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svp [43]
4 years ago
10

This question is about rate tables please help​

Mathematics
1 answer:
Jobisdone [24]4 years ago
4 0

Answer: 3 chewy fruit worms cost 0.30 dollars. 300 chewy fruit worms cost 30 dollars. you can buy 100 chewy fruit worms for 10 dollars. you can buy 500 chewy fruit worms for 50 dollars. the unit price for a chewy fruit worm is 0.10 dollars. The unit rate is 1:0.10.

Step-by-step explanation:

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Translate the sentence and solve: "2 less than a number is 25"
Salsk061 [2.6K]
(the number) - 2 = 25

(the number) = 25 + 2
(the number) = 27

3 0
3 years ago
Read 2 more answers
Which of the following functions has a rate of change that stays the same?
Paladinen [302]

Answer:

y=6x+8

Step-by-step explanation:

All of the other equations are raised to the power of two, which forms the graph into a parabola, and this changes the rate of change.

4 0
4 years ago
If you solve the equation 6x + 2y = -14 for y, what would you get? *
docker41 [41]

Move 6x to the right side

2y = -6x - 14

Divide all numbers by 2 to isolate the variable

2y/2 = -6x/2 - 14/2

y = -3x - 7

8 0
3 years ago
Find the length of UC
galben [10]

Answer:

18

Step-by-step explanation:

One way to solve this would be to just solve for random lengths, left to right, until we come to find UC.

We know JK = JH + HM + MK = 82 and JH = 22, so

82 = 22 + HM + MK

subtract 22 from both sides to isolate the unknowns

60 = HM + MK = HK

96 = HK + KU - HU

We know HK = 60

96 = 60 + KU

subtract 60 from both sides to isolate the unknown

We know KU = 36

105 = KN = KU + UC + CN

We know KU = 36 and CN = 51

105 = 36 + 51 + UC

105 = 87 + UC

subtract 87 from both sides to isolate the unknown

18 = UC

UC is what we're looking for, so the problem is solved

6 0
3 years ago
An engineer has designed a valve that will regulate water pressure on an automobile engine. The valve was tested on 160 engines
abruzzese [7]

Answer:

Test statistic   Z = 2.1097

Step-by-step explanation:

<u><em>Step(i):-</em></u>

Given that size of the sample 'n' = 160

Given that mean of the Population(μ)  = 5.3pounds/square inch

The Standard deviation of the population(σ) = 0.6

Mean of the sample(x⁻) = 5.4

Level of significance =0.1

<u><em>Step(ii):-</em></u>

Test statistic

    Z = \frac{x^{-}-mean }{\frac{S.D}{\sqrt{n} } }

   Z = \frac{5.4-5.3}{\frac{0.6}{\sqrt{160} } }

  Z = 2.1097

<u><em>Final answer</em></u>:-

Test statistic   Z = 2.1097

5 0
3 years ago
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