determine the most precise name of the quadrilateral ABCD from the information given. for #13 & #14
determine the most precise name of the quadrilateral ABCD from - 1

Answers

Answer 1
Answer: Answer:14\n\nbecause\ in\ 13\ \overline{AE}=\overline{CA}\ and\ \overline{BE}=\overline{DE}\ is\ a\ rhombus.
Answer 2
Answer: Hello,
----------------------
Answer ⇒ 14
----------------------

Related Questions

Help please! absolute value equations! ​
Simplify a - {b - [c - (d - e) - f] - g}.a + b + c - d + e - f + g a - b + c - d + e - f + g a + b + c + d + e - f + g a - b + c - d + e + f - g
Solve 5 over x plus 8 equals 3 over x for x and determine if the solution is extraneous or not.
What is the equation in point−slope form of the line passing through (−2, −5) and (2, 3)?(A. y+2 = -2(x+5); B. y-2 = 2(x-3); C. y-3 = 2(x-2); D. y+3 = -2(x+2))
What is 1725 with a 15% markup

the measures of two angles of a triangle are 35 degrees and 45 degrees. what is the measure of the third angle of the triangle?

Answers

If it is a triangle, the total degree should be equal to 180.
So the last angle
180 - (35+45)
180 - 80
100

The oven tray is 600mm by 500mm. A cake tin is 25cm in diameter. How many cake tins can jenny fit on the oven tray at one time?

Answers

Oven tray: 600 mm by 500 mm
cake tin: 25 cm in diameter

convert mm to cm.

1 cm = 10 mm

600mm * 1cm/10mm = 60cm
500mm * 1cm/10mm = 50cm

Area of oven tray = 60cm * 50cm  = 3,000 cm²
Area of cake tin = 3.14 * (25cm/2)² = 3.14 * (12.5cm)² = 3.14 * 156.25cm² = 490.625 cm²

3,000cm² ÷ 490.625cm² = 6.11 or 6 cake tins can fit on the oven tray at one time.

Sam borrow $2,000 from the bank at a rate of 7% simple interest per year. How much interest did he pay in five years?

Answers

I would say the same thing the person above says.
with 7% i would say that he was paying 150 at a time

Ashley deposits $1000 into an account that earns 4% interest compounded 2 times per year. how much money will Ashley have in her account after 5 years? round to the nearest cent A)1520.30
B)1892.19
C)1218.99
D)1253.00

Answers

The equation for compound interest is A=P(1+(r)/(n))^(nt), where:
P is the original deposit (or "principal")
r is the rate of the interest (in decimal form)
n is the number of times per year that the interest is compounded
t is the time passed in years

Plugging in your values, we see that the equation becomes A=1000(1+(.04)/(2))^((2)(5))=1000(1.02)^(10)

which equals, to the nearest cent, $1218.99, which is answer C.


Kyle is pulled back on a swing so that the rope forms an angle of 30° with the vertical. The distance from the top of the swing set directly to the ground is 12 feet. Find Kyle’s height off the ground, x, when he is in the pulled-back position. Round the answer to the nearest hundredth.

Answers

When Kyle is in the pulled-back position with the rope forming a 30° angle with the vertical, his height off the ground is 6 feet.

To find Kyle's height off the ground, x, when he is in the pulled-back position, we can use trigonometry.

First, let's draw a diagram to visualize the situation.

The swing set is represented by a vertical line, and the rope forms an angle of 30° with the vertical.

The distance from the top of the swing set to the ground is given as 12 feet.

Now, we can use the concept of sine to solve for Kyle's height off the ground.

The sine of an angle is equal to the length of the opposite side divided by the length of the hypotenuse.

In this case, the height off the ground is the opposite side, and the hypotenuse is the distance from the top of the swing set to the ground.

So, we can set up the following equation:  sin(30°) = x / 12

To  find x, we can multiply both sides of the equation by  12: 12 * sin(30°) = x

Using a calculator, we can find that sin(30°) is equal to 0.5: 12 * 0.5 = x Simplifying the equation: 6 = x

Therefore, Kyle's height off the ground, x, when he is in the pulled-back position, is 6 feet.

In summary, when Kyle is in the pulled-back position with the rope forming a 30° angle with the vertical, his height off the ground is 6 feet.

To know more about  trigonometry here

brainly.com/question/24349828

#SPJ2

This would be 12 - 12*cos(30) = 12 - 6√(3) =  1.608 ft off the ground. 

What is the solution to4(2x– 3)= 2(3x+ 1)?


-5

1

7

10

Answers

4 (2x – 3)= 2( 3x + 1)
(4 (2x – 3)= 2( 3x + 1)) ÷ 2
2 (2x – 3) = (3x + 1)
4x - 6 = 3x +1
-3x       -3x
__________
x - 6 = 1
   +6  +6
______
x = 7