Cabr2 will most likely dissolve in which solvent? 1. bi3 2. h2o 3. br2 4. ccl4 5. c8h18

Answers

Answer 1
General principle of solubility is 'like dissolves like'

[tex] CaBr_{2} [/tex] is an ionic compound, wherein the constituent ions ([tex] Ca^{2+} [/tex] and [tex] Br^{-} [/tex]) are held by electrostatic forces of interaction. 

Such ionic compounds are soluble in polar solvents. 

Among the solvent mentioned in question, water ([tex] H_{2}O [/tex]) has maximum polarity. Hence, [tex] CaBr_{2} [/tex] is most likely to dissolve in [tex] H_{2}O [/tex]

Related Questions

What is the consequence of deforestation?

Answers

loss of biodiversity

Answer:

The consequence of deforestation is discussed below.

Explanation:

One of the outcomes of deforestation is a waste of biodiversity. Deforestation also improves greenhouse gas discharges, disturbs the water series, improves soil erosion and reduces the physical attraction of a region.deforestation causes the Decline of nutrients in the clay that are obtained from the categorization of tree petals.

Does the structure below exhibit geometric isomerism? ch3 tally1 ch3― c ―ch═ch―ch3 tally1 ch3

Answers

Answer:
             YES! The given compound exhibit Geometrical Isomerism.

Explanation:
                      In Geometrical Isomerism or Cis-Trans Isomerism, isomers possess same molecular formula, same structural formula with a double bond and with a only difference in the arrangement of atoms or group of atoms about the double bond in three dimensional space.
                      4,4-dimethylpent-2-ene (given problem) has two groups about the double bond i.e. Methyl (CH₃-) and tertiary Butyl [(CH₃)₃-C-]. In cis configuration both groups are at same side of the double bond, while in trans configuration both groups are located opposite to each other as shown below;

Choose all the answers that apply. The sun: heats the earth evenly;can acclerate the water cycle;is closer to the earth during the summer;is the perfect distance from earth;causes surface waves

Answers

can accelerate the water cycle; is the perfect distance from earth

Answer:

Heats the earth evenly;can acclerate the water cycle;is the perfect distance from earth.

Explanation:

Radiation is the most important process of heat propagation, because it is through it that the heat of the sun reaches the earth. Without this process there would be no life on earth. While conduction and convection occur only in material media, radiation also occurs in a vacuum, so it is possible for the sun to heat the earth evenly.

The heat radiated by the sun heats the water of rivers, lakes, seas and oceans occurring the phenomenon of evaporation during the water cycle. At this point, the liquid state of water changes to its gaseous state as it moves from the earth's surface to the atmosphere. For this reason we can say that the sun can accelerate the water cycle.

Although the Earth's orbit around the Sun is an ellipse, not a circle, the distance from Earth to the Sun varies by only 3%, with the Earth being closest to the Sun from January 4-7 each year, depending on leap year. But it's easy to remember that the northern hemisphere of the earth is also closer to the sun in January and it's winter there, while it's summer in the southern hemisphere. So we cannot say that the earth is closer to the sun in summer, but between January 4th and 7th.

Living conditions on earth are a puzzle to astronomy. A little closer to the sun - and we'd be a greenhouse and toxic high-pressure gas plant like Venus. A little farther - and the gases would escape, the water would freeze, there would be at most microbes, as on Mars. The earth is the perfect distance to house water, oxygen, carbon and complex life forms.

Surface Waves are seismic waves that propagate to the Earth's surface and result from interference between P waves and S waves (called volumetric waves). It is to the surface waves that are due to the great destruction caused by the earthquakes. The sun does not interfere with the creation of these waves, which is a factor caused by the movement of the earth and other geological terms.

The concentration of kbr in a solution prepared by dissolving 2.10 g of kbr in 897 g of water is __________ molal.

