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Montano1993 [528]
3 years ago
11

Billy walks 6/10 mile to school each day. Write 6/10 as hundreds in fraction form and in decimal form

Mathematics
2 answers:
tamaranim1 [39]3 years ago
8 0
60/100 is the correct answer btwwwwwwwwwww
rodikova [14]3 years ago
3 0
60/100 is the correct one
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Carpenters refer to the slope of a roof as the pitch of the roof. Find the pitch of the roof.
KiRa [710]

Answer: Approximately 13 ft

Step-by-step explanation: For this, you have to do the Pythagorean Theorem. First set up an equation. That equation is a squared+b squared=c squared. Next, plug in values. A=12 and b=4. The equation becomes 12 squared+4 squared=c squared. Do the math and you'll get 144+16=c squared. Add and get 160=c squared. Then do the square root of both sides and you'll get 12.649=c. Round to nearest whole number to get approximately 13 ft. You can also represent it as the square root symbol with 160 inside, like this(√160).

3 0
3 years ago
(2k2 - 8k + k4) - (7k+8k^2-5k^4) simplify each difference. write the final answer in standard form. identify the leading coeffic
charle [14.2K]

Answer:

-7k-8k^2+5k^4

Step-by-step explanation:

5 0
3 years ago
Can anyone please help me with this?
dolphi86 [110]

Answer:

idk i can't realy see type it out.

Step-by-step explanation:

6 0
4 years ago
Read 2 more answers
3^x+1=sqrt3 <br><img src="https://tex.z-dn.net/?f=%20%7B3%20%7D%5E%7Bx%20%2B%201%7D%20%3D%20%20%5Csqrt%7B3%7D%20" id="TexFormula
ivanzaharov [21]

Answer:

√3= \sqrt[2]{3}=3^{\frac{1}{2} }

x+1=1/2

x=1/2-2/2=\frac{-1}{2}

Step-by-step explanation:

Hope it helps!

5 0
3 years ago
Read 2 more answers
Organisms A and B start out with the same population size.
Triss [41]

Answer:

At the end of ten days, the size of population B is 256 times that of population A

Step-by-step explanation:

We work under the premise that population A and B start both with the same number of individuals. Let's call such initial population N_0

Now, we write the exponential expression that describes population A as a function of days (t) for the first 6 days:

N_A=N_0\,(2)^t

which represents the starting point with N_0 individuals on day zero, doubling after one day (t= 1), and keeping on doubling the following days for 6 days.

So at the end of 6 days, population A would have the following number of individuals:

N_A=N_0\,(2)^6\\N_A=N_0\,(64)\\N_A=64\,N_0

That is 64 times the starting number of individuals.

After this, the population stops growing and starts reducing to one-half each day. This behavior can be represented by:

N_A=64\,N_0\,(\frac{1}{2} )^t

therefore after 4 days in this pattern, this culture has the following number of organisms:

N_A=64\,N_0\,(\frac{1}{2} )^4\\N_A=64\,N_0\,(\frac{1}{16} )\\N_A=4\,N_0

which is now just four times what the culture started with.

Now, on the other hand, population B grows doubling each day without interruption, so at the end of 10 days its size is given by:

N_B=N_0\,(2)^t\\N_B=N_0\,(2)^10\\N_B=N_0\1024\\N_B=1024\,N_0

that is it has 1024 times the initial number of organisms.

So if we compare both populations at day 10:

\frac{N_B}{N_A} =\frac{1024\/N_0}{4\,N_0} =256

Therefore, at the end of ten days, population B is 256 times the size of population A

4 0
3 years ago
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