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Dovator [93]
3 years ago
7

What is the product (6.45x10^6). 720,000 enter your answer in the box in scientific notation

Mathematics
2 answers:
mamaluj [8]3 years ago
7 0

Answer:1.944x10^14

Step-by-step explanation:

Standard notation is only numbers as the answers the scientific notation is with what above and the e notation is with numbers including e in it.

dangina [55]3 years ago
4 0
<span><span><span>6.45<span>(<span>106</span>)</span></span><span>(720)</span></span>;0</span><span>4644000000;<span>0

Your answer should be 4,644,000,000</span></span>
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Factor out the coefficient of the variable. 1/3b-1/3
BartSMP [9]
1/3b-1/3
factor out 1/3
1/3(b-1)

hope this helps
5 0
3 years ago
What is the result of -7+10-(-3)?
Natasha2012 [34]

Answer:6

Step-by-step explanation:

-7+10-(-3)

Using BODMAS

-7+10+3

3+3=6

4 0
3 years ago
Read 2 more answers
PLZZZ help with this its pretty simple!
marysya [2.9K]

Answer:

Ok so first you want to distribute the -1 in front of the 3x^2-7x+1

Which turns the problem into

X^2+5x-6 -3x^2+7x-1

Then just combine like terms

-2x^2+12x-7

Also ^ followed by the number is the exponent

5 0
3 years ago
Find the center of mass of the wire that lies along the curve r and has density =4(1 sin4tcos4t)
dolphi86 [110]

The mass of the wire is found to be 40π√2 units.

<h3>How to find the mass?</h3>

To calculate the mass of the wire which runs along the curve r ( t ) with the density function δ=5.

The general formula is,

Mass = \int_a^b \delta\left|r^{\prime}(t)\right| d t

To find, we must differentiate this same given curve r ( t ) with respect to t to estimate |r'(t)|.

The given integration limits in this case are a = 0, b = 2π.

Now, as per the question;

The equation of the curve is given as;

r(t) = (4cost)i + (4sint)j + 4tk

Now, differentiate this same given curve r ( t ) with respect to t.

\begin{aligned}\left|r^{\prime}(t)\right| &=\sqrt{(-4 \sin t)^2+(4 \cos t)^2+4^2} \\&=\sqrt{16 \sin ^2 t+16 \cos ^2 t+16} \\&=\sqrt{16\left(\sin t^2+\cos ^2 t\right)+16}\end{aligned}

Further simplifying;

\begin{aligned}&=\sqrt{16(1)+16} \\&=\sqrt{16+16} \\&=\sqrt{32} \\\left|r^{\prime}(t)\right| &=4 \sqrt{2}\end{aligned}

Now, use integration to find the mass of the wire;

       \begin{aligned}&=\int_a^b \delta\left|r^{\prime}(t)\right| d t \\&=\int_0^{2 \pi} 54 \sqrt{2} d t \\&=20 \sqrt{2} \int_0^{2 \pi} d t \\&=20 \sqrt{2}[t]_0^{2 \pi} \\&=20 \sqrt{2}[2 \pi-0] \\&=40 \pi \sqrt{2}\end{aligned}

Therefore, the mass of the wire is estimated as 40π√2 units.

To know more about density function, here

brainly.com/question/27846146

#SPJ4

The complete question is-

Find the mass of the wire that lies along the curve r and has density δ.

r(t) = (4cost)i + (4sint)j + 4tk, 0≤t≤2π; δ=5

5 0
2 years ago
Trigonometry help please I have to find b
PtichkaEL [24]

Answer:

Step-by-step explanation:

sin(32°) = b/340

b = 340sin(32°) ≅ 180 inches

8 0
3 years ago
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