Answers

Final answer:

To find the molality of a KBr solution, divide the mass of KBr (2.10 g) by its molar mass (119.0 g/mole) to get moles, and then divide by the mass of the solvent in kilograms (0.897 kg of water).

Explanation:

The concentration of KBr in a solution prepared by dissolving 2.10 g of KBr in 897 g of water is calculated using the molality formula. Molality is defined as the number of moles of solute per kilogram of solvent. First, we need to find the number of moles of KBr by dividing the mass (2.10 g) by its molar mass (119.0 g/mole), which gives us the number of moles. Then, we divide the number of moles by the mass of the solvent (water) in kilograms to obtain the molality of the solution.

The calculation is as follows:

Number of moles of KBr = 2.10 g / 119.0 g/moleMolality (m) = Number of moles of KBr / 0.897 kg (mass of water)

By performing these calculations, we can determine the molality of the KBr solution.

What are some of the solutes in low-fat chocolate milk?

Answers

water, proteins, fats, lactose and minerals and vitamins.

Answer:

 

Explanation:

The lowfat chocolate milk is a milk which can be prepared by using milk of low fat or skimmed milk, in which chocolate syrup and sugar syrup can be added additionally.

The main solutes in low-fat milk will be chocolate syrup that contains cocoa powder, some fat, calcium and vitamin D.  

This composition will be tasty and people of age groups can drink this. It is good for providing instant energy to athletes after work out.  

Which of the following gases will have the highest velocity at a given temperature? (3 points)
A .Ne
B. O2
C .He
D. Cl2

Answers

The correct option is C.
Helium gas will have the highest velocity at a given temperature because it has the lowest atomic mass of all the gases given. The atomic mass of gases affect their rate of movement. The lower the atomic mass, the faster the gas molecules moves and the higher the atomic mass, the slower the gas molecules move. 

Answer:

Option-(C)-  

Helium, He is the most lightest among the given four elements. As the molecular mass of helium,He is about  4.002602 u. It is considered the second most lightest element inside the periodic table after the hydrogen,H atom which is the lightest of all.

Explanation:

Velocity dependence upon the molecular weight of the element:

The molecular weight of the different elements gives them the very specific features including the ability to travel fast in a given space. While the helium,He is considered one of the lightest elements in the universe so, it has a greater velocity among the four options.

For example:

A person with less weight will run much faster as compared to a person having more weight.

a weather balloon contains 8.80 moles of helium at a ppressure of 0.992 atm and a temperature os 25 C at ground level. What is the volume of the balloon under these conditions?

Answers

we can use the ideal gas law equation to find the volume of the balloon.
PV = nRT 
where 
P - pressure - 0.992 atm x 101 325 Pa/atm = 100 514 Pa
V - volume 
n - number of moles - 8.80 mol 
R - universal gas constant  - 8.314 Jmol⁻¹K⁻¹
T - temperature in kelvin - 25 °C + 273 = 298 K
Substituting these values in the equation 
100 514 Pa x V = 8.80 mol x  8.314 Jmol⁻¹K⁻¹ x 298 K
V = 217 L
volume of balloon is 217 L
Final answer:

By using the Ideal Gas Law and the given conditions, we can calculate the volume of the weather balloon to be approximately 221.4 liters.

Explanation:

The volume of a gas can be determined by using the Ideal Gas Law: PV = nRT. Here, P is the Pressure, V is the Volume, n is the number of moles, R is the universal gas constant and T is the absolute Temperature. The constants provided in the question are the moles of Helium (8.80 moles), the Pressure (0.992 atm) and the Temperature (25 C).

Firstly, we need to convert the temperature from Celsius to Kelvin. The conversion formula is: T(K) = T(C) + 273.15. Thus, T(K) = 25 + 273.15 = 298.15 K.

Now, we use these values in the Ideal Gas Law to find the volume. We rearrange the formula to solve for volume: V = nRT / P. Substituting the given values and the gas constant R as 0.0821 atm L/mol K, we get:

V = (8.80 moles * 0.0821 L atm / (mol K) * 298.15 K) / 0.992 atm = 221.4 L

Therefore, the volume of the weather balloon under the given conditions is approximately 221.4 Liters.

