Sodium hydroxide, NaOH; sodium phosphate, Na3PO4; and sodium nitrate, NaNO3, are all common chemicals used in cleanser formulation. Rank the compounds in order from largest mass percent of sodium to smallest mass percent of sodium.

Answers

Answer 1
Start by writing out molar mass of each component: 

1) NaOH= 22.99+16+1.01 --> 40 

2) Na₃PO₄= (22.99)3 + 94.97 + 64 --> 227.94

3) NaNO₃= 22.99 + 14 + 48 --> 84.99 

Now compare the mass of sodium with the rest of the substances: 

1) (22.99/40)100%= 57.475%

2) (68.97/227.94)/100%= 30.25% 

3) (22.99/84.99)/100%= 27.05%

As seen, the ordered list is: Sodium hydroxide, sodium phosphate and sodium nitrate. 

Hope I helped :) 
Answer 2
Final answer:

The compounds ranked in order from largest mass percent of sodium to the smallest mass percent of sodium are Sodium hydroxide, Sodium phosphate, and Sodium nitrate.

Explanation:

To rank the compounds in order from largest mass percent of sodium to the smallest mass percent of sodium, we need to determine the mass of sodium in each compound and compare it to the total mass of the compound.

Let's calculate the mass percent of sodium in each compound:

Sodium hydroxide (NaOH): The molar mass of NaOH is 22.99 g/mol + 16.00 g/mol + 1.01 g/mol = 40.00 g/mol. The mass percent of sodium is (22.99 g/mol / 40.00 g/mol) × 100% = 57.47%.Sodium phosphate (Na3PO4): The molar mass of Na3PO4 is (22.99 g/mol × 3) + (31.00 g/mol + 15.99 g/mol × 4) = 163.94 g/mol. The mass percent of sodium is (22.99 g/mol × 3 / 163.94 g/mol) × 100% = 42.93%.Sodium nitrate (NaNO3): The molar mass of NaNO3 is 22.99 g/mol + 14.01 g/mol + (16.00 g/mol × 3) = 85.00 g/mol. The mass percent of sodium is (22.99 g/mol / 85.00 g/mol) × 100% = 27.05%.

Therefore, the compounds ranked in order from largest mass percent of sodium to smallest mass percent of sodium are:

Sodium hydroxide (57.47% sodium)Sodium phosphate (42.93% sodium)Sodium nitrate (27.05% sodium)

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Related Questions

2NH4Cl(s)+Ba(OH)2⋅8H2O(s)→2NH3(aq)+BaCl2(aq)+10H2O(l) The ΔH for this reaction is 54.8 kJ . How much energy would be absorbed if 24.7 g of NH4Cl reacts?

Answers

1) Chemical equation

2NH4Cl(s)+Ba(OH)2⋅8H2O(s)→2NH3(aq)+BaCl2(aq)+10H2O(l)

2) Stoichiometric ratios

2 mol NH4Cl(s) : 54.8 KJ

3) Convert 24.7 g of NH4Cl into number of moles, using the molar mass

molar mass of NH4Cl = 14 g/mol + 4*1 g/mol + 35.5 g/mol = 53.5 g/mol

number of moles = mass in grams / molar mass

number of moles = 24.7 g / 53.5 g/mol = 0.462 moles

4) Use proportions:

2 moles NH4Cl / 54.8 kJ = 0.462 moles / x

=> x = 0.462 moles * 54.8 kJ / 2 moles = 12.7 kJ

Answer: 12.7 kJ

How many hydrogen atoms are in 8.90 mol of ammonium sulfide?

Answers

Assuming that the ammonium sulfide formula is (NH4)2S then you can see that there are 2 nitrogen, 8 hydrogen and 2 sulfur atoms for every ammonium sulfide. If the amount of ammonium sulfide is 8.9 moles, then the number of hydrogen atoms should be: 8/1 * 8.9 mol= 71.2 moles.
If you are asked the number of individual atoms you need to multiply it with Avogadro number like this : 71.2 moles * 6.02 * 10^23= 4.28 *10^25

The number of hydrogen atoms in 8.90 mol of ammonium sulfide is  4.28×10²⁵ atoms.

What is Avogadro's constant?

