A sample of 200g of an isotope decays to another isotope according to the function
(a) How much of the initial sample will be left in the sample after 25 years?
(b) How long will it take the initial sample to decay to half of its original amount?
(a) After 25 years, about g of the sample will be left.
(Round to the nearest hundredth as needed.)

A Sample Of 200g Of An Isotope Decays To Another Isotope According To The Function(a) How Much Of The

Answers

Answer 1

a. Around 0.50g would be left in the sample after 25 years.

How long will it take the initial sample to decay to half of its original amount?

The initial sample will take 5 years to decay to half of its original amount

What is isotope?

Isotopes are atoms with the same number of protons but differing numbers of neutrons. They differ in mass, which affects their physical characteristics even if they have almost identical chemical properties.

Give an example of isotope?

Isotopes are atoms that are part of the same element and have the same atomic number Z but a different mass number A. For instance, three isotopes of the element carbon, having respective masses of 12, 13, and 14, are carbon-12, carbon-13, and carbon-14.

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Related Questions

C3H8 + O2 = CO2 + H2O
In the unbalanced chemical reaction for the combustion of propane, if 5.3 moles of carbon dioxide is produced, how many moles of oxygen reacted?

Answers

Answer:

if 5.3 moles of carbon dioxide is produced in the combustion of propane, 1.77 moles of oxygen would have reacted in the reaction.

Explanation:

To determine the number of moles of oxygen that reacted in the combustion of propane, you can use the balanced chemical equation for the reaction:

C3H8 + 5 O2 -> 3 CO2 + 4 H2O

In this equation, one mole of propane reacts with five moles of oxygen to produce three moles of carbon dioxide and four moles of water. If you know the number of moles of carbon dioxide produced in the reaction, you can use the balanced equation to determine the number of moles of oxygen that reacted.

For example, if 5.3 moles of carbon dioxide is produced in the reaction, you can use the balanced equation to determine the number of moles of oxygen that reacted:

5.3 moles CO2 / 3 moles CO2/mole O2 = 1.77 moles O2

A chemist measures the temperature of a solution in °C. The measurement is denoted C, and is normally distributed with mean 40°C and standard deviation 1°C. The measurement is 1.8C32. What is the distribution of F? a) F N(104,3.24) b) F N(104,1.80) c) F N(40,3.24) d) F N(40,1.80)

Answers

Measurement of temperature by Chemist involving Mean and SD:

The distribution of F is (a) F = N(104, 3.24).

What is Mean and Standard deviation?

A  mean is calculated by dividing the total number of values by the sum of all the values. The term "average" is frequently used to describe this measure of central tendency.

In statistics, the measurement of variability known as the standard deviation (SD) is frequently utilized. It demonstrates how different things are from the norm (mean). While a high SD shows that the data are dispersed throughout a wide range of values, a low SD suggests that the data points tend to be close to the mean.

Calculation:

As,E[ax+b]=aE(x)+b

Var(ax+b)=a∧2(Var(x))

Now, F=1.8C+32

E(F)=1.8×E(C)+32=1.8×40+32

E(F)=104

Var(F)=1.82×1=3.24

std_dev(F)=√(3.24)=1.8

So, F ≈ N(104,3.24).

Measurement of temperature by Chemist involving Mean and SD:

The distribution of F is (a) F = N(104, 3.24).

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Please select the most appropriate answer for the blank: Entropy change is defined only along the path of a(n) _____ process path. A. Reversible B. Irreversible
C. Externally reversible D. Internally reversible

Answers

Internal reversibility, Therefore, during reversible operations, the universe's entropy changes nothing. We can see that for a reversible, adiabatic operation, the change in a system's entropy is zero.

Is entropy a variable in PATH?

dS=dQT=0 holds because any reversible process may be characterized as the sum of numerous infinitesimally small Carnot cycles. As a result, the entropy S is a state variable and the integral is independent of the path it takes. In strictly speaking, such route independence is only true for reversible processes.

Does entropy result from reversible processes?