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What method could you use to seperate oil from water? Remember that the both must still remain, they just have to be seperated.

Answers

1. You could drain off the oil as a supernatant, since oil is less dense than water.
2. You could attempt to evaporate the water since they have different boiling points (212 vs 572 F), and then condense it in a separate container using a distillation unit.

The process by which complex compounds are decomposed by living systems is called
fermentation
distillation
oxidation
reduction

Answers

A. Fermentation

Hope this helps!
the answer is fermentation

Anthracene is a yellow, crystalline solid found in coal tar. complete this structure for anthracene, c14h10, by adding bonds and hydrogen atoms as necessary.what type of hybrid orbitals are utilized by carbon in anthracene?how many σ bonds and π bonds are there in an anthracene molecule? how many valence electrons occupy σ-bond orbitals and how many occupy π -bond orbitals?

Answers

Anthracene is a polycyclic aromatic hydrocarbon with chemical formula C₁₄H₁₀. The number of fused rings in Anthracene are three in number. This compound is colorful and is used in the formation of different dyes due to its property of deloclization of pi electrons. All the carbon atoms in Anthracene are sp² hybridized with a trigonal planar structure hence, the Anthracene is planar in nature.

Number of Sigma Bonds:

                                         There are 26 sigma bonds (colored in Blue) in Anthracene among which 10 sigma bonds are between carbon and hydrogen atoms while the remaining are between the carbon atoms.

Number of Pi-Bonds:

                                  There are 7 pi bonds in Anthracene (colored in red). All pi bonds are present between carbon and carbon atoms.

Number of Electrons in Sigma Bonds:

                                                             As one sigma bond is formed by 2 electrons hence, 26 sigma bonds will be formed by 52 electrons.

Number of Electrons in Pi Bonds:

                                                       As one pi bond is formed by the side wise overlap of two p orbitals hence one pi bond is formed by two electrons so, 7 pi bonds will be formed by 14 electrons.

The hybrid orbital that is utilized by the carbon in anthracene is [tex]\boxed{{\text{s}}{{\text{p}}^2}}[/tex] .

The anthracene molecule contains [tex]\boxed{{\mathbf{26}}{\text{ }}{\mathbf{sigma}}}[/tex] bonds and [tex]\boxed{{\mathbf{7}}{\text{ }}{\mathbf{\pi }}}[/tex]  bonds.

The number of valence electrons in sigma orbital is [tex]\boxed{{\mathbf{52}}}[/tex]  and pi-orbitals is [tex]\boxed{{\mathbf{14}}}[/tex] .

Further explanation:

The anthracene is a crystalline compound and it is yellow in color. It contains three fused rings of benzene thus it is a polyaromatic compound.it has a molecular formula [tex]{{\text{C}}_{{\text{14}}}}{{\text{H}}_{{\text{10}}}}[/tex].

Prediction of hybridization:

The hybridization can be determined by calculating the number of hybrid orbitals (X) which is to be formed by the atom. The formula to calculate the number of hybrid orbitals (X) as follows:

[tex]\boxed{{\text{X}}={\text{Number of bond pair}}+{\text{Number of lone pair}}}[/tex]

Here X is a steric number.

When X is 2 then hybridization is sp.

When X is 3 then hybridization is [tex]{\text{s}}{{\text{p}}^2}[/tex].

When X is 4 then hybridization is [tex]{\text{s}}{{\text{p}}^3}[/tex] .

The structure of anthracene is attached in the image.

Since all carbon atom in anthracene contains three bond pairs and no lone pair thus, the hybridization can be calculated as follows:

[tex]\begin{aligned}{\text{X}}&={\text{Number of bond pair}}+{\text{Number of lone pair}}\\&=3+0\\&=3\\\end{aligned}[/tex]

The value of X is 3, therefore, the hybridization of each carbon in anthracene is [tex]{\text{s}}{{\text{p}}^2}[/tex]  

The structure of anthracene contains 26 sigma bond and 7 pi bonds. (refer to the image attached).

