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Viktor [21]
2 years ago
11

Which expression shows the sum of the polynomials with like terms grouped together? 10x^2y+2xy^2-4x^2-4x^2y

Mathematics
2 answers:
KIM [24]2 years ago
5 0
The answer to the question

USPshnik [31]2 years ago
4 0

Answer:

6x²y+2xy²-4x²

Step-by-step explanation:

Like terms are terms that have the same variables and exponents.

In the given problem, the only like terms are 10x²y and -4x²y; adding these gives us 6x²y.  Bringing down the rest of the terms gives us

6x²y+2xy²-4x²

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Suppose that trees are distributed in a forest according to a two-dimensional Poisson process with parameter α, the expected num
forsale [732]

Answer:

a) 0.951

b) 2,800,000

c) P(T(R)=n)=\frac{(40*20.106)^ne^{-40*20.106}}{n!}=\frac{(804.248)^ne^{804.248}}{n!}

Step-by-step explanation:

Let R be a bounded and measurable region in the forest and denote with

|R| = area of R in acres

Let T(R) be a discrete random variable that measures the number of trees in the region R.

If the trees are distributed according to a two-dimensional Poisson process with the expected number of trees per acre equals to 40, then  

\large P(T(R)=n)=\frac{(40|R|)^ne^{-40|R|}}{n!}

(a) What is the probability that in a certain quarter-acre plot, there will be at most 15 trees?

In this case R is a region with an area of 1/4 acres,

\large P(T(R)\leq 15)=\sum_{k=0}^{15}\frac{(40*1/4)^ke^{-40*1/4}}{k!}=e^{-10}\sum_{k=0}^{15}\frac{10^k}{k!}

We can compute this with a spreadsheet and we get

\large \boxed{P(T(R)\leq 15)=0.951}

(b) If the forest covers 70,000 acres, what is the expected number of trees in the forest?

Given that the expected number of trees per acre equals 40, the expected number of trees in 70,000 acres equals  

40*70,000 = 2,800,000 trees.

(c) Suppose you select a point in the forest and construct a circle of radius 0.1 mile. Let X = the number of trees within that circular region. What is the pmf of X?

Now R is a circle of radius 0.1 mile, so its area equals

\large |R|=\pi (0.1)^2=0.0314\;squared\;miles

Since 1 squared mile = 640 acres,

0.0314  squared miles = 0.0314*640 = 20.106 acres, so the pmf of R would be

\large P(T(R)=n)=\frac{(40*20.106)^ne^{-40*20.106}}{n!}=\frac{(804.248)^ne^{804.248}}{n!}

7 0
2 years ago
Leon throws a ball off a cliff. The graph represents a relation that models the ball’s height, h, in feet over time, t, in secon
erik [133]

Answer: The answer is A.


Step-by-step explanation:


8 0
2 years ago
Read 2 more answers
Dolphin jump y = -16x2 + 32x - 10 This parabola has x-intercepts, representing the times when the dolphin's height above water i
rodikova [14]

it is -54 height above water feet

7 0
2 years ago
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Compute $14A6_{12} - 5B9_{12}$. Give your answer as a base $12$ integer.
avanturin [10]

Answer:

you need to 12 minus 5b9 as base and don’t forget to mention the integer

4 0
2 years ago
15) Bob has 12 black pen, 14 red pen, 15 green pens, 24 blue pens and 3 boxes of
cricket20 [7]

Answer:

13, 16, 18

Step-by-step explanation:

Sabemos que podemos calcular el total de plumas amarillos, por medio de la media.

16 = (12 + 14 + 15 + 24 + x + y + z) / 7

16 * 7 = 12 + 14 + 15 + 24 + x + y + z

112 = 65 + x + y + z

x + y + z = 112-65

x + y + z = 47

sabemos que la mediana es el valor medio, y que ese 46 debe dividirse entre 3 valores porque son 3 cajas, entonces debemos buscar los números adecuados para el valor 15 esté en la mitad, es decir de cuarto.

Sin meter los valores nuevos, el ranking sería así:

12

14

15

24

el 15 esta de tercero, para que quede de cuarto, debe tener dos valores por debajo y un por arriba, así:

X

12

14

15

y

z

24

Por lo tanto, valores mayores a 15 serían por ejemplo y = 16 y z = 18:

16 + 18 = 34

x = 47-34 = 13

quedaría:

12

13

14

15

dieciséis

18 años

24

Si recalculamos la media:

m = (12 + 14 + 15 + 24 + 13 + 16 + 18) / 7 = 16

8 0
2 years ago
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