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Maru [420]
4 years ago
9

Dan and Stephen are playing basketball. The ratio of points scored by Dan to Stephen is 4 to 3. Which of the following could NOT

be the total number of points scored between the two?
Mathematics
1 answer:
djyliett [7]4 years ago
6 0
Where are the options?
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If i earn $6 an hour, how much would i earn in two minutes
Alex17521 [72]
In 1 hour (60 minutes), you earn = $6
so, 1 min, it is = 6/60 = 1/10

Now, in 2 min, it would be = 1/10 * 2 = 1/5 = 0.20

So, you earn $0.20 in 2 minutes

Hope this helps!
8 0
3 years ago
Please answer !! 25 points Select the graph that best represents the "FIGURE."
SVEN [57.7K]

Answer:

your correct

Step-by-step explanation:

you did the explanation

4 0
3 years ago
Read 2 more answers
The loudness, L, measured in decibels (Db), of a sound intensity, I, measured in watts per square meter, is defined as L = 10 lo
Inessa [10]

Answer:

50 Db

Step-by-step explanation:

we know that

The loudness in decibels is given by the formula

L = 10log(\frac{I}{I_0})

where

I  = sound intensity in watts per square meter (Watts/m^2)

I₀ = reference intensity, = 10^(-12) Watts/m^2

so

For I=10^(-7) Watts/m^2

substitute in the formula above and solve for L

L = 10log(\frac{10^{-7} }{10^{-12}})

L = 10log(10^{5})

L = 10 (5)=50\ Db

7 0
3 years ago
Read 2 more answers
If the infinite curve y = e−6x, x ≥ 0, is rotated about the x-axis, find the area of the resulting surface.
Ber [7]
The area:
A = 2  \pi  \lim_{b\to \infty} ( \int\limits^\infty_0 {e ^{-6x} } \, dx)
Substitution: u = - 6 x
du = - 6 dx
dx = -1/6 du
∫ -1/6 e^(u) du = - 1/6 e^(u) = - 1/6 e^(-6x)
A = -1/6 * 2 \pi   \lim_{b \to \infty}  (\int\limits^\infty_0 \, e ^{-6b} db) = \\ =- \pi /3 * ( e ^{-\infty} -e ^{0}) =  \\ = - \pi /3 * ( - 1 ) =
=  π / 3

4 0
3 years ago
Find the volume of the sphere and use 3.14 for T. You may
nirvana33 [79]

Answer:

The answer is C. 904.32 in^3.

Step-by-step explanation:

To find the volume of a sphere with a radius of 6 in, start by using the formula for a sphere, which is V=\frac{4}{3}\pir^{3}. However, for this formula instead of using (\pi), 3.14 will be used.

Now, plug the radius into the formula, and solve for V.

Finally, the answer will be 904.32 in^3.

6 0
3 years ago
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