How do you handle leakage current?.

Answers

Answer 1

Certified control panel should be used and the cables and insulations for damage and replace the damaged one to avoid leakage current.

Leakage current flows when there is an electrical connection between the ground and a conductor. If the equipment is not grounded correctly the current will flow through other conductors. In the case of electrical devices, leakage current usually occurs as a result of faults in insulation or the fabrication of materials used to make parts such as semiconductors. The best ways to prevent leakage current are to always use shielded cables on motor installations and to make sure that these cables are grounded at both ends. and we have to also check cables and insulation for damage and replace ones that are broken or damaged.

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Related Questions

Leandra is learning about chemical reactions and she wants to examine the information that is included in a chemical equation. Which pieces of information does a chemical equation include? choose the three that apply.

Answers

The correct answers are (A).The type of atoms that form during a reaction. (C). the kind of substances that go into a molecule. (D). if the molecules are reactants or products.

What is chemical equation?

A chemical equation can offer information about the types of atoms that are produced during a reaction, the types of elements that make up molecules, and the types of molecules that are reactants or products.

We can therefore draw the conclusion that chemical equation provides us with useful and significant information about elements. Chemical equation also informs us about the number of atoms involved in the chemical reaction as well as the quantity or concentration of products produced at the end of the chemical reaction.

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Complete question is "Leandra is learning about chemical reactions and she wants to examine the information that is included in a chemical equation. Which pieces of information does a chemical equation include? Choose the three that apply. A. the kinds of atoms that form during a reaction B. the kinds of molecules involved in the reaction C. the kinds of elements that make up a molecule D. whether the molecules are products or reactants E. whether the products have more mass than the reactants".

which region of a titration could you use the henderson-hasselbalch equation to determine the ph? group of answer choices

Answers

Region B of the titration curve can be used to determine the pH

Henderson-hasselbalch equation is mostly used for buffer solutions. Buffer solutions are the solutions of weak acids and their salts, for example, the mixture of acetic acid and sodium acetate will act as a buffer solution. The major role of buffer solution is to resist the change in pH.

So it is clear that buffer solutions have an acid and a conjugate base, so region B can represent the pH. Region A of the titration curve represents the acid solution, region C represents the endpoint. While the other two regions are out of the system.

Complete question: (Graph is attached as a picture)

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the activity of an isotope of erbium of falls from 500, b, q,500bq to 125, b, q,125bq in just 20, h, o, u, r, s,20hours. what is its half-life?

Answers

The half-life = 10hrs.

Solution:

We know, activity after 'n' half-lives R=RO (1/2)n

125= 500 (1/2) n

= (1/2)n = (125/500) = 1/4 = (1/2)

n = 2

now,

nty2 = 20 hrs

2ty₂ = 20 hrs

ty₂ = 10 hrs

half-life = 10 hrs

Half-life is the time it takes a given amount of a radioactive element to decay to half its original value. This also means that half-life is the time it takes for the activity of a source to decay to half its original value. Become. Isotope half-life is used to describe the rate at which the isotope decays and emits radiation. Half-life can be used to predict the amount of radioactive material remaining after a certain period of time.

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Which of these pairs of elements is most likely to be part of a polyatomic ion?


I and I?
S and O?
or K and F.

Answers

The pairs of elements that is most likely to be part of a polyatomic ion is option B:  S and O.

What is polyatomic ion?

An ion made up of two or more atoms that really combine covalently is referred to as a polyatomic ion. This implies that only non-metals can link covalently with one another since a covalent bond is created when electrons are shared.

S and O atoms, for instance, have a covalent bond and frequently combine to produce polyatomic ions. K and F, Li and I, Mg and Br, on the other hand, are both metals and non-metals. Therefore, because the metal will donate its valence electrons to the non-metal, they will always establish an ionic bond.

As a result, we can draw the conclusion that, among the possibilities provided, S and O pairs of elements are most likely to make up a polyatomic ion.

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An atom x has three electrons in its outermost shell. Which ion will most likely be formed by x?.

Answers

Three electrons are located in an atom's outermost shell. It is most likely that x will produce an X3+ ion. The electron is a subatomic particle with a negative one elementary charge electric charge.

Due to their lack of components or substructure, electrons, which are part of the lepton particle family's first generation, are typically regarded to be elementary atom's. Any electrons outermost shell of the outermost shell are considered inner shell atom's. They lessen the effective nuclear charge by insulating the valence electrons from the nucleus.

