of non durable consumer goods is more stable than the production of durable consumer goods over the business cycle.
Explanation:
The consumer durability of the goods has the significant life span and the production of the non durable goods of the consumer are basically purchased for the immediate consumption over the business cycle so that is why it is more stable as compared to the production of the durable goods.
The example of the durable consumer goods are smartphones, furniture and the other household appliances. On the other hand, the non durable consumer goods are more stable as it contain daily use material like food, clothes and beverages.
Answer: E) They need to define the task and maintenance.
Explanation:
Conscientiousness means being thorough and careful in one's task performance. A team that is low on Conscientiousness need to define task and maintenance.
Answer:
consumer responsibility. This is when consumers purchase goods that would not harm the environment or would not be hazardous to one’s health. They make healthy and environment-friendly choices in buying items that they need. These are usually people who are concerned about what they buy and how it would affect not only them but the area surrounding them.
Answer:
3
Explanation:
We are asked to use the midpoint formula.
Here, instead of dividing the change in values by the old value as in the normal elasticity calculation, we use the average of the two.
Mathematically:
Price elasticity of demand according to midpoint formula is :
{Q2 - Q1 / (Q2 + Q1) ÷ 2] × 100%} ÷ {[P2 - P1/ (P2 + P1) ÷ 2] × 100}
Price changed from 5 to 7. The midpoint of 5 and 7 is the average = (5+7)/2 = 6
% change in price in this case is (7-5)/6 * 100 = 100/3 = 33.33%
% change in quantity:
We first find the average = (12+4)/2 = 16/2 = 8
% change = (4-12)/8 * 100 = -100%
The elasticity of demand is thus -100/33.33 = 3
The cash flow (payment or receipt) made for a given period or set of periods. The present value, PV, of a series of cash flows is the present value, at time 0, of the sum of the present values of all cash flows, CF. We start with the formula for PV of a future value ( FV) single lump sum at time n and interest rate.
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