Give the coordination number and charge of the central metal ion of the complex cation and then, separately, the complex anion in the coordination compound [cr(nh3)6][cr(cn)6].Give a systematic name for the following formula: [cr(nh3)6][cr(cn)6]

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Answer 1

The coordination number and charge of the central metal ion of the complex cation [Cr(NH3)6]3+ in the coordination compound [Cr(NH3)6][Cr(CN)6] is 6 and 3+ respectively.

The coordination compound [Cr(NH3)6][Cr(CN)6] is composed of two ions: the complex cation [Cr(NH3)6]3+ and the complex anion [Cr(CN)6]4-. The complex cation [Cr(NH3)6]3+ is formed by the central metal ion, chromium (Cr), and six ammonia (NH3) molecules. The coordination number of the central metal ion in this complex cation is 6, which means it has six ligands (NH3) surrounding it. The charge of the central metal ion in this complex cation is 3+, which means it has lost 3 electrons. The complex anion [Cr(CN)6]4- is formed by the central metal ion, chromium (Cr), and six cyanide (CN) molecules. The coordination number of the central metal ion in this complex anion is 6, which means it has six ligands (CN) surrounding it. The charge of the central metal ion in this complex anion is 4-, which means it has gained 4 electrons. The systematic name for the formula [Cr(NH3)6][Cr(CN)6] is hexaamminochromium(III) hexacyanochromate(IV).

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Related Questions

if applied energy to the energy level diagrams resulted in the excitation of electrons, in your own words describe a phenomenon that could occur.

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if applied energy to the energy level diagrams resulted in the excitation of electrons, in your own words describe a phenomenon that could occur.-The second step is consistent.

The proposed mechanism in which the reaction proceeds through two steps, with the first step being the slow step and the second step being the fast step, can be consistent with the given information that the reaction is first order in H2(g) and also first-order in ICl(g).In the first step, H2(g) reacts with ICl(g) to form HI(g) and HCl(g) which is the slow step. This step is first-order in H2(g) and first-order in ICl(g), as the rate of the reaction depends on the concentrations of both H2(g) and ICl(g).In the second step, HI(g) reacts with ICl(g) to form HCl(g) and I2(g) which is the fast step. Because this step is much faster than the first step, it can be considered to be at equilibrium and the concentrations of HI(g) and ICl(g) are not affected by the second step.The overall reaction order is the sum of the reaction order of the individual steps, so the overall reaction order is first order in H2(g) and first-order in ICl(g), consistent with the information given in the problem.

The complete question is :

The equation for the reaction between hydrogen and iodine monochloride is H2 (g)+2ICl(g)2HCl(g)+I2 (g). This reaction has the highest order in H2 (g) and the lowest order in ICI (g). Which of these proposed mechanisms is consistent with the information provided about this reaction?

Step 1: H2(g) + ICl(g) + HI(g) + HCl(g) (slow)

Step 2: HI(g) + ICl(g) + HCl(g) + I2(g) (fast)

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T/F chromatography is a technique that depends on the differences in the rate of travel of different substances through a solid medium.

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Chromatography is the technique that depends on the differences in the rate of travel of the different substances through a solid medium. This statement is true.

Chromatography is defined as the process for separating the components of a mixture. By dissolving the mixture of the interest in the mobile phase and transporting it through the stationary phase, mixture to its constituents can be separated from one another which is based on their different speeds of travel. The common chromatography are :

The gas  chromatographyThe liquid  chromatographyThe thin layer  chromatographyThe ion exchange  chromatography

Thu, the given statement is true that the  chromatography is a technique that depends on the rate of travel of different substances through the solid medium.

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What can be learned from the journal "ISICLE: A pipeline of molecular collision cross-section calculations to build a large in silico reference library for compound identification"?

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Identification of metabolites and other compounds in complicated samples will alter our knowledge of the function these chemically varied molecules play in biological systems.

