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Zigmanuir [339]
3 years ago
5

Which of the following expressions demonstrates the distributive property?

Mathematics
1 answer:
rodikova [14]3 years ago
8 0

Answer:

3(-8 + 1) = 3(-8) + 3(1)

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What this 2*23496/285*1.34508 to the 24 power PLSSSSSSSS help
mel-nik [20]

1.325387575E50

A really big number.

Step-by-step explanation:

2*23496 = 46992

285*1.34508 = 383.3478

46992/383.3478 = 122.5831999

122.5831999^24 = 1.325387575E50

8 0
3 years ago
What is the value of the equation 3x-4y=65 when y=4
Inga [223]
4x4=16. So think of it like this now..
3x-16=65

Add 16 in each side and you get 3x=81. Divide 3 with 81 and should be 27, or x=27.
Then you check it by putting in the #'s

3(27)-4(4)=65
81-16=65
65=65 ✔️
8 0
4 years ago
Read 2 more answers
What is another way to write this number (3x1000) + (3x10) + (3x1/100) + ( 3x 1/1000)
Nana76 [90]
You need to add the sum in order to find the answer

5 0
3 years ago
For a wedding the bride must select 4 bridesmaids from her 6 closest friends and must arrange them in order for the ceremony. Ho
Hitman42 [59]

360  arrangements of 4 bridesmaids from her 6 closest friends are possible !

<u>Step-by-step explanation:</u>

Here we have , For a wedding the bride must select 4 bridesmaids from her 6 closest friends and must arrange them in order for the ceremony. We need to find How many arrangements of 4 bridesmaids from her 6 closest friends. Let's find out:

We know that formula for permutation is given by :

⇒ nP_r = \dfrac{n!}{(n-r)!}

According to question we have following parameters as : n = 6 , r = 4

⇒ 6P_4 = \dfrac{6!}{(6-4)!}

⇒ 6P_4 = \dfrac{6!}{(2)!}

⇒ 6P_4 = \frac{6(5)(4)(3)2!}{(2)!}

⇒ 6P_4 =360

Therefore , 360  arrangements of 4 bridesmaids from her 6 closest friends are possible !

5 0
4 years ago
Change of subject x the subject<br> y=2x+3/5x-2
Nezavi [6.7K]

Answer:

x = \frac{3+2y}{5y-2}

Step-by-step explanation:

Given

y = \frac{2x+3}{5x-2} ← multiply both sides by (5x - 2)

y(5x - 2) = 2x + 3 ← distribute left side

5xy - 2y = 2x + 3 ( add 2y to both sides )

5xy = 2x + 3 + 2y ( subtract 2x from both sides )

5xy - 2x = 3 + 2y ( factor out x from each term on the left side )

x(5y - 2) = 3 + 2y ← divide both sides by (5y - 2)

x = \frac{3+2y}{5y-2}

7 0
4 years ago
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