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Fynjy0 [20]
3 years ago
5

Identify m angle MNO. PLS HELP:)

Mathematics
1 answer:
Yuliya22 [10]3 years ago
5 0

Answer:

m<MNO=150° it is equal to 150°

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A field goal kicker lines up to kick a 44 yard (40m) field goal. He kicks it with an initial velocity of 22m/s at an angle of 55
Goryan [66]

Answer:

The ball makes the field goal.

The magnitude of the velocity of the ball is approximately 18.166 meters per second.

The direction of motion is -45.999º or 314.001º.

Step-by-step explanation:

According to the statement of the problem, we notice that ball experiments a parabolic motion, which is a combination of horizontal motion at constant velocity and vertical uniform accelerated motion, whose equations of motion are described below:

x = x_{o}+v_{o}\cdot t\cdot \cos \theta (Eq. 1)

y = y_{o} + v_{o}\cdot t \cdot \sin \theta +\frac{1}{2}\cdot g\cdot t^{2} (Eq. 2)

Where:

x_{o}, y_{o} - Coordinates of the initial position of the ball, measured in meters.

x, y - Coordinates of the final position of the ball, measured in meters.

\theta - Angle of elevation, measured in sexagesimal degrees.

v_{o} - Initial speed of the ball, measured in meters per square second.

t - Time, measured in seconds.

If we know that x_{o} = 0\,m, y_{o} = 0\,m, v_{o} = 22\,\frac{m}{s}, \theta = 55^{\circ}, g = -9.807\,\frac{m}{s} and x = 40\,m, the following system of equations is constructed:

40 = 12.618\cdot t (Eq. 1b)

y = 18.021\cdot t -4.904\cdot t^{2} (Eq. 2b)

From (Eq. 1b):

t = 3.170\,s

And from (Eq. 2b):

y = 7.847\,m

Therefore, the ball makes the field goal.

In addition, we can calculate the components of the velocity of the ball when it reaches the field goal post by means of these kinematic equations:

v_{x} = v_{o}\cdot \cos \theta (Eq. 3)

v_{y} = v_{o}\cdot \cos \theta + g\cdot t (Eq. 4)

Where:

v_{x} - Final horizontal velocity, measured in meters per second.

v_{y} - Final vertical velocity, measured in meters per second.

If we know that v_{o} = 22\,\frac{m}{s}, \theta = 55^{\circ}, g = -9.807\,\frac{m}{s} and t = 3.170\,s, then the values of the velocity components are:

v_{x} = \left(22\,\frac{m}{s} \right)\cdot \cos 55^{\circ}

v_{x} = 12.619\,\frac{m}{s}

v_{y} = \left(22\,\frac{m}{s} \right)\cdot \sin 55^{\circ} +\left(-9.807\,\frac{m}{s^{2}} \right)\cdot (3.170\,s)

v_{y} = -13.067\,\frac{m}{s}

The magnitude of the final velocity of the ball is determined by Pythagorean Theorem:

v =\sqrt{v_{x}^{2}+v_{y}^{2}} (Eq. 5)

Where v is the magnitude of the final velocity of the ball.

If we know that v_{x} = 12.619\,\frac{m}{s} and v_{y} = -13.067\,\frac{m}{s}, then:

v = \sqrt{\left(12.619\,\frac{m}{s} \right)^{2}+\left(-13.067\,\frac{m}{s}\right)^{2} }

v \approx 18.166\,\frac{m}{s}

The magnitude of the velocity of the ball is approximately 18.166 meters per second.

The direction of the final velocity is given by this trigonometrical relation:

\theta = \tan^{-1}\left(\frac{v_{y}}{v_{x}} \right) (Eq. 6)

Where \theta is the angle of the final velocity, measured in sexagesimal degrees.

If we know that v_{x} = 12.619\,\frac{m}{s} and v_{y} = -13.067\,\frac{m}{s}, the direction of the ball is:

\theta = \tan^{-1}\left(\frac{-13.067\,\frac{m}{s} }{12.619\,\frac{m}{s} } \right)

\theta = -45.999^{\circ} = 314.001^{\circ}

The direction of motion is -45.999º or 314.001º.

8 0
3 years ago
Rita is in her way home in her car. She has driven 30 miles so far, which is three-fifths of the way home. What is the total len
Dahasolnce [82]
If Rita has driven 30 miles so far (three-fifths of the way home), you can calculate what is the total length of her drive using the following steps:

x ... total length
three-fifths of the way home = 30 miles
3/5 of x = 30 miles
3/5 * x = 30    /*5/3
x = 30 * 5/3
x = 50 miles

The total length of her drive is 50 miles.
5 0
4 years ago
Please answer ASAP!!!
Gwar [14]

Answer:

Wheres the question

Step-by-step explanation:

4 0
3 years ago
The mean per capita income is 20,90820,908 dollars per annum with a standard deviation of 407407 dollars per annum. What is the
LiRa [457]

Answer:

z=\frac{20880-20908}{\frac{407}{\sqrt{55}}}= -0.51

z=\frac{20936-20908}{\frac{407}{\sqrt{55}}}= 0.51

Then we can find the probability of interest with this difference:

P(-0.51

And using the normal standard distribution or excel we got:

P(-0.51

So then the probability  that the sample mean would differ from the true mean by less than 28 dollars from the sample of 55 is approximately 0.390

Step-by-step explanation:

We define the variable of interest as the per capita income and we know the following properties for this variable:

\mu=20908 and \sigma=407

We want to find this probability:

P(20908-28

We select a sample size of n=55 and we define the z score formula given by:

z=\frac{x-\mu}{\frac{\sigma}{\sqrt{n}}}

We can find the z score then for 20880 and 20936 and we got:

z=\frac{20880-20908}{\frac{407}{\sqrt{55}}}= -0.51

z=\frac{20936-20908}{\frac{407}{\sqrt{55}}}= 0.51

Then we can find the probability of interest with this difference:

P(-0.51

And using the normal standard distribution or excel we got:

P(-0.51

So then the probability  that the sample mean would differ from the true mean by less than 28 dollars from the sample of 55 is approximately 0.390

7 0
3 years ago
Solve 3^(x − 2) = 37.<br> A 2<br> B 5<br> C 7<br> D 9
ASHA 777 [7]

Answer:

<h2>D.  9</h2>

Step-by-step explanation:

3^{x-2}=3^7\iff x-2=7\qquad\text{add 2 to both sides}\\\\x-2+2=7+2\\\\x=9

7 0
3 years ago
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