The number of valance electron in sigma orbital is twice of the number of sigma bond present in the molecule because every sigma bond contains 2 electrons.

[tex]{\text{Valence electron in sigma orbital}} = 2\left({{\text{sigma bond}}}\right)[/tex]

In anthracene, number of sigma bond is 26, therefore,

[tex]\begin{aligned}{\text{Valence electron in sigma orbital}}&=2\left({{\text{sigma bond}}}\right)\\&=2\left({{\text{26}}}\right)\\&=52\\\end{aligned}[/tex]

The number of valance electron present in pi-orbital is twice of the number of pi bond present in the molecule because every pi-bond contains 2 electrons.

[tex]\begin{aligned}\text{Valence electron in }\pi\text{-orbital}&=2(\pi\text{-bond})\end{aligned}[/tex]

In anthracene, number of pi bond is 7, therefore,

[tex]\begin{aligned}\text{Valence electron in }\pi\text{-orbital}&=2(\pi\text{-bond})\\&=2(7)\\&=14\end{aligned}[/tex]

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Answer details:

Grade: Senior school

Subject: Chemistry

Chapter: Covalent bonding

Keywords: Anthracene, yellow crystalline, coal tar, structure of anthracene, C14H10, hybrid orbitals.

Iodine-131 decays with a half-life of 8.02
d. in a sample initially containing 5.00 mg of 131i, what mass remains after 6.01 d

Answers

Final answer:

The question is about the decay of radioactive isotope Iodine-131 over time, using the concept of half-life. It's calculated that after 6.01 days, approximately 3.18mg of the initial 5.00mg of Iodine-131 remains.

Explanation:

The question is about the decay of the Iodine-131 isotope, a nuclear physics concept, using the half-life theory. The half-life is the time it takes for half of a radioactive substance to decay. In this case, the half-life of Iodine-131 is 8.02 days. After 6.01 days, the question asks how much of an initial 5.00 mg sample remains.

First, we need to determine how many half-lives have passed during the 6.01 days. We can calculate this by dividing the overall time elapsed by the half-life of the isotope (6.01 / 8.02). This gives us approximately 0.75 half-lives.

Now, for each half-life, the substance will halve in quantity. So, we can calculate the remaining mass by multiplying the initial mass by (0.5) raised to the power of the number of half-lives (0.75). So, (5.00 mg) * (0.5)^0.75 = 3.18 mg.

So, after 6.01 days, approximately 3.18 mg of the original Iodine-131 remains.

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To calculate the remaining mass of iodine-131 after 6.01 days with a half-life of 8.02 days, use the decay formula. For an initial 5.00 mg sample, approximately 2.58 mg of iodine-131 would remain after 6.01 days.

Iodine-131 decays with a half-life of 8.02 days. To calculate the mass remaining after 6.01 days, we use the formula: Final mass = Initial mass x (1/2)^(time elapsed/half-life).

Given an initial mass of 5.00 mg of 131I and a decay time of 6.01 days, the mass remaining can be calculated as follows:

Final mass = 5.00 mg x (1/2)^(6.01/8.02)Final mass = 5.00 mg x (1/2)^(0.7494)Final mass = 5.00 mg x 0.5158 = 2.58 mg

Explain how a change in thermal energy causes matter to change From one state to another.Give two examples

Answers

explain how a change in thermal energy causes matter to change from one state to another. Give two examples

when thermal energy is absorbed or released it changes the state of matter from one state to another. melting ice and freezing a liquid are examples

If the ph of hc3h5o2 is 4.2 and the ka 1.34x10^-5, what is the equilibrium concentration

