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Anuta_ua [19.1K]
3 years ago
11

What’s the answer to this

Mathematics
1 answer:
Setler [38]3 years ago
8 0

Answer:

p=$65 per day so how many days? you multiply 65 by how ever many days that there is so

Step-by-step explanation:

p=$65 per day so how many days? you multiply 65 by how ever many days that there is so  that would be your answer

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Hey guys! Pls. Help me answer this equation.
goldenfox [79]
I thinks it's unable to be solve, because I use this app, and it's not going through, so it might be a problem that can be solve.
3 0
4 years ago
The number of hours of daylight measured in one year in Ellenville can be modeled by a sinusoidal function. During 2006, (not a
Kamila [148]

Answer:

f ( t ) = 3.7*sin ( 0.01736*t ) + 12

Step-by-step explanation:

Solution:-

- We are to model a sinusoidal function for the number of hours of daylight measured in one year in Ellenville.

- We will express a general form of a sinusoidal function [ f ( t ) ] as follows:

                                f ( t ) = A*sin ( w*t ) + c

Where,

                  A: The amplitude of the hours of daylight

                  w: The angular frequency of occurring event

                  c: The mean hours of daylight

                  t: The time taken from reference ( days )

- We are given that the longest day [ f ( t_m_a_x ) ] occurred on June 21st and the shortest day [ f ( t_m_i_n ) ] on December 21st.

- The mean hours of daylight ( c ) is the average of the maximum and minimum hours of daylight as follows:

                              c = \frac{f(t_m_a_x ) +f(t_m_i_n )  }{2} \\\\c = \frac{15.7 + 8.3}{2} = \frac{24}{2} \\\\c = 12

- The amplitude ( A ) of the sinusoidal function is given by the difference of either maximum or minimum value of the function from the mean value ( c ):

                              A = f ( t_m_a_x ) - c\\\\A = 15.7 - 12\\\\A = 3.7

- The frequency of occurrence ( w ) is defined by the periodicity of the function. In other words how frequently does two maximum hours of daylight occur or how frequently does two minimum hours of daylight occur.

- The time period ( T ) is the time taken between two successive maximum duration of daylight hours. We were given the longest day occurred on June 21st and the shortest day occurred on December 21st. The number of days between the longest and shortest day will correspond to half of the time period ( 0.5*T ):

                              0.5*T = 7 + 31 + 31 + 30 +31 +30 +21\\\\T = 2* [ 181 ] \\\\T = 362 days

- The angular frequency ( w ) is then defined as:

                              w = \frac{2\pi }{T} = \frac{2\pi }{362}  \\\\w = 0.01736

- We will now express the model for the duration of daylight each day as function of each day:

                              f ( t ) = 3.7*sin ( 0.01736*t ) + 12

               

8 0
4 years ago
Please answer part b and part c and please explain step by step
Zinaida [17]
Part B
Divide 63 by 3 to get 21, the price of one shirt.
Divide 21 by 7 to get 3, 10% of the original price.
Multiply 3 by 10 to get 30, the original price of one shirt.
Answer: $30

Part C
Divide 40 by 10 to get 4, 10% of original price 
Multiply 4 by 3 to get 12, 30% of the original price 
subtract 12 from 40 to get 28, the price after discount 
Divide 28 by 10 to get 2.8, the second 10% discount.
Subtract 2.8 from 28 to get 25.2, the final price.
Answer: $25.20
4 0
3 years ago
Find the Slope Algebraically: x-3y=6
pentagon [3]

Most x to the other side: -3y=-x+6

Divide by -3 to get y=x/3+2


8 0
3 years ago
Read 2 more answers
Find the length of the leg of the right triangle leave your answer in simplest form?
nikitadnepr [17]

Answer:

a =12*sqrt(2)

Step-by-step explanation:

3.  The Pythagorean theorem states

a^2 + b^2 = c^2  where a  and b are the legs and c is the hypotenuse

a^2 +21^2 = 27^2

a^2 +441 =729

Subtract 441 from each side

a^2 +441-441 = 729 -441

a^2 =288

Take the square root of each side

sqrt(a^2) = sqrt(288)

sqrt(xy) = sqrt(x)sqrt(y)

a = sqrt(144)sqrt(2)

a =12*sqrt(2)


5 0
3 years ago
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