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Dovator [93]
2 years ago
12

Determine whether the set is finite ir infinite

Mathematics
1 answer:
STatiana [176]2 years ago
5 0

Answer:

The set is <u>Infinite</u>

Step-by-step explanation:

Infinite sets are ≥ greater than 1 and sometimes has an <u>N</u>

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6 TO THE 3RD POWER+5(8 + ONE 5TH
aev [14]
<span>6 TO THE 3RD POWER+5(8 + ONE 5TH)
= 6^3 + 5(8 + 1/5)
= 216 + 40 + 1
= 257</span>
8 0
4 years ago
Read 2 more answers
Factor the tribunal into two binomials than solve?
Vanyuwa [196]

Answer:

(x-5)(x-3)=0

x=5 \text{ and } x=3

Step-by-step explanation:

Quadratic Equation given:

x^2-8x+15=0

In order to factor this equation think that we'll have something in the format:(x-a)(x-b)

Once: -a -b = -c

and (-a)(-b)= d

Therefore, we have

(x-5)(x-3)=0

x-5=0\\\text{or}\\x-3=0

x=5 \text{ and } x=3

4 0
4 years ago
The population distribution of SAT scores is normal with a mean of μ=500 and a standard deviation of SD=100. For example, what i
vitfil [10]

Answer:

0.02275

Step-by-step explanation:

We use the z score formula to solve for this

z-score is given as: z = (x-μ)/σ

where x is the raw score,

μ is the population mean

σ is the population standard deviation

In the above question:

mean of μ=500

a standard deviation of SD=100

raw score x = 700

Hence, z score = (700 - 500)/ 100

= 200/100

= 2

z score = 2

Using the z score table of normal distribution to find the Probability of z = 2

P( x = z)

= P(x = 700)

= P( z = 2)

= 0.97725

P(x>700) = 1 - P(x = 700)

= 1 - 0.97725

= 0.02275

Therefore, the probability of randomly selecting an individual from this population who has an SAT score greater than 700 is 0.02275

7 0
3 years ago
Please explain and tell me how to do it please
Eduardwww [97]
(x,y) order. Point A is facing 5 where y is so it would 5 because Point A is across the y -axis.
3 0
3 years ago
Suppose that f (x) = 1.5x2 for -1 &lt; x &lt; 1 and f (x) = 0 otherwise. Determine the following probabilities.
BabaBlast [244]

Answer:

a) P(0 < X) = 0.5

b) P(0.5 < X) = 0.4375

c) P(-0.5 = X = 0.5) = 0.125

d) P(X< -2) = 0

e) P(X < 0 or X>-0.5) = 1

f) value of x is -0.9654

Step-by-step explanation:

Given that;

f(x) = 1.5x²

Now. the probabilities would be the integral of the given function from (-1 to 1)

a) P(0 < X)

P(X > 0)

⇒ Integral from 0 to 1 of f(x)

= (1/2)x³

= 1/2 - 0

= 0.5

Therefore; P(0 < X) = 0.5

b) P(0.5 < X)

P(X > 0.5)

this will also be done in the same way except that, the limits changes to { 0.5 to 1]

= (1)³/2 - (0.5)³ /2  

= 0.4375

Therefore; P(0.5 < X) = 0.4375

c) P(-0.5 = X = 0.5)

The limits become [-0.5 , 0.5]

= (0.5)³/2 - (-0.5)³/2

= 0.125

Therefore; P(-0.5 = X = 0.5) = 0.125

d) P(X<-2)

since value of f(x) = 0 in that region

Therefore P(X< -2) = 0

e) P(X < 0 or X>-0.5)

= P(X < 0) + P(X > -0.5) - P( -0.5 < X < 0 )

= 0.5 + 0.5625 - 0.0625  

= 1

Therefore; P(X < 0 or X>-0.5) = 1

f) Determine x such that P(x < X) = 0.05.

Let the value be 'a'

Then, integral from -1 to a will = 0.05

a³ - (-1)³ = 0.05 × 2

a³ + 1 = 0.10

a³ = 0.10 - 1

a³ = -0.9

a = ∛-0.9  

a = -0.9654

Therefore, value of x is -0.9654

8 0
3 years ago
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