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Lelu [443]
3 years ago
12

What is the length of the diagonal of the rectangle

Mathematics
1 answer:
sp2606 [1]3 years ago
4 0

Answer:

19.2

Step-by-step explanation:

Okay, so if we slice this rectangle in half along the diagonal, we see that we can use the Pythagorean Theorem, a^2+b^2=c^2 to find the length of the diagonal. 12^2+15^2=369. The square root of 396 is 19.20937... rounded to the tenths is 19.2.

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98 POINTS!
vagabundo [1.1K]
BD

55°

The yellow rectangle was reflected over both axes

May be wrong. I haven't found this in awhile if it is wrong sorry

4 0
3 years ago
Previously, an organization reported that teenagers spent an average of 4.3 hours per week, on average, on the phone. The organi
yKpoI14uk [10]

Answer:

The null hypothesis is H_{0} = 4.3.

The alternate hypothesis is H_{a} > 4.3

Step-by-step explanation:

Null hypothesis:

The previously report, the known value.

Alternate hypothesis:

What is questioned(higher, lower, different,...) of the null hypothesis

Previously, an organization reported that teenagers spent an average of 4.3 hours per week, on average, on the phone.

This means that the null hypothesis is H_{0} = 4.3.

The organization thinks that, currently, the mean is higher.

That is, higher than 4.3. So

The alternate hypothesis is H_{a} > 4.3

7 0
3 years ago
Identify the value of the 7 in 7.724 (the one before the point)
Alchen [17]
The 7 before the decimal would be classified as a tenth
3 0
4 years ago
Consider the expression 40+24 Find the greatest common factor of the two numbers and rewrite the expression using the distributi
Natalka [10]

Answer:

Greatest Common Factor of 40+24 is 8

Rewriting the expression using the distributive property we get             8(5+3) =8(5)+8(3)

Step-by-step explanation:

We need to F=find the greatest common factor of the two numbers 40+24 and rewrite the expression using the distributive property

  • Greatest Common Factor:

The greatest number that is divisible by both numbers is known as greatest common factor.

So, Greatest Common Factor of 40+24 is 8

Now, Taking 8 common we get: 8(5+3)

  • Distributive property:

It is written as: a(b+c) = ab+ac

So, we have 8(5+3) =8(5)+8(3)

Rewriting the expression using the distributive property we get 8(5+3) =8(5)+8(3)

5 0
3 years ago
You place the spring vertically with one end on the floor. You then drop a book of mass 1.20 kg onto it from a height of 0.900 m
Shtirlitz [24]

The question is not complete and this is the complete question;

"A spring of negligible mass has a force constant k = 1500 N/m. You place the spring vertically with one end on the floor. You then drop a book of mass 1.20 kg onto it from a height of 0.900 m above the top of the spring. Find the maximum distance the spring will be compressed. Take the free fall acceleration to be 9.80 m/s².

Answer:

Maximum distance = 12.69cm

Step-by-step explanation:

Using the Law of Conservation of Energy and knowing that the energy of the book that transfers to the spring is the change in the gravitational potential energy of the book, we can say:

PEspring (initial) + PEgravitational (initial) = PE spring(final) + PE gravitational(final)

From the question, we can see that, Initially the spring is uncompressed and so PE spring(initial) = 0J.

Thus, we get:

PE spring(final) = PE gravitational(initial) − PE gravitational(final)

Since, PE spring(final) is the final potential energy that is stored in the spring after dropping the book on it, then, PE gravitational(initial)

is the initial gravitational energy of the book at the height ℎ, while PE gravitational(final) is the final gravitational energy of the book when the spring is compressed by the maximum distance ∆.

Hence, we can write that;

(k/2)(∆x)² = mgh − mg(−∆x)

So,

(k/2)(∆x)² - mg(∆x) - mgh= 0

So, k = 1500; m=1.2kg; g=9.8m/s²; h=0.9m

Thus,

(1500/2)(∆x)² - (1.2x9.8)(∆x) - (1.2 x 9.81 x 0.9) = 0

750(∆x)² - 11.76(∆x) - 10.584 = 0

So this is now a quadratic equation, thus;

Using quadratic formula: x = - b

(∆x) = -b ± √[(b²— 4ac)/2a]

So, (∆x) = -(-11.76) + √[(11.76²— 4(750)(-10.584))/(2x750)]

Or (∆x) = -(-11.76) - √[(11.76²— 4(750)(-10.584))/(2x750)]

Solving for the roots, we have;

(∆x) = - 0.1112 or 0.1269

The maximum distance can’t be negative, so the correct answer will be the positive one.

So (∆x) = 0.1269m or 12.69cm

8 0
3 years ago
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