The outermost shell is the firefighter's initial line of defence against dangers. It should have sufficient mechanical resistance to cuts, snags, tears, and abrasion in addition to provide fundamental protection against exposure to flame, heat, and other environmental hazards.

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Which is generally stronger, intermolecular interactions or intramolecular interactions?.

Answers

Intramolecular interactions are generally stronger.

Intermolecular interactions are one or two orders of magnitude weaker than intramolecular interactions, which are real bonds in which electrons are obtained, lost, or shared.

Chemical bonds including ionic, covalent, and metallic bonds are instances of intramolecular forces. The chemical bonds that hold the atoms in molecules together are known as intramolecular forces. The metallic bond, the ionic bond, and the covalent bond are the three main categories of chemical bonding.

Intramolecular bonds can be classified as covalent, ionic, or metallic. A covalent bond is one in which two atoms share a pair or pair of electrons. Covalently bound species with low molecular masses are referred to as molecules in compounds.

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g calculate the volume in milliliters of a barium chloride solution that contains of barium chloride .

Answers

147 ml will be the volume in milliliters of a 0.51 M barium chloride solution that contains 75.0 mmol barium chloride.

Molarity of the solution = 0.51 M

Number of mmol of solute = 75.0 mmol

Volume of solution = ?

To find out the volume we use the formula of molarity

    molarity = number of mmol / volume of solution (ml)

Rearrange the equation for volume

    volume of solution (ml) = number of mmol / molarity

    volume of BaCl2 (ml) = 75 mmol / 0.51 mmol/ml

    volume of BaCl2 (ml) = 147 ml

The complete question is as:

Calculate the volume in milliliters of a 0.51 M barium chloride solution that contains 75.0 mmol of barium chloride BaCl₂. Be sure your answer has the correct number of significant digits.

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PLEASE HELP ME

A sealed tube containing the equilibrium mixture is placed in ice-cold water. There is an increase in the
amount of yellow solid in the equilibrium mixture. What can you deduce about the forward reaction
in this equilibrium?
Explain your deduction.
ICI(1) + CL(g) ICI,(s)

Answers

ICI(1) + CL(g) ICI,(s) is an endothermic reaction.

What is the classification of chemical reaction?

Any transition from a more ordered to a less ordered state (solid to liquid, liquid to gas, or solid to gas),in which r energy, is used referred to as an endothermic reaction. Likewise, any transition from a less ordered to a more ordered state (liquid to solid, gas to liquid, or gas to solid), which releases energy, is referred to as an exothermic reaction

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SOMEONE HELP ME WITH THIS PLEASE I'LL MARK AS BRAINLIEST​

Answers

Our electronegativity calculator is here to assist you with your chemistry questions about atom bonds. It calculates the type of bond based on the electronegativity values of the elements.

How to calculates electronegativity values of the elements ?

Electronegativity is a measure that differs between atoms and influences their chemical properties as well as the type of bond formed.

Using the electronegativity calculator, you can determine the type of bond formed between different elements based on their electronegativity values.

You can also use our tool as an electronegativity difference calculator to calculate the difference between two elements' electronegativity values. Follow the steps below to determine the type of bond between elements based on electronegativity:

Choose the first element's electronegativity value.Choose the second element's electronegativity value.The calculator computes the difference between these two electronegativities before displaying the type of bond formed by these two elements. This feature is known as the ionic or covalent calculator.

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0.2 g of gas A has equal volume to that occupied by 0.16 g of gas B having vapour density 32 calculate the molecular mass of A​

Answers

The calculation of the molecular mass of A​ is 64.

Molar mass is described as the mass in grams of 1 mole of a substance. The units of molar mass are grams in line with mole, abbreviated as g/mol. The mass of a single isotope of any given detail (the isotopic atomic mass) is a cost touching on the mass of that isotope to the mass of the isotope carbon-12.

Calculation:-

mass A = 0.2 g

mass B  = 0.16 g

vapour density = 32

molar mass = 2 × VD

                   = 64.

In chemistry, the molar mass of a chemical compound is defined as the mass of a pattern of that compound divided by using the amount of substance which is the range of moles in that sample, measured in moles. The molar mass is a bulk, now not molecular, belongings of a substance.

Molecular mass and system mass are typically used as a synonym of molar mass, specifically for molecular compounds; but, the maximum authoritative resources outline it differently.

