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MAVERICK [17]
2 years ago
14

There are 8 rows and 8 columns, or 64 squares on a chessboard. Suppose you place 1 penny on Row 1 Column A, 2 pennies on Row 1 C

olumn B, 4 pennies on Row 1 Column C, and so on … Estimate: How many pennies in Row 1? pennies Estimate: How many pennies in Rows 1-4? pennies Estimate: How many pennies on the entire chessboard? pennies
Mathematics
1 answer:
Inessa [10]2 years ago
4 0
This is a geometric progression with a common ratio of 2.

The sum of all the pennies in the first row (8 elements) is 
     S_8=\frac{a_1\left(r^n-1\right)}{r-1}=\frac{1\left(2^8-1\right)}{2-1}=255

There are 255 pennies in row 1. 

In rows 1-4, there are 32 squares. So the sum is 
     S_{32}=\frac{a_1\left(r^n-1\right)}{r-1}=\frac{1\left(2^{32}-1\right)}{2-1}=4,294,967,295

There are 4,294,967,295 pennies in the first 4 rows.

There are 64 squares in all. So, the sum of all pennies is 
     S_{64}=\frac{a_1\left(r^n-1\right)}{r-1}=\frac{1\left(2^{64}-1\right)}{2-1}=18,446,744,073,709,551,615

There are 18,446,744,073,709,551,615 pennies on the entire chessboard. 

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The product of two consecutive positive integers is 1,332. Explain how you can write and solve a quadratic equation to find the
taurus [48]
Product of two consecutive integer so this mean that x and y but y = x+1 than

x(x+1)=1332

x^2 +x -1332 =0  so bc. you get 36*37=1332 and 37x-36x=x so you can rewriting this quadratic factorized completlie 

x^2 +x -1332 = 0

(x+37)(x-36)=0

x+37=0

x=-37 so the larger integer result that will be 37 
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2 years ago
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Megan spent $9.85 on ingredients to make one pan of cereal bar and has a length of 24 inches and a width of 16 inches. Megan nee
masya89 [10]

Answer:

96 bars = 10cent each (dime/pence etc) 10.2604166667 each

Step-by-step explanation:

if the cereal bars are accounted for 24inch x 4inch and 4inch lengths seem appropriate length, Then we can account for 1inch x 16 inch widths being 1'' wide each. 6 x 16 = 96 and 96/388 = 4 being the length.

Extended: Area of pan 24 x 16 = 240+148= area of 388in^2

96 bars costing ($9.85) 985/96

3 0
2 years ago
It took Ivan 7 1/2 hours to drive 412.5 miles at a constant speed. How fast was he driving? Show how you know.
damaskus [11]

Answer:

55

Step-by-step explanation:

412.5 / 7.5 =55

5 0
2 years ago
Randy presses RAND on his calculator twice to obtain two random numbers between 0 and 1. Let $p$ be the probability that these t
anygoal [31]

Answer:

\frac{\pi}{4}

Step-by-step explanation:

Lets call x,y the numbers we obtain from the calculator. x and y are independent random variables of uniform[0,1] distribution.

Lets note that, since both x and y are between 0 and 1, then 1 is the biggest side of the triangle.

Lets first make a geometric interpretation. If the triangle were to be rectangle, then the side of lenght 1 should be its hypotenuse, and therefore x and y should satisfy this property:

x²+y² = 1

Remember that in this case we are supposing the triangle to be rectangle. But the exercise asks us to obtain an obtuse triangle. For that we will need to increase the angle obtained by the sides of lenght x and y. We can do that by 'expanding' the triangle, but if we do that preserving the values of x and y, then the side of lenght 1 should increase its lenght, which we dont want to. Thus, if we expand the triangle then we should also reduce the value of x and/or y so that the side of lenght 1 could preserve its lenght. With this intuition we could deduce that

x²+y² < 1

Now lets do a more mathematical approach. According to the Cosine theorem, a triangle of three sides of lenght a,b,c satisfies

a² = b²+c² - 2bc* cos(α), where α is the angle between the sides of lenght b and c.

Aplying this formula to our triangle, we have that

1^2 = x^2 + y^2 - 2bc* cos(\alpha) , where \alpha is the angle between the sides of lenght x and y.

Since the triangle is obtuse, then \pi/2 <  \alpha < \pi , and for those values cos(\alpha) is negative , hence we also obtain

1 > x² + y²

Thus, we need to calculate P(x²+y² <1). This probability can be calculated throught integration. We need to use polar coordinates.

(x, y) = (r*cosФ,r*senФ)

Where r is between 0 and 1, and Ф is between 0 and \pi /2 (that way, the numbers are positive).

The jacobian matrix has determinant r, therefore,

{\int\int}\limits_{x^2+y^2 < 1}  \, dxdy = \int\limits^1_0\int\limits^{\frac{\pi}{2}}_0 {r} \, d\phi dr = \frac{\pi}{2} * \int\limits^1_0 {r} \, dr =    \frac{\pi}{2} * (\frac{r^2}{2} |^1_0) = \frac{\pi}{4}

As a conclusion, the probability of obtaining an obtuse triangle is \frac{\pi}{4} .

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