calculate the amount of daughter isotope that has been produced after 1, 2, 3, and 4 half-lives. include 4 decimal places in your answers daughter present: 0.0000 unit (i.e., no daughter isotope is present) after 1 half-life: 0.5000 units

Answers

Answer 1

The amount of daughter isotope that has been produced after 1, 2, 3, and 4 half-lives is 0.9375.

remaining after 1 half life = 1.0000/2 = 0.5000

remaining after 2 half lives = 0.5000/2 = 0.2500

remaining after 3 half lives = 0.2500/2 = 0.1250

remaining after 4 half lives = 0.1250/2 = 0.0625

For parent isotope:

In each half life the amount of remaining parent isotope will be half of the remaining of previous half life.

Therefore,

Parent present = 1.0000

present after 1 half life = 0.0000+ (1.0000 - 0.5000)=0.5000

present after 2 half lives = 0.5000+ (0.5000 -0.2500) = 0.7500

present after 3 half lives = 0.7500+ (0.2500 -0.1250) = 0.8750

remaining after 4 half lives = 0.8750+ (0.1250 - 0.0625)=0.9375

For daughter isotope:

The amount of daughter isotopes will be found by adding the value by which the number of parent isotope is decreased by in the relevant half life to the available daughter isotopes.

Daughter isotopes initially present: 0.0000

                        Daughter isotope         Parent isotope       Daughter to

                                 present                 remaining               parent ratio                                                                                

Starting state:           0.0000                1.0000                 0.0000/1.0000 =0

After 1 half life:          0.5000               0.5000                  0.5000/0.5000=1

After 2 half lives:     0.7500                0.2500                   0.7500/0.2500=3

After 3 half lives:     0.8750                0.1250                     0.8750/ 0.1250=7    

After 4 half lives:    0.9375               0.0625                     0.9375/0.0625=15

the amount of daughter isotope that has been produced after 1, 2, 3, and 4 half-lives is 0.9375.

and Ratio of the amount of daughter to the amount of parent isotope is 15.

For more such questions on Daughter isotope:

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Related Questions

What is the ratio of the number of molecules in 1 L of CO2(g) to the number of molecules in 1 L of CH4(g) at the same temperature and pressure? * 2 points 1:1 3:5 1:2 2:4

Answers

Answer:

1:1

Explanation:

Based on Avogadro's law, the volume of an ideal gas is directly proportional to the moles (Or number of molecules) presents of this gas under constant temperature.

The volume of the gas is independent to the nature of the gas

Using this law, we can change the state as:

X number of molecules of CO₂ in X number of molecules of CH₄ (Because are occupying the same volume). That means the ratio of molecules is:

1:1

Plate Tectonics Independent Practice,
Label The Diagram With The Correct Information.

Answers

Answer:

1st Diagram (at the left) → Mid-Atlantic Ridge

2nd Diagram (at the right) → Andes Mountains

3rd Diagram (below) → San Andreas Fault

Explanation:

I have been able to label the diagram with the correct information.

The 1st diagram at the left is the Mid-Atlantic Ridge. This is a divergent plate boundary that is found at the floor of the Atlantic Ocean. It is also seen as part of the mountain range in the world. The Mid-Atlantic Ridge also includes a deep rift valley. This rift valley runs along the axis of the ridge. This is along nearly its entire length.

The Andes Mountains is found along the Pacific Ring of Fire. It is seen in a Mesozoic–Tertiary orogenic belt of mountains. The Andes rises due to the compression of the western rim of the South American Plate. It is a result of tectonic plate processes.

San Andreas Fault is known to form the tectonic boundary which exists between the Pacific Plate and the North American Plate. The motion of the fault is right-lateral strike-slip. It divides into three segments.

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Answer:

A

Explanation:

Look at the wave in the picture. If it has a wavelength of 2 cm, how far apart are points A and B? How do you know?

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Answer:

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what is a characteristic of a strong acid

Answers

Answer:

Strong acids have mostly ions in solution, therefore the bonds holding H and A together must be weak. Strong acids easily break apart into ions. Weak acids exist mostly as molecules with only a few ions in solution, therefore the bonds holding H and A together must be strong

Answer:

Bond Strength

Explanation:

Strong acids have mostly ions in solution, therefore the bonds holding H and A together must be weak. Strong acids easily break apart into ions. Weak acids exist mostly as molecules with only a few ions in solution, therefore the bonds holding H and A together must be strong.Aug 15, 2020

Calculate the pOH and the pH of a 5.0 x 10-2 M solution of NaOH.

