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PilotLPTM [1.2K]
3 years ago
11

Wha't the slope of the graph please help....

Mathematics
2 answers:
RideAnS [48]3 years ago
4 0

Answer:

3

Step-by-step explanation:

monitta3 years ago
3 0

Answer:

The slope is 3 (PLZ GIVE ME BRAINLIEST!)

Step-by-step explanation:

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Julie and Mona know that that Earth’s average distance from the Sun is approximately 93 million miles and it takes 1 year to com
ryzh [129]

Answer:

16 years

Step-by-step explanation:

Given that :

Earth's distance from sun = 93 million miles

Number of years to complete an orbit = 1 year

Average orbiting distance of new asteroid = 1488 million miles

Number of years to complete an orbit = x

93,000,000 Miles = 1

1488000000 miles = x

Cross multiply :

93000000x = 1488000000

x = 1488000000 / 93000000

x = 16 years

Period taken to orbit the sun = 16 years

8 0
3 years ago
Write an equation about the movement of a Ferris wheel.As a Ferris wheel turns , the distance a rider is above the ground varies
alekssr [168]

Answer:

Step-by-step explanation:

The graph is sketched in the attachment. It's easy to sketch the same graph using the given information. Let's say h is the height. For time t=0 you put a dot on 3 feet since it's the lowest point of the ferris wheel (you get that by substracting the diameter of 40 feet from the highest point given (43 feet).

Second dot is your highest point 43 feet at t=4 sec since it is the half of the circle.

The third dot is your lowest point again at t=8 sec. If you connect the dots like a sine you get the sketched graph.

To find out what is the equation for the graph you need to look at the amplitude which in this case is 20 feet. Then you need to find out the frequency at which the wheel is turning. Since you are given the period (8 sec for a full cycle) you get the frequency:

f=\frac{1}{T}=\frac{1}{8}

Now you need to find out the phase of the wave. Since we want to be at 0 feet at t=0 you need to shift the wave 90° degrees forward or \frac{\pi}{2} in radians.

Finally it's important to shift the whole wave up. You do that by adding the appropriate amount that is in this case the half of the diameter plus the 3 feet to the ground.

The equation you get is:

h(t)=23+A\sin(2\pi f t-\phi)=23+20\sin(0.25\pi t-\frac{\pi}{2})

where A is amplitude, \phi is the phase shift and f is the frequency.

Finally you can get the height at t=4.5 sec:

h(t=4.5)=23+20\sin\left(0.25\pi4.5-\frac{\pi}{2}\right)=41.478\ \text{ft}

8 0
3 years ago
the graph of f(x) shown below has the same shape as the graph of g(x)=x^4 but it is shifted to the right 1 unit what is its equa
klemol [59]
What you must do for this problem is to re-imagine the equation in "vertex form"

Vertex form: y=a(x-h)^{2}  +k
where "h" shifts the graph to the right if "h" is positive" and to the left if "h" is negative. K shifts the graph up and down.

g(x)=a(x-h)^{2} +k
g(x)=1(x-1)^{4} +0
a=1
h=1
k=0

So, your final answer should be: g(x)= (x-1)^{4}
7 0
3 years ago
75% is 4.5cm what is the number
AleksandrR [38]

Answer:

6

Step-by-step explanation:

4.5/3 = 1.5

1.5 x 4 =6

6 0
4 years ago
Read 2 more answers
Perimeter = 210cm<br> Calculate the radius of the sector <br> Angle is 30
marin [14]

Answer:

Step-by-step explanation:

Let the length of the arc of the sector which subtend angle of 30°,2πrx°/360 where x°=30°, this can also be written as πrx°/180 .Perimeter of a sector

2r+ arc length.

Now let the arc length = 22/7 x r x 30/180; this gives, 11r/21cm. Therefore the perimeter = r + r + 11r/21 = 210.

Solving for r in the equation

2r + 11r/21 = 210, multiply through by 21, we now have 42r + 11r = 4410

53r = 4410; divide through by 53, r = 83.2cm. Therefore the length of the arc = 11r/21, 11 x 83.2/21 = 43.6cm.

Check: 2r + 11r/21, 2 x 83.2 + 43.6 = 210cm.

Therefore the radius of the sector

r = 83.2cm.

7 0
3 years ago
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