Calcium hydride (CaH2) reacts with water to form hydrogen gas: CaH2(s) + 2H2O(l) → Ca(OH)2(aq) + 2H2(g) How many grams of CaH2 are needed to generate 45.0 L of H2 gas at a pressure of 0.995 atm and a temperature of 32 °C?

Answers

Answer 1

Answer:

37.67 g.

Explanation:

For the balanced reaction:

CaH₂(s) + 2H₂O(l) → Ca(OH)₂(aq) + 2H₂(g).

It is clear that 1 mol of CaH₂(s) reacts with 2 mol of H₂O(l) to produce 1 mol of Ca(OH)₂(aq) and 2 mol of H₂(g).

We need to calculate the no. of moles of generated 45.0 L of H2 gas at a pressure of 0.995 atm and a temperature of 32 °C:

We can use the general law of ideal gas: PV = nRT.

where, P is the pressure of the gas in atm (P = 0.995 atm).

V is the volume of the gas in L (V = 45.0 L).

n is the no. of moles of the gas in mol (n = ??? mol).

is the general gas constant (R = 0.0821 L.atm/mol.K).

T is the temperature of the gas in K (T = 32.0° + 273 = 305.0 K).

∴ n = PV/RT = (0.0995 atm)(45.0 L)/(0.0821 L.atm/mol.K)(305.0 K) = 1.79 mol.

Using cross multiplication:

1 mol of CaH₂(s) produces → 2 mol of H₂(g), from stichiometry.

??? mol of CaH₂(s) produces → 1.79 mol of H₂(g).

∴ no. of moles of CaH₂(s) needed = (1 mol)(1.79 mol)/(2 mol) = 0.895 mol.

Now, we can get the mass of CaH₂ are needed:

∴ mass of CaH₂ = (no. of moles)(molar mass of CaH₂) = (0.895 mol)(42.094 g/mol) = 37.67 g.

Answer 2
Final answer:

Approximately 37.5 grams of Calcium Hydride (CaH2) are needed to produce 45.0 L of Hydrogen gas at a pressure of 0.995 atm and a temperature of 32 °C.

Explanation:

The subject of this question is the calculation of the mass of Calcium Hydride (CaH2) required to generate a specific volume of Hydrogen gas (H2) under certain conditions. According to the ideal gas law, PV = nRT, we can find the number of moles of hydrogen (n) needed. Given P=0.995 atm, V=45.0 L, R=0.0821 (the ideal gas constant in terms of atm, L, mol, K), and T = 32°C = 305.15 K, n = (P*V)/(R*T) which gives approximately 1.78 moles of hydrogen.

From the balanced chemical equation, we know that 1 mole of CaH2 produces 2 moles of H2. Therefore, we need 0.89 moles of CaH2 to produce 1.78 moles of H2. Knowing that the molar mass of CaH2 is approximately 42.1 g/mole, the mass needed can be calculated as: mass = moles * molar mass = 0.89 moles * 42.1 g/mole = approx. 37.5 g. Hence, approx. 37.5 grams of CaH2 are needed to generate 45.0 L of H2 at a pressure of 0.995 atm and a temperature of 32 °C.

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Related Questions

in the ideal gas law, was does n represent ?

Answers

Answer:

The letter n represents Moles

Explanation:

The Ideal Gas Law. The letter P represents Pressure, the letter V represents Volume, the letter n represents Moles, the letter R represents a constant (a certain number to make the equation work together), the letter T represents temperature.

Yes, In the ideal gas law, 'n' represents the number of moles of a gas. This quantity, along with pressure, volume, and temperature, forms part of the equation PV = nRT, which describes the state of an ideal gas.

The ideal gas law is an equation that describes the relationship between pressure, volume, temperature, and the number of moles of a gas and is generally written as PV = nRT. Here, P stands for pressure, V is volume, R is the ideal gas constant, and T is the temperature in Kelvin. Chemists use moles when working with this law to relate the amount of substances in a more manageable way, as opposed to counting the vast number of individual particles directly.

The law illustrates that, for an ideal gas, if the density (connected to the number of moles) or the temperature goes up, the pressure of the gas also tends to increase. However, this relationship is most accurate when gases do not have strong interactions between particles. In cases where gas particles do interact strongly, such as when gases are not in the ideal state, the ideal gas law may not accurately predict the behavior of the gas.

