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Alex17521 [72]
3 years ago
13

Use the Pythagorean Theorem to find the missing side. Round your answer to the nearest hundredth.

Mathematics
1 answer:
dmitriy555 [2]3 years ago
7 0

Answer:

55m

Step-by-step explanation:

a²+b²=c²

19 x 19 = 361

52 x 52 = 2704

2704 + 361= 3065

the square root of 3065 is 55.4 so round that to 55.

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Mario fille a hummingbird feeder with 3/4 cup of sugar water on Friday .Monday , Mario sees that 1/8 of sugar water is left .how
tino4ka555 [31]

\frac{5}{8} of total sugar was drink by humming bird

<h3><u>Solution:</u></h3>

Given that,

When the Mario kept the humming feeder on Friday it had \frac{3}{4} cup of sugar water

When he sees on Monday, it had only \frac{1}{8} of sugar water

So, this means the water is consumed by the humming bird will be the difference of the two values:-

\text { Sugar water consumed }=\frac{3}{4}-\frac{1}{8}

On solving we get,

=\frac{3}{4}-\frac{1}{8}=\frac{24-4}{32}=\frac{20}{32}

=\frac{5}{8}

Hence, the amount of sugar water consumed is \frac{5}{8} of total sugar at the starting

5 0
4 years ago
Solve the following system of equations.<br> y=4x+11 <br> y=x+38
slamgirl [31]
24213214215211111111111 NIGS
5 0
4 years ago
How many 3 card hands are possible with a 36​-card ​deck?
melomori [17]

Answer:

is 2

Step-by-step explanation:

6 0
3 years ago
An object travels along a horizontal straight path at a constant rate the object travels 1/20 of the length of the path in 3/4 s
Eduardwww [97]

Answer:

15 seconds

Step-by-step explanation:

Simply assume that total length to be covered be 'L'.

Now  , \frac{1}{20} of total length L is covered in time \frac{3}{4}seconds.

We know distance traveled =speed×time

Let Object's velocity be V

Using this

     \frac{L}{20}=V×time

    \frac{L}{20}=V*\frac{3}{4}

Thus, velocity in terms of total length is

      V=\frac{L}{15}

Now,

 To cover total length L time needed is

time =\frac{distance}{speed}

time=\frac{L}{\frac{L}{15} }

Time taken =15 seconds

3 0
4 years ago
A planet has a circular orbit around a star. It is a distance of 98,000,000 km from the centre of the star. It orbits at an aver
avanturin [10]

Answer:

91 days

Step-by-step explanation:

Given that,

A planet is at a distance of 98,000,000 km from the centre of the star.

It orbits at an average speed of 45,000 km/h.

The speed of an object is given by the distance covered divided by the time taken. So,

v=\dfrac{d}{t}\\\\t=\dfrac{d}{v}\\\\t=\dfrac{98,000,000}{45,000}\\\\t= $$2177.77\ h

or

t = 90.74 days ≅ 91 days

So, the planet take 91 days to orbit the star.

5 0
3 years ago
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