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Crank
4 years ago
15

When a metallic ball bearing is placed inside a cylindrical container, of radius 2 cm, the height of the water, inside the conta

iner, increases by 0.6 cm. The radius, to the nearest tenth of a centimeter, of the ball bearing is
A. 1 cm
B. 1.2 cm
C. 2 cm
D. 0.6 cm
Mathematics
2 answers:
Aleksandr [31]4 years ago
8 0
The correct answer is B.
Vlad [161]4 years ago
5 0
When a metallic ball bearing is placed inside a cylindrical container, of radius 2 cm, the height of the water, inside the container, increases by 0.6 cm. The radius, to the nearest tenth of a centimeter, of the ball bearing is <span>B. 1.2 cm.</span>
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A person walks 2/ 3 of a mile in 2 /9 of a hour. Which complex fraction when simplified will compute the unit rate of miles per
Maksim231197 [3]
<span>unit rate of miles per hour = (2/3) / (2/9) </span>
8 0
3 years ago
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What is the justification for the step taken from line 2 to line 3? 5 lines of math. The first line has, 3 x plus 9 minus 7 x eq
SVETLANKA909090 [29]

Answer:

The subtraction property of equality

Step-by-step explanation:

just took it.

7 0
3 years ago
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Choose the kind(s) of symmetry: point, line, plane, or none. 7
Naya [18.7K]
I assume that you mean the *numeral* 7, the written for of the number in a common font. 
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6 0
4 years ago
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How would I do the last question if the equation of the graph has been given? Could you please explain the last problem step by
kicyunya [14]
<h3>Answer:  140625 </h3>

======================================================

Explanation:

Replace every copy of "w" with "x"

So the function we graph is y = (1500-2x)*x/2

I used GeoGebra to make the graph below. Note the scale on the xy axis. In this case, x is incrementing by 100 while y is incrementing by 50,000. The scale is important so you have a good viewing window. You don't have to have this scale exactly, but something close to it should do the trick. Without the proper scale, you probably won't see the curve at all. You may see a straight line instead, or it may appear completely blank.

You can use Desmos to make the graph. Just keep in mind the scale of course.

Once you have the graph set up, use the max feature of your graphing calculator or graphing software to locate the vertex point. In GeoGebra, the function I used is "Max". I typed in Max(f, 0, 800) where f is the function mentioned earlier. With Desmos, you simply need to click on the curve itself to have the max point show up. Click on the vertex point to have the coordinates listed.

The max point is located at A = (375, 140625) as shown in the diagram below. The x coordinate is the value of "w" that we replaced earlier. So a width of w = 375 feet corresponds to the max area of 140625 square feet.

Side note: later on in your math career, you have the option to use calculus to solve a problem like this. Though for now, we can rely on a graphing calculator to get the job done quickly.

4 0
3 years ago
can someone give me the answers ( the answers are on the last page of the worksheet but like I have no idea how to do the work)
astraxan [27]

Answer:

Step-by-step explanation:

-8-4v=40 add 8 to both sides

-4v=32 divide both sides by -4

v= -8

3v+2v=25

5v=25  divide both sides by 5

v=5

x/2 - 8 = -14 add 8 to both sides

x/2= - 6

-6 * 2= -12

check

-12/2-8=-14

-6-8=-14

-14= -14

-6+n/3= -3 add 6 to both sides

n/3=3

3*3=9

check

-6+9= -3

-3 = -3

5 0
3 years ago
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