A sample of an unknown compound has a percent composition of 52.14% carbon, 13.13% hydrogen, and 34.73% oxygen. Which compounds could
the sample be?
CH3CH3CH202
C2H5OH
C4H10o2
C4h12o2 and ch3ch3ch2ooh

Answers

Final answer:

To determine which compounds an unknown sample could be, based on its percent composition, involves calculating the empirical formula from the given percentages and comparing it with the provided compound options.

Explanation:

The question involves determining which compounds an unknown sample could be, based on its percent composition of 52.14% carbon, 13.13% hydrogen, and 34.73% oxygen. This requires an understanding of percent composition and the ability to calculate an empirical formula based on the given percentages. Given the complexity of the sample compositions and potential empirical formulas, it's essential to evaluate each option through stoichiometric calculations and compare their empirical formulas derived from the provided compositions to the actual compounds mentioned.

Which of the following statements is true?

An atom consists of protons, electrons, and neutrons.

An atom consists of protons and neutrons.

An atom consists of electrons bonded to one another.

An atom consists of protons bonded to one another.​

Answers

Answer:

The first option

Explanation:

Answer:

First Question, A, An atom consists of protons, electrons, and neutrons.

Second Question, B, A nucleus consists of protons and neutrons.

Explanation:

Compare similarities and differences between the Plum Pudding Model, Nuclear Model and Bohr Model (6 marks)

Answers

Answer:

The three models describes the structure of an atom based on different views.

Explanation:

Plum pudding model described the atom of consisting of negatively charged electrons embedded in positively charged substrates; this was later proven to be false. The Bohr's model described the electrons in an atom to orbit round the nucleus at different energy, the closer it's to the nucleus, the lesser the energy it needs. The Rutherford model claims the the nucleus of the atom contains protons and neutrons which forms the mass of the atom, the electrons surrounds the nucleus and it forms the volume of the atom.

The atom has been the smallest unit of matter. It has been revealed with the varies studies and models proposed to deliver the accepted and well illustrated model.

The Plum pudding model has been the first atomic model proposed by J.J. Thomson. The  Rutherford model has been the well illustrated model of the atom.

Similarities and differences between the Atomic models

The Plum pudding model has been proposed by J.J. Thomson, the Nuclear model by Rutherford, and the Bohr model has been proposed  by Bohr.

Similarities in atomic models

The atomic models have been proposed for the atom. All the models have been focused with a central positive nucleus, and negative electrons outside the nucleus.

Differences in atomic model

The plum pudding model considered electrons to be distributed unequally outside the nucleus. The Nuclear model has been considered electrons to be present outside the nucleus in the orbital shells. The Bohr model has been able to explain the quantum address of the electron.

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Absalon adds 1 g of salt to 1 L of room temperature water (25 °C). Then, he starts a timer and observes what happens. He notices that it takes 1 minute for the salt to dissolve. He decides to repeat his experiment, and he adds 1 g of salt to another 1 L of room temperature water (25 °C). After he adds the salt, he starts a timer. But, instead of watching the salt dissolve, he stirs the salt and water with a spoon until it dissolves. He notices that it only takes 30 seconds for the salt to dissolve in his second experiment.

Why does the salt dissolve faster in Absalon's second experiment?


Stirring the salt and water increases the polarity of the water molecules, which causes the ionic bonds of the salt to break.

Stirring the salt and water increases particle motion, which causes more collisions to occur between the water and salt.

Stirring the salt and water increases the surface area of the water, which causes more collisions to occur between the water and salt.

Stirring the salt and water increases the pressure on the solution, which causes the ionic bonds of the salt to break.

Answers

Answer:

B

Explanation:

I looked it up and found the answer lol

Answer: Option (b) is the correct answer.

Explanation:

When Absalon stirred the solution which is containing salt in water then there will occur disturbance into solution due to stirring.

As a result, particles will come in motion and hence, they tend to gain more kinetic energy. Due to which there will be more number of collisions between the solute (salt) and solvent (water) particles.

Hence, rate of reaction will increase and because of this salt will readily dissolve into water.

Thus, we can conclude that the salt dissolve faster in Absalon's second experiment because stirring the salt and water increases particle motion, which causes more collisions to occur between the water and salt.

