8:4 6:4 8:2 6:3 biggest ratio

Answers

Answer 1
Answer: Easy, make the ratios as a decimal. 8:4=2, 6:4=1.5, 8:2=4, and 6:3=2. Now, we have 2, 1.5, and 4, and 2. We can eliminate 8:4 and 6:3 since they are the same ratios, 1.5 equals 1.50, 4=4. Ask your self. Is 1.50 greater than 4? Well your answer is no. 4 is greater than 1.50. So, the biggest ratio is 8:2
Answer 2
Answer: 8:2 is the biggest ratio, because if you reduce each ratio to the smallest ratio 4:1 is the biggest. 8:4 = 2:1... 6:4 = 3:2...  8:2 = 4:1... 6:3= 2:1...

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If a function f is continuous for all x and if f has a relative maximum at (-1, 4) and a relative minimum at (3, -2), which of the following statements must be true? (a) The graph of f has a point of inflection somewhere between x = -1 and x= 3 (b) f'(-1) = 0 (c) this is wrong (d) The graph of f has a horizontal tangent line at x = 3 (e) The graph of f intersects both axes - Correct answer I understand why e is correct, but I do not get why a, b, and d are all wrong. Aren't b and d to be expected since they are relative max/min's? I also can't imagine a case in which "a" is incorrect. Can someone explain why they are wrong? Thank you!
What does it mean for a product of factors to be expressed using exponents

3. Triangle ABC has angle measures as shown.Point A of the Triangle = X
Point B of the Triangle = ( x+2)
Point C of the Triangle = ( 6x+10)


(a) What is the value of x? Show your work.
(b) What is the measure of angle C? Show your work.

Answers

funny I just answered this one. all angles add to 180, so add like terms and solve for x. plug that value into c and solve

Patrick ate 3/5 of a small pizza. For lunch Saturday he4 ate 1/2 of the leftover pizza. How much pizza did he eat for lunch on Saturday?

Answers

Whole one pizza = 1 = 5/5
Patrick ate on Friday 3/5 so 5/5-3/5=2/5
On Saturday P. ate  1/2 of 2/5 so = 1/2*2/5= 2/10=1/5
So deduct 1/5 from 2/5 and we have 1/5 left

Final answer:

Patrick ate 1/5 of the pizza for lunch on Saturday. To find this, we first calculated how much pizza was left over after he initially ate 3/5 of it, which was 2/5. Then, knowing he ate half of the leftover pizza, we multiplied 2/5 by 1/2 to get 1/5.

Explanation:

The subject of this question is fractions. In this problem, we want to find out how much of the leftover pizza Patrick had for lunch on Saturday. Initially, Patrick ate 3/5 of the pizza, which means 2/5 of the pizza was left over. Then, he ate 1/2 of that remaining pizza for lunch on Saturday.

To find how much pizza he actually ate, we need to multiply the fractions. That is, 2/5 (leftover pizza) * 1/2 (Patrick's lunch). When you multiply these two fractions, you get 2/10 or 1/5. Therefore, Patrick ate 1/5 of the pizza for lunch on Saturday.

Learn more about Fractions here:

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Jason wants to use his earnings from Monday and Tuesday for online movie rentals. movies cost $2.96 each to it how many movies can Jason rent show your work. on Monday he sold 11.9 pounds of cans in on Tuesday he sold 10.7 pounds of cans. 1 pound equals .40 cents. SHOW YOUR WORK..

Answers

Answer:

He can rent 3 movies

Step-by-step explanation:

Consider the provided information.

It is given that Jason wants to use his earnings from Monday and Tuesday for online movie rentals. movies cost $2.96 each to it.

On Monday he sold 11.9 pounds of cans in on Tuesday he sold 10.7 pounds of cans.

Total pounds of cans he sold is:

11.9 + 10.7 = 22.6 pounds

He sold 22.6 pounds of can.

1 pound of can equals 0.40

Thus the total amount is:

22.6 × 0.40 = 9.04

So, total earning of two days is $9.04

The movies cost is $2.96 each.