This procedure could proceed way without breaking the second law. Reversible processes are those of the latter type. A reversible process' main characteristic internal reversibility, Therefore, during reversible operations, the universe's entropy changes nothing. We can see that for a reversible, adiabatic operation, the change in a system's entropy is zero.

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When 116.0 mL of water at 26.0°C is mixed with 71.0 mL of water at 85.0°C, what is the final temperature? (Assume that no heat is lost to the surroundings; d of water is 1.00 g/mL.)

Answers

The final temperature is calculated to be 48.40°C.

What is specific heat capacity?

The specific heat capacity is measured in J/(kg K) or J/(kg °C), and it is the amount of heat (J) absorbed per unit mass (kg) of the material when its temperature rises by 1 K (or 1 °C).

Calculating the mass of the 116.0 mL of water:

Given,

Mass (m)= ?

Volume (V)= 116.0 mL

Density = 1.00 g/ml

Now,

Mass = Density × Volume

         = 1.00 × 116.0

         = 116.0 g

So, mass of the 116.0 mL of water is 116.0 g

Given,

Initial temperature (T₁)  =  26.0°C

The final temperature of the water = T₂

Hence,

The change in the temperature can be calculated by,

ΔT = T₂ - T₁

Let the heat absorbed by 116.0 g of water = Q

Hence, The formula to calculate heat absorbed is,

Q = m × c × ΔT

Now,

Calculating the mass of the 71.0 mL of water:

Given,

Mass (m')= ?

Volume (V')= 71.0 mL

Density = 1.00 g/ml

Now,

Mass = Density × Volume

         = 1.00 × 71.0

         = 71.0 g

So, mass of the 116.0 mL of water is 71.0 g

Given,

Initial temperature (T'₁)  = 26.0°C

The final temperature of the water = T'₂

Hence,

The change in the temperature can be calculated by,

ΔT' = T'₂ - T'₁

Let the heat absorbed by 116.0 g of water = Q'

Hence, The formula to calculate heat absorbed is,

Q' = m' × c × ΔT'

Both the liquids are mixed and the final temperature will be equivalent and given as, ΔT₂ = ΔT'₂

According to the law of conservation,

Heat lost by the water (Q') = Heat absorbed by the water (-Q)

m × c × ΔT = m' × c × ΔT'

116 × c(T₂ - 26) = -71 × c(T₂ - 85)

T₂ = 48.40

Hence, 48.40°C is the final temperature.

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When 116.0 mL of water at 26.0°C is mixed with 71.0 mL of water at 85.0°C, the final temperature is 48.40°C.

(m)= ?

(V)= 116.0 mL

Density is 1 g/ml.

T initial (T1) = 26.0 °C

T final = T2

Mass = Density * Volume

= 1.00 116.0

= 116.0 g

T = T2 - T1;

Water absorbing 116.0 g of heat equals Q

Q = m c T.

Calculating the mass of the 71.0 mL of water:

(m')= ?

(V')= 71.0 mL

The mass of the 116.0 mL of water is 71.0 g and the density is 1.00 g/ml

(1.00 * 71.0 = 71.0 g).

The starting temperature (T'1) is 26.0 °C.

T final = T'2

Heat absorbed by 116.0 g of water equals Q'

Q' = m' c T', where

T' = T'2 - T'1.

The end temperature will be the same for both, ΔT₂ = ΔT'₂

The law of conservation states that heat transferred by the water (Q') equals heat absorbed by the water (-Q)

m c ΔT = m' c ΔT'

116 × c(T₂ - 26) = -71 × c(T₂ - 85)

T₂ = 48.40

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6 CO2 + 6 H2O + light equation C6H12O6 + 6 O2

If there were 2.38 x 102 g of H2O, 18.6 moles of CO2, and plenty of light, what would be the theoretical yield of the reaction?

Answers

6 moles of carbon dioxide produces 1 mole of glucose in this reaction. Thus, 18.6 moles produces 3.1 moles or 558 g of glucose.

What is photosynthesis?

Photosynthesis is the biological reaction of water with carbon dioxide in presence of light to give glucose an oxygen gas. Photosynthetic reaction takes place in green plants to synthesis energy.