This is referred to as a proportionality factor which tells us about the number of constituent particles in a sample. The constant is  6.02ₓ 10²³.

Ammonium sulfide which is denoted as (NH4)₂S has 2 nitrogen, 8 hydrogen and 2 sulfur atoms present.

We were told that the amount of ammonium sulfide is 8.90mol.

Number of hydrogen atoms =  8/1 × 8.9 mol= 71.2 moles of H₂.

The number of Hydrogen atoms in  8.90 mol of ammonium sulfide is 71.2 moles ˣ 6.02ˣ 10²³ = 4.28 ˣ10²⁵ atoms.

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Where are elements heavier than iron made

Answers

All of the post-iron elements are formed in supernova explosions themselves. So much energy is released during a supernova explosion that the freed energy and copious free neutrons streaming from the collapsing core drive massive fusion reactions, long past the formation of iron.
Final answer:

Elements heavier than iron are created during the violent explosion of a star known as a supernova. After the supernova, these elements are ejected into space and later form new stars and planets. Our presence on Earth, abundant in heavy elements, is a result of generations of stars synthesizing these elements.

Explanation:

Elements heavier than iron are made in the core of massive stars during the process of nucleosynthesis. However, when these stars exhaust their nuclear fuel, they die in an event known as a supernova. As the star explodes, its violent conditions lead to the creation of elements heavier than iron. The fusion of silicon into iron is the last step in nonexplosive element production inside a star. Beyond this point, due to iron's stability, fusion reactions end up absorbing energy instead of releasing it, leading to the star's collapse.

Most of these heavy elements are later ejected into space, enriching interstellar space with heavier elements. Over time, these elements are recycled to form new stars and planets, progressively leading to an increase in the proportion of heavier elements in the universe. Therefore, our presence on Earth, which is rich in heavy elements like silicon and iron, is due to generations of stars synthesizing these elements.

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A sample of propane (C3H8) has a mass of 0.47 g. The sample is burned in a bomb calorimeter that has a mass of 1.350 kg and a specific heat of 5.82 J/(g • °C). How much energy is released by the reaction if the temperature of the calorimeter rises by 2.87°C?
Use mc018-1.jpg.
7.85 kJ
10.6 kJ
22.5 kJ
47.9 kJ

Answers

The correct response is 22.5kJ of energy released by the reaction.

In this problem, we simply apply the specific heat equation which is:
Heat added = specific heat x mass x change in temperature

It is important to note that only the mass of the calorimeter is important, and masses should all be in grams, energy units are in joules.

mass calorimeter = 1350 g
change in temp = 2.87C
specific heat (calorimeter) = 5.82 J/g.C

heat added = 5.82 X 1350 x 2.87 = 22,549 Joules (J)
divide by 1000 to convert to kilojoules, = 22.5kJ

Answer:

22.5kJ

Explanation:

your welcome

Name the type of reaction and give the coefficients needed to balance the following skeleton reaction: ___Mg + ___Fe2O3 → ___Fe + ___MgO

Answers

  Mg  + Fe2O3→ Fe  +mgO  

The  coefficients needed to balance the reaction above is  3, 1,2,3  

the  reaction  is a single  replacement reaction/ single displacement  reaction

 The balanced  equation is is therefore

 = 3Mg + Fe2O3 → 2Fe  + 3MgO

The equation  above is  balanced  since it obey the law of mass conservation. that is the number  of atom  in side of  reactant is equal to number of atoms  in product side.for example  there is  3 atoms  of Mg  in reactant side  and 3 atoms of Mg  in product side.

 The  reaction is  a single replacement  reaction  because  Mg replaces Fe  from  its  compound.


The given reaction is a redox reaction known as a single displacement or single replacement reaction. The coefficients needed to balance the equation are as follows:

2Mg + Fe₂O₃ → 2Fe + 3MgO

A single displacement reaction, also known as a single replacement reaction, is a type of chemical reaction in which an element or ion in a compound is replaced by another element. In this reaction, one element is displaced from its compound and takes the place of another element, resulting in the formation of a new compound. The general format of a single displacement reaction can be represented as:

A + BC → AC + B

Where A is the element that displaces B from the compound BC, leading to the formation of the new compound AC. This type of reaction is often observed in reactions involving metals and their salts, where a more reactive metal displaces a less reactive metal from its salt solution. The reactivity of the elements involved determines the feasibility and outcome of the reaction.