Fission of uranium-235 products energy and ______
A. isotopes of smaller elements
B. isotopes of larger elements C. lighter isotopes of uranium D. heavier isotopes of uranium

Answers

Answer:

A

Explanation:

During fission, heavier unstable atoms are split into lighter and more stable atoms with the release of energy. Fission of Uranium-235 produces Barium and Krypton (which are lighter and more stable atoms) and neutrons. Barium has an atomic mass of 141 while that of Krypton is 92.

Answer:

a

Explanation:

Determine the enthalpy change of the following reaction: 2KClO3 -> 2KCl + 3O2

Given enthalpies:
KClO3: -391.4 kJ/mol
O2: 0 kJ/mol
KCl: -436.7 kJ/mol

Answers

Answer:

- 90.6 kJ/mol.

Explanation:

The enthalpy change of the reaction (ΔHrxn) is the difference between the sum of heat of formation of products and reactants.

ΔHrxn = ∑ΔHf(products) - ∑ΔHf(reactants)

For the reaction: 2KClO₃ → 2KCl + 3O₂,

∴ ΔHrxn = ∑ΔHf(products) - ∑ΔHf(reactants)

∴ ΔHrxn = [(2*ΔHf(KCl)) + (3*ΔHf(O₂))] - [(2*ΔHf(KClO₃))] = [(2*(- 436.7 kJ/mol)) + (3*(0)] - [(2*(- 391.4 kJ/mol)] = [- 873.4 kJ/mol] - [- 782.8 kJ/mol] = - 90.6 kJ/mol.

Final answer:

The enthalpy change of the reaction 2KClO3 -> 2KCl + 3O2 is calculated by subtracting the sum of the enthalpies of the reactants from the sum of the enthalpies of the products. The calculation results in an enthalpy change of 90.6 kJ, meaning the reaction is endothermic.

Explanation:

The enthalpy change of the reaction can be calculated by subtracting the sum of the enthalpies of the reactants from the sum of the enthalpies of the products. This is also known as Hess's law.

In this reaction, the reactants are 2 moles of KClO3 and the products are 2 moles of KCl and 3 moles of O2. Hence, the enthalpy of the reaction can be calculated as follows:

Enthalpy change = [2 * (-391.4 kJ/mol)] - [2 * (-436.7 kJ/mol) + 3 * 0 kJ/mol]

= (-782.8 kJ) - (-873.4 kJ)

= 90.6 kJ

Therefore, the enthalpy change of this reaction is 90.6 kJ. If the enthalpy change is positive, the reaction is endothermic meaning it absorbs heat from the surroundings.

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When H+ forms a bond with H2O to form he hulydronium ion H3O+, this bond is called a coordinate covalent bond because ?

Answers

Answer:

Because both the bonding electrons come from the oxygen atom.

Explanation:

A coordinate covalent bond is formed when both the bonding electrons are coming from the same atom.

Here in the given situation, when H+ forms a bond with the water molecule [tex] H _ 2 O [/tex] to form the hydronium ion [tex] H _ 3 O + [/tex], then it is referred to as a coordinate covalent bond since both the bonding electrons are coming from the oxygen atom.

Answer:

Both the shared electrons come from single atom

Explanation:

Coordinate covalent bond is a type of bond in which both the shared pair of electrons are come from single bond. Whereas in simple covalent bond, sharing electrons come from both the participant atoms.

Coordinate covalent bond is also called dative bond and the atom which share both the electrons are called donar atom.

For a coordinate covalent atom to from, one participant atom should have lone pair of electron and other atom should be deprived of electrons.

In [tex]H_2O[/tex] molecule, O atom has lone pair of electrons while H+ ions has deficiency of electrons, so O atom shares its lone pair of electrons with H+ ions which results in the formation of coordinate covalent bond and forms [tex]H_3O^+ molecules[/tex].

need asap
What is the role of the cell wall in plant cells?

Answers

Answer:

The cell wall in plant cells is responsible for cell protection, providing structural support, and giving shape to the cell.

Explanation:

The cell wall in plant cells is responsible for cell protection, providing structural support, and giving shape to the cell.