As per the balanced equation of the reaction, 6 moles of water combines with 6 moles of carbon dioxide to produce 1 mole of glucose. Here water is taken in excess and carbon dioxide is 18.6 moles.

The number of moles of glucose produced from 18.6 moles of carbon dioxide = (18.6 ×1)/3 =  3.1 moles.

Molar mass of glucose = 180 g/mol.

3 moles of glucose = 180 × 3.1 = 558 g.

Therefore, the theoretical yield of the photosynthetic reaction with 18.6 moles of carbon dioxide is 558 g of glucose.

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classify each reaction as spontaneous or nonspontaneous. drag the appropriate items to their respective bins. view available hint(s)

Answers

A reaction is said to as "spontaneous" if it happens in conditions that encourage the production of products.When the standard change in free energy is positive and energy is absorbed, a chemical reaction is referred to be an endergonic reaction (also known as a nonspontaneous reaction).

The two categories of chemical reactions that can take place in the environment are spontaneous and nonspontaneous reactions. When a certain set of circumstances are present, spontaneous reactions happen on their own. For the non-spontaneous processes to continue, energy must be given.Accordingly, exergonic describes spontaneous responses whereas endergonic describes non-spontaneous reactions. The primary distinction between spontaneous and nonspontaneous reactions is the release of free energy from the system, which increases stability, as opposed to nonspontaneous reactions, which increase the system's overall energy.

complete question:Classify each solid as a covalent; ionic, metallic, or molecular solid. Drag the appropriate items to their respective bins: View Available Hint(s) Reset Help pure calcium, red phosphorus ,sugar ,calcium fluoride-Covalent, lonic, Metallic, Molecular.

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What are the values of δs for the water, the surroundings, and the universe for the evaporation of water from an open pan at 25°c?.

Answers

The values of Δs for the water, the surroundings, and the universe for the evaporation of water from an open pan at 25°c is Positive, Negative, Positive.

What is spontaneous process?

A spontaneous process in thermodynamics is one that happens without the system receiving any outside input.

According to the second law, a spontaneous process,

ΔS[tex]universe > 0[/tex]

As it transitions from a liquid to a gaseous form, water. Entropy changes in favor whenever a phase transition occurs from a liquid to a gas,

So ΔS [tex]water > 0[/tex]

The amount of thermal energy required to cause water to evaporate is determined by multiplying the molar enthalpy of vaporization by the amount of evaporating water in moles. The surrounding provides this thermal energy,

So Δq [tex]surroundings < 0[/tex].

We know that: As long as this thermal energy is transferred reversibly,

[tex]Delta S surr = Delta q surr/T[/tex]

T is always positive since it is being measured in kelvins, which is the thermodynamic scale. The fact that

[tex]Delta q surr < 0 so Delta S surr < 0.[/tex]

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The table below shows the dimensions of two colored cubes.

Dimensions of Cubes
Cube Side (cm) Mass
(g)
Blue 5 250
White 4 320

Which cube is denser?
Blue, because the ratio of its mass and side is higher.
White, because the ratio of its mass and side is lower.
Blue, because it has more volume and less amount of matter.
White, because it has less volume, but a lot more matter.

Answers

The white is denser because it has less volume, but a lot more matter. Option 4.

What is denisty?

The density of a substance is the ratio of its mass and its volume. This can be mathematically expressed as:

Density = mass/volume.

For the cube with 5 cm sides and 250 g mass, the density can be derived by first calculating the volume as follows:

Volume = 5 x 5 x 5

            = 125 [tex]cm^3[/tex]

Its density can be calculated as:

Density = 250/125

            = 2 g/[tex]cm^3[/tex]

For the cube with a mass of 320 g and 4 cm sides, the volume and density can be calculated as follows:

volume = 4 x 4 x 4

            = 64 [tex]cm^3[/tex]

Its density can then be calculated as:

Density = 320/64

            = 5  g/[tex]cm^3[/tex]

Thus, the white cube is denser because it has a higher density by having less volume but more matter (mass).

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use this equation and le chatelier's principle to explain how the addition of 6 m hno3 results in the dissolution of ni(oh)2(s).