Despite recent developments, metabolomics investigations continue to identify an excessive number of characteristics that cannot be reliably attributed to a chemical structure. The single biggest drawback in metabolomics, the reliance on reference libraries created from study of real reference molecules, is what causes this deficiency. In order to do this, we created the in silico chemical library engine (ISiCLE), a cheminformatics method for creating libraries of chemical attributes that is compatible with high-performance computers. In the instantiation outlined here, chemical identities are used as input to estimate likely three-dimensional molecule conformers, from which collision cross sections (CCS) are produced. Modern first-principles simulation is used in this method to produce structures and libraries without the need for training data. It is differentiated by its use of molecular dynamics, quantum chemistry, and ion mobility calculations.

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to separate a homogeneous mixture of salt water, which of the following pieces of laboratory equipment is necessary?

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C. condenser, Distillation is a common technique used to separate homogeneous mixtures. The combination is separated by distillation using the various boiling points of the constituents.

Boiling the mixture causes one of the chemicals to evaporate. The compound is instantly cooled through the condenser once it has evaporated, and it is then collected in a flask at the opposite end. The sole piece of laboratory apparatus listed in the possible answers that fits this method is [C]. A buret is used in titration tests to measure concentrations, a pipet is used to transfer chemicals in tiny amounts, and a filter would be used to separate a heterogeneous mixture. For separating heterogeneous mixtures such an organic solvent and an aqueous solvent, a separatory funnel is helpful.

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identify the expected hybridization state and geometry for the central atom in the following compound

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The molecules feature a linear arrangement of atoms with a 180° bond angle when hybridization takes place. Example: CO 2 hybridization. Carbon undergoes sp2 hybridization.

what is meant by hybridization?

A new form of hybridized orbitals is created by combining two atomic orbitals, which is known as hybridization in chemistry. Hybrid orbitals with completely distinct energies, forms, etc. are typically created as a result of this intermixing. For the most part, hybridization involves atomic orbitals at the same energy level. But if the energy is equal, both fully and partially filled orbitals can participate in this process.

On the other hand, we can claim that the notion of hybridization is a development of the valence bond theory and that it aids in our comprehension of the creation of bonds, bond energy, and bond lengths.

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identify the type of compound that would have the following properties? conducts electricity when melted or dissolved in water. high melting point usually a solid

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Answer: Ionic Compounds

What are Ionic Compounds?

Ionic compounds are compounds formed by the complete transfer of electrons between two atoms forming a strong ionic bond.

Ionic compounds are composed of oppositely charged ions held together by strong electrostatic attraction.

Characteristics of Ionic Compounds:

Ionic compounds have high melting points.Ionic compounds are hard and brittle.When dissolved in water they dissociate into ions.Solutions of ionic compounds and molten ionic compounds conduct electricity, but solid materials do not.Ionic compounds can be identified by their chemical formula: metal + non-metal or polyatomic ion.

Hence, the given explanation states that Ionic Compounds have the following properties.

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fundamental mechanisms of solvent decomposition involved in solid-electrolyte interphase formation in sodium ion batteries

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There are 2 interphases: anode solid electrolyte interphase and cathode electrolyte interphase.

In battery systems an interphase forms at the interface between electrode and electrolyte at the decomposition of the latter. In fig. cathode and anode surface of the atom has been shown. The ions are transported in bulk electrolyte and then pass through desolvation pass to pass this cathode electrolyte interphase. This interphase must have high permeability, and sensitivity, an electronic insulator, should be insoluble and inert so that it doesn't create any issue in the system and will not affect the chemical and electrochemical environment of the cell. Thereby after the desolvation process, it can easily pass the interphase.

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The periodic law states that:
a. when elements are arranged in increasing order of mass, there is a periodic repetition of properties.
b. when elements are arranged in increasing order of atomic number, there is a periodic repetition of properties.
c. when elements in the same period are observed, they all have the same properties.
d. when elements in the periodic table are arranged in certain ways, they will have the same atomic properties.

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Dmitri Mendeleev and Lothar Meyer each independently developed the periodic law in 1869. The first periodic table was made by Mendeleev, and Meyer soon after. They both suggested that certain attributes frequently recur and grouped the elements according to their mass.

what is meant by periodic law ?

According to the periodic law, when the elements are organised in order of increasing atomic number, their physical and chemical properties repeat in a regular and predictable manner. Numerous characteristics occur repeatedly. When the components are properly ordered, patterns in their characteristics become visible and can be used to forecast the properties of unknown or foreign elements just by looking at how they are arranged on the table.

