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Kay [80]
3 years ago
14

I would really appreciate some help on this! 30 points and I will give brainliest!!

Mathematics
1 answer:
iren [92.7K]3 years ago
6 0

Answer:

D: it is the only equation that has strictly positive exponents...

the function is "always going up"

if a function has a negative exponent 2^-x the curve will "decay"

2^{x^{2} } the x^{2} is always positive

Step-by-step explanation:

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Find the greatest common factor of 5b^2 and 4b
Neko [114]

Answer:

20b^2

Step-by-step explanation:

8 0
4 years ago
The water level in a reservoir is now 52 meters. If this was 23% increase, what was the initial depth
tester [92]

Answer:

1.23x=52

Step-by-step explanation:

8 0
3 years ago
A large industrial firm allows a discount on any invoice that is paid within 30 days. of all invoices, 10% receive the discount.
Daniel [21]
This situation has two outcomes: either an invoice is discounted or not. This two outcomes satisfy what we call a binomial distribution (note "bi" in binomial).

The binomial distribution tells us the probability that a randomly selected sample will have the outcome of success. In this case, we consider receiving the discount as the "success" outcome while not receiving it means "failure". The distribution takes the form:

P(X=x)= _{n}C_{x} p^{x}  q^{n-x}
where n is the total number of samples, x is the number of samples you'll expect to have a success outcome, p is the probability of success, q is the probability of failure, and nCx is the combination of n samples taken x at a time.

You have an inconsistency regarding the total number of samples by the way, but I will take the first mentioned sample of 15 as I answer (you can just follow through the same process for another value).

For the next step, let's digest the problem to get the needed variables.

The total number of samples, n, is equal to 15. The probability of success (receiving a discount), p, is 10% or 0.1, and the probability of failure (not receiving a discount) is 90% or 0.9.

For P(X=x), we need to find the probability that less than two of the samples have success outcomes therefore we need to find the probability that NO invoice will receive the discount plus the probability that ONE invoice will receive the discount. This is equivalent to saying
P(X\ \textless \ 2)=P(X=0)+P(X=1)

Calculating these probabilities we'll get:
P(X=0)= _{15}C_{0} (0.1)^{0} (0.9)^{15}=0.206
P(X=1)= _{15}C_{1} (0.1)^{1} (0.9)^{14}=0.343
P(X\ \textless \ 2)=P(X=0)+P(X=1)=0.206+0.343=0.549

ANSWER: The probability that fewer than 2 sampled invoices will receive the discount is 0.549 or 54.9%.
6 0
3 years ago
An online furniture store sells chairs for $150 each and tables for $350 each. Every day, the store can ship a maximum of 20 pie
Aleksandr [31]

Answer:

no possible solution

Step-by-step explanation:

Price of 18 chairs:  18 x 150 = $2700

Minimum number of tables to meet $4800 threshold:  (4800 - 2700) ÷ 350 = 6

To reach the $4800 requirement, the store must sell a minimum of 6 tables in addition to the 18 chairs.  However, it is stated that the store can ship a maximum of 20 pieces of furniture, and selling 18 chairs and 6 tables would exceed this (18 + 6 = 24), therefore there is no possible solution.

3 0
2 years ago
HELP WILL MARK BRAINLIEST TO WHOEVER ANSWERS !!
Zanzabum
It lasted 13 minutes
5 0
3 years ago
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