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Which of the groups highlgihted in the periodic table in the periodic table?

Answers

Your question does not make sense.

When oxygen and aluminum form an ionic compound, what is the formula?

Answers

Al2O3

O has 2 and Al has 3

The correct answer is

D .al2O3

Explanation:

The offense in electronegativity is subject for the ionic bonds in aluminum and oxygen, Ionic bonds are created between cations and anions. A cation is formed when a metal ion spends a valence electron while an anion is produced when non-metal gains a valence electron. They both achieve a more stable electronic arrangement through this change.

Calcium hydroxide reacts with carbon dioxide to form calcium carbonate (balanced equation given below). if you start with 155 ml of a 1.25 m solution of calcium hydroxide and add 10.0 g of carbon dioxide, how much calcium carbonate would be formed?

Answers

I think it is 20.42 g I don't know hope I've helped

Polyatomic ions ______.

Answers

Polyatomic ions are ions that are made up of two or more atoms which are linked by covalent bonds but which still have a net deficiency or surplus of electrons, resulting in an overall charge on the group.
When a metal react with a polyatomic ion the product will be an ionic compound.
Examples of polyatomic ions are: NH4+, H3O+, MnO4-, CIO3-, etc.

Solid lithium metal and diatomic nitrogen gas react spontaneously. give the balanced chemical equation (including phases) that describes this reaction.

Answers

The balanced chemical equation  between sodium lithium metal and diatomic nitrogen gas is given by;

6Li(s) + N2(g) → 2Li3N(s)

Further Explanation:Chemical equations  Chemical equations are equations showing reactions between reactants to form products. Chemical equations show the reactants or starting substances and products or substances formed during the reaction.Law of conservation of mass  The law of conservation requires that when writing chemical equations, the mass of the reactants should be equal; to the mass of the products.This is done by making sure the number of atoms of each element involved in the chemical equation is equal on both sides of the equation.To ensure the law of conservation in chemical equations is observed we balance chemical equations.Balancing chemical equation:Balancing chemical equations is a try and error method that ensures the number of atoms in the side of the reactants is equal to the number of atoms in the side of products.Balancing chemical equations may also require inclusion of state symbols which shows the state of each compound or element involved in the chemical reactions.For example; the equation; 6Li(s) + N2(g) → 2Li3N(s) is balanced as the number of titanium and oxygen atoms are equal on both sides of the equation.There are six Lithium atom and 2 nitrogen atoms  on either side of the equation.

Keywords: Chemical equations, balancing of chemical equations

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Level: high school

Subject: Chemistry

Topic: Chemical equations

Sub-topic: Balancing chemical equations  

The balanced chemical equation for the reaction between lithium metal and nitrogen gas to form lithium nitride is 6 Li (s) + N₂ (g) → 2 Li₃N (s). This reaction is exothermic.

The reaction between solid lithium metal and diatomic nitrogen gas produces lithium nitride.

The balanced chemical equation for this reaction is as follows:

Balanced Chemical Equation : 6 Li (s) + N₂ (g) → 2 Li₃N (s)In this reaction, six atoms of lithium react with one molecule of nitrogen gas to form two formula units of lithium nitride.

This reaction is exothermic, meaning it releases heat.

Correct question is: Solid lithium metal and diatomic nitrogen gas react spontaneously to form a solid product. give the balanced chemical equation (including phases) that describes this reaction. indicate the phases using abbreviation (s), (I), (g) for solid, liquid and gas

List two assumptions of the Kinetic Molecular Theory.

Answers

These are 3 assumptions that i know for a fact. Hope this helped.

1.Gas particles are continuous, rapid, random motion. They therefore possess kinetic energy, which is energy of motion.

2.There are no forces of attraction between gas particles.

3.The temperature of a gas depends on the average kinetic energy of the particles of the gas.

Answer :

These are 5 assumptions of the kinetic molecular theory.

The first assumption is that the gases are made up of the tiny or small particles. The small particles has undefined volume but has a defined volume.

The second assumption is that the gas particles are in the continuous, rapid and random motion.