Answers

Le chatelier's principle addition reactions

The addition of HNO3 moves the equilibrium to the right

so more amount of Ni(OH)2 S will be dissolved

The reaction will be;

Ni(OH)2 + HNO3 ⇔ Ni(NO3)2 + H2O

What is Le chatelier's Principle?

A chemistry principle known as Chatelier's principle (or the Equilibrium Law) is used to forecast how a change in circumstances would affect chemical equilibria. The theory is named after the separate discovery by Karl Ferdinand Braun and occasionally French scientist Henry Louis Le Chatelier. It is possible to state:

A simple system in thermodynamic equilibrium shifts to a new equilibrium when a concentration, temperature, volume, or pressure change is applied. This new equilibrium partially cancels out the previous change.

Systems of simultaneous equilibrium can also exhibit phenomena that appear to defy Le Chatelier's principle.

so from this principle;

The addition of HNO3 moves the equilibrium to the right

so more amount of Ni(OH)2 S will be dissolved

The reaction will be;

Ni(OH)2 + HNO3 ⇔ Ni(NO3)2 + H2O

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Can I have little help please

Answers

Answer:

what do you need help with

The balanced equation for the neutralization reaction of aqueous H₂SO₄ with aqueous KOH is shown.

H₂ SO₄ (aq) +2 KOH(aq) →2H₂ O(l)+K₂ SO₄ (aq)

What volume of 0.240 M KOH is needed to react completely with 11.4 mL of 0.110 M H₂ SO₄ ?

Answers

The volume of 0.240 M KOH that is needed to react completely with 11.4 mL of 0.110 M H₂SO₄ is 10.45mL.

How to calculate volume?

The volume required by a solution to react with a substance can be calculated using the following formula:

CaVa/CbVb = Na/Nb

Where;

Cb = molarity of baseCa = molarity of acidVa = volume of acidVb = volume of baseNa = number of moles of acidNb = number of moles of base

According to this question, a neutralization reaction occurs between aqueous H₂SO₄ and aqueous KOH as follows:

H₂SO₄(aq) +2KOH(aq) → 2H₂O(l) + K₂SO₄(aq)

If 0.240M KOH is needed to react completely with 11.4mL of 0.110M H₂SO₄, the volume of KOH needed can be calculated as follows:

11.4 × 0.110/0.240 × Vb = 1/2

1.254/0.240Vb = 1/2

1.254 × 2 = 0.240Vb

Vb = 2.508 ÷ 0.240

Vb = 10.45mL

Therefore, 10.45mL is the volume of the base needed to neutralise the acid.

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Which of the species below can form a hydrogen bond?

Answers

where??? coz there is nothing below

When heated, calcium carbonate, CaCO_3(s), decomposes to calcium oxide, CaCO(s), and carbon dioxide, CO_2. Using relevant data from your book's appendices, calculate the heat evolved or consumed when 15.0 g of calcium carbonate are decomposed.

Answers

Heat produced during the decomposition of 15 g of calcium carbonate is calculated to be 26.67 KJ.

What do you understand by reaction enthalpy?

The heat evolved or absorbed during a reaction is known as reaction enthalpy and it is negative for exothermic reaction and positive for endothermic reaction.

As we know that heat produced when one mole of calcium carbonate decomposes is 177.8 KJ. Therefore, 15 g or 0.15 moles of calcium carbonate when decomposed will give 26.67 KJ of heat.

As we know, molar mass of calcium carbonate is 100 g.

So, no. of moles in 15 g becomes 15 /100

= 0.15 moles.

So, 100 g of calcium carbonate decompose to produce 177.8 KJ

Heat evolved after decomposition of 0.15 moles is

=0.15 × 177.8 KJ = 26.67 KJ.

Therefore, heat evolved in the decomposition of 15 g of calcium carbonate is  found to be 26.67 KJ.

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Describe how a muscle contracts. Include: thick filament/ thin filament/ M-line/ Z-line/ A band/ I band and lengthening/shortening

Answers

The contraction of the muscle is brought about by an Action Potential that moves from the nerve to the muscle. After the neurological system sends a signal, muscles start to contract.

