Write a balanced nuclear reaction for the following:234/91 Pa → 4/2 He+

When balancing the nuclear reaction, explain the following:
How does the Law of Conservation of Matter dictate what the daughter nuclide is?
How do we calculate the atomic mass and atomic number for the daughter nuclide?
Where do we look up what the new daughter nuclide element is?

Answers

Answer 1
Answer: Balanced nuclear reaction: 234/91 Pa → 4/2 He + 230/89 Ac.
1) number of protons and neutrons on both side of nuclear reaction must be the same. There are 91 protons (atomic number) and 143 neutrons (mass number - atomic number, 234 - 91 = 143 or (4-2) + (230 - 89) = 143)) on both side of reaction.
2) a
lphadecay is radioactive decay in whichan atomic nucleus emitsan alpha particle (heliumnucleus) and transforms into an atom with an atomicnumber that is reduced by two and mass number that is reduced by four, so atomic mass of new element is 89 (91 - 2) and mass number is 230 (234 - 4 = 230).
3) look at atomic number, element with atomic number 89 is actinium.
Answer 2
Answer:

Final answer:

The balanced nuclear reaction is 234/91 Pa -> 4/2 He + 230/89 Ac. You calculate the atomic mass and atomic number of the daughter nuclide by subtracting the atomic mass and atomic number of the alpha particle from the parent nuclide. Then, refer to the periodic table to identify the element with the corresponding atomic number.

Explanation:

The process described in the question is a typical alpha decay nuclear process. In this reaction, a Protactinium-234 nuclide emits an alpha particle (which is a Helium nucleus) to produce a new nuclide, the daughter nuclide.

According to the Law of Conservation of Matter, the sum of the mass and atomic numbers (protons + neutrons) of the reactants must equal the sum of the mass and atomic numbers of the products. This means we can calculate the atomic number and atomic mass of the daughter nuclide. The atomic mass would be the difference: 234 - 4 = 230. The atomic number would be the difference: 91 - 2 = 89.

After that, you can identify the new element by its atomic number, 89, from a periodic table, which shows it to be Actinium (89/230 Ac).

So, the balanced nuclear reaction is: 234/91 Pa -> 4/2 He + 230/89 Ac

Learn more about Balancing Nuclear Reactions here:

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]Astrology is a pseudoscience because

Answers

The word Pseudoscience really means that it's just a collection of beliefs or practices that are mistake or regarded as being scientific fact.  Astrology is a belief system, while on the other hand, its brother, Astronomy is a science. These two go hand in hand. It's a quite common mistake to mix up Astrology (star signs) and Astronomy (study of space) .  In order for a hypothesis to be scientific, it has to satisfy a certain criteria: it has to be a testable thing. So therefore Astrology is a business, so it can be skeptical. There is hard to get any proof that Astrology is really a pseudoscience. Sorry if I was not much help.... Hope it helped anyway.

Answer:

no sorry

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“Gasoline boils at a relatively low temperature (about 150°C). The kerosene is removed at around 200°C, followed by diesel oil at 300°C and fuel oil at around 370°C.” What topic is the teacher most likely talking about?

Answers

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Which of the following is true of solids?A. All solids have equal melting points.
B. Ionic solids have higher melting points than molecular solids.
C. Molecular solids have higher melting points than all other types of solids.
D. It is impossible for solids to melt; therefore solids do not have melting points.

Answers

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c. sodium hydroxide
d. hydrogen peroxide

Answers

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Answers

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The reaction A→B has been experimentally determined to be second order. The initial rate is 0.0100M/s at an initial concentration of A of 0.300M. Determine the initial rate at [A]=0.900M.

Answers

Answer:

0.09 M/s is the initial rate when concentration of reactant A is 0.900 M.

Explanation:

A → B

1) Initial concentration of A = [A] =0.300 M

Rate constant of the reaction , k = ?

Rate equation for the second order kinetic is given as:

R=k[A]^2

0.0100M/s=k[0.300 M]^2

k=(0.0100M/s)/([0.300 M]^2)=0.1111 M^(-1) s^(-1)

2) Rate of the reaction when initial concentration of A was 0.900M be R'.

[A] = 0.900M

R'=k[A]^2

R'=0.1111 M^(-1) s^(-1)* [0.900 M]^2

R'=0.09 M/s