Periodic Law: Its Importance

Considered one of the most crucial ideas in chemistry is periodic law. Whether consciously or unconsciously, every scientist applies periodic law when working with chemical elements, their properties, and chemical reactions. The contemporary periodic table was created as a result of periodic law.

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Although databases are consistently updated so that scientists can assign probabilities to class evidence, for the most part, forensic scientists must rely on ___ when interpreting the significance of class physical evidence.

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Personal experience when interpreting the significance of class physical evidence.

What is meant by experience ?

Experience is used to describe conscious events in general, perceptions in particular, or the knowledge and comfort that are produced by these conscious processes. Experience involves a subject to which multiple elements are offered, taken to mean a conscious event in the broadest sense. This is because experience is typically equated with perception and set apart from other conscious activities like thinking and daydreaming. In a slightly different context, experience refers to the knowledge and comfort that conscious events create rather than the conscious events themselves. In this regard, it is crucial that knowledge originates from direct perceptual contact with the outside world.

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fill in the blanks with the correct notation, atomic symbols, mass number, atomic number, decay type, and/or emission particles

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Writing for atomic symbols looks like this: [tex]x^{A}_{^{Z} }[/tex] , Here, A denotes the mass number, Z the atomic number, while alpha, beta, and gama denote the various forms of decay.

The mass number, sometimes referred to as the atomic mass number or nucleon number, is the total number of protons and neutrons, which are collectively known as nucleons, in an atomic nucleus (symbol A, from the German word atomic number).while alpha, beta, and gama denote the various forms of decay. In chemistry, chemical symbols are used to represent chemical elements, functional groups, and compounds. Chemical elements are symbolised using one or two letters from the Latin alphabet, usually with the first letter capitalised.

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Which of the following formulas correctly identify the usual form of each element at room temperature? Select all that apply. A. B2 B. S2 C. P4 D. O2 E. Cl2.

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At room temperature, each element typically exists in one of the following three forms: C. P4, D. O2, and E. Cl2.

What metal atom can produce 2+ and 3+ ions simultaneously?Atoms of iron (Fe) can form either 2+ or 3+ cations, for instance. While lead (Pb) can only create 2+ or 4+ cations, cobalt (Co) is another metal that has the potential to generate multiple charged ions (2+ and 3+).In their elemental state, a number of the nonmetals are gases. At ambient temperature, the following elements are all gases: chlorine (Cl, element 17), fluorine (F), oxygen (O), nitrogen (N), hydrogen (H), and nitrogen (N, element 7).At room temperature, each element typically exists in one of the following three forms: C. P4, D. O2, and E. Cl2.          

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a substance that cannot be broken down into other substances by ordinary chemical procedures is a(n) . view available hint(s)for part a a substance that cannot be broken down into other substances by ordinary chemical procedures is a(n) . molecule element compound proton isotope

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Pure substances that cannot be broken down into simpler substances by chemical changes are called elements.

What is an element?

An element is a basic object that cannot be easily divided into smaller pieces. In chemistry and physics, an element is a substance that cannot be broken down by non-nuclear reactions. In computing and mathematics, an element is a separate part of a larger system or set.They are the building blocks of chemistry and matter. Each element is defined by the number of protons in its nucleus. Each element has an atomic number and symbol. The symbol may be based on the Latin name of the element and may not be related to the English name.

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Write the rate law for the following elementary reaction: O3(g) →O2(g) +O(g) Use k1 to stand for the rate constant.

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The rate law for the following elementary reaction: O3(g) →O2(g) +O(g) is k[O3][O] where k is rate constant.

The coefficients of the reactants in the balanced equation can be used to get the rate law for an elementary reaction. For instance, rate = k[A]^2[B] is the rate law for the elementary reaction 2A + B products.

Rate law = k[O3][O] describes how quickly ozone breaks down into molecular oxygen (O3 -> O2 + O). This process' suggested mechanism is O3 => O + O2 and O + O3 -> 2O2. From these fundamental steps, derive the rate law. The assumptions you make for the derivation should be stated clearly. The rate of the slowest step, often known as the rate-determining step, determines the total rate of a response. One atom is divided into two or more atoms in this reaction, which is referred to as decomposition.