The third assumption is that the there is no force of attraction between gas particles.

The fourth assumption is that the temperature of a gas particles depends on the average kinetic energy of the particles of the gas.

The fifth assumption is that the collisions between the particles of the gas are completely elastic. That means there is no loss or gain of the energy when the particles of the gas colloid.

The k a for hypochlorous acid, hocl, is 3.0 × 10-8 at 25°c. calculate the pk b for hypochlorous anions.

Answers

Answer :  The value of [tex]pK_b[/tex] for hypochlorous anion is, 6.47

Explanation :

As we know that,

[tex]pK_a+pK_b=pK_w\\\\pK_a+pK_b=14\\\\pK_b=14-pK_a\\\\pK_b=14-(-\log K_a)\\\\pK_b=14+\log (K_a)[/tex]

Now put the value of [tex]K_a[/tex] in this expression, we get the value of [tex]pK_b[/tex]

[tex]pK_b=14+\log (3.0\times 10^{-8})[/tex]

[tex]pK_b=14+\log 3-8[/tex]

[tex]pK_b=6.47[/tex]

Therefore, the value of [tex]pK_b[/tex] for hypochlorous anion is, 6.47

The difference between strong and weak acids is determined by the acid dissociation constant (Kₐ). As Kₐ rises, the acid dissociates more. Therefore, strong acids must dissociate more in water. On the other hand, a weak acid has a lower propensity to ionize and release a hydrogen ion, resulting in a less acidic solution.

The standard used to calculate a molecule's alkalinity is called pkb. It is employed to gauge fundamental strength. The base will be more powerful with a lower pKb value. It is akin to the base dissociation constant's negative logarithm, Kb.

The equation connecting pKa and pKb is:

pKa + pKb = pKw

pKa + pKb = 14

pKb = 14-pKa

pKb = 14 - (-log Ka)

pKb = 14 + log (3.0 × 10⁻⁸)

pKb = 14 - 7.52

pKb = 6.48

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Sensitivity analysis is concerned with how certain changes affect
a. ​the feasible solution.
b. ​the degenerative solution.
c. ​the optimal solution.
d. ​the unconstrained solution.

Answers

The answer here is letter C. The optimal solution. The optimal solution is the one that affects how certain things changes with sensitivity analysis. The optimal solution is a feasibility solution where the objective function of it is to reach the minimum and maximum value.

Final answer:

Sensitivity analysis is concerned with how changes in variables or assumptions impact the optimal solution of a model, assisting in decision-making by evaluating the solution's robustness under different conditions. The correct option is C.

Explanation:

Sensitivity analysis is primarily concerned with understanding how changes in certain variables or assumptions affect the outcome of a model. Specifically, this type of analysis is focused on the impact of these changes on the optimal solution. It systematically alters key assumptions, computations, or input data, comparing the new results against the original model to assess the variance. This process is valuable in both analytical and computational approaches to solve constrained optimization problems. By exploring the comparative statics analysis, sensitivity analysis helps in determining how a firm, for instance, would respond to changes in one of its exogenous variables, holding all else constant (ceteris paribus).

In essence, sensitivity analysis serves as a critical tool in decision-making processes, assisting in evaluating the robustness and reliability of an optimal solution under varying conditions.

Why does naphthalene have a higher melting point than biphenyl?

Answers

Naphthalene has a higher melting point than biphenyl because naphthalene is a polar compound while biphenyl is a non-polar compound. Studies show that polar compounds have higher melting and boiling points than nonpolar compounds. It is because polar compounds have strong intermolecular forces.

Final answer:

Naphthalene has a higher melting point than biphenyl due to its compact structure with fused benzene rings, resulting in greater π-electron delocalization and stronger intermolecular forces. The fulfillment of Hückel's rule with its 10 π electrons also contributes to naphthalene's stability and higher melting point.

Explanation:

Naphthalene has a higher melting point than biphenyl because of its structural differences and the stronger intermolecular forces that result from these differences. Naphthalene is composed of two fused benzene rings, which means it has a more compact structure and a greater degree of π-electron delocalization than biphenyl, which consists of two benzene rings connected by a single bond.

