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Elena-2011 [213]
3 years ago
11

the length of a rectangle is 7 centimeters less than the width. What are the dimensions of the rectangle if its area is 228 squa

re centimeters?
Mathematics
1 answer:
alexandr402 [8]3 years ago
6 0

Answer:

L=12cm

W=19cm

Step-by-step explanation:

Hope this helps someone!!

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Geometry questions today!
Vladimir79 [104]

Answer:

<u>B, C, E - correct</u>

  • A. ΔLHK ≅ ΔJHK - <u>incorrect</u>, central angles are not confirmed congruent
  • B. ML ≅ JK - <u>correct</u>, as opposite angles are congruent
  • C. MLK ≅ LKJ - <u>correct</u>, as MLK = ML + LK and LJK = JK + LK, the first parts are congruent and the second parts are same
  • D. ΔLHM ≅ ΔLHK - <u>incorrect</u>, central angles are not confirmed congruent
  • E. ∠JH ≅ ∠LHM - <u>correct</u>, SAS- two sides are radius, the central angles are congruent
5 0
2 years ago
Sam tried to subtract 21.3-1.9
Lelechka [254]
You would have to put 21.3 on top and 1.9 under it. then you would have to borrow the number. the answer would be 19.4
5 0
3 years ago
Read 2 more answers
John has a die and a coin. The die is labeled 1 through 6 and the two sides of the coin are heads and tails. The tables below sh
Alenkasestr [34]

Answer:

n = 60

Step-by-step explanation:

Total outcomes, while tossing a coin are 2, given as:

{Heads, Tails}

The probability of getting a heads up, while tossing the coin is:

P(Heads) = Favorable Outcome/Total Outcomes

P(Heads) = 1/2 = 0.5

Now, the total outcomes, while rolling a die are 6, given as:

{1, 2, 3, 4, 5, 6}

5 of these numbers are factors of 12, which are:

{1, 2, 3, 4, 6}

Thus, the probability of getting a factor of 12, while rolling a die is:

P(Factor of 12) = Favorable Outcome/Total Outcomes

P(Factor of 12) = 5/6 = 0.83

So, the probability of getting both heads and factor of 12 will be:

P(Heads and Factor of 12) = P(Heads ∪ Factor of 12)

P(Heads and Factor of 12) = P(Heads) * P(Factor of 12) = 0.5 * 0.83

P(Heads and Factor of 12) = 0.417 = 41.7%

So, for 144 trials, the number of trials in which we get heads and factor of 12, are given by:

n = P(Heads and Factor of 12) * 144

where,

n = no. of trials John would expect to roll a number on the die that is a factor of 12 and toss a coin that lands heads-up out of next 144 trials

n = 0.417 * 144

<u>n = 60</u>

7 0
3 years ago
Find the 53rd multiple of 62, if the 54th multiple is 3348.
Scorpion4ik [409]

Answer:

\displaystyle 3286

Explanation:

Just multiply 62 and 53 to get 3286.

I am joyous to assist you at any time.

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2 years ago
*****urgent help ****Write 2447457.627 in standard form to a appropriate degree of accuracy pls i need help
erica [24]

Answer:

2.447457627 x 10^6

Step-by-step explanation:

If this helped can i have Brainliest

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3 years ago
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