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Vitek1552 [10]
2 years ago
14

You know that the current exchange rate for US dollars (USD) to Indian rupees (INR) is 1:45.85, that the exchange rate for India

n rupees to Bangladeshi taka (BDT) is 1:1.507, and that the exchange rate for Bangladeshi taka to Myanma kyat (MMK) at a rate of 1:0.0928. Which of the following equations is set up properly to calculate the exchange rate from US dollars to Myanma kyat?
Please select the best answer from the choices provided
A B C D
Mathematics
2 answers:
Andreyy892 years ago
5 0

Answer : The equation to calculate the exchange rate from US dollars to Myanma kyat is, 1 : (45.85 × 1.507) × (0.0928)

Step-by-step explanation :

Given :

Current exchange rate for US dollars (USD) to Indian rupees (INR) is, 1 : 45.85

The exchange rate for Indian rupees to Bangladeshi taka (BDT) is, 1 : 1.507

The exchange rate for Bangladeshi taka to Myanma kyat (MMK) is, 1 : 0.0928

First we have to determine the current exchange rate for US dollars (USD) to Bangladeshi taka (BDT).

=  1 : (45.85 × 1.507)

The exchange rate for Bangladeshi taka to Myanma kyat (MMK) is, 1 : 0.0928

Now we have to determine the current exchange rate for US dollars (USD) to Myanma kyat (MMK).

= 1 : (45.85 × 1.507) × (0.0928)

Thus, the equation to calculate the exchange rate from US dollars to Myanma kyat is, 1 : (45.85 × 1.507) × (0.0928)

dem82 [27]2 years ago
3 0

Answer:

C

Step-by-step explanation:

the answer on edgeunity

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Evaluate the integral. ∫50∫25−x2√−25−x2√∫25−x2−z2√−25−x2−z2√1(x2+y2+z2)1/2dydzdx∫05∫−25−x225−x2∫−25−x2−z225−x2−z21(x2+y2+z2)1/2d
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The quotient of 15 and a number is 1 over 3 written as an equation
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1 year ago
Data from 14 cities were combined for a​ 20-year period, and the total 280 ​city-years included a total of 107 homicides. After
leonid [27]

Answer:

P(0) =  0.6825

P(1) = 0.2607

Step-by-step explanation:

From the given information, the number of homicide is 107 and the total number of homicides per city –year is 280.

Let us denote the number of homicides per city-year as X.

The mean value, X is calculated as:

\begin{array}{c}\\{\rm{Mean}} = \frac{{107}}{{280}}\\\\ = 0.382\\\end{array}  

Mean=   107/280 = 0.382  

The mean number of homicides per city- year \left( {\lambda = \mu } \right)(λ=μ) is 0.382.

a. The probability that zero homicides is obtained is as below:

\begin{array}{c}\\P\left( {X = 0} \right) = \frac{{{e^{ -0.382}}{{\left( {0.382} \right)}^0}}}{{0!}}\\\\ = \frac{{\left( {0.6825 \right)\left( {\rm{1}} \right)}}{1}\\\\ = 0.6825\\\end{array}  

P(X=0) =  e  −0.382  (0.382)⁰​/1  

= (0.6825)(1) /1  

P(X=0) = 0.6825

Thus, the probability that zero homicides P(0) is 0.6825.

b. The probability that one homicides is obtained is as below:

\begin{array}{c}\\P\left( {X = 0} \right) = \frac{{{e^{ -0.382}}{{\left( {0.382} \right)}^0}}}{{0!}}\\\\ = \frac{{\left( {0.6825 \right)\left( {\rm{1}} \right)}}{1}\\\\ = 0.6825\\\end{array}  

P(X=1) =  e  −0.382  (0.382)¹​/1  

= (0.6825)(0.382)/1  

P(X=1) = 0.2607

Thus, the probability that zero homicides P(0) is 0.2607.

​

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Answer:

Step-by-step explanation:

a )

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b ) To calculate the 10% trimmed mean , we neglect the largest 10% and smallest 10 % data and then calculate the mean . Here we neglect the first two smallest and last two greatest

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c )

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d )

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