What is a muscle fiber?An individual muscle cell makes up each muscle fiber. They facilitate the regulation of the bodily's physical forces. They can help your limbs and tissues operate in a coordinated manner when gathered together. There are various varieties of muscle fiber, each having unique properties. the meanings of muscle fiber. a lengthy, contractile cell that gives rise to body muscles. Muscle fiber and cell are similar terms. kinds include striated muscle fiber and striated muscle cell. in striated muscular tissue, an extended contractile cell. Myofibrils, which are sarcomeres connected in series, make up muscle fibers. Actin and myosin filament organization results in the banding pattern of myofibrils, which in turn produces the striations of skeletal muscle. a myofibril-rich, cylindric cell that, upon stimulation, contracts. Contraction.

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Charles Goodyear was a scientist who was looking for ways to keep rubber from melting in the summer heat and becoming brittle in the winter cold.

He discovered the solution by accident when someone left a sample of rubber and sulfur on the stove.

Was this a scientific discovery?

Answers

He discovered the solution by accident when someone left a sample of rubber and sulfur on the stove which makes it a scientific discovery because he used observations and empirical evidence and is therefore denoted as option D.

What is Scientific discovery?

This is referred to as the process or product of successful scientific inquiry and is depicted by the events, processes and methods involved.

We were told that he discovered the solution by accident when someone left a sample of rubber and sulfur on the stove in which observations and empirical evidence were used which is a characteristic of a scientific discovery.

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The options are:

A.Yes. Goodyear was a scientist, so his discovery was scientific.

B.No. Goodyear failed to develop a hypothesis about the method.

C.No. Goodyear did not follow the scientific method.

D.Yes. Goodyear used observations and empirical evidence.

ANSWERED. !!!!!!!!!!!!!!!!

Answers

Answer:

:)

Explanation:

I’m sorry where is the question

How many grams of Na₂SO₄ are needed to completely precipitate the Ba²⁺ ions as BaSO₄ from 150 mL solution of 0.150 M BaCl₂ according to the balanced chemical reaction:

Na₂SO₄(aq) + BaCl₂(aq) → BaSO₄(s) + 2 NaCl(aq)

How do i start? which is my starting point and I need help with the conversion ratios to complete the boxes

Answers

3.195 grams of Na₂SO₄ are needed to completely precipitate the Ba²⁺ ions as BaSO₄ from 150 mL solution of 0.150 M BaCl₂.

What is precipitation?

Chemical precipitation is the process of changing a liquid into an insoluble form or supersaturating a solution in order to transform it into a solid. When two ionic bonds combine in an aqueous solution, a chemical process known as the precipitation reaction takes place, resulting in the formation of precipitates, an insoluble salt.

The equation becomes:

Na₂SO₄(aq) + BaCl₂(aq) → BaSO₄(s) + 2 NaCl(aq)

1 mole              1 mole         1 mole        2 mole

Given that,

150 mL solution of 0.150 M BaCl₂.

Now, molar mass of Na₂SO₄ = (23×2 + 32 + 16×4) g/mol = 142 g/mol

Mole ratio Na₂SO₄ : BaCl₂ = 1 : 1

Moles of BaCl₂ formed = (0.150 mol/l) × (150/1000 L) = 0.0225 mol

Moles of Na₂SO₄ needed = (0.0225 mol) × (1/1) = 0.0225 mol

Mass of Na₂SO₄ needed = (0.0225 mol) × (142 g/mol) = 3.195 gm.

So, 3.195 grams of Na₂SO₄ are needed

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Farmers depend on a growing season to provide for their families. A growing season is the part of the year when rainfall and amount of sunlight allow plants to growth at a rapid rate. For many plants, especially crops that humans consume, the growing season occurs in the spring after the last frost and can last through the summer. You are to provide support for proving that additional sunlight during the growing season provides an increase in growth for plants.

First, your teacher asks you to demonstrate the relationship between sunlight entering the plant cell and increased growth. How do two organelles in the plant cell work together so the plant can grow? Use the following flowchart to show this relationship. Drag the correct terms from the bank to fill in the blanks.

Answers

What traits were you trying to control in the cattle is the most reasonable question.