Answers

Following equilibrium is upon dissociation of propanoic acid,

HC3H5O2    ⇄     H+    +    C3H5O2-

Thus, dissociation constant of acid can be mathematically expressed as,
Ka = [tex] \frac{[H+]{C3H5O2-}}{[HC3H5O2]} [/tex]

Given:  pH of HC3H5O2 = 4.2 and Ka = 1.34x10^-5
We know that, pH = -log[H+]  = 4.2
∴ [H+] = 6.31 x 10^-5

From the reaction it can be seen that [H+] = [C3H5O2-]

∴ [HC3H5O2] = [H+] [C3H5O2-] /Ka  = (6.31 x 10^-5)^2 / 1.34x10^-5 = 2.97 x 10^-4 M

Thus, equilibrum conc. of HC3H5O2 is 2.97 x 10^-4 M.

The equilibrium concentrations were found to be [br2] = 2.2 × 10−3 m, [cl2] = 3.0 × 10−2 m, and [brcl] = 1.5 × 10−2 m. write the equilibrium expression, and calculate the equilibrium constant for this reaction at this temperature.

Answers

[tex]Br_{2} + Cl_{2}---\ \textgreater \ 2BrCl K_{eq} = \frac{[BrCl]^{2}}{[Br_{2}][Cl_{2}]]} = \frac{[1.5*10^{-2}]^{2}}{[2.2*10^{-3}][3.0*10^{-2}]} =0.34*10=3.4 K_{eq}=3.4[/tex]

Why is potassium nitrate classified as aj electrolyte?

Answers

Final answer:

Potassium nitrate is classified as an electrolyte because it dissociates into electrically charged ions, potassium (K+) and nitrate (NO3-), which allow it to conduct electricity when dissolved in water.

Explanation:

Potassium nitrate is classified as an electrolyte because it dissociates into ions when dissolved in water. Potassium (K), with an atomic number of 19, easily donates its one valence electron, resulting in a positively charged potassium ion, K+. This ion is a cation. Similarly, the polyatomic nitrate ion, NO3-, which is held together by polar covalent bonds, combines with the potassium cation to form the ionic compound potassium nitrate, KNO3. The dissociation of potassium nitrate in water into K+ and NO3- ions enables it to conduct electricity, a characteristic behavior of electrolytes.

Calculate the number of moles of magnesium, chlorine, and oxygen atoms in 7.80 moles of magnesium perchlorate, Mg(ClO4)2.

Answers

 The number of moles of moles of  Magnesium,chlorine and oxygen atoms in 7.80 moles of Mg(ClO4)2 is calculated as below

find the total number of each atom in Mg(ClO4)2

that is mg = 1 atom
        Cl =  1x2 = 2 atoms
        O  = 4  x2 = 8 atoms

then multiply 7.80 moles with total number of each atom , to get the number moles of each atom
that is

Mg = 7.80 x1= 7.80  moles
cl =   7.80  x2=15.6  moles
O =  7.80 x8= 62.4 moles

In 7.80 moles of magnesium perchlorate (Mg(ClO4)2), there are approximately 7.80 moles of magnesium atoms, 15.60 moles of chlorine atoms, and 31.20 moles of oxygen atoms.

Magnesium perchlorate (Mg(ClO4)2) consists of one magnesium (Mg) atom, two chlorine (Cl) atoms, and eight oxygen (O) atoms per formula unit. To calculate the number of moles of each element in 7.80 moles of magnesium perchlorate, you can use the mole ratios from the chemical formula.

First, you have 7.80 moles of the entire compound. Since there is one magnesium atom in each formula unit, there are also 7.80 moles of magnesium atoms. Similarly, as there are two chlorine atoms in each formula unit, you have 2 * 7.80 = 15.60 moles of chlorine atoms. Lastly, since there are eight oxygen atoms in each formula unit, there are 8 * 7.80 = 62.40 moles of oxygen atoms. So, in 7.80 moles of magnesium perchlorate, you have approximately 7.80 moles of magnesium atoms, 15.60 moles of chlorine atoms, and 31.20 moles of oxygen atoms.