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What mass of copper would be deposited at the cathode if a current of 2.5 A flows through copper(II) sulfate solution for 51 minutes and 28 seconds?

1.28 g
2.56 g
5.12 g
10.24 g

Answers

I think 5.12g. I’m not sure. Sorry if you get it wrong

consider the two electron arrangements for neutral atoms a and b. what is the difference between atom a and atom b? a - 1s 2 2s 2 2p 6 3s 1 b - 1s 2 2s 2 2p 6 5s 1 atom b has lost some inner electrons. the outer electron of atom b has moved to a higher energy state. the outer electron of atom b has moved to a lower energy state.

Answers

The difference between atom a and atom b is that atom b has lost some of its inner electrons.

What is the  electrons?

Electrons are subatomic particles that are part of the atomic structure. They carry a negative electrical charge and are found in the shells or orbitals of an atom. Electrons are the fundamental particles of electricity and are responsible for a variety of electrical and magnetic phenomena. These particles are also the main components of electric and magnetic fields. In addition, electrons are the building blocks of atoms, as they are arranged in shells of varying sizes and numbers depending on the element. Electrons are the main constituents of all matter, and they are responsible for the bonds that form between atoms and molecules.

This is because the outer electron of atom b has moved to a higher energy state, which is the 5s orbital, while the outer electron of atom a is in the 3s orbital. This means that atom b has fewer electrons in its inner shells, giving it a different electron arrangement and consequently a different chemical behavior.

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Determine whether each of the following chemical reactions will occur. If t the products of the reaction. If they will not, explain why not 1) --Li + _ Pb(OH)2 → 2)__C4H8 + 02 →3)__KOH+ ___BaF2-->4) __AICI3+__Ag2SO45)__Fe(OH)3+____NaCI--

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Yes, all of the above chemical processes will occur.

If the final products of the reaction are LiOH + Pb and CO2 + H2O.

1. Lithium hydroxide and lead(II) hydroxide combine to form LiOH and Pb(OH)2 (lead).

Li + Pb(OH)₂LiOH + Pb

is the chemical formula for this reaction.

2. Carbon dioxide (CO2) and water (H2O) are the products of the reaction between butane (C4H8) and oxygen (O2) (water).

C4H8 + O2 + CO2 + H2O

is the chemical formula for a combustion reaction.

3. Due to their chemical incompatibility, potassium hydroxide (KOH) and barium fluoride (BaF2) cannot mix.

4. The chemical incompatibility between silver sulfate (Ag2SO4) and aluminum iodide (AICI3) prevents their reaction.

5. Because sodium chloride (NaCl) and iron(III) hydroxide {Fe(OH)}₃ are chemically incompatible, they cannot combine.

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Trans-1,4-dibromocylohexane is more stable than the cis isomer because only the trans isomer can adopt a conformation in which both bromine

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In contrast to its cis isomer, 1, 4-trans disubstituted cyclohexane exhibits 1, 3 diaxial interaction, making it more stable.

A 1 4 trans disubstituted cyclohexane or its cis isomer, which is more stable? In contrast to its cis isomer, 1, 4-trans disubstituted cyclohexane exhibits 1, 3 diaxial interaction, making it more stable.The presence of both methyl groups in the equatorial position in trans - 1,4 -dimethylcyclohexane causes the trans isomer to be more stable than the cis isomer.4) Chair form is the trans-1,4-cyclohexanediol conformer that is the most stable.<br>5) The boat conformer is the Cis-1,4-cyclohexanediol conformer with the highest stability.As a result of one methyl's requirement to be axial, the cis isomer is less stable than the trans isomer.By 1.8 kcal, the cis isomer is therefore less stable than the trans isomer.The A-values for each axial substituent should be added up to determine the stability of the chair conformation.

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Strontium-90 is a byproduct in nuclear reactors fueled by the radioisotope uranium-235. The half-life of strontium-90 is 28.8 yr. What percentage of a strontium-90 sample remains after 115.2 yr?

