The stability of an atom is determined by the: a strength of its gamma rays b ratio of neutrons to protons c number of electrons (2023)

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18.05.2023the following question

The stability of an atom is determined by the: a strength of its gamma rays b ratio of neutrons to protons c number of electrons (1) 0

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18.05.2023, solved by verified expert

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Your correct answer is (B) Ratio of neutrons to protons

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Unlock the full answer 26 students found this answer helpful

B ratio of neutrons to protons

Explanation:

The stability of an atom is determined by the ratio of neutrons to protons in the nucleus of an atom. The lager the ratio of neutrons to proton the lesser is the stability of the nucleus. The n to p ratio of higher atomic number that exist in a number of isotopic form is higher and their stability is low. The uranium 238 breaks down to lead 206.

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Chemistry

The stability of an atom is determined by the: a strength of its gamma rays b ratio of neutrons to protons c number of electrons in the outer shell d attraction between neutrons and electrons

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P Answered by Specialist The stability of an atom is determined by the: a strength of its gamma rays b ratio of neutrons to protons c number of electrons (12) 32

Your correct answer is (B) Ratio of neutrons to protons

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Which of the following will have a lower ionization energy than scandium

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P Answered by Master

Calcium (Ca)(On the periodic table, ionization energy increases as you go up and to the right of the periodic table)

The stability of an atom is determined by the: a strength of its gamma rays b ratio of neutrons to protons c number of electrons (13)

Chemistry

Give an example of a protein structure that would give positive test with Molisch’s Reagent

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P Answered by PhD

glycoproteins

Explanation:

A positive reaction for Molisch's test is given by almost all carbohydrates (exceptions include tetroses & trioses). It can be noted that even some glycoproteins and nucleic acids give positive results for this test (since they tend to undergo hydrolysis when exposed to strong mineral acids and form monosaccharides).

Chemistry

what is the volume of a container that contains 24.0 grams of N2 gas st 328K and .884 atm?

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P Answered by PhD

Answer:

Taking into accoun the ideal gas law, The volume of a container that contains 24.0 grams of N2 gas at 328K and 0.884 atm is 26.07 L.

An ideal gas is a theoretical gas that is considered to be composed of point particles that move randomly and do not interact with each other. Gases in general are ideal when they are at high temperatures and low pressures.

The pressure, P, the temperature, T, and the volume, V, of an ideal gas, are related by a simple formula called the ideal gas law:

P×V = n×R×T

where P is the gas pressure, V is the volume that occupies, T is its temperature, R is the ideal gas constant, and n is the number of moles of the gas. The universal constant of ideal gases R has the same value for all gaseous substances.

Explanation:

In this case, you know:

P= 0.884 atm

V= ?

n= The stability of an atom is determined by the: a strength of its gamma rays b ratio of neutrons to protons c number of electrons (14) 0.857 moles (where 28 g/mole is the molar mass of N₂, that is, the amount of mass that the substance contains in one mole.)

R=0.082The stability of an atom is determined by the: a strength of its gamma rays b ratio of neutrons to protons c number of electrons (15)

T= 328 K

Replacing in the ideal gas law:

0.884 atm×V= 0.857 moles× 0.082The stability of an atom is determined by the: a strength of its gamma rays b ratio of neutrons to protons c number of electrons (16) ×328 K

Solving:

The stability of an atom is determined by the: a strength of its gamma rays b ratio of neutrons to protons c number of electrons (17)

V= 26.07 L

The volume of a container that contains 24.0 grams of N2 gas at 328K and 0.884 atm is 26.07 L.

The reaction of 15 moles carbon with 30 moles O2. Will result in a theoretical yield of_ moles CO2.

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P Answered by PhD

15 moles.Explanation:Hello,In this case, the undergoing chemical reaction is:Clearly, since carbon and oxygen are in a 1:1 molar ratio, 15 moles of carbon will completely react with 15 moles of oxygen, therefore 15 moles of oxygen remain as leftovers. In such a way, since carbon and carbon dioxide are also in a 1:1 molar ratio, the theoretical yield of carbon dioxide is 15 moles based on the stoichiometry:Best regards.

Chemistry

carbon 14 has a half life of 5730 years how much carbon 14 will remain in a 100 g sample after 11460 years

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P Answered by PhD

Answer: 25 g
Explanation: Given:
Original amount (N₀) = 100 g
Number of half-lives (n) = 11460/5730 = 2
Amount remaining (N) = ?
N = 1/2ⁿ × N₀
N = 1/2^2 × 100
N = 0.25 × 100
N = 25 g

Chemistry

The half life of radium 226 is 1602 years. If you have 500 grams of radium today how many grams would have been present 9612 years ago?

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P Answered by PhD

Answer: 7.8125 g
Explanation: Given:
Original amount (N₀) = 500 g
Number of half-lives (n) = 9612/1602 = 6
Amount remaining (N) = ?
N = 1/2ⁿ × N₀
N = 1/2^6 × 500
N = 0.015625 × 500
N = 7.8125 g

Chemistry

A magnesium chloride solution reacts with potassium phosphate solution to form a white precipitate.knowing that virtually all potassium compounds are soluble they dissolve in water,write the balanced equation for this reaction.include all subscripts

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P Answered by PhD

Answer: The product formed is potassium chloride.
Explanation:
Precipitation reaction is defined as the chemical reaction in which an insoluble salt is formed when two solutions are mixed containing soluble substances. The insoluble salt settles down at the bottom of the reaction mixture.

The chemical equation for the reaction of potassium phosphate and magnesium chloride follows (look at the picture)

2 moles of aqueous solution of potassium phosphate reacts with 3 moles of aqueous solution of magnesium chloride to produce 1 mole of solid magnesium phosphate and 6 moles of aqueous solution of potassium chloride.
The stability of an atom is determined by the: a strength of its gamma rays b ratio of neutrons to protons c number of electrons (18)

Chemistry

Chemistry, 29.01.2021 19:10 Lovely7290 Which chemical name and formula are correct A. Diarsenic pentoxide, A5O5 B. carbon tetrachloride, CCI4 C. Sodium dichromate, Na2Cr2 D. magnesium phosphide, MgP please help​

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P Answered by PhD

Answer: B. carbon tetrachloride, CCI4
Explanation: The other options are incorrect. Let's write the correct formulas:
A. Diarsenic pentoxide - As2O5
C. Sodium dichromate - Na2Cr2O7
D. magnesium phosphide - Mg3P2

Chemistry

Classify each solution as acidic, basic, or neutral. a. [H+] = 6.0 x 10-10M b. [OH-] = 30 × 10-2M C. IH+1 = 20× 10-7M d. [OH-] = 1.0 x 10-7M

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P Answered by PhD

Answer: a. basic
b. basic
c. acidic
d. neutral

Explanation: Acids and bases can be classified in terms of hydrogen ions or hydroxide ions, or in terms of electron pairs. (look at the picture)
Let us note that from the pH scale, a pH of;
0 - 6.9 is acidic
7 is neutral
8 - 14 is basic

But pH= - log [H^+]
pOH = -log [OH^-]
Then;
pH + pOH = 14
Hence;
pH = 14 - pOH

a. [H+] = 6.0 x 10-10M
pH= 9.22 is basic
b. [OH-] = 30 × 10-2M
pH = 13.5 is basic
C. IH+1 = 20× 10-7M
pH = 0.56 is acidic
d. [OH-] = 1.0 x 10-7M
pH = 7 is neutral
The stability of an atom is determined by the: a strength of its gamma rays b ratio of neutrons to protons c number of electrons (19)

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