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madreJ [45]
4 years ago
12

If (4,-5) is on the graph of F(x), which point must be on the graph of the

Mathematics
1 answer:
maksim [4K]4 years ago
3 0

Answer:

  C.  (-5,4)

Step-by-step explanation:

The inverse of any function is found by swapping x and y.

If point (4, -5) is on the graph of the function, the point (-5, 4) is on the graph of its inverse.

You might be interested in
if you have drums that hold 60 gallons and you need to ship out 5,300 liters of liquid how many drums will you need remember 1 l
ololo11 [35]
60×0.26=15.6
5300÷15.6=339.7

so that will be 340 drums
6 0
3 years ago
Find the necessary confidence interval for the binomial proportion p. (Round your answers to three decimal places.) A 90% confid
frutty [35]

Answer:

[0.875;0.925]

Step-by-step explanation:

Hello!

You have a random sample of n= 400 from a binomial population with x= 358 success.

Your variable is distributed X~Bi(n;ρ)

Since the sample is large enough you can apply the Central Limit Teorem and approximate the distribution of the sample proportion to normal

^ρ≈N(ρ;(ρ(1-ρ))/n)

And the standarization is

Z= ^ρ-ρ  ≈N(0;1)

√(ρ(1-ρ)/n)

The formula to estimate the population proportion with a Confidence Interval is

[^ρ ± Z_{1-\alpha/2}*√(^ρ(1-^ρ)/n)]

The sample proportion is calculated with the following formula:

^ρ= x/n = 358/400 = 0.895 ≅ 0.90

And the Z-value is Z_{1-\alpha/2} = Z_{0.95} = 1.648 ≅ 1.65

[0.90 ± 1.65 * √((0.90*0.10)/400)]

[0.875;0.925]

I hope you have a SUPER day!

5 0
3 years ago
A nationwide survey of seniors by the University of Michigan reveals that almost 18.0% disapprove of daily pot smoking. If 8 sen
UNO [17]

Answer:

P(X\geq 2)=1- P(X

And using the probability mass function we can find the individual probabilities:

P(X=0)=(8C0)(0.18)^0 (1-0.18)^{8-0}=0.2044

P(X=1)=(8C1)(0.18)^1 (1-0.18)^{0-1}=0.3590

And replacing we got:

P(X\geq 2)=1 -[0.2044 +0.3590]= 0.4366

Then the probability that at least 2 disapprove of daily pot smoking is 0.4366

Step-by-step explanation:

Let X the random variable of interest "number of seniors who disapprove of daily smoking ", on this case we now that:

X \sim Binom(n=8, p=0.18)

The probability mass function for the Binomial distribution is given as:

P(X)=(nCx)(p)^x (1-p)^{n-x}

Where (nCx) means combinatory and it's given by this formula:

nCx=\frac{n!}{(n-x)! x!}

And we want to find this probability:

P(X\geq 2)=1- P(X

And using the probability mass function we can find the individual probabilities:

P(X=0)=(8C0)(0.18)^0 (1-0.18)^{8-0}=0.2044

P(X=1)=(8C1)(0.18)^1 (1-0.18)^{0-1}=0.3590

And replacing we got:

P(X\geq 2)=1 -[0.2044 +0.3590]= 0.4366

Then the probability that at least 2 disapprove of daily pot smoking is 0.4366

3 0
3 years ago
A carpenter uses a hand saw to cut a piece of wood in half. The length of the saw blade is 40 cm, while the wood he is cutting i
Oxana [17]

Answer:

The equation that models how far from the tip of the saw is from the wood in terms of time is x(t) = 10×cos(2×π×t) + 17

Step-by-step explanation:

The given parameters are;

Length of the saw blade = 40 cm

Thickness of the wood across = 8 cm

Length of blade between wood saw handle with hand extended = 5 cm

Length of the tip from the wood at the above time = 40 - 8 - 5 = 27 cm

Length of blade between wood saw handle with saw pulled inwards = 25 cm

Length of the tip from the wood at the above time = 40 - 8 - 25 = 7 cm

Time for one complete cycle = 1 second

We note that the basic equation for oscillatory motion is of the form;

x(t) = A·cos(ωt) + d

Where:

A = Amplitude of the motion = (27 - 7)/2 = 10 cm

ω = Angular frequency = 2·π/T

ωt = Motion's phase

t = Time of the motion

d = The middle location = 27 - 10 = 17 cm

T = The time to complete a cycle = 1 s

Therefore;

ω = 2·π

Given that he stars with his arm extended out, we have;

27 = 10×cos(2×π×0) + 17

Therefore, the equation that models how far from the tip of the saw is from the wood in terms of time is x(t) = 10×cos(2×π×t) + 17.

4 0
4 years ago
A car travels at an average speed of 50 km/h for 1.5 hours. How far did the car travel in km?
boyakko [2]

Answer:

75 km

Step-by-step explanation:

(50km/h)(1.5h) =<em> 75km</em>

7 0
2 years ago
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