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tatyana61 [14]
3 years ago
11

What is 48,000 rounded to the nearest ten thousand

Mathematics
2 answers:
White raven [17]3 years ago
8 0

50,000 because 8 is larger than 5 so you round up to 5 in the ten thousands place.

fredd [130]3 years ago
6 0
It’s 344 because it’s just it I’d it’s slwnwownwiwkwkqiwnwnwkwkwkwkwkwnwnioq a qowbwiwnqknqjwkwow
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A box contains four blue and eight red balls. Jim and Jack start drawing balls from the box, respectively, one at a time, at ran
aleksandrvk [35]

Answer:

the probability that Jack draws the blue ball is 0.38539

Step-by-step explanation:

Given the data in the question;

box contains

blue balls = 5

red balls = 8

Jim and Jack start drawing balls from the box, respectively, one at a time, at random, and without replacement

Now,

on the first attempted;

⇒ ( 8/13) × ( 5/12) = 10/39  

on the second attempt;

⇒ ( 8/13 ) ( 7/12) ( 6/11 ) ( 5/10 ) = 14/143

on the third attempt;

⇒ ( 8/13 ) ( 7/12) ( 6/11 ) ( 5/10 ) ( 4/9 ) ( 5/8 ) = 35/1287

on the fourth attempt;

⇒  ( 8/13 ) ( 7/12) ( 6/11 ) ( 5/10 ) ( 4/9 ) ( 3/8 ) ( 2/7 ) ( 5/6 ) = 5/1287

so we add everything;  

⇒ 10/39 + 14/143 + 35/1287 + 5/1287

= 0.38539

Therefore, the probability that Jack draws the blue ball is 0.38539

5 0
3 years ago
Geometry:<br> What is the correct answer?
Allushta [10]
The last one I think
4 0
3 years ago
Which equation matches the graph of the greatest integer function given
bekas [8.4K]

The equation that matches the graph of the greatest integer function is y = [x] - 2

<h3>How to determine the equation?</h3>

The parent function of an step function is represented as:

y = [x]

From the given graph, we can see that the lines are shifted 2 units down.

This means that:

(x,y) = (x,y - 2)

So, we have:

y = [x] - 2

Hence, the equation that matches the graph of the greatest integer function is y = [x] - 2

Read more about step function at:

brainly.com/question/4074174

#SPJ1

6 0
2 years ago
A. Find the first and second derivative of the following function in terms of the parameters c1 and c2.
defon

Answer:

Linear second-order differential equation F(x, y, y′, y″) = 0

y¹¹( -3 x⁴ )+ y¹12 x³ - 12 x² y= 0  

Step-by-step explanation:

<u><em>Step(i):-</em></u>

Given differential equation

y = c₁x + c₂x⁴  ...(i)

Differentiating equation (i) with respective to 'x', we get

y¹ = c₁(1) +  c₂ ( 4 x³ ) ...(ii)

Differentiating equation (ii) with respective to 'x', we get

y¹¹ =   c₂ ( 12 x² )

C_{2} = \frac{y^{11} }{12 x^{2} } ...(a)

<u><em>Step(ii)</em></u>:-

Substitute (a) in equation (ii)

y^{l} = C_{1} +  (\frac{y^{ll} }{12x^{2} } ) (4 x^{3} )

C_{1} = y^{l} - (\frac{y^{ll} }{12 x^{2} } ) (4 x^{3} ) ...(b)

C_{2} = \frac{y^{11} }{12 x^{2} }

<u><em>Step(iii):</em></u>-

y  = (y^{l} - (\frac{y^{ll} }{12 x^{2} } ) (4 x^{3} ) x + \frac{y^{ll} }{12 x^{2} } x^{4}

12 x² y = (y¹12 x³ - 4 x⁴ y¹¹) + x⁴ y¹¹

x⁴ y¹¹ - 4 x⁴ y¹¹ + y¹12 x³ - 12 x² y= 0

y¹¹( -3 x⁴ )+ y¹12 x³ - 12 x² y= 0

3 0
3 years ago
The table shows the results of a survey of students in two math classes.
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Hjklhfhkggfguknvykbftjv The answer is
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