An electric drill pulls 1000 joules per second or electrical energy from
the wall. The drill bit only exerts 555 joules of energy on the wood it's
drilling through. Where did all the extra energy go?

Answers

Answer 1

All of the energy stored or applied on a body cannot be converted tono work done only the available form of energy is converted to work. The remaining part is called unavailable energy which is stored on the body or taken as increase in entropy.

What is unavailable energy?

According to thermodynamic concepts, the not all the energy can be converted into useful work .Or in other words only available energy can be converted to work. This available form of energy is called Gibbs energy.

For instance if we take a heat engine, the heat from the hot body is not completely transferred into colder body. According  to third law of thermodynamics, this unavailable work is being considered as gone for increase in entropy.

Therefore, only available energy of the electric drill can be changed to work done and that is 222 J out of 1000 J, remaining goes for an increase in entropy of the system.

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Related Questions

what reaction conditions favor elimination in an acid-catalyzed dehydration? what reaction conditions favor elimination in an acid-catalyzed dehydration? the product is removed from the reaction mixture as it is formed the acid used has a strongly nucleophilic conjugate base low reaction temperature is used

Answers

Reaction conditions that favor elimination in an acid-catalyzed dehydration : product is removed from the reaction mixture when formed. For reaction to be completed,  hypochlorous acid must be in excess during the reaction.

What is acid-catalyzed dehydration?

Acid-catalyzed dehydration of alcohols takes place when an acid puts an extra hydrogen atom on the alcohol. This causes  change in the OH alcohol group into an H2O or water group attached to the organic compound. When that particular molecule leaves then it leaves as water . Therefore dehydration occurs.

The activity of a solid acid on methanol dehydration reaction was found to be determined by the number of its acidic sites. The presence of such acid catalyst in the catalytic system  shifts the methanol synthesis reaction, increasing the pass conversion of CO.

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How does the lattice energy for an ionic solid relate to the size of the ions in the ionic solid?.

Answers

As the lattice energy increases the size of the ionic solids will decrease.

Lattice energy can be defined as the energy required to convert one mole of an ionic solid into gaseous ionic constituents. Or else, it can also be defined as the energy that must be supplied to one mole of an ionic crystal in order to separate it into its  gaseous ions in a vacuum through an endothermic process.

However, it also suggests the energy that facilitates the dissociation of one mole of a solid ionic compound into its constituent gaseous ions.

Lattice energy is inversely proportional to the size of the ions. So as the size of the ions increases, the lattice energy of the compound will  decreases. Because as the size increases, the charge density gets distributed through out and so there is more distance between the electrons and hence the lattice energy will decrease.

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When performing today’s experiment you leave the lid off your setup for the calibration. You remember that you left it off and decide to add it when determining the heat lost by the metal. When performing your calculations, you determine that your heat capacity values are off. Would your values be too high or too low?.

Answers

The heat capacity values obtained will be too low due to the heat lost.

What are the heat capacity values of substances?

The heat capacity of a substance is the amount of heat required to raise the unit mass of that substance by one-degree celsius.

In order to determine the heat capacity of a substance, the method of calorimetry is used.

In the method of calorimetry, it is assumed that no heat is lost during the process.

The principle states that the heat lost is equal to the heat gained.

Hence, if heat is lost from the calorimeter during the process of determining the heat capacity of a substance, the heat capacity value will be lower than the actual values.

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write the balanced molecular chemical equation for the reaction of solid copper with aqueous lead(ii) nitrate. if no reaction occurs, simply write only nr. (if there is a reaction, then copper is 2)

Answers

Balanced molecular chemical equation for the reaction of solid copper with aqueous lead(ii) nitrate is then there is no reaction so there is no copper

Chemical equation is a representation of a chemical reaction using symbols of the elements to indicate the amount of substance usually in moles of each reactant and product and solid copper with aqueous lead(ii) nitrate then there is no reaction between copper and lead nitrate solution and this is because copper is less reactive than lead

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what is a frozen energy?

Answers

The process of freezing one or more unfertilized eggs (eggs that have not been combined with sperm) to save them for future use.

What mass of mgf2 is contained in 80. 85 g of a 22. 4% by mass solution of mgf2 in water?.