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The half-life of a radioisotope is the amount of time it takes for half of the atoms in a sample to decay. For strontium-90, the half-life is 28.8 years.

To determine the percentage of a sample that remains after 115.2 years, we can use the formula:

Percentage remaining = (1/2)^(time in years / half-life) x 100

Plugging in the values, we get:

Percentage remaining = (1/2)^(115.2 / 28.8) x 100

Percentage remaining = (1/2)^4 x 100

Percentage remaining = (1/16) x 100

Percentage remaining = 6.25%

So, after 115.2 years, 6.25% of a strontium-90 sample remains.

Material
Al
Fe
Cd
Pt
Specific Heat Capacity
0.90
0.45
0.21
0.13
In an experiment, 400 J of energy was absorbed
by each of the four metals (each having a mass
of 10 g) in the above table. Which material
experienced the greatest temperature change?
(a) aluminum
(b) cadmium
(c) iron
(d) platinum

Answers

platinum- it requires the least J to increase temp by 1 degree

In chemistry the mole is a fundamental unit of measurement. The mole can be utilized to measure matter in terms of mass, volume, and numbers of particles. The mole is the amount of a substance which contains as many elementary particles as there are atoms in 0.012 kilogram of carbon-12 atoms. Match the following: 298.81 6.02 x 1023 22.4L 1. volume of one mole or gas at STP number of particles in one mole of any substance 2. What is the mass of 9.30 moles of SiH?​

Answers

Volume of one mole or gas at STP is 22.4L. Number of particles in one mole of any substance is [tex]6.02X10^{23}[/tex]. The mass of 9.30 moles of SiH is 298.81.

What is mole measurement?

In chemistry, a mole is a common unit of measurement for huge concentrations of very small objects like atoms, molecules, or other predetermined particles.

The mole designates [tex]6.02X10^{23}[/tex] units, which is a very large number.

For instance, we can compute the number of moles and the number of atoms or molecules in a sample if we know the mass and chemical composition of the substance.

Similarly, we may determine the number of atoms or molecules in a substance and determine its mass if we know how many moles it has.

At STP, a mole of gas has a 22.4L volume. One mole of any substance contains 6.02214076 1023 particles. 9.30 moles of SiH have a mass of 298.81.

Thus, this is the match for the given scenario.

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Based on the diagram, organic solids that have settled to the bottom of the treatment tanks in step B are transferred to which of the following for further processing?

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The sludge treatment tank , organic solids that have settled to the bottom of the treatment tanks in step B are transferred.

What is sludge treatment tank?

The procedures utilized to handle and dispose of the sewage sludge created during sewage treatment are referred to as sewage sludge treatment. In order to cut down on transportation and disposal expenses as well as potential health issues, sludge treatment focuses on reducing sludge weight and volume.

What is organic solids ?

All organic solids share the unique property of being intricate chemical complexes based on carbon. Due to the fact that carbon atoms contain four valence electrons, they frequently combine with atoms of other elements, such as hydrogen or nitrogen, to create covalent bonds.

Therefore,  sludge treatment tank , organic solids that have settled to the bottom of the treatment tanks in step B are transferred.

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which of the following is a chemical change?group of answer choicesO ice melting O ice being carvedwaterO boiling water O breaking down into hydrogen and oxygen

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Breaking down into hydrogen and oxygen is chemical change among given changes.

A chemical change is a change in which one or more substances are transformed into one or more different substances through chemical reactions. This is characterized by a change in the chemical properties or composition of a substance. In this case, the breakdown of water into hydrogen and oxygen through an electrolysis process is a chemical change as it results in new substances (hydrogen and oxygen) that have different properties than the original substance (water).

The other options: ice melting, ice being carved, water boiling are physical changes as they result in a change in physical properties like temperature and shape, but the chemical composition and identity of the substance remains the same.

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Which is the correct equation for K?

Answers

Answer:

uncomplete question

Explanation:

heck the box next to each molecule on the right that has the shape of the model molecule on the left:

Answers

Due to the core atom's (Br) sp3d2 hybridization, the molecule has an octahedral form, but Br has two lone pairs of electrons in the axial position, giving it a square planar shape.