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Compound j is optically active and has the molecular formula c6h10 and has a four carbon ring. on catalytic hydrogenation, j is converted to k (c6h12) and k is optically inactive. propose structures for j and k. (draw a three-dimensional formula for each using dashes and wedges around chiral centers.) j (draw one of the enantiomers):

Answers

Final answer:

Compound J, with the formula C6H10, could be a cyclobutane with two methyl groups creating a chiral center, which becomes a non-chiral cyclohexane (C6H12) upon hydrogenation.

Explanation:

The student's question is related to the identification of the structures of an optically active compound with the molecular formula C6H10, and its hydrogenated form C6H12.

Compound J must be a cycloalkane with a four-carbon ring to fit the given molecular formula and to be optically active, it should contain at least one chiral center. Given that hydrogenation leads to an optically inactive compound (K), it suggests that compound J had one or more chiral centers which become quenched upon hydrogenation.

One possible structure for J could be a cyclobutane ring with two methyl groups bonded to adjacent carbon atoms, creating a chiral center at one of those carbons. Upon hydrogenation, the double bonds are saturated, resulting in a compound with all single bonds, thus removing any chirality and creating an optically inactive compound (K).

The proposed structure for J could be represented as follows (for one of the enantiomers):

Cyclobutane ring with a chiral center (drawn using dashes and wedges).Two methyl groups (-CH3) attached to adjacent carbons.

And for compound K, after hydrogenation:

Cyclohexane (since the addition of H2 would give us C6H12, which is the formula for cyclohexane).No chiral centers as all carbons are in the plane of symmetry.

What is the [pb2+] in a solution made by adding 100 g of pbcl2(s) (mm = 278.1 g/mol) to a 5.4 m solution of nacl and allowing it to come to equilibrium? ignore any changes to solution volume due to the addition of pbcl2(s). once solution reaches equilibrium, it is noticed that some solid pbcl2 remains undissolved. the ksp for pbcl2 is 1.6 × 10−5?

Answers

                    PbCl₂ ⇄ Pb²⁺ + 2 Cl⁻
Initially                         0         5.4 M
Change          -x         + x        + 2x
Equilibrium                  x          5.4 + 2x

Ksp = [Pb²⁺] [Cl⁻]²
1.6 x 10⁻⁵ = x (5.4 + 2x)²
since x <<<< 5.4 so 2x + 5.4 = 5.4
1.6 x 10⁻⁵ = x (5.4)²
x = 5.48 x 10⁻⁷
[Pb²⁺] = 5.48 x 10⁻⁷ M

A) how many hydrogen atoms are in an acyclic alkane with 15 carbon atoms?

Answers

Alkanes belongs to saturated Hydrocarbons in which all carbon atoms are singly bonded to each other. As the term "Acyclic" is mentioned in statement, which means the absence of ring or cycles. Hence, the general formula for Saturated, Acyclic hydrocarbons (Acyclic Alkane) is;

                                                 CnH₂n₊₂

As,
                                               n  =  15
So,
                                              C₁₅H₂₍₁₅₎₊₂

                                              C₁₅H₃₀₊₂

                                              C₁₅H₃₂
Result:
          There are 32 Hydrogen atoms in an Acyclic Alkane with 15 Carbon Atoms.

Why is the bond between two single hydrogen atoms stable?
A. It is not stable, each hydrogen only has 1 electron and they need 8 electrons to be stable.
B. Hydrogen only uses the first energy shell, which holds 2 electrons, not 8.
C. Each hydrogen donates more electrons in their lower energy shells to get to 8 but only to other hydrogen atoms.
D. Each hydrogen has 4 electrons to share for a total of 8 when 2 hydrogens bond.

Answers

B ia the correct one .

Hydrogen only uses the first energy shell, which holds 2 electrons, not 8.