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What is the correct lewis electron-dot structure for the compound made of magnesium fluorine after forming an ionic bond?.

Answers

In the Lewis structure of MgF₂, each magnesium atom and each fluorine atom has two single bonds. Two fluorine atoms flank the magnesium atom. There are no lone pairs present on magnesium ion however there are three lone pairs on each of the fluorine atoms.

What is lewis electron-dot structure?

Each element has a certain number of electrons in its atomic orbitals. Of these electrons, only those involved in bond formation with other atoms are present in the outermost shell of the atom. These electrons in the outermost orbital of the atom are called valence electrons.

MgF₂ is an ionic compound consisting of a magnesium cation and a fluoride anion. To draw the electron dot or Lewis diagram of this compound, you must first draw the electron configuration of the atoms.

Electronic configurations:

Mg : 1s²2s²2p⁶3s²

F : 1s²2s²2p⁵

By donating two electrons, magnesium has a full octet in its outer shell, and fluorine lacks only one electron to complete its octet, so two fluorine atoms bond with magnesium. Forms stable MgF₂ compounds. Thus an ionic bond is formed.

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In the reaction 2h2 o2 → __h2o, what coefficient should be placed in front of h2o to balance the reaction? responses 1 1 2 2 3 3 4

Answers

The coefficient 2 should be placed in front of H2O to balance the following reaction: 2H2 +O2 = 2H2O.

When each element has the same amount of atoms on both sides of the equation, the equation is said to be balanced. Chemical equations are balanced through the application of coefficients. An element is given a coefficient, which is a number, to complete the number of atoms.

In the subsequent response:

2H2 +O2 = H2O.

We use coefficient 2 to balance the number of hydrogen and oxygen atoms. To balance the following reaction, coefficient 2 should be put in front of H2O: 2H2 +O2 = 2H2O.

A coefficient is an integer that is either multiplied by the variable it is associated with or written alongside the variable. A coefficient is, in other words, the numerical factor of a term that contains both constants and variables. For instance, the coefficient in the expression 2x is 2.

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Hydrobromic acid and lithium hydroxide are mixed in solution. Indicate the net ionic equation. Is k>1, <1 or ~1?.

Answers

The net ionic equation is OH⁻(aq) + H⁺(aq) H₂O(l) and k ~1.

What is an ionic equation?

A molecular equation is an equation in which the formula of a compound is written as if all substances exist as molecules. An ionic equation is an equation in which dissolved ionic compounds are represented as free ions.

Consider the molecular equation that occurs when an aqueous solution of lithium hydroxide and hydrobromic acid undergo a neutralization reaction.

LiOH(aq) + HBr(aq) ⇒ LiBr(aq) + H₂O(l)

The complete ionic equation includes all ions and species.

Li⁺(aq) + OH⁻(aq) + H⁺(aq) + Br⁻(aq) ⇒ Li⁺(aq) + Br⁻(aq) + H2O(l)

Only ions in the net ion equation It is included. Participate in reactions and molecular species.

OH⁻(aq) + H⁺(aq) H₂O(l)

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what volume of carbon dioxide will be produced as a result of the combustion of 2.0l of methane gas and 2.0l of oxygen gas, under conditions of constant temperature and pressure?

Answers

1.0 L of carbon dioxide will be produced as a result of the combustion of 2.0L of methane gas and 2.0L of oxygen gas, under conditions of constant temperature and pressure

The reaction for the combustion of methane gas (CH4).

CH4(g)+2O2(g)⟶CO2(g)+2H2O(g)

The quantity of moles in a gas is exactly proportional to its volume under constant temperature and pressure. Therefore, based on the balanced equation, 1 L of methane (CH4) and 2 L of oxygen will combine to create 1 L of carbon dioxide (CO2) and 2 L of water.

As 2.0L of oxygen will completely react with 1.0L of methane, leaving 1.0L of methane unreacted, oxygen serves as the limiting reactant. 1.0L of  carbon dioxide (CO2) will therefore be created.

Keep in mind that while the coefficients in stoichiometric equations (which represent the number of moles) are accurate, the number of significant figures is not constrained.

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Which of the following BEST accounts for the charge in potential energy going from Point B to Point A?As the atoms get closer together, their nuclei begin to repel one another,As the atoms get closer together, the attraction of the nucleus of each atom for the electron(s) of the other gets stronger and stronger,As the molecules get closer, they slow down, converting kinetic to potential energy,The bond is becoming stronger as the atoms approach each other.

