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rusak2 [61]
2 years ago
4

In 1771, misfortune struck Euler again, when a cataract in his left eye robbed him of his sight entirely. Incredibly, this did n

ot seem to slow him at all. In fact, during his remaining thirteen years, his publishing output accelerated. Of the 886 books and articles he produced in his lifetime – on topics including mathematics, philosophy, mechanics, electricity, astronomy, optics, and music – half of them were completed after total blindness!
Use the drop-down menus to complete the statements about Euler's life after he lost his sight.
After the cataract took Euler's sight, he______
.
About how many books and articles did Euler complete after he lost his sight entirely?
_____
Mathematics
3 answers:
Ivan2 years ago
8 0

Use the drop-down menus to complete the statements about Euler's life after he lost his sight.

After the cataract took Euler's sight, he wrote more books and articles

.

About how many books and articles did Euler complete after he lost his sight entirely? 450


nignag [31]2 years ago
4 0

Answer:

#1) wrote more books and articles than before; #2) 443

Step-by-step explanation:

The summary states that Euler's publishing output accelerated after the cataract.  This means that he wrote more books and articles than before.

Since half of his books and articles were produced after the cataracts, this means he produced

886/2 = 443 after the cataract.

Guest1 year ago
0 0

Answers:
1 drop-down: wrote more books and articles
2 dropdown: 450

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Answer:

Cliff is 45 m tall.

Step-by-step explanation:

Given:

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Angle of elevation 50 m back = 30°

As shown in the figure we have two right angled triangles SPQ and SPR.

Let the height of the cliff be h meters and h= h_1+h_s.

Using trigonometric ratios:

tan (Ф) = opposite/adjacent

In ΔSPQ.                                        In ΔSPR.

⇒ tan(60) = \frac{h_1}{x} ...equation (i)        ⇒ tan (30)=\frac{h_1}{x+50}  ...equation (ii)

Dividing equation (i) and (ii)

⇒ \frac{tan(60)}{tan(30)} = \frac{h_1}{x} \times \frac{x+50}{h_1}

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Keith_Richards [23]

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a) 7.54189*10^-8

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Step-by-step explanation:

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- The mean s( X ) of the defined random variable distributed binomially is given by:

   

                    s ( X ) = √n*p*q = √(6*0.065*0.935) = 0.604

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