A long distribution channel
Bonnie should incorporate for her company
Option B
<u>Explanation:
</u>
A distribution channel is an organization or intermediary network that moves a product or a service until it meets the last customer. Wholesalers, dealers, suppliers and even Web can be part of the distribution channels.
In long channels, product flows from producers to final customers are carried out via multiple levels of distribution in which each level is generally made up of more than one location.
In general distribution channels are divided into two systems which are: direct customer shipping and indirect shipping, which involves an intermediary level or two, including distributor/retailer warehouses in which goods from those intermediaries can be delivered to consumers differently.
You will say to the customer kindly I'm sorry for disappointing you I will do everything that is possible for service to be satisfy to you and tell me why do you say service isn't as good maybe I can make things better
Answer:
$889.70
Explanation:
The computation of the net present value is shown below:
= Present value of all yearly cash inflows after applying discount factor - initial investment
where,
The Initial investment is $10,000
All yearly cash flows would be
= Annual amount received × PVIFA for 4 years at 4%
= $3,000 × 3.6299
= $10,889.70
Refer to the PVIFA table
So, the net present value is
= $10,889.70 - $10,000
= $889.70
Answer:
Considering selling the items and donating cash instead
Answer:
Annual deposit= $37,714.37
Explanation:
Giving the following information:
The villa costs $500,000 today, and housing prices in Mexico are expected to increase by 6% per year. Manny and Irene want to make fifteen equal annual payments into an account, starting today, so there will be enough money to purchase the villa in fifteen years.
The account earns 10% per year.
First, we need to calculate the final value of the house with the following formula.
FV= PV*(1+i)^n
FV= 500,000*(1.06^15)=$1,198,279.1
Now, we can calculate the annual payments required:
FV= {A*[(1+i)^n-1]}/i
A= annual deposit
Isolating A:
A= (FV*i)/{[(1+i)^n]-1}
A= (1,198,279.1*0.10)/[(1.10^15)-1]
A= $37,714.37