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lawyer [7]
3 years ago
7

The height to the top of the

Mathematics
2 answers:
lara31 [8.8K]3 years ago
8 0
200,836,937,908 Feet
mrs_skeptik [129]3 years ago
3 0

Answer:

the answer 1,206.82

Step-by-step explanation:

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What is 2.4 divided by 16?
Soloha48 [4]

Answer:

.15

Step-by-step explanation:

4 0
3 years ago
A sculptor is planning to make two triangular prisms out of steel. The sculptor will use △ABC for the bases of one prism and △DE
Misha Larkins [42]

Answer:

a)

<u>Verify is the corresponding sides have same ratio:</u>

  • AB / DE = 50/60 = 5/6
  • BC / EF = 20/24 = 5/6

Since the ratios are same, the triangles are similar

b)

<u>If one dimension is same, the base areas will make difference by the square of the scale factor:</u>

  • (6/5)² = 1.44 times

4 0
3 years ago
Now consider a cube of mass m with edges of length
LekaFEV [45]
1/6 ma^2

You can solve this by considering moment of inertia of a square plate along the central axis and using the perpendicular axis theorem.
4 0
4 years ago
I need this for sis!:D I will give thanks!
Rzqust [24]
I do believe that it is the second one I’m not 100% sure but I’m pretty sure it is
7 0
3 years ago
Question: An airport deli sells turkey, ham, and roast beef sandwiches. A customer can choose between turkey,
Dmitry_Shevchenko [17]

Answer:

\displaystyle \frac{1}{12}.

Step-by-step explanation:

Ginger selects the ingredients randomly. Therefore, the choices she makes would be independent. In other words, her choice of cheese (and mayonnaise) won't depend on what she chose for meat. Therefore:

\begin{aligned}& P(\text{(roast beef) and (cheese) and (no mayonnaise)}) \\ &= P(\text{roast beef})\cdot P(\text{cheese}) \cdot P(\text{no mayonnaise})\end{aligned}.

It is worth noting that this equality would not be valid if the choices are not independent. For example, if Ginger is more likely to choose mayonnaise after choosing cheese, then P(\text{(roast beef) and (cheese) and (no mayonnaise)}) and P(\text{roast beef})\cdot P(\text{cheese}) \cdot P(\text{no mayonnaise}) would likely be different.

What is the probabilities that Ginger would select roast beef for the sandwich? The question states that Ginger is "equally likely" to select each of turkey, ham, and roast beef. In other words:

P(\text{roast beef})= P(\text{turkey}) = P(\text{ham}).

At the same time, Ginger has to choose exactly one of these options. She can't choose no meat of more than one options at a time. Therefore:

P(\text{roast beef})+ P(\text{turkey}) + P(\text{ham}) = 1.

Combine these two equations to conclude that:

  • \displaystyle P(\text{roast beef}) = \frac{1}{3}.

Similarly, Ginger has to choose between cheese or no cheese, and mayonnaise or no mayonnaise. Therefore:

  • \displaystyle P(\text{cheese}) = \frac{1}{2}.
  • \displaystyle P(\text{mayonnaise}) = \frac{1}{2}.

Back to the probability for roast beef, cheese, and no mayonnaise:

\begin{aligned}& P(\text{(roast beef) and (cheese) and (no mayonnaise)}) \\ &= P(\text{roast beef})\cdot P(\text{cheese}) \cdot P(\text{no mayonnaise}) \\ &= \frac{1}{3} \times \frac{1}{2} \times \frac{1}{2} \\ &= \frac{1}{12}\end{aligned}.

8 0
4 years ago
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