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Savatey [412]
3 years ago
7

24 points Which diagram BEST models 4x2/3?

Mathematics
2 answers:
grin007 [14]3 years ago
8 0
I think the right one is b
Hoochie [10]3 years ago
4 0
D) because the final answer should be 8/3. See the attachment.

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Use the table to complete the statements. The x-intercepts shown in the table are and . The y-intercept shown in the table is
sukhopar [10]

Answer:

The x- intercepts shown in the table are (-2,0) and (2,0)

The y- intercept shown in the table is (0,-4)

4 0
3 years ago
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Solve five ninths minus two sixths equals blank.
larisa [96]

Answer:

6/3 I think so try c and if it’s not I’m not sure

Step-by-step explanation:

:)

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3 years ago
The fees for a biochemistry major are $1,728. To major in biochemistry. Toby requires 144 credit hours of coursework. How can he
bogdanovich [222]

Answer:

144x=1728

Step-by-step explanation:

144 credit hours and x will be the cost per hour equals the total 1728. Its 12 dollars an hour

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3 years ago
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adiocarbon dating of blackened grains from the site of ancient Jericho provides a date of 1315 BC ± 13 years for the fall of the
Zigmanuir [339]

Answer:

\left(\frac{m(t)}{m_{o}} \right)_{min} \approx 0.659 and \left(\frac{m(t)}{m_{o}} \right)_{max} \approx 0.661

Step-by-step explanation:

The equation of the isotope decay is:

\frac{m(t)}{m_{o}} = e^{-\frac{t}{\tau} }

14-Carbon has a half-life of 5568 years, the time constant of the isotope is:

\tau = \frac{5568\,years}{\ln 2}

\tau \approx 8032.926\,years

The decay time is:

t = 1315\,years + 2007\,years \pm 13\,years (There is no a year 0 in chronology).

t = 3335 \pm 13\,years

Lastly, the relative amount is estimated by direct substitution:

\frac{m(t)}{m_{o}} = e^{-\frac{3335\,years}{8032.926\,years} }\cdot e^{\mp\frac{13\,years}{8032.926\,years} }

\left(\frac{m(t)}{m_{o}} \right)_{min} = e^{-\frac{3335\,years}{8032.926\,years} }\cdot e^{-\frac{13\,years}{8032.926\,years} }

\left(\frac{m(t)}{m_{o}} \right)_{min} \approx 0.659

\left(\frac{m(t)}{m_{o}} \right)_{max} = e^{-\frac{3335\,years}{8032.926\,years} }\cdot e^{\frac{13\,years}{8032.926\,years} }

\left(\frac{m(t)}{m_{o}} \right)_{max} \approx 0.661

4 0
3 years ago
Sᴇʟᴀᴍᴀᴛ sᴏʀᴇ sᴇᴍᴜᴀɴʏᴀ....<br>ᑭOIᑎT ᘜᖇᗩTIՏ ᑌᑎTᑌK Տᗴᗰᑌᗩ ᑌ,ᑌ<br>ᶠᵒˡˡᵒʷ ᵐᵉ =&gt; ᶠᵒˡˡᵒʷᵇᵃᶜᵏ .​
enyata [817]

Answer:

ok

Step-by-step explanation:

7 0
3 years ago
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