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Write the complete decay equation for the given nuclide in the complete AZXN notation. Refer to the periodic table for values of Z.(a)Write the complete 𝛽+ decay equation for 11C. (Use 01β to signify the following part of the equation: 𝛽+ + 𝜈e.)

Question

Write the complete decay equation for the given nuclide in the complete AZXN notation. Refer to the periodic table for values of Z.(a)Write the complete 𝛽+ decay equation for 11C. (Use 01β to signify the following part of the equation: 𝛽+ + 𝜈e.)

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Solution

To write the complete decay equation for the given nuclide in the complete AZXN notation, we need to determine the values of A, Z, and N for the nuclide.

For the given nuclide 11C, we can find the values of A, Z, and N by referring to the periodic table. The atomic number (Z) represents the number of protons in the nucleus, which is given as 6 for carbon (C). The mass number (A) represents the total number of protons and neutrons in the nucleus. To find the number of neutrons (N), we subtract the atomic number (Z) from the mass number (A).

For carbon (C), the atomic number (Z) is 6. To find the mass number (A), we need to determine the number of neutrons (N). The mass number (A) for carbon is usually given as 12, which means it has 6 neutrons (N = A - Z = 12 - 6 = 6).

Now that we have the values of A, Z, and N for 11C, we can write the complete decay equation in the AZXN notation.

The complete 𝛽+ decay equation for 11C can be written as:

11C -> 01β + 11B

In this equation, the 11C nuclide undergoes 𝛽+ decay, where a positron (𝛽+) and an electron neutrino (𝜈e) are emitted. The resulting nuclide is 11B.

Please note that the notation 01β signifies the emission of a positron (𝛽+) and an electron neutrino (𝜈e) in the decay process.

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