The cell wall in bacteria is made up of paptidoglycan , the modified sugars include NAG and NAM which stands for N- acetyl glucosamine and N- acetyl muramic acid. The cell wall is made up of cellulose

Match the formula for the following compound: 
magnesium sulfate heptahydrate

MgS·7H2O

Mg2SO4·7H2O

Mg(SO4)2·7H2O

MgSO4·7H2O


Answers

valence of magnesium is 2

and valence of sulfate-ion is 2 too

answer: MgSO4•7H2O

Answer: [tex]MgSO_4.7H_2O[/tex]

Explanation:

[tex]MgSO_4[/tex] is an ionic compound because aluminium element is a metal and hydrogen element is a non-metal. The bond formed between a metal and a non-metal is always ionic in nature.

The nomenclature of ionic compounds is given by:

1. Positive is written first.

2. The negative ion is written next and a suffix is added at the end of the negative ion. The suffix written in case of [tex]SO_4^{2-}[/tex] is '-ate'.

Hence, the name of [tex]MgSO_4[/tex] is magnesium sulphate.

The water of crystallization is written as hydrate with the number of water molecules. As the name is heptahydrate, that means 7 water molecules are present.

Therefore, the correct answer is [tex]MgSO_4.7H_2O[/tex]

Explain why HCl (aq) cannot be used to acidify KMnO4 (aq) while ur can be used to acidify K2Cr2O7 (aq).

Answers

Answer:

HCL being a strong electrolyte dissociates in water to give H+ and Cl- ions. KMnO4 being a strong oxidising agent oxidises Chloride ion(Cl-) to Cl2. ... Hence more amount of KMnO4 is usedup which results in error in reading. The situation is completely the opposite with K2Cr2O7.

hope this helps

what is the specific heat of a substance that absorbs 2.5×10^3 joules of heat when a sample of 1.0 ×10^4g of the substance increases in temperature from 10°c to 70°c?​

Answers

Sorry I don’t even know what the product would be

Answer:

0.004167 J/g°C is the specific heat of a substance.

Explanation:

[tex]Q=m\times c\times \Delta T[/tex]

[tex]Q=m\times c\times (T_{2}-T_1)[/tex]

Where:

Q =  heat absorbed(positive) or released (negative)

m = Mass of substance

c =  specific heat of a substance

[tex]T_1[/tex] = Initial temperature

[tex]T_2[/tex] = Final temperature

We have:

m = [tex]1.0\times 10^4 g[/tex]

c = ? , [tex]T_1=10^oC,T_2=70^oC[/tex]

Q = [tex]2.5\times 10^3 J[/tex]

[tex]2.5\times 10^3 J=1.0\times 10^4 g\times c\times (70^oC-10^oC)[/tex]

[tex]c=\frac{2.5\times 10^3 J}{1.0\times 10^4 g\times (70^oC-10^oC)}[/tex]

[tex]c=0.004167 J/g^oC[/tex]

0.004167 J/g°C is the specific heat of a substance.


How does science use models to gain a better understanding of concepts?

Answers

Answer:In science, a model is a representation of an idea, an object or even a process or a system that is used to describe and explain phenomena that cannot be experienced directly. Models are central to what scientists do, both in their research as well as when communicating their explanations.

Explanation:

As a temperature of a fixed volume of a gas increases, the
pressure will what?​

Answers

As a temperature of a fixed volume of a gas increases, the

pressure will also “INCREASE”

Identify the Lewis base in this balanced equation: Fe3+ H2O Fe(H2O)63+

Answers

Answer:H20

Explanation:

because it is the base that contributes electrons

Answer : The Lewis-base in this reaction is, water [tex]H_2O[/tex]

Explanation :

According to the Lewis acid-base theory,

Lewis acid : It is a substance that can accepts pairs of electrons to form a covalent bond.

Lewis-base : It is a substance that can donates pairs of electrons to form a covalent bond.

The given balanced equation is:

[tex]Fe^{3+}+6H_2O\rightarrow [Fe(H_2O)_6]^{3+}[/tex]

In this reaction, [tex]Fe^{3+}[/tex] ion is Lewis-acid and [tex]H_2O[/tex] is a Lewis-base. The [tex]H_2O[/tex] donates electrons to [tex]Fe^{3+}[/tex] ion to form [tex][Fe(H_2O)_6]^{3+}[/tex].