The total movies Jason can rent is:

Movies=(9.04)/(2.96)

Movies=3.05 approximately

Hence, he can rent 3 movies

On Monday and Tuesday, Jason sold 22,6 pounds of cans, so he made s=22,5 x 0.40=9 
That means that Jason can rent 9/2.96 ≈3 movies

Which statement can be used to prove that the two triangles are congruent? A: the HL Theorem

B: the Angle-Side-Angle Postulate (ASA)

C: the Angle-Angle-Side Theorem (AAS)


D: the SAS Postulate

Answers

Answer:

HL Theorem

Step-by-step explanation:

Here, we see that both triangles have a right angle, making them right triangles.  We know that the hypotenuse must be equivalent, as it is the same line.  Furthermore, we see that one of the legs from each triangle are equivalent.  Therefore, we can use HL Theorem to prove these triangles are equal.

Answer:

The SAS postulate

Step-by-step explanation:

  • Longer lengths of the two triangles are equal (S)
  • The triangles are reflected about the line where their equal hyputenuses meet (S)
  • The right angle of one triengle is equal to the right angle of the other triengle (A)

Thus the two triangles are congruent as evidenced by the SAS postulate.

the area of a rectangle is 42 square inches and one side is 12 inches long . find the perimeter of the rectangle

Answers

The area is one side times the other side
Make the other side x.
12x=42
x=42/12=3.5
The perimeter is 2x+2y where x and y are sides of the rectangle.
P= 2(3.5)+2(12)=7+24=31 inches
Hope this helps. 

Answer:

The area is one side times the other side

Make the other side x.

12x=42

x=42/12=3.5

The perimeter is 2x+2y where x and y are sides of the rectangle.

P= 2(3.5)+2(12)=7+24=31 inches

Hope this helps.



5) Round 992,449 to the nearest hundred thousand 6) Round 9,254 to the nearest hundred 7) Round 5,068 to the nearest ten 8) round 5282 to the nearest ten 9) Round 813 to the nearest ten 10) round 223 to the nearest ten 11) round 44,769 to the nearest ten 12) round 76,340 to the nearest thousand 13) round 924 to the nearest ten 14) round 222,702 to the nearest ten thousand 15) round 82,321 to the nearest hundred 16) round 5479 to the nearest hundred 17) round 527 to the nearest hundred 18) round 913,600 times of the nearest ten 19) round 88,347 to the nearest hundred 20) round 630 to the nearest ten

Answers

5. 1,000,000   Because the digit to the right of the hundred thousand's digit is a 9, you need to round it up. Since the number is 900,000, however, you should round it to 1,000,000

6. 9,300   The digit to the right of the hundred's place is 5, so round the 2 up to a 3.

7. 5,070   The digit to the right of the ten's place is 8, so round the 6 to a 7.

8. 5,280   The digit to the right of the ten's place is a 2, so keep the 8 the same and change the 2 to a 0.

9. 813

10. 220

11. 44,770

12. 76,000

13. 920

14. 220,000

15. 82,300

16. 5,500

17. 500

18. 913,600

19. 88,300

20. 630

Some basic rules to remember about rounding:
1. If the digit to the right of the place you're rounding is greater than 5, increase the number by 1 and change all digits to the right to 0.
2. If the digit to the right of the place you're rounding is less than 5, keep the digit the same and change all digits to the right to 0.
3. If you're rounding 9 up, carry 1 over to the next place to the left. For instance, when rounding 987 to the nearest hundred, you would round up the 9 because 8 is greater than 5. The answer would be 1,000, because you have to carry the 1 over to the left.

Answer:

5. 1,000,000   Because the digit to the right of the hundred thousand's digit is a 9, you need to round it up. Since the number is 900,000, however, you should round it to 1,000,000

6. 9,300   The digit to the right of the hundred's place is 5, so round the 2 up to a 3.

7. 5,070   The digit to the right of the ten's place is 8, so round the 6 to a 7.

8. 5,280   The digit to the right of the ten's place is a 2, so keep the 8 the same and change the 2 to a 0.

9. 813

10. 220

11. 44,770

12. 76,000

13. 920

14. 220,000

15. 82,300

16. 5,500

17. 500

18. 913,600

19. 88,300

20. 630

Step-by-step explanation:

Some basic rules to remember about rounding:

1. If the digit to the right of the place you're rounding is greater than 5, increase the number by 1 and change all digits to the right to 0.

2. If the digit to the right of the place you're rounding is less than 5, keep the digit the same and change all digits to the right to 0.

3. If you're rounding 9 up, carry 1 over to the next place to the left. For instance, when rounding 987 to the nearest hundred, you would round up the 9 because 8 is greater than 5. The answer would be 1,000, because you have to carry the 1 over to the left.