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guajiro [1.7K]
2 years ago
8

Phosphorus 32 has a half life of 14.3 days how much of a 4mg sample of phosphorus - 32 will remain after 71.5 days

Physics
1 answer:
andrew-mc [135]2 years ago
6 0

Let us first find out the radioactive constant of Phosphorus 32.

Radioactive constant, λ = \frac{ln2}{t_{1/2}}

Here, {t_{1/2} is half life of phosphorus 32 = 14.3 days

λ = \frac{ln2}{14.3}

The amount of 4 mg of phosphorus remain after 71.5 days can be found using the formula,

m=m₀e⁻(λt)

= 4*e^{-\frac{ln2}{14.3}71.5}

= 4*e^{-ln2*5}

=4*e^{-ln(2)^{5}}

=4*e^{-ln32}

=\frac{4}{32}

= 0.125 mg

The mass of 4 mg of phosphorus 32 remains after 71.5 days will be 0.125 mg.

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<u>Solution:</u>

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2 years ago
A transition metal complex in solution has an absorption peak at 450 nm, in the blue region of the visible spectrum. What color
Ivan

Answer:

In the case of a solution transition metal complex that has an absorption peak at 450 nm in the blue region of the visible spectrum, the (complementary) color of this solution is orange (option B).

Explanation:

The portion of UV-visible radiation that is absorbed implies that a portion of electromagnetic radiation is not absorbed by the sample and is therefore transmitted through it and can be captured by the human eye. That is, in the visible region of a complex, the visible color of a solution can be seen and that  corresponds to the wavelengths of light it transmits, not absorbs. The  absorbing color is complementary to the color it transmits.

So, in the attached image you can see the approximate wavelengths with the colors, where they locate the wavelength with the absorbed color, you will be able to observe the complementary color that is seen or reflected.

<u><em> In the case of a solution transition metal complex that has an absorption peak at 450 nm in the blue region of the visible spectrum, the (complementary) color of this solution is orange (option B).</em></u>

7 0
2 years ago
A basketball rolls off a deck that is 3.2 m from the pavement. The basketball lands 0.75 m from the edge of the deck. How fast w
astra-53 [7]

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d). The value of y should be -32m

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t^{2}=\frac{2*x_{f}}{a} \\t=\sqrt{\frac{2*x_{f}}{a}}=\sqrt{\frac{2*-3.2m}{-9.8\frac{m}{s^{2}}}}\\t=0.808s

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5 0
2 years ago
How high above the earth's surface is g reduced to 8.80m/^2?
Sladkaya [172]
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so we set the constant values to R1 and the unknown distance as x

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solving for x we will get 

x = 345.85 km above the earths surface
</span>

<span>Hope my answer would be a great help for you.    
If </span>you have more questions feel free to ask here at Brainly.

<span> </span>


6 0
2 years ago
Read 2 more answers
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