Hence, the Lewis-base in this reaction is, water [tex]H_2O[/tex]

Which formula equation represents the burning of sulfur to produce sulfur dioxide?
S(s) + O2(g) 4502(9)
2H2S(s) + 302(g) —> 2H20(0) + 2502(9)
4FeS2+1102 —> 2Fe2O3 + 8502
2802(g) + O2(9) V205 , 2503(9)

Answers

Answer:

S(s) + O2(g) → SO2(g)

Final answer:

The correct chemical equation that represents the burning of sulfur to form sulfur dioxide is S(s) + O2(g) -> SO2(g). This equation illustrates that one mole of sulfur reacts with one mole of oxygen to produce sulfur dioxide.

Explanation:

The question is asking for the correct formula equation which represents the burning of sulfur to produce sulfur dioxide. The burning of sulfur in the presence of oxygen (O2) results in the formation of sulfur dioxide (SO2). This process can be represented by the following chemical equation:

S(s) + O2(g) —> SO2(g)

This shows that one mole of sulfur (S) reacts with one mole of Oxygen (O2) to produce one mole of sulfur dioxide (SO2).

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What type of matter is 500 grams of silver combined with gold?

Answers

Mixture is the type of matter, since Silver combined with Gold shows properties of both the Types of matter

Answer:

A Mixture of two elements

Explanation:

what are the properties of clay soils? check all that apply

1.is loose
2.retains water
3.drains quickly
4.are fine grained
5.have coarse particles​

Answers

Answer: 2.retains water, 4. are fine grained

Explanation:

Clay is a kind of soil. It exhibit fine grained particles. It retains the organic matter and inorganic minerals. The ability to retain water is because of fine grained size aggregate of clay. As this kind of soil can retain moisture and exhibit minerals it is suitable for the growth of plants.

Mercury-203 undergoes beta minus decay. 203 80 Hg → 203 81 Tl + ? The subatomic particle produced is a(n) . 203 80 Hg → 203 81 Tl + 0 -1 e Is this the correct balanced equation? .

Answers

Answer:

A negative beta particle

Yes

Explanation:

The incomplete equation of the reaction:

                  ²⁰³₈₀Hg → ²⁰³₈₁Tl + ?

In order to balance nuclear equations, we must conserve the mass number and atomic number.

For the mass number; 203 = 203 + a

                                         a = 0

             Atomic number; 80 = 81 + b

                                           b = -1

The unknown has no mass number but an atomic number of -1

This a  negative beta particle and it is designated as ⁰₋₁e

Answer:

1) Electron

2) Yes

An unknown substance is a white solid at room temperature and has a melting point of 78 °C. Which of the following substances is most likely to be the identity of the unknown sample?
A. Naphthalene, a molecular solid with the formula C10H8
B. Silica, a network solid held together by covalent bonds with the formula SiO2
C. Calcium chloride, an ionic compound with the formula CaCl2
D. Water, an molecular compound with the formula H2O

Answers

The unknown solid with melting point of 78 degrees Celsius has been the molecular solid Naphthalene with formula [tex]\rm C_1_0H_8[/tex]. Thus, option A is correct.

Melting point has been defined as the temperature that has been able to transfer the solid to the liquid state.

The melting point has been higher for the substances with strong intermolecular interactions, and lower for weak attractive compounds.

Identity of the unknown sample

The unknown sample has a melting point of 78 degree Celsius.

The molecular compounds have high melting point with strong intermolecular interactions, and ionic and covalent compounds have low melting point with weak intermolecular interactions.

The melting point of water has been zero degree Celsius.

Thus, the unknown solid with melting point of 78 degrees Celsius has been the molecular solid Naphthalene with formula [tex]\rm C_1_0H_8[/tex].

Thus, option A is correct.

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Final answer:

The most likely identity of the unknown white solid with a melting point of 78 °C is naphthalene, a molecular solid with the formula C10H8, commonly used in mothballs.

Explanation:

If the unknown substance is a white solid at room temperature and has a melting point of 78 °C, the most likely candidate from the given options would be naphthalene, which is a molecular solid. This substance has the formula C10H8 and is well-known for its use in mothballs. It has a melting point close to the given temperature, whereas the other given substances have significantly higher melting points and different chemical and physical properties.

