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Nana76 [90]
4 years ago
12

Bella is putting 576 cicadas into 8 different terrariums.the same number of cicadas will be put into each one.how many cicadas w

ill be in each terrarium
Mathematics
2 answers:
Lubov Fominskaja [6]4 years ago
8 0
The answer is 72 . im 100% sure
RUDIKE [14]4 years ago
3 0
72 because 576 divided by 8 equals 72
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Find a 3\frac{1}{2}% commision on a sale of $2,500
Arisa [49]

Answer:

3\frac{1}{2}

= 7

Now,

7℅ of 2500

\frac{7}{100}  \times 2500

7 \times 25

= 175

Commision=$175

hope it helps you :)

3 0
3 years ago
Read 2 more answers
An investment of $200 is now valued at $315. Assuming continuous compounding occurred for 6 years . What interest rate needed fo
RideAnS [48]
About $19.16 a year because you do 315-200 which gives you 115 and than you divide that by 6
8 0
3 years ago
Complete the following equivalent fractions. 18/54 = ?/3
solniwko [45]

Answer:

1

Step-by-step explanation:

do 18 times 3

then do 54 divided by 54

to find the following number

hope this helps

7 0
3 years ago
Minimizing Packaging Costs If an open box has a square base and a volume of 107 in.3 and is constructed from a tin sheet, find t
uysha [10]

Answer:

The dimensions of the box that minimizes the amount of material of construction is

Square base = (5.98 × 5.98) in²

Height of the box = 2.99 in.

Step-by-step explanation:

Let the length, breadth and height of the box be x, z and y respectively.

Volume of the box = xyz = 107 in³

The box has a square base and an open top.

x = z

V = x²y = 107 in³

The task is to minimize the amount of material used in its construction, that is, minimize the surface area of the box.

Surface area of the box (open at the top) = xz + 2xy + 2yz

But x = z

S = x² + 2xy + 2xy = x² + 4xy

We're to minimize this function subject to the constraint that

x²y = 107

The constraint can be rewritten as

x²y - 107 = constraint

Using Lagrange multiplier, we then write the equation in Lagrange form

Lagrange function = Function - λ(constraint)

where λ = Lagrange factor, which can be a function of x and y

L(x,y,z) = x² + 4xy - λ(x²y - 107)

We then take the partial derivatives of the Lagrange function with respect to x, y and λ. Because these are turning points, at the turning points each of the partial derivatives is equal to 0.

(∂L/∂x) = 2x + 4y - 2λxy = 0

λ = (2x + 4y)/2xy = (1/y) + (2/x)

(∂L/∂y) = 4x - λx² = 0

λ = (4x)/x² = (4/x)

(∂L/∂λ) = x²y - 107 = 0

We can then equate the values of λ from the first 2 partial derivatives and solve for the values of x and y

(1/y) + (2/x) = (4/x)

(1/y) = (2/x)

x = 2y

Hence, at the point where the box has minimal area,

x = 2y

Putting these into the constraint equation or the solution of the third partial derivative,

x²y - 107 = 0

(2y)²y = 107

4y³ = 107

y³ = (107/4) = 26.75

y = ∛(26.75) = 2.99 in.

x = 2y = 2 × 2.99 = 5.98 in.

Hence, the dimensions of the box that minimizes the amount of material of construction is

Square base = (5.98 × 5.98) in²

Height of the box = 2.99 in.

Hope this Helps!!!

5 0
3 years ago
I need help with both of these
stellarik [79]

Answer:

12) 0.01 meter

13) B is the correct

Step-by-step explanation:

7 0
3 years ago
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