Answers

Answer:

pOH = 1.3, pH = 12.7

Explanation:

Since NaOH is a strong base, it will completely ionize; further, since it completely ionizes, our hydroxide concentration (a product of the ionization) will be the same as the given concentration of NaOH.

NaOH -> Na⁺ + OH⁻, [OH⁻] = 5.0 x 10^-2 M

pOH is the negative log of the hydroxide concentration, so plug our hydroxide concentration in:

pOH = -log[OH⁻] = -log[5.0 x 10^-2 M] = 1.3

Since pH + pOH = 14, we can plug in pOH and solve for pH:

pH + 1.3 = 14

pH = 14 - 1.3 = 12.7

Thus, our pOH = 1.3 and pH = 12.7.

For the reaction So3 + H2O -> H2SO4, how many grams of sulfur trioxide are required to produce 4.00 mol of sulfuric acid

Answers

Answer:

320 grams of sulfur trioxide are required to produce 4.00 mol of sulfuric acid.

Explanation:

The balanced reaction is:

SO₃ + H₂O → H₂SO₄

By reaction stoichiometry (that is, the relationship between the amount of reagents and products in a chemical reaction), the following amounts of moles of each compound participate in the reaction:

SO₃: 1 moleH₂O: 1 moleH₂SO₄: 1 mole

Being the molar mass of each compound:

SO₃: 80 g/moleH₂O: 18 g/moleH₂SO₄: 98 g/mole

By reaction stoichiometry, the following mass quantities of each compound participate in the reaction:

SO₃: 1 mole* 80 g/mole= 80 gramsH₂O: 1 mole* 18 g/mole= 18 gramsH₂SO₄: 1 mole* 98 g/mole= 98 grams

Then you can apply the following rule of three: if 1 mole of sulfuric acid is produced by the reaction of 80 grams of sulfur trioxide, 4 moles of sulfuric acid is produced from how much mass of sulfur trioxide?

[tex]mass of sulfur trioxide= \frac{4 moles of sulfuric acid* 80 grams of sulfur trioxide}{1 mole of sulfuric acid }[/tex]

mass of sulfur trioxide= 320 grams

320 grams of sulfur trioxide are required to produce 4.00 mol of sulfuric acid.

The mass of the required compound is 320 grams

Chemical reactions

Given the chemical equation expressed as:

[tex]SO_3 + H_2O \rightarrow H_2SO_4[/tex]

According to stochiometry, 1 mole of SO3  produces 1 mole of H2SO4, hence the moles of SO3 will also be 4.00moles

Determine the mass of SO3

Mass = mole * molar mass

Mass = 4.0 * [32+3(16)]

Mass = 4.0 * 80

Mass = 320 grams

The mass of the required compound is 320 grams

Learn more on stoichiometry here:  https://brainly.com/question/16060223

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protons and electrons


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protons and neutrons

Answers

I believe the answer is: Protons and Neutrons
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Answers

The answer is A how it react with other chemicals


❤️
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Answers

Answer:

C.) Earthquake

Explanation:

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Earthquakes occur due to the shift of tectonic plates. It sends seismic waves throughout the earth's crust, and causes the ground to shake temporarily.

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Explanation:

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B is gas


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Love you

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Answer:

Most solar cells are made from silicon—the same semiconductor material that is at the heart of computers. The cells are expensive to produce because it takes a great deal of energy to purify the silicon.

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Answers

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True

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a

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becsaus

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The answer is c ..................

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Answers

Answer:

Mg(s) + Cl₂  -------> MgCl₂

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explain what is meant by an exothermic reaction and write balanced equation for any two exothermic changes

Please do not answer from links
Please answer correctly
Urgent

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[tex] \: \: \: \: \: \: \: \: \: \: \: \: \: \: \: \: \: \: \: \: \red{ \underline{ \large \orange{\tt{ ꧁ A \: N\: S \: W \: E \: R ꧂}}}}[/tex]

✧ [tex] \large{ \red{\tt{E\:X \: O \: T \: H \: E \: R \: M \: I \: C \: \: R \: E \: A \: C \: T\: I \: O \: N}} : }[/tex]

☃ The chemical reaction in which heat is released to the surroundings is called exothermic reaction. The amount of heat energy released is written along with products. This indicates that heat is given out.