​​​​​​

All of the information on the chemical molecule bromine pentafluoride is provided in the hybridization of bromine pentafluoride notes. It is a hybrid molecule made up of five fluorine atoms, five pentavalent bromine atoms, and one pair of missing electrons. Since it is so reactive, oxidizers are added to chemical reactions and commercial rocket propellants.

A square pyramidal molecular structure is produced via the hybridization of bromine pentafluoride, which results in an sp3d2 hybridization. Due to the covalent electron sharing and a bond angle of roughly 90 degrees, the hybrid molecule features six sigma bonds. Two bromine electrons must move from its 4p orbital to its 4d orbital for hybridization to take place.

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Describe in detail how you would prepare a pure, dry sample of each case give the salts. in each case give the chemical equation of the reaction that occurs
a) silver chloride starting with silver nitrate
b) copper II sulphate crystals starting with copper II carbonate​

Answers

Answer:

a) Silver chloride can be prepared from silver nitrate by adding a chloride ion source such as sodium chloride or hydrochloric acid. The chemical equation for this reaction is:

AgNO3 + NaCl → AgCl + NaNO3

or

AgNO3 + HCl → AgCl + HNO3

To prepare a pure, dry sample of silver chloride, the following steps can be taken:

Prepare a solution of silver nitrate by dissolving a known amount of the solid in distilled water.Prepare a solution of sodium chloride or hydrochloric acid in distilled water.Slowly add the chloride ion source solution to the silver nitrate solution while stirring. The reaction should be exothermic and a white precipitate of silver chloride will form.Allow the mixture to stand for a short period of time to allow any undissolved silver chloride to settle into the bottom of the container.Decant the clear solution from the top of the container, being careful not to lose any of the solid precipitates.Transfer the silver chloride precipitate to a filter funnel and wash it with distilled water to remove any remaining impurities.Allow the precipitate to dry completely by leaving it in an oven or desiccator. Once dry, the sample of silver chloride is now considered pure.

b) Copper II Sulphate can be prepared from copper II carbonate by adding sulfuric acid. The chemical equation for this reaction is:

CuCO3 + H2SO4 → CuSO4 + CO2 + H2O

To prepare a pure, dry sample of copper II sulphate, the following steps can be taken:

Prepare a solution of copper II carbonate by dissolving a known amount of the solid in distilled water.Prepare a solution of sulfuric acid in distilled water.Slowly add the sulfuric acid solution to the copper II carbonate solution while stirring. The reaction should be exothermic and a blue precipitate of copper II sulphate will form.Allow the mixture to stand for a short period of time to allow any undissolved copper II sulphate to settle to the bottom of the container.Decant the clear solution from the top of the container, being careful not to lose any of the solid precipitates.Transfer the copper II sulphate precipitate to a filter funnel and wash it with distilled water to remove any remaining impurities.Allow the precipitate to dry completely by leaving it in an oven or desiccator. Once dry, the sample of copper II sulphate is now considered pure.

It's important to note that these methods are just one way to prepare the pure salts and other methods may also exist. Additionally, the purity of the final product depends on the purity of the starting materials and the care taken during the preparation process.

If the concentration of [S2O82−] is doubled while keeping [I−] constant, which of the following experimental results is predicted based on the rate law, and why? A The rate of reaction will remain the same, because k will decrease by half. B The rate of reaction will double, because the rate is directly proportional to [S2O82−].. C The rate of reaction will increase by a factor of four, because two moles of SO42− are produced for each mole of S2O82− consumed. D The rate of reaction will increase by a factor of four, because the reaction is second order overall.If the concentration of [S2O82−] is doubled while keeping [I−] constant, which of the following experimental results is predicted based on the rate law, and why? A The rate of reaction will remain the same, because k will decrease by half. B The rate of reaction will double, because the rate is directly proportional to [S2O82−].. C The rate of reaction will increase by a factor of four, because two moles of SO42− are produced for each mole of S2O82− consumed. D The rate of reaction will increase by a factor of four, because the reaction is second order overall.

Answers

The rate of reaction will double, because the rate is directly proportional to [S2O82−].