Answers

The statement which accounts for the change in potential energy going from Point B to Point A is that as the atoms get closer together, the attraction of the nucleus of each atom for the electron(s) of the other gets stronger and stronger and is denoted as option B.

What is Potential energy?

This is referred to as the energy possessed by a body by virtue of its position.

The change in the potential energy is as a result of the atoms getting closer which leads to the attraction of the nucleus of the electron of the other getting stronger.

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determine the limiting reactant when 2.0 moles of fe and 6.0 moles of o2 are added to the chemical reactor.

Answers

When 2.0 moles of Fe and 6.0 moles of O₂ are added in a chemical reactor, the limiting reactant between Fe and O₂ is Fe.

Limiting reactant is defined as the reactant which is present in less quantity than the required. It limits or restricts the yield of a reaction before other reactants are completely used in a reaction. The other reactant is known as excess reactant.

The balanced reaction between Fe and O₂ is given as

4Fe+3O₂→2Fe₂O₃

To find out limiting reactant, we need to find out moles of Fe₂O₃ using moles of Fe and O₂. The mol to mol ratio between Fe and Fe₂O₃ is 4:2 or 2:1. Hence, moles of Fe₂O₃ formed is

2.0 mol Fe×(1 mol Fe₂O₃/2 mol Fe)

=1 mol Fe₂O₃

The mol to mol ratio between O₂ and Fe₂O₃ is 3:2. Hence, moles of Fe₂O₃ formed is

6.0 mol O₂×(2 mol Fe₂O₃/3 mol O₂)

=(6.0×2 mol Fe₂O₃/3)

=12.0 mol Fe₂O₃/3

=4.0 mol Fe₂O₃

Since Fe forms the less moles of Fe₂O₃. Hence, the limiting reactant is Fe.

Therefore, when 2.0 moles of Fe and 6.0 moles of O₂ are added in a chemical reactor, the limiting reactant between Fe and O₂ is Fe.

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What is Ecosistema Lentico?​

Answers

Hello..!

¿What is Ecosistema Lentico?

It is one that presents a closed structure and that its waters are permanently stagnant.

Are:

LakesLagoonsSwampsWetlands

2.00 gram of a compound requires the following quantities of solvent to dissolve: 90.0 ml of water, 7.50 ml of chloroform, 32.0 ml of diethyl ether, or 85.0 ml of benzene. calculate the partition coefficient of the compound between chloroform and water, diethyl ether and water, and benzene and water. which solvent would you choose to extract the compound from an aqueous solution?

Answers

The solvent that would be used for extracting the compound from an aqueous solution will be chloroform as it has maximum solubility.

What is solubility?

Solubility is a degree to which the a substance dissolves in a solvent to make a solution. Solubility is expressed as grams of solute per litre of solvent.

Solvent requires 2 grams of compound to dissolve.

Finding solubility

For water, 2g/90ml= 2.22

For chloroform, 2g/7.50= 26.6

For diethyl ether, 2g/32= 6.25

For benzene, 2g/85= 2.35

Partition Coefficients -

For chloroform = 11.98

For Diethyl Ether = 2.81

For Benzene = 1.05

Hence, Chloroform would be chosen to extract compound from an aqueous solution as it has maximum solubility.

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Since chloroform has the greatest solubility, it would be the solvent of choice for removing the compound from an aqueous solution.

What is solubility?

A homogeneous mixture of one or even more solutes in a solvent is referred to as a solution. A typical illustration of a solution is the addition of sugar cubes to a cup of tea or coffee. Solubility is a quality that aids in the dissolution of sugar molecules. Thus, the ability of a substance (solute) to dissolve in a specific solvent can be defined as solubility. Any substance that is dissolved in a solvent and is either solid, liquid, or gas is referred to as a solute.

Compound needs 2 grammes of solvent to dissolve it.
Finding solubility
For water, 2g/90ml= 2.22
For chloroform, 2g/7.50= 26.6
For diethyl ether, 2g/32= 6.25
For benzene, 2g/85= 2.35
Partition Coefficients -
For chloroform = 11.98
For Diethyl Ether = 2.81
For Benzene = 1.05

As a result of its high solubility, chloroform would be used to extract a compound from an aqueous solution.

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What enzyme moves outward from the origin of replication and breaks hydrogen bonds between dna nucleotides?.