The π-electron delocalization in naphthalene contributes to a greater stability and a higher degree of symmetry than biphenyl, which in turn leads to stronger intermolecular forces, namely London dispersion forces. Furthermore, naphthalene fulfills Hückel's rule with its 10 π electrons, which provides additional stability due to the filled bonding molecular orbitals. These factors result in a higher energy requirement to overcome the intermolecular forces in naphthalene, thereby giving it a higher melting point compared to biphenyl.

Matt and Brad own a ice cream store and they believe they have the best ice cream in town. They invite ten of their closest friends to their ice cream shop, give them free ice cream, and then ask for their opinions. Brad and Matt encouraged their friends to try other ice cream shops, but they told them that they would have to buy the ice cream there. After a week, Matt and Brad took all the participants out to dinner and 90% of the "tasters" voted Matt and Brad's shop to be the best in town. Which of these would NOT lead to bias in this experiment?

A)Matt and Brad took the participants to dinner.
B)Only ten participants were used in the experiment.
C)Only friends were used in the experiment, and friends will quite often be nice to each other.
D)The "tasters" received free ice cream from Matt and Brad, but they had to pay for it at the other shops.

Answers

i believe it either B or D
It is B:Only ten participants were used in the experiment.

In the balanced equation for the reaction: xp4o6(s) + yh2o(l) → zh3po3(aq) if x equals 2, the coefficient z equals:

Answers

When balancing the equation given xP₄O₆ + yH₂O -> zH₃PO₃with x equals 2, we need 8 molecules of H₃PO₃ to balance the phosphorus atoms, making the coefficient z equal to 8.

The question asks about balancing the chemical equation xP₄O₆(s) + yH₂O(l) -----> zH₃PO₃(aq) with the given condition that x equals 2. To balance the equation, we need to ensure that the number of each type of atom is the same on both sides of the equation. When x equals 2, this implies we have 2 P₄O₆ units leading to 8 phosphorus atoms in total. Each H₃PO₃ molecule contains one phosphorus atom, so we would need 8 molecules of H₃PO₃ to balance the phosphorus atoms. Thus, the coefficient z would be 8 in a balanced equation.

A stream of air (21 mole% o2, the rest n2) flowing at a rate of 10.0 kg/h is mixed with a stream of co2. the co2 enters the mixer at a rate of 20:0 m3/h at 150°c and 1.5 bar. what is the mole percent of co2 in the product stream?

Answers

Molecular weight of air = 29 g/mole, moles of air entering = 5/29 kgmoles/hr= 0.1724 kg moles/hr
Moles of N2= 0.21*0.1724=0.036 kg moles/hr, moles of N2= 0.79*0.1724= 0.1362 kgmoles/hr
Moles of CO2 can be calculated from gas law equation, n= PV/RT
V= 25 m3/hr= 25* 1000 L/hr, P= 2 bar = 2*0.9869 atm,=1.9738 atm R= 0.0821 L.atm/mole.K T= 100 deg.c =100+?273.15= 373.15K
n= number of moles of CO2= 1.9738*25*1000/ (0.0821*373.15) =1611 moles/hr= 1.611 kg moles/hr
total moles of mixture = 0.1724 +1.611 =1.7834 kg moles/hr
Moles % CO2 in the mixed stram = 100*1.611/1.7834 = 90.33%
Answer is 90.33%
Final answer:

To determine the mole percent of CO2 in a stream of mixed gases, one would first calculate the moles of each gas. The mole percent of CO2 in this case can be calculated as approximately 73%.

Explanation:

The mole percent of CO2 in the product stream can be calculated by determining the number of mols of each gas and then using these values to calculate the mole fractions. First, we need to calculate the number of mols for air and CO2 separately.

Initial air is given as 10.0 kg/h, and it is composed of 21 moles% O2 and the rest is N2. Given that the molar mass of O2 is approximately 32 g/mol and N2 is approximately 28 g/mol, this gives us a total of approximately 0.289 moles of air per second. Next, the number of moles of CO2 entering the mixer can be calculated using the ideal gas law formula PV=nRT. Assuming standard pressure for this equation, we get approximately 0.784 moles of CO2 per second.