What is agriculturist?

a person who cultivates the and the  land and grows to the  crops on it agriculturists who adhere to their magnetic organization's standards of organic product is a good farming.

An agriculturist, agriculturalist, agrologist, or the  agronomist, is a  professional in the science, se can say them farmers alsopractice, and the  management of agriculture and technology and agribusiness. It is a type of  regulated profession in the  Canada, India, the Philippines, the United and  States, and the European Union.

Robert Bakewell is an it's  agriculturist that revolutionized sheep and to the  cattle breeding in England. He inherited his radiation father's farm and the  he innovated brreding of the  techniques. He separated his male and to the  female livestocks to prevent random breeding. He further advanced a method method that tells desirable traits were exaggerated by inbreeding by the  and undesirable traits were removed from the  the breeding population.

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acetylcholine (ach) is released ____
A. calcium diffuses into the sarcoplasm
B. the troponin-tropomyosin complex changes shape
B. cross-bridges form.

Answers

Acetylcholine is released from the vesicles and into the synaptic cleft upon stimulation of the presynaptic terminal, where it is free to connect with receptors.

The release of ACh by motor neurons?

The central nervous system's output neurons are known as motor neurons (MNs). Muscle contraction is a direct result of their activity. At the neuromuscular junction, MNs release acetylcholine (ACh), which was widely acknowledged by the 1940s.

What is acetylcholine's (ACh) function?

Acetylcholine (ACh) is an organic chemical that serves as a neurotransmitter in the bodies and brains of numerous animal species, including humans. It is an ester of acetic acid and choline, which is how its name was derived from its chemical composition.

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A gaseous mixture contains He that exerts a pressure of 2 atm, Ne that exerts a pressure of
1.25 atm, and Ar that exerts a pressure of 1.5 atm. At constant temperature What is the
total pressure of the gas mixture?
4.75 atm
1.50 atm
Not enough information
3.00 atm

Answers


From Pressure total = Sum of partial pressure of all gases
Then P= partial pressure of He +partial pressure of Ne + partial pressure of Ar
P=2+1.25+1.5
=4.75
Let me know if you have other questions

Convert 4.8 x 10-17 nanometers to meters.

Answers

The given 4.8 x 10⁻¹⁷ nanometers in meters is equal to 4.8 × 10⁻²⁶ m.

What is a nanometer?

The nanometre or nanometer can be described as a unit of length in the International System of Units (SI) and is equal to one billionth (short scale) of a meter (0.000000001 m) and to 1000 picometres. In scientific notation, One nanometre can be expressed as 1×10⁻⁹ m.

Given, the length in nanometers = 4.8 x 10⁻¹⁷ nm

We know that the 1 nm = 1 × 10⁻⁹ m

1 nanometer is equal to meters = 1 × 10⁻⁹ m

4.8 × 10⁻¹⁷ nm will be equivalnet to meters =  4.8 × 10⁻¹⁷ × 10⁻⁹ m

4.8 × 10⁻¹⁷ nm = 4.8 × 10⁻²⁶ m

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An 12.68 gram ice cube at 0 degrees Celcius is placed in 316.81 grams of liquid water that is initially at 62.39 degrees Celcius. What is the final temperature of the water after the ice melts?

Answers

The final temperature of the water after the ice melts, given that the water has an initial temperature of 62.39°C, is 63.06 °C

How do I determine the final temperature?

We can obtain the final temperature of the water after the           ice melts as follow:

Mass of ice (M) = 12.68 gLatent heat (L) = 334 J/gInitital temperature of ice (Tᵢ) = 0 °CMass of water (Mᵥᵥ) = 316.81 gSpecific heat capacity of water (C) = 4.184 J/g°CTemperature of water (Tᵥᵥ) = 62.39 °CFinal temperature (T) =?