Answers

Helicase enzyme moves outward from origin of replication and breaks hydrogen bonds between DNA nucleotides.

An enzyme is a bio catalyst which is nearly a protein. It speeds up the rate of a specific chemical reaction inside the cellular. The enzyme isn't destroyed in the course of the chemicsl reactaion and is used again and again.

Common digestive enzymes include : Carbohydrase breaks down carbohydrates into sugars. Lipase convert fat into fatty acids.

Enzymes help in speeding up chemical reactions in the human body. They are crucial for respiratory, digesting food, muscle and nerve characteristic, amongst heaps of different roles. Every cell in the human body contain lots of enzymes. Enzymes provide help with facilitating chemical reactions within each cellular.

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How many particles are in one mole?
О А.
OB. 2.066 x 1023
O C.
6.022 x 1023
O D.
6.023 × 1022
1022
3.026 x

Answers

Answer:

I think it's C. 6.022 * 1023

what is the standard reductiion potential e

Answers

The standard reduction potential of a species is the tendency of that species to get reduced. It measures the reduction tendency of a chemical species.

What is reduction?

Reduction in a chemical reaction is the increase in the number of electrons of the atoms or group of atoms involved. The reaction which loses oxygen or gains hydrogen can also be termed as reduction.

Standard reduction potential measures the tendency of a chemical species to get reduced. It can be calculated by subtracting the standard reduction potential at anode from the standard reduction potential at the cathode.

Therefore, standard reduction potential of a given species is the tendency of that species to undergo reduction in a redox reaction.

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Never mind I don't need help, don't know how to take this down though

Answers

Answer:

................................ ..............

if 1.600 moles of a solute are dissolved in enough water to make 400.0 ml of solution, what is the molarity?

Answers

The molarity of the solution if 1.600 moles of a solute are dissolved in enough water to make 400.0 ml is 4M

Before we calculate the molarity we should know that molarity is a unit of concentration measuring the number of moles of a solute per liter of solution.

The molarity can be calculated as follows:

as we know, 400 mL = 0.4L

Molarity = moles/volume

molarity = 1.600 moles/ 0.4L

Molarity = 4M

so,The molarity of the solution if 1.600 moles of a solute are dissolved in enough water to make 400.0 ml is 4M

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explain why it is the freezing point depression of a solvent does depend on the concentration of the solute.

Answers

The reason why the freezing point depression of a solvent depends on the concentration, it is because the solute occupies space between the solvent molecules.

The freezing point depression of a solvent depends on the concentration of the solute

The freezing point depression of a solvent does depend on the concentration of the solute because the solute occupies space between the solvent molecules, thus reducing the number of molecules that can interact.

When a solute is dissolved in a solvent, it takes up space between the solvent molecules. This reduces the number of molecules that can interact, and thus lowers the freezing point of the solvent. The more concentrated the solution, the greater the effect on the freezing point.

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The ability of a covalently bonded atom to attract the shared electrons is called?.

Answers

Electronegativity is the ability of a covalently bonded atom to attract shared electrons.

Electronegativity was introduced by Linus Pauling in 1932 and over the years, different scientists, such as Robert S. Mulliken, have proposed their own scales of electronegativity for the elements as well.

Electronegativity varies across the periodic table in a predictable manner (it follows a pattern). It increases from left to right across periods, and increases from bottom to top in groups. Fluorine is the most electronegative element and Francium is the most least electronegative one. When atoms are joined together and they have an electronegativity difference of fewer than two units, the bond formed is a covalent bond, in which the electrons are shared by both atoms.

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how many grams of carbon dioxide can be produced by burning 6.50 moles of propane? assume that oxygen is the excess reactant in this reaction. round your answer to 3 significant digits.

Answers

858.185 grams of Carbon Dioxide can be produced when 6.50 moles of Propane is burned.

What is Propane?

Propane is a three-carbon alkane and has the molecular formula C3H8. In addition to low-emission public transportation, propane is also used as fuel in home and industrial applications.

When 1 mole of Propane undergoes combustion in presence of oxygen, 3 moles of Carbon Dioxide is produced.

Using this, we can calculate that

6.50 moles of propane x 3 gives us 19.50 moles of Carbon Dioxide.

Converting moles to grams, we get 1 mole of CO2 is 44.009 grams.

Therefore, 19.50 x 44.009 = 858.185 grams of CO2.