SiO2, or silica, is a covalent network solid and CaCl2, or calcium chloride, is an ionic compound. Both have melting points that are much higher than 78 °C. Meanwhile, H2O, water, is a molecular compound that is not a solid at room temperature, as it has a melting point of 0 °C. Therefore, option A, naphthalene, is the most likely identity of the unknown solid.

write the complete equation for the neutralization reactions that take place when the following water solutions are mixed.

1.) KOH(aq) + HF(aq)

2.) HCl(aq) + LiOH(aq)

3.) H2SO4(aq) + NaOH(aq)

Answers


These are the reactions

KOH(aq) + HF(aq)= KF(Precipitate) + H2O(l)

HCL(aq) + LiOH(aq) = LiCl(Precipitate) + H2O(l)

H2SO4(aq) + 2NaOH(aq) = Na2SO4(Precipitate) + 2H2O(l)

What is a scientific theory?

A. A scientist's guess about how something works

B. The results of an experiment obtained using the scientific method

c. A proven fact that will never change

D. An idea that is backed by data from many sources

Answers

The answer is D.An idea that is backed by data from many sources

The scientific theory is "an idea that is backed by data from many sources".

What is scientific theory?

A scientific theory would be a justification for a feature of the natural world as well as the universe that already has undergone repeated testing and confirmation through using established procedures for observation and measurement but also outcome from evaluation.

What is source?

The source would be defined as the origin of somebody else.

Therefore, the scientific theory is "an idea that is backed by data from many sources".

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what is the [OH-] in a solution with a poh of 3.90

Answers

Answer: The hydroxide ion concentration is [tex]1.26\times 10^{-4}M[/tex]

Explanation:

pOH is defined as the negative logarithm of hydroxide ion concentration in the solution.

To calculate the pOH of the reaction, we use the equation:

[tex]pOH=-\log[OH^-][/tex]

where,

[tex]pOH=3.90[/tex]

Putting values in above equation, we get:

[tex]3.90=-\log[OH^-][/tex]

[tex][OH^-]=1.26\times 10^{-4}M[/tex]

Hence, the hydroxide ion concentration is [tex]1.26\times 10^{-4}M[/tex]

Answer: 1.26 x 10 -4

Explanation:

What is scientific law how does a hypothesis become a law

Answers

Answer:

In general, a scientific law is the description of an observed phenomenon. It doesn't explain why the phenomenon exists or what causes it. The explanation of a phenomenon is called a scientific theory. It is a misconception that theories turn into laws with enough research.

Explanation:

Answer:

A scientific law is a description of an observed phenomenon.this is not an explanation of a phenomenon but a description.

Hypothesis becomes a law when  they follow a line of reasoning and formulate a theory.then once a theory has been evaluated through a series of testing it becomes a law.

Hope this helps and if it does pls mark as brainliest answer

How does temperature affect the Keq of a reaction?

Answers

Answer:

D. Changing the temperature will change Keq.

Explanation:

The equilibrium constant expresses the relationship between the molar concentration of reactants and products. This constant is the Keq. It is temperature dependent and constant at a given temperature.

A change in temperature of an equilibrium system shifts the system to a new equilibrium point. A rise in temperature shifts the equilibrium position to the direction that absorbs heat and vice versa.

In summary, a shift in equilibrium which results from temperature change is actually a change in value of the equilibrium constant.

Answer: D. changing the temperature will change the K eq

Explanation:

Which of the following is the best name for a compound made from calcium and bromine? (CaBr2) calcium bromide calcium dibromide monocalcium dibromide calcium bromine II

Answers

Answer:

Calcium Bromide

Explanation:

Metals like Calcium reacts with halogens like bromine to form Metal halides.

Metal + Halogen → Metal halide

The generally accepted names for compounds and elements are the IUPAC names,

Therefore for calcium and bromine, the IUPAC name of the salt formed is calcium bromide.

Answer:

Calcium bromide

Explanation:

   Calcium bromide is mainly used as dense aqueous solutions for drilling fluids. It is also used in medicines, freeze mixtures and photography.

  The nomenclature follows the general rule:

                               Anion Name + Cation Name

    But this is only effective for those salts that are classified as simple salts, which means, salts that dissociate into water and form only one cation and one anion.

