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aleksklad [387]
3 years ago
13

Customers can pick their own berries at the gooseberry farm they pay 3$ to enter the farm and 2.50$ per pound for the berries th

ey picked write an equation to model the total cost y for x pounds of berries
Mathematics
2 answers:
abruzzese [7]3 years ago
8 0

the equation is y=2.50x+3

snow_tiger [21]3 years ago
4 0

y = 2.50x+3. this is is slope intercept form so y starts it off and 2.50 dollars per round but we dont know how many rounds there were so we substitute how many rounds with x and the +3 is there for the enter fee.

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viktelen [127]
It is not linear, so therefore no slope
5 0
3 years ago
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Solve for x in the literal equation x/8-g= a
sweet-ann [11.9K]

Answer:

x= 8a+ 8g

Step-by-step explanation:

x/8 -g = a

x/8 = a+g

× 8

x= 8a+ 8g

5 0
3 years ago
What is one similarity and one difference between an altitude and a median of a triangle?
trasher [3.6K]
The median of the triangle is a segment that connects the vertex of the triangle to the midpoint of the side opposite to the vertex. <span>The altitude of the triangle is a segment that connects the vertex of the triangle to the side opposite to the triangle, which intersects that side at exactly 90°.</span>
3 0
3 years ago
The probability that a randomly selected 2 2​-year-old male garter snake garter snake will live to be 3 3 years old is 0.98861 0
Mnenie [13.5K]

Answer:

a. Probability = 0.97735

b. Probability = 0.92294

c. P(At\ Least\ One) = 1

No, it is not unusual if at least 1 lives up to 3.

Step-by-step explanation:

Given

Represent the probability that a 2 year old snake will live to 3 with P(Live);

P(Live) = 0.98861

Solving (a): Probability that two selected will live to 3 years.

Both snakes have a chance of 0.98861 to live up to 3 years.

So, the required probability is:

Probability = P(Live)\ and\ P(Live)

Probability = 0.98861 * 0.98861

Probability = 0.9773497321

Probability = 0.97735 <em>--- Approximated</em>

Solving (b): Probability that seven selected will live to 3 years.

All 7 snakes have a chance of 0.98861 to live up to 3 years.

So, the required probability is:

Probability = P(Live)^n

Where n = 7

Probability = 0.98861^7

Probability = 0.92294324145

Probability = 0.92294 <em>--- Approximated</em>

Solving (c): Probability that at least one of seven selected will not live to 3 years.

In probabilities, the following relationship exist:

P(At\ Least\ One) = 1 - P(None).

So, first we need to calculate the probability that none of the 7 lived up to 3.

If the probability that one lived up to 3 years is 0.98861, then the probability than one do not live up to 3 years is 1 - 0.98861

This gives:

P(Not\ Live) = 0.01139

The probability that none of the 7 lives up to 3 is:

P(None) = P(Not\ Live)^7

P(None) = 0.01139^7

Substitute this value for P(None) in

P(At\ Least\ One) = 1 - P(None).

P(At\ Least\ One) = 1 - 0.01139^7

P(At\ Least\ One) = 0.99999999999997513055642436060443621

P(At\ Least\ One) = 1 ---- Approximated

No, it is not unusual if at least 1 lives up to 3.

This is so because the above results, which is 1 shows that it is very likely for at least one of the seven to live up to 3 years

7 0
3 years ago
Simplify the expression by combining like terms. 15+12−5+4−7
Fiesta28 [93]

Answer:

31-12

Step-by-step explanation:

15+12-5+4-7

27-5+4-7

31-5-7

31-12

7 0
3 years ago
Read 2 more answers
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