Answer:

B. Hydrogen only uses the first energy shell, which holds 2 electrons, not 8.

Explanation:

As hydrogen is the first element in the periodic table and has the atomic number it can mix with a variety of elements, including itself, when two atoms of Hydorgen bond the bond they create fills up the first level of energy which only uses 2 electrons in order to be completed, which makes the bond stable by filling up the energy level.

How does the atmospheric pressure at altitudes below sea level compare

Answers

atmospheric pressure below sea level is higher. the difference is and pressures they cannot determine. I hope this helped

Malonic ester (diethyl malonate) is treated successively with sodium ethoxide (1 eq.), ethyl bromide, potassium tert-butoxide, isobutyl chloride, hot aqueous naoh, hcl, and heat. what is the final product?

Answers

In first step the acidic proton at alpha position is abstracted by NaOEt and forms Enolate.
The resulting enolate undergoes SN² reaction with Ethyl Bromide.
The resulting product again on treatment with Potassium tertiary Butoxide gives corresponding Enolate.
This second enolate on treatment with Isobutyl Chloride undergo SN² reaction.
At last treatment with NaOH (aq) and HCl at high temperature yield 2-Ethyl-4-methylpentanoic Acid.

Final answer:

Malonic ester synthesis converts alkyl halides to carboxylic acids with two additional carbons.

Explanation:

Malonic ester synthesis involves a series of reactions converting an alkyl halide into a carboxylic acid with two additional carbons. The final product after treating malonic ester successively with sodium ethoxide, ethyl bromide, potassium tert-butoxide, isobutyl chloride, hot aqueous sodium hydroxide, hydrochloric acid, and heat would be a carboxylic acid with a methyl group attached.

Consider a certain type of nucleus that has a half-life of 32 min. calculate the percent of original sample of nuclides remaining after 1.9 hours have passed

Answers

t1/2 = ln 2 / λ = 0.693 / λ
Where t1/2 is the half life of the element and λ is decay constant.

32 = 0.693 / λ 
λ   = 0.693 / 32          (1) 

Nt = Nο eΛ(-λt)          (2)

Where Nt is atoms at t time, λ is decay constant and t is the time taken.
t = 1.9 hours = 1.9 x 60 min

From (1) and (2),


Nt = Nο e⁻Λ(0.693/32)*1.9*60
Nt =  0.085Nο 

Percentage = (Nt/Nο) x 100%
                   = (0.085Nο/Nο) x 100%
                   = 8.5%

Hence, Percentage of remaining atoms with the original sample is 8.5%

Final answer:

To calculate the percent of nuclides remaining after 1.9 hours, given a half-life of 32 minutes, we find that about 3.56 half-lives have passed and approximately 9.09% of the original sample remains.

Explanation:

The question concerns the calculation of the remaining nuclides in a sample after a period of time, given the half-life of the substance. If the half-life of a certain type of nucleus is 32 minutes, we first need to calculate how many half-lives are in 1.9 hours. Since there are 60 minutes in an hour, 1.9 hours equals 114 minutes. Dividing 114 minutes by the half-life of 32 minutes gives us approximately 3.56 half-lives.

After each half-life, the amount of a radioactive material will halve. To find the remaining percent, we use the formula:

Percent Remaining = (1/2)number of half-lives passed

Therefore, for 3.56 half-lives passed, the calculation is as follows:

Percent Remaining = (1/2)3.56

Punching this into a calculator, we find that about 9.09% of the original sample remains after 1.9 hours have passed.

Identify the three ingredients used in a blast furnace to make pig iron.

Answers

Final answer:

The three ingredients used in a blast furnace to make pig iron are roasted ore, coke, and limestone.

Explanation:

In a blast furnace, the three ingredients used to make pig iron are:

Roasted Ore: The iron ore is heated in air to remove water and convert sulfides into oxides.Coke: This is a fuel made by heating coal in the absence of air. It provides the high temperature required for the reduction reactions.Limestone: Impure calcium carbonate (CaCO3) is added to remove impurities and form s_lag.