Finally, the mole percent of CO2 in the product could be calculated as the number of moles of CO2 divided by the total number of moles (number of moles of CO2 + number of moles of air) multiplied by 100. Plugging in the values gives us approximately 73% mole percent of CO2 in the product.

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In the electromagnetic spectrum, ________ frequencies, ________ wavenumbers, and ________ wavelengths are associated with high energy.

Answers

Hello There!

It would be High Frequencies, Large Frequencies and Short .

Hope This Helps You!
Good Luck :) 

- Hannah ❤ 

In the electromagnetic spectrum, high frequencies, high wavenumbers, and low wavelengths are associated with high energy.

What is electromagnetic spectrum?

Electromagnetic spectrum is the range of frequencies of electromagnetic radiations and their respective wavelengths and photon energies.

Energy of a photon in electromagnetic spectrum

The energy of a single photon in an electromagnetic spectrum is calculated as;

E = hf

[tex]E = \frac{hc}{\lambda}[/tex]

where;

f is frequencyλ is the wavelength

Relationship between wavenumber and wavelength

[tex]n = \frac{1}{\lambda}[/tex]

Thus, in the electromagnetic spectrum, high frequencies, high wavenumbers, and low wavelengths are associated with high energy.

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Indicate which factors affect the rate of a reaction. select all that apply. temperature δs o keq δg o δh o ea concentration k catalysts

Answers

Several factors affect the rate of a chemical reaction. From the options given factors that affect the rate are:
temperature and concentration of catalysts.
As the temperature increases, also the rate of the reaction increases.
The concentration of a catalysts helps a reaction to proceed more quickly to equilibrium. 

Is a ph = 7.00 solution acidic, basic, or neutral at 37 °c?

Answers

At 37°C, a solution with a pH of 7.00 is slightly basic, because the neutral pH at this temperature is around 6.31.

A solution with a pH of 7.00 is typically considered neutral at a standard temperature of 25°C. However, the pH scale is temperature-dependent, meaning the pH for neutrality changes with temperature. At 37°C, which is around the normal human body temperature, the neutral pH is not 7.00, but rather closer to 6.31 because the ionization constant of water (Kw) changes with temperature.

In the specific instance of a solution with a pH of 7.00 at 37°C, we would consider it to be slightly basic. This is because, at 37°C, the neutral pH is approximately 6.31, and any pH above this value represents a basic solution, while a pH below this value would indicate an acidic solution.

How much would the temperature of 275 g of water increase if 36.5 kj of heat were added?

Answers

The solution is found using the formula change in Temperature = heat supplied/ (mass of substance x specific heat). The solution would be change in temperature = 36.5kJ/(275 g x 4.184 J/g) = 31.7 degrees.

Answer: The temperature increase will be 31.70°C.

Explanation:

To calculate the increase in the temperature of the system, we use the equation:

[tex]q=mc\Delta T[/tex]

where,

q = Heat absorbed = 36.5 kJ = 36500J

m = Mass of water = 275 g

c = Specific heat capacity of water = [tex]4.186J/g^oC[/tex]

[tex]\Delta T[/tex] = change in temperature = ? °C

Putting values in above equation, we get:

[tex]36500J=275\times 4.186J/g^oC\times \Delta T\\\\\Delta T=31.70^oC[/tex]

Hence, the temperature increase will be 31.70°C.

A scientist observed a 5-mL sample of an unknown substance. It is a blue liquid with a density of 1.2 g/cm. the substance reacts with carbon dioxide. Lust each of the properties the scientist observed and whether it is a characteristic property of matter.

Answers

Final answer:

The scientist observed a blue liquid with a density of 1.2 g/cm³ that reacts with carbon dioxide. The blue color and reaction with carbon dioxide are characteristic properties of the substance, but density is not.

Explanation:

The properties observed by the scientist are:

Blue color Density of 1.2 g/cm³ Reaction with carbon dioxide

The blue color and reaction with carbon dioxide are characteristic properties of the unknown substance.

However, density is not a characteristic property, as different substances can have the same density.

When methane is burned with oxygen, the products are carbon dioxide and water. if you produce 9 grams of water and 11 grams of carbon dioxide from 16 grams of oxygen, how many grams of methane were needed for the reaction? 4 31 20 40 none of the above?