    When we work with a salt called double, for example, this rule goes through some adjustments.  It is one that presents in its constitution the presence of two cations accompanying an anion or two anions accompanying a cation. For this reason, when these salts undergo the dissociation phenomenon in water, they release two cations or two anions, depending on the salt with which they are working.

   The double salt that has in its constitution two cations accompanying an anion is called double salt as the cation. To name such a salt, we must use the following naming rule:

           Anion name + name of the two cations

The name of each cation is written according to the order of electropositivity. Thus, the most electropositive cation will be written first.

The molar mass of cadmium chloride is 183 g. what mass of CdCl2 would be present in 10.0 mL of 9 M solution?

Answers

16.47g. I attached the pic of the solution:)

The mass of CdCl₂ present in 10.0 mL of a 9 M solution is 16.47 grams.

Given:

Molar mass of CdCl₂ = 183 g/mol

Volume of solution = 10.0 mL = 0.010 L

Molarity of solution (concentration) = 9 M

The molarity (M) of a solution is defined as the number of moles of solute per liter of solution.

Molarity is commonly used to express the concentration of solutions in various chemical reactions and experiments.

To calculate the moles of CdCl₂:

Moles = Molarity x Volume

Moles = 9 M x 0.010 L

Moles = 0.09 mol

Now, to calculate the mass of CdCl₂:

Mass = Moles x Molar mass

Mass = 0.09 mol x 183 g/mol

Mass = 16.47 g

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what is the molecular formula of ferrous nitrate and ferric nitrate

Answers

Ferric iron has a charge of 3+, while ferrous iron has a charge of 2+. The nitrate anion looks like this:

NO3-

so the balanced compounds would be:

Ferric Nitrate: Fe(NO3)3
Ferrous Nitrate: Fe(NO3)2

Hope this helps!

We know we are originated from the combination of elements but where did the elements and compound came from. Where did the proton neutron electron or smallest particle came? Then Does god exists?Plz give me a good reason. ​

Answers

This is a long type of question but I’ll try to get it in as short as possible.

A principle that must be understood is that matter comes from energy. Einstein’s famous equation, E=mc^2, relates the mass of an object to the amount of energy it “contains”, which, even for relatively small objects, is a lot. Every person, planet, star, and galaxy across the universe is comprised of matter and, subsequently, energy.

When the universe was very young, it was condensed into a much, much smaller and much, much higher energy form. At its earliest point, the universe had all of its energy condensed into a very small space that was unbelievably hot. This high-energy state prevented matter to exist, so all of the energy we can imagine was compacted here! It’s pretty mind-boggling!

When the universe began to expand, the energy that was making the universe hot began to spread and become less concentrated. This took a really long time for this to occur, on the order of hundreds of thousands of years. Once this high-energy became spread out and stable enough, matter could essentially “condense” from the energy. Too high energy = no matter, low enough energy = matter.

More complex matter requires more stability, so when matter started to form, it still took a lot more time for it to reach today’s point of diversity. All of the elements on the periodic table didn’t just suddenly form, first most of the components of the standard model of quantum physics took form followed by protons, neutrons, and electrons, and, finally, hydrogen, the simplest element, formed.

A potassium ion can combine with several monatomic and polyatomic ions to form compounds.

An example of a potassium compound containing both ionic and covalent bonds is ___, and an example containing only ionic bonds is ___
(plato pre:chemical bonding )

Answers

Final answer:

Potassium nitrate (KNO3) contains both ionic and covalent bonds within the compound, while potassium sulfate (K2SO4) is an example of a compound containing only ionic bonds.

Explanation:

An example of a potassium compound containing both ionic and covalent bonds is potassium nitrate (KNO3), and an example containing only ionic bonds is potassium sulfate (K2SO4).

Potassium nitrate is composed of potassium ions (K+) and nitrate ions (NO3−), with the nitrate being a polyatomic ion held together by covalent bonds between nitrogen and oxygen atoms. This compound demonstrates ionic bonding between potassium and nitrate ions, as well as covalent bonding within the nitrate ion itself.

On the other hand, potassium sulfate is made up of potassium ions (K+) and sulfate ions (SO42−). This compound is purely ionic, with the bonds forming from the electrostatic attraction between the positively charged potassium ions and the negatively charged sulfate ions.

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