What is meant by rate ?

A quantity, amount, or degree of something calculated in relation to one unit of another.A payment or charge that is calculated using another amount. more specifically: the premium per insurance unit. transitive verb rating"Per unit of time" is a frequent sort of rate, and examples include speed, heart rate, and flux.Exchange rates, literacy rates, and electric fields are a few examples of ratios with a non-time denominator.A rate in mathematics is the comparison of two related values expressed in different units.The numerator of the ratio expresses the rate of change in the other variable if the denominator of the ratio is given as a single unit of one of these quantities and it is expected that this quantity can be altered systematically.

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11. a student has two identical guitar strings of the same length. one has a tension f1. when he plucks this string, it produces a sound of 440 hz for its fundamental note. the second string has a tension that is 1.0% higher than the first, f2

Answers

The period of the vibration 2.27 milliseconds.

The mass of a string under tension can be determined in what way?

m = V provides information about the string's mass. For instance, the volume V = 0.398 cm3 and mass m = 1.140.398 = 0.454 gm of a nylon string with a 1.30 mm = 0.13 cm diameter and a length of 30 cm, respectively Typically, a racquet's entire string mass is 15 grams (0.015 lb), or about that.

T=f1 T = f 1 is the formula for calculating an oscillation's period, which is the inverse of frequency. This translates into the following in the example: T=1440 Hz=0.00227 s=2.27 ms T = 1 440 H z=0.00227 s=2.27 ms 2.27 milliseconds pass during each vibration.      

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which of the following compounds has the strongest intermolecular forces? group of answer choices c7h16 c8h18 c9h20 c5h12 c6h14

Answers

The following compounds has the strongest intermolecular forces,C8H18 has the strongest intermolecular forces.

What is the compounds ?

A compound is a chemical combination of two or more elements in a fixed ratio. Compounds can be formed from any combination of elements, although the elements must be in the correct ratio in order for the compound to exist. Compounds can exist as solids, gases, or liquids, depending on the elements that comprise it and the desired conditions. Compounds can also be classified as organic or inorganic, depending on whether they contain carbon atoms or not. Compounds are essential in everyday life and are used in a variety of applications, from pharmaceuticals to cleaning products.

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Gaseous ammonia chemically reacts with oxygen O2 gas to produce nitrogen monoxide gas and water vapor. Calculate the moles of water produced by the reaction of 0.070mol of ammonia. Be sure your answer has a unit symbol, if necessary, and round it to the correct number of significant digits.

Answers

The moles of the water produced by the reaction of 0.070 mol of ammonia is the 0.175 mol.

The reaction is given as:

4NH₃(g)  +  5O₂(g)   --->  4NO(g)  +  5H₂O(g)

The moles of ammonia, NH₃ = 0.070 mol

The moles if substances can be calculated as :

The number of moles = mass / molar mass

The 4 moles of the NH₃ will produces the 4 moles of NO

4 moles of ammonia, NH₃ produces the 5 moles of water , H₂O

The moles of water, H₂O = ( 5 / 2 ) × 0.070 mol

                                        = 0.175 mol

Thus, the moles of water, H₂O is 0.175 mol.

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a bunsen burner, named after robert bunsen, is a common piece of laboratory equipment that produces a single open gas flame, which is used for heating, sterilization, and combustion

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The Robert Bunsen burner, a common scientific tool that produces a single open gas flame used for heating, sterilising, and combustion, is named after Robert Bunsen.

The gas may be natural gas, which is mostly made up of methane, or liquefied petroleum gas, such as propane or butane. It produces a single open gas flame that is used for heating, sterilizing, and combustion. Air and gas mixing chamber: a barrel. The foundation stabilizes and supports the burner. The two types of Bunsen burner flames are as follows: When the air opening is open, a flame known as the non-luminous or blue flame, which is used for heating, is produced. The residual gas forms a secondary, practically colorless flame that is visible as a larger, outer cone when it is completely oxidized by the surrounding air. It burns with a primary flame that is a light blue color.

[tex]CH4(g)+2O2(g)→2H2O(l)+CO2(g)[/tex]

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complete question: What is a bunsen burner?

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