The combination of these three ingredients undergoes various reactions in different temperature zones of the blast furnace, resulting in the production of molten iron and s_lag.

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When potassium-40 undergoes decay by electron capture the product is?

Answers

Electron capture decay is a decay process. In this process electron is captured and a proton is converted into a neutron. Hence, mass number remains same but atomic number is lowering by 1 in daughter atom. 

K has atomic number 19. Hence daughter atom should have 19 - 1 = 18 as the atomic number. Hence, produced particle is Ar. but the mass number of Ar remains as same as 40.

The equation is,
₁₉⁴⁰K + ₋₁⁰e → ₁₈⁴⁰Ar

What is the rate of a reaction if the value of k is 0.01, [A] is 2 M, and [B] is 3 M? Rate = k[A]3[B]2

Answers

rate equation for the reaction is as follows
Rate = k [A]³[B]²
concentration of A = 2 M
concentration of B = 3 M
k - rate constant - 0.01
as this is a 5th order reaction, units for rate constant are M⁻⁴s⁻¹
substituting these values in the equation 

Rate = k [A]³[B]²
rate = 0.01 M⁻⁴s⁻¹ x (2 M)³ x (3 M)²
rate = 0.01 x 8 x 9 = 0.72
rate of the reaction is 0.72 M/s



You adjust the temperature so that a sound wave travels more quickly through the air. You increase the temperature from 30°C to 36°C. What's the velocity of the sound wave at this new temperature? A. 335.6 m/s B. 352.6 m/s C. 344.0 m/s D. 350.0 m/s

Answers

The equation relating the velocity of sound in air to the air temperature is: v = 331 + 0.6T, where T is the temperature in degrees Celsius. For this case, when T = 36 C:
v = 331 + 0.6(36) = 331 + 21.6 = 352.6 m/s, which is choice B

When atoms of two or more different elements bond, their properties ___________.
A. are the same as the largest atom in the compound
B. change
C. combine
D. None of these

Answers

When atoms of two or more different elements bond, their properties change.


So,
Option B is the correct one.

When atoms of two or more different elements bond, their properties change.

What is the difference between molecules and compounds?

When two or more atoms of the same element chemically combine, a molecule is created.

Examples: O₂, O₃, H₂

A compound is a type of molecule in which the atom types that make up the molecule differ from one another.

Examples: NaCl, H₂O

Properties of compound:Only chemical breakdown can separate compounds.Different atoms of elements are present in a defined ratio.

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Why are ionic compounds brittle

Answers

Ionic compounds are brittle because due to the strong bond between the positive and negative ions that formed the molecules. These positive and negative bonds produce crystals in rigid, lattice structures.

What are ionic compound ?

The term ionic compound is defined as the compounds made up of ions that produce charged particles when an atom or group of atoms gains or loses electrons.

Because of their electrostatic attractions, ionic compounds are brittle. These forces keep anions and cations in specific positions in a crystal lattice. Metals, on the other hand, are malleable because the atoms can roll over and create new positions, thereby maintaining their bonds.

Thus, ionic compounds are brittle.

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Which statement is true regarding methane and ammonia?

Answers

The options for given question are as follow,

1) Methane molecules show hydrogen bonding. 
2) Ammonia molecules show hydrogen bonding. 
3) Methane has stronger hydrogen bonding than ammonia. 
4) Both the compounds do not show hydrogen bonding. 
5) Both the compounds have strong hydrogen bonding.

Answer:
            Correct answer is Option-2 (Ammonia molecules show hydrogen bonding).

Explanation:
                   Hydrogen bond interactions are formed when a partial positive hydrogen atom attached to most electronegative atom of one molecule interacts with the partial negative most electronegative element of another molecule. So, in Ammonia hydrogen gets partial positive charge as nitrogen is highly electronegative. While the C-H bond in Methane is non-polar and fails to form hydrogen bond interactions.
The answer is B. Trust me!!!
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