[tex] \pink{ \text{Any \: two \: balanced \: equation \: for \: Exothermic \: changes}} : [/tex]

C + O₂ ⇾ CO₂ + HeatCaO + H₂O ⇾ Ca ( OH )₂ + Heat

ツ Hope I helped! ♡

☂ Have a wonderful day / night ! ☄

[tex] \underbrace{ \overbrace{ \mathfrak{Carry \: On \: Learning}}}[/tex] ✎

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balance : _ Na + _ H2O

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Answer:

2, 2

Explanation

Help me pretty please

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Answer:

The top answer

(12) Magnesium metal burns very brightly to produce heat and a white solid.
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B exothermic
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D thermal decomposition

Answers

Answer:

exothermic

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The pressure in a Red Rider BB gun cartridge is 1.5 atm. If the rifle was at 25 °C prior to firing, what is the temperature change of the cartridge after firing if the cartridge reaches standard air pressure of 1.0 atm?

Answers

Answer:

–99 °C

Explanation:

From the question given above, the following data were obtained:

Initial pressure (P₁) = 1.5 atm

Initial temperature (T₁) = 25 °C

Final pressure (P₂) = 1 atm

Change in temperature (ΔT) =?

Next, we shall determine the final temperature. This can be obtained as follow:

Initial pressure (P₁) = 1.5 atm

Initial temperature (T₁) = 25 °C + 273 = 298 K

Final pressure (P₂) = 1 atm

Final temperature (T₂) =?

P₁/T₁ = P₂/T₂

1.5 / 298 = 1 / T₂

Cross multiply

1.5 × T₂ = 298

Divide both side by 1.5

T₂ = 298 / 1.5

T₂ = 199 K

Converting 199 K to °C, we have:

T(°C) = T(K) – 273

T₂ = 199 – 173

T₂ = –74 °C

Finally, we shall determine change in temperature. This can be obtained:

Initial temperature (T₁) = 25 °C

Final temperature (T₂) = –74 °C

Change in temperature (ΔT) =?

ΔT = T₂ – T₁

ΔT = –74 – 25

ΔT = –99 °C

Thus, the change in the temperature is –99 °C

What is the molarity of a solution prepared by dissolving 198 g of BaBr2 in 2.00 liters of solution?

Answers

Answer:

The molarity of the solution is 0.335 [tex]\frac{moles}{liter}[/tex]

Explanation:

Molar concentration is a measure of the concentration of a solute in a solution, be it some molecular, ionic, or atomic species.

Molarity is the number of moles of solute that are dissolved in a certain volume and is calculated by:

[tex]Molarity=\frac{number of moles of solute}{volume}[/tex]

Molarity is expressed in units [tex]\frac{moles}{liter}[/tex].

Being the molar mass of BaBr2 equal to 297.14 g/mole, that is to say that 1 mole contains 297.14 grams, the mass of 198 grams are contained in:

[tex]198 grams*\frac{1 mole}{297.14 grams} = 0.67 moles[/tex]

So:

number of moles of solute= 0.67 molesvolume= 2 L

Replacing in the definition of molarity:

[tex]Molarity=\frac{0.67 moles}{2 L}[/tex]

Solving:  

Molarity= 0.335 [tex]\frac{moles}{liter}[/tex]

The molarity of the solution is 0.335 [tex]\frac{moles}{liter}[/tex]

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Answers

I’m not exactly sure if this or correct but,

I, Se, Al, Ag, then Ca is the order for decreasing electronegativity (EN)

Explanation: EN increases from left to right and decreases going up to down. Due to I, Se, and Ag being on the far right of the periodic table, they have the highest EN. As you go across the periodic table, EN increases. This is why Ca would have the lowest EN. Essentially, the elements on the top right have the highest EN.

AL is aluminum, last, that stuff blows up in microwaves 5

Ag is silver, 3

Ca is calsium 2

Se is a metaloid, Selenium,  4

I is Iodine- first 1

ng.
3. Connect to Technology How do probes,
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s

Answers

They make finding things easier so we plug abs don’t need to go on the other planets and can just send the -robots

Explain why, if soil on a vehicle is in a clump, care
should be taken to keep the clump intact.

Answers

Answer:

it could harbor dangerous chemicals that damage the car if released

it could be holding parts together

it could have something dangerous inside

A student suggests that the colorless liquid collected in the U‐tube is water.
Describe how to test the colorless liquid to show it contains water.

Answers

Answer:

How would you confirm that a colourless liquid given to you is pure water? A very easy solution is to take a sample of the colourless liquid and put it on the stove if it starts boiling exactly at 100 ºC then it is pure water. Any other colourless liquid such as vinegar always has a different boiling point.

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