Hence, we can say that 858.185 grams of CO2 is produced when 6.5 moles of propane is burned.

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Burning 6.50 moles of propane can result in the production of 858.185 grammes of carbon dioxide.

What is Propane?
The chemical formula for propane is C3H8, a three-carbon alkane. In addition to being a fuel for low-emission public transportation, propane is also employed in domestic and commercial settings. Three moles of carbon dioxide are created when one mole of propane is burned in the presence of oxygen.

With this, we can determine that

We get 19.50 moles of carbon dioxide when we multiply 6.50 moles of propane by 3.
1 mole of CO2 is equal to 44.009 grammes when converted to grammes.
As a result, 19.50 times 44.009 equals 858.185 grammes of CO2.

Thus, we can state that the combustion of 6.5 moles of propane results in the production of 858.185 grammes of CO2.

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4. You have Four olution A,B,C,D. A- Milk in water B- Baking powder in water C- Vinegar in water D- Glucoe in water. What colour change would you expect when you dip a red litmu into each of thee tet tube\

Answers

According to the given condition the color will change to blue if you dip red litmus paper in second solution ie. Baking powder in water.

What does red litmus paper indicate?Using litmus paper, which turns red for acidic materials and blue for alkaline or basic materials, the substance is determined. When the pH is between 4.5 and 8.3, litmus paper turns red and turns blue. The pH level is near to neutral if the paper becomes purple.A combination of several colours taken from lichens and made water-soluble is known as litmus. One of the earliest kinds of pH indicators, used to assess the acidity of materials, is frequently produced by its absorption onto filter paper.Additionally, water-soluble gases that influence acidity or basicity can be detected using wet litmus paper; the gas dissolves in the water and the resulting solution colours the litmus paper. For instance, alkaline ammonia gas causes red litmus paper to turn blue. While all pH paper functions as litmus paper, the reverse is not true.

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in a 0.61mm aqueous solution of acetic acid ch3co2h, what is the percentage of acetic acid that is dissociated? you can find some data that is useful for solving this problem in the aleks data resource.

Answers

The  15.60% of acetic acid is in the dissociated form of the solution.

The chemical equation for the dissociation of acetic acid is the following:

CH₃COOH + H₂O ⇄ H₃O⁺ +CH₃COO⁻

To find the fraction of acetic acid that is in the dissociated form (f), we can  apply the following equation. This equation comes from solving the equation of the equilibrium constant for the dissociated fraction of acetic acid:

The value of dissociation constant of acetic acid

 Ka for acetic acid = 1.76 x 10⁻⁵

C is concentration, 0.61mM

[tex]f=\frac{-K\alpha + \sqrt{K\alpha ^{2}+ 4K\alpha C } }{2C} \\f= \frac{-1.76X10^{-5} + \sqrt{(1.76X10^{-5}) ^{2}+ 4(1.76X10^{-5}) (0.61X 10^{-3} ) } }{2(0.61X 10^{-3} )} \\[/tex]

f = 0.1560

in percent 0.1560 is 15.60%, so

The  15.60% of acetic acid is in the dissociated form of the solution.

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I need help what is the answer

Answers

Neon is a Noble Gas (Group 18), so it would have 8 valence electrons. The valence electrons determine its recativity, so you will need to find the model with around 8 valence e-.

Model W and model Y

liquid octane will react with gaseous oxygen to produce gaseous carbon dioxide and gaseous water . suppose 9.1 g of octane is mixed with 41.9 g of oxygen. calculate the minimum mass of octane that could be left over by the chemical reaction. be sure your answer has the correct number of significant digits.

Answers

The minimum mass of octane that could be left is 2.8gm.

When octane reacts is burned in the air, it chemically reacts with oxygen gas to produce carbon dioxide and water.

                    C8H18 + 5O2 = 8CO2 + 9H20

Octane is a hydrocarbon and alkane with the chemical formula C8H18, and the condensed structural formula is CH3(CH2)6 CH3. Octane has many structural isomers that differ by the amount and location of branching in the carbon chain. One of these isomers 2,2,4 trimethylpentane commonly called iso octane is used as one of the standard values in the octane rating scale.

Octane is a component of Gasoline (petrol). As with all low molecular weight hydrocarbons octane is volatile and very flammable.

Octane is colloquially used as a short form of octane rating, particularly in the expression high octane. The octane rating was originally determined by mixing fuels from only normal heptane and iso octane.

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