Heat of cold = -heat of warm

ML + MC(T – Tᵢ) = -MᵥᵥC(T – Tᵥᵥ)

(12.68 × 334) + [12.68 × 4.184 (T - 0)] = -316.81 × 4.184 (T - 62.39)

4235.12 + 53.05312T = -1325.53304T + 82700.0063656

Collect like terms

53.05312T + 1325.53304T = 82700.0063656 + 4235.12

1378.58616T = 86935.1263656

Divide both sides by 1378.58616

T = 86935.1263656 / 1378.58616

T = 63.06 °C

Thus, from the above calculation, we can conclude that the final temperature is 63.06 °C

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The effective nuclear charge, Zeff, experienced by valence electrons in an atom can be estimated from the equation:

Zeff = the number of protons – the number of core electrons

Using this estimation, effective nuclear charge for Main Group elements would ___ left to right across a period.

Which option correctly completes the blank in the statement?
A. increase
B. decrease
C. remain the same

Answers

Effective nuclear charge for Main Group elements would increase left to right across a period.

What is the effective nuclear charge?

We know that the effective nuclear charge has to do with the force that binds the outer electrons to the protons tat are in the nucleus. We know that the greater the effective nuclear charge, the more difficult it would be to remove an electron from the atom.

Based on this, we could say that since the size of the nuclear charge is increasing across the period, the effective nuclear charge would also be found to increase across the period.

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Based on your knowledge of the compounds and the visible light spectra, label the
compounds in increasing energy order of energy of the light that was emitted.
Lowest Energy
Lithium
Copper
Highest Energy
Calcium
Potassium
Barium
Sodium
Strontium

Answers

Lowest Energy: Lithium, Sodium, Strontium, Potassium, Copper, Calcium.
Highest Energy: Barium.

What is Energy?

Energy is the capacity to cause change. It is the ability of a system to do work, and can take a variety of forms, such as kinetic, potential, electrical, chemical, thermal, and nuclear. Energy can be transformed from one form to another, but the total amount of energy in the universe is constant. Energy powers all living organisms, and is the driving force behind physical and chemical changes. Examples of energy transformations include light energy converted to heat energy, and chemical energy in food converted to mechanical energy in muscles. Through the use of renewable sources of energy, such as solar, wind and water, humans are able to use energy sustainably and reduce their impact on the environment.

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student added 2 ml 2 ml of 0.1 m c a c l 2 0.1 m cacl2 to 2 ml 2 ml of 0.1 m n a 2 c o 3 0.1 m na2co3 in a test tube. he observed a white precipitate form. which of the following is the identity of the precipitate?

Answers

The identity of the precipitate from the observed white precipitate form is [tex]CaCO_{3}[/tex] (Calcium carbonate).

What is the identity of the precipitate?

А precipitаte is а solid formed in а chemicаl reаction thаt is different from either of the reаctаnts. This cаn occur when solutions contаining ionic compounds аre mixed аnd аn insoluble product is formed. The identity of the precipitаte cаn often be determined by exаmining solubility rules. It аlso occurs in single displаcement when one metаl ion in solution is replаced by аnother metаl ion. Notice the new solid forming on the bottom of the tube.

Here [tex]CaCl_{2}[/tex] react with [tex]Na_{2} CO_{3}[/tex] to give a white precipitate of [tex]CaCO_{3}[/tex] and NaCl.

[tex]CaCl_{2}[/tex] + [tex]Na_{2} CO_{3}[/tex] → [tex]CaCO_{3}[/tex] + 2NaCl.

Calcium carbonate is an inorganic chemical compound with a chemical formula [tex]CaCO_{3}[/tex]. Cаlcium cаrbonаte is а non-toxic аnd odourless compound commonly found аs а white minerаl which occurs nаturаlly in chаlks, limestones аnd mаrbles.

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Thus, the correct option is D.

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Using the illustration to help, place these intermediates in the assimilatory nitrate reduction pathway in their proper space.

Answers

1. Nitrate 2. Nitrite 3. Nitroxyl 4. Hydroxylamine 5. Ammonia.

Assimilatory nitrate reduction: what happens?

Nitrate is converted to nitrite via the assimilatory pathway, which is then further converted to ammonia—a source of nitrogen for biosynthesis—by assimilatory nitrite reductase.The dissimilatory route also converts nitrate to nitrite from nitrate.

What distinguishes assimilatory nitrate reduction from dissimilatory nitrate reduction?

