Answer:
Anurak has 15 pennies, 6 nickels and 3 dimes.
Step-by-step explanation:
We must have these informations in mind:
1) A penny is a 1-cent coin.
2) A dime is a 10-cent coin.
3) A nickel is a 5-cent coin.
Let be , , the quantities of pennies, nickels and dimes, respectively. From statement we get that to value in Anurak's pocket is represented by this mathematical expression:
(Eq. 1)
In addition, we get the following identities:
i)He has three more nickels than dimes
(Eq. 2)
ii)And five times as many pennies as dimes
(Eq. 3)
The system of linear equations is now reduced: (Eqs. 2, 3) in (Eq. 1)
The remaining variables are and .
Anurak has 15 pennies, 6 nickels and 3 dimes.
Answer:
Anurak has 15 pennies, 6 nickels and 3 dimes.
Step-by-step explanation:
Answer:
a) 0.135 = 13.5% probability that during a given 1 min period, the first operator receives no requests.
b) 0.03185 = 3.185% probability that during a given 1 min period, exactly three of the six operators receive no requests
Step-by-step explanation:
To solve this question, we need to understand the Poisson distribution and the binomial distribution.
Poisson distribution:
In a Poisson distribution, the probability that X represents the number of successes of a random variable is given by the following formula:
In which
x is the number of sucesses
e = 2.71828 is the Euler number
is the mean in the given time interval.
Binomial distribution:
The binomial probability is the probability of exactly x successes on n repeated trials, and X can only have two outcomes.
In which is the number of different combinations of x objects from a set of n elements, given by the following formula.
And p is the probability of X happening.
Poisson process with rate 2 per minute
This means that
a. What is the probability that during a given 1 min period, the first operator receives no requests?
Single operator, so we use the Poisson distribution.
This is P(X = 0).
0.135 = 13.5% probability that during a given 1 min period, the first operator receives no requests.
b. What is the probability that during a given 1 min period, exactly three of the six operators receive no requests?
6 operators, so we use the binomial distribution with
Each operator has a 13.5% probability of receiving no requests during a minute, so
This is P(X = 3).
0.03185 = 3.185% probability that during a given 1 min period, exactly three of the six operators receive no requests
Answer:
m=1
Step-by-step explanation:
The plots (-4,3) and (2,1) have a slope of -1. Perpendicular lines would mirror that, making it a positive 1
Answer is provided in the image attached.
3x+3x-5= 1
6x-5=1
Whenever moving a number, the sign always changes.
6x-5+5= 1+5
6x= 1+5
6x= 6
divide both sides by 6
6x/6= 6/6
x= 1
Check solution by using the substitution method
3(1)+3(1)-5=1
3+3-5=1
6-5= 1
1=1
Answer: x=1
Answer:
Step-by-step explanation:
Given;
first leg of the right triangle, a = 15.21 cm
second leg of the right triangle, b = 17.34 cm
Angle C = 90 ⁰
The missing parameters;
Use Pythagoras theorem to calculate the missing side "c", which is the hypotenuse
c² = a² + b²
c² = (15.21)² + (17.34)²
c² = 532.02
c = √532.02
c = 23.1 cm
The missing angle A is calculated as;
The missing angle is calculated as;
B = 90⁰ - A
B = 90⁰ - 41.26⁰
B = 48.74⁰
Answer:
3.15
Step-by-step explanation:
15.75 divided by 5 gets you 3.15