Answers

4 grams of methane is burned with oxygen,.  Hope this helped

The process of expanding air causes cooling, an adiabatic process where temperature changes without loss of heat.

Answers

The answer to this question would be: true

Adiabatic is a process of thermodynamic where the system temperature is increased without taking it from the surrounding. The temperature is increased from the increased pressure by compressing or expanding the air.

Which of these molecules has the same number of shared electron pairs as unshared electron pairs? (a) hcl, (b) h2s, (c) pf3, (d) ccl2f2 (e) br2?

Answers

Let us check each molecule

a) HCl : the number of shared electron pairs is "one"

the number of unshared electron pairs is six [on chlorine]

b) H₂S : the number of shared electron pairs is "two" as there are two bonds of sulphur with two hydrogen atoms.

The number of valence electrons on sulphur are six, out of these two are involved in bonding and rest four are in the form of two unshared (lone pair) pair of electrons

So in H₂S it has the same number of shared electron pairs as unshared electron pairs

c) PF₃ : the shared pair of electrons are "three"

the number of unshared electron pairs is one on phosphorous.

d) CCl₂F₂ : there are total four shared pair of electrons on carbon and zero unshared electron pairs

e) Br₂ : only one shared electron pair and three unshared electron pairs

The molecule that has the same number of shared electron pairs as unshared electron pairs is H2S.

In a molecule, chemical bonds are formed when atoms share electrons. However, some atoms have unshared electron pairs on their valence shells. These unshared electron pairs are called lone pairs and are localized on one of the atoms in the bond.

In the molecule H2S. There are two lone pairs or unshared pairs on sulfur and there are two shared pairs of electrons in the molecule. Hence the molecule that has the same number of shared electron pairs as unshared electron pairs is H2S.

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The isotope of an atom containing 40 protons and 51 neutrons suddenly has two neutrons added to it.What isotope is created

Answers

Zirconium-93 is created :)

The correct answer is  

Zirconium-93

Since nothing else matches up with 40 protons  and 51 neutrons

So your answer is  

Zirconium-93

How many atoms are in 5g of Fe2O3

Answers

I actually learning this right now so I might could help.
There are two iron atoms and three oxygen atoms in each molecule of Fe2O3,  that's five atoms per molecule.

a nuclear reaction energy is released by combinations of two elements into new element group process

Answers

It sounds to me like "A" is the answer. Yup, it is

In the disproportionation reaction CI2 + H2Omc021-1.jpgHCIO + HCI, what describes the oxidation states of the substance Cl?
Cl has an oxidation number of 2 in Cl2. It is then reduced to Cl with an oxidation number of 1 in both HCl and HClO.
Cl has an oxidation number of –1 in Cl2. It is then oxidized to Cl with an oxidation number of 1 in both HCl and HClO.
Cl has an oxidation number of 0 in Cl2. It is then reduced to CI- with an oxidation number of –1 in both HCl and HClO.
Cl has an oxidation number of 0 in Cl2. It is then reduced to CI- with an oxidation number of –1 in HCl and is oxidized to Cl+ with an oxidation number +1 in HClO

Answers

Reaction: CI2 + H2O    ---->  HCIO + HCI

Oxidations states:

The oxitation state of Cl2 = 0, because the oxidation state of an atom alone or a molucule with one kind of atom is always 0.

The oxidation state of Cl in HClO is +1 because the oxidation state of H is + 1, the oxidation state of O is - 2, and the molecule is neutral, so  +1 + 1 - 2 = 0

The oxidation state of Cl in HCl is - 1, because the oxidation state of H is +1 and the molecule is neutral, so - 1 + 1 = 0.

Also, you shall remember that when an atom increases its oxidation state is is oxidized and when an atoms reduces its oxidations state it is reduced.

With that you conclude that the right option is the last statement: Cl has an oxidation number of 0 in Cl2. It is then reduced to CI- with an oxidation number of –1 in HCl and is oxidized to Cl+ with an oxidation number +1 in HClO

Answer:

in other words its D

Explanation:

Is milkshake a solution or a mixture.

Answers

Solution or mixture. If there is still ice cream pieces then it is a heterogeneous mixture. If it is thoroughly mixed and stirred then it is a solution.
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