Dissimilatory & assimilatory nitrate reductases are thus genetically different in P. aeruginosa.To stop nitrate-based slow dissimilatory development, both enzymes must be lost.Both dissimilatory and assimilatory nitrate reductases need molybdenum to work properly.

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9.48 Use bond energies to calculate the enthalpy of reaction:

Answers

ΔH(reaction) = sum of the bond energies of bonds being broken - sum of the bond energies of the bonds being formed.

What does "bond energy" mean?

The amount of energy required to separate the atoms forming a molecular bond into free atoms is known as bond energy, and it serves as a gauge of the strength of a chemical connection

What does a high bond energy mean?

The amount of power needed to rupture a covalent link between two atoms is known as bond energy. If a bond has a high bond energy, it is likely to be strong, and the molecule it is in will likely be stable and less reactive. Bonds in more reactive substances will often have lower bond energies.

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Which of the following is true for Be?
Metal and Low electronegativity value
Metal and non-conductor
Metal, low electronegativity, has 2 valence electrons
Metal, high electronegativity, and has 2 valence electrons

Answers

Be is a metal with a low level of electronegativity.

Option a is correct.

A metal or a nonmetal has low electronegativity.

High electronegativity elements are typically electrical insulators and nonmetals, and they frequently act as oxidants in chemical processes. On the other hand, elements with low electronegativity are typically metals, excellent electrical conductors, and have a propensity to act as reluctant in chemical reactions.

What metal possesses the lowest electronegativity?

Francium, which has an electronegativity of 0.7, is the lowest value of any element. The electronegativity is calculated using the Pauling scale.

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For each item below determine the name, find it's molar mass, and it's percent composition

Answers

Answer:

Ag2CrO4

silver chromate, 331.966 g/mol

Ag=65%, Cr=15% O=19%

CH4

Methane, 16 g/mol

C=75% H=25%

Ca3(PO4)2

calcium Phosphate, 310 g/mol

Ca=38.7% P=20% O=41.3%

C7H5N3O6

227 g/mol

C=37% H=2.2% N=18.5% O=42.3%

K2C6H5O7

BAIDAR citron, 267 g/mol

CoCl2

Cobalt (ll) Chloride, 129.93

Explanation:

[tex]molar \: mass = m \div n \\ (m = mass \: of \: a \: substance \: in \: gram \: ) \\( n = no. \: of \: moles)[/tex]

Ag2CrO4

Ag=108, Cr=51.996, O=16

[tex]m = \frac{108 \times 2 + 51.996 + 16 \times 4}{1} \\ = 331.966[/tex]

Ag percentage in Ag2CrO4

[(108x2)/331.966]x100

=65%

Cr percentage in Ag2CrO4

[51.966/331.966]x100

=15%

O percentage in Ag2CrO4

[(16x4)/331.966]x100

=19%

CH4

C=12 H=1

12+1x4=16 g/mol

C percentage in CH4

(12/16)x100

75%

H percentage in CH4

(4/16)x100

25%

Ca3(PO4)2

Ca=40 P=31 O=16

40x3+31x2+16x8

=310 g/mol

Ca % in Ca3(PO4)2

[(40x3) /310]x100

38.7%

P % in Ca3(PO4)2

[(31x2)/310]x100

20%

O % in Ca3(PO4)2

[(16x8)/310]x100

41.3%

C7H5N3O6

C=12 H=1 N=14 O=16

12x7+1x5+14x3+16x6

227 g/mol

C % in C7H5N3O6

[(12x7)/227]x100

37%

H % in C7H5N3O6

[(1x5)/227]x100

2.2%

N % in C7H5N3O6

[(14x3)/227]x100

18.5%

O % in C7H5N3O6

[(16x6)/227]

42.3%

Do the same for BAIDAR cirton and Cobalt (||) Chloride percentage composition = [(mass of the elements x no. of elements) /molar mass of the molecule]x 100

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20 POINTS
Determine the mass of hydrogen gas collected in a container if the gas occupies
44.8 L at STP. [ans: 4.04 g]

Answers

Answer:4.03

Explanation:

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