Answers

18.1 g is mass of mgf2 is contained in 80. 85 g of a 22. 4% by mass solution of mgf2 in water.

solution mass = 80.85 g

mass of solution percentage = 22.4%

% concentration =  Mass of solute/Mass of solution × 100/1

22.4 = x/80.85 × 100/1

x = 22.4 × 80.85/100

x = 18.1 g

The quantity of substance that makes up an element's atom is known as its atomic mass. One-twelfth of the mass of the carbon-12 atom, with an assigned atomic mass of 12 units, is expressed as a multiple of 1.992646547 1023 gram, or in other words, 1.992646547 gram. One atomic mass unit is equivalent to 1.660539040 1024 grams on this scale (amu). The atomic mass unit is sometimes referred to as the dalton in honor of English scientist John Dalton (Da).

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Enter the complete ionic equation to show the reaction of aqueous lead(ii) nitrate with aqueous potassium sulfate.

Answers

The full ionic equation for the conversion of aqueous lead (II) nitrate to solid lead (II) sulfate and aqueous potassium nitrate is as follows:

What is ionic equation ?

PbSO4(s) + 2 K+ + 2 NO3 = Pb2+(aq) + 2 NO3(aq), 2 K+(aq), and SO42(aq) (aq)

Let's look at the molecular formula that results in solid lead (II) sulfate and aqueous potassium nitrate when aqueous lead (II) nitrate and aqueous potassium sulfate interact. This reaction involves two displacements.

 PbSO4(s) + 2 KNO3 = Pb(NO3)2(aq) + K2SO4(aq) (aq)

All ions and molecular species are included in the full ionic equation.

PbSO4(s) + 2 K+ + 2 NO3 = Pb2+(aq) + 2 NO3(aq), 2 K+(aq), and         SO42(aq) (aq)

The full ionic equation for the conversion of aqueous lead (II) nitrate to solid lead (II) sulfate and aqueous potassium nitrate is as follows:

PbSO4(s) + 2 K+ + 2 NO3 = Pb2+(aq) + 2 NO3(aq), 2 K+(aq), and SO42(aq) (aq)

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suppose your enzyme activity from last week was 139 umol/min/ml. you calculate that the sample has a protein concentration of 4.5 mg/ml. what is the specific activity of your sample?

Answers

The protein's specific volume (0.73 mL g-1 for -lactoglobulin).

Enzymes: What are they?

Enzyme-containing proteins help speed up the metabolism, or chemical changes, in our bodies. While some compounds are decomposed, others have been produced. Everything that is alive contains enzymes. Naturally, our bodies produce enzymes.

What is an example of an enzyme?

For instance, the enzyme pepsin is a vital component of gastric fluids and aids in the breakdown of food particles in the belly. Similar to how amylase, an enzyme found in saliva, turns starch into glucose to aid in the first stages of digestion. The thrombin enzymes is employed in medicine to speed up the healing of wounds.

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What happens to the atoms of sugar as it dissolves and then hardens to form rock candy?

Answers

Answer:

Explanation: As the water evaporates the solution becomes more saturated and sugar molecules will continue to come out of the solution and collect on the seed crystals on the string. The rock candy crystals grow molecule by molecule. Your finished rock candy will be made up of about a quadrillion (1,000,000,000,000,000) molecules attached to the string.

which elements are created in stellar nucleosynthesis? (select all that apply.) carbon nitrogen oxygen calcium iron hydrogen helium

Answers

Elements created in stellar nucleosynthesis are carbon, oxygen, iron, calcium .

What is stellar nucleosynthesis ?

Stellar nucleosynthesis is a process involving nuclear reactions in which new atomic nuclei are synthesized from existing nuclei or nucleons. The first stage of nucleosynthesis occurred in the hot early universe, producing H, He, and trace amounts of Li-7 (primordial nucleosynthesis). In today's universe, nucleosynthesis takes place as follows.

(1) thermonuclear reaction and explosion inside the star (nucleus formation up to the Fe peak), (2) neutron capture and explosion inside the star (nucleus formation above the Fe peak), (3) stars Spallation reactions in interstitial matter, where light nuclei (Li, Be, and B) arise from the fragmentation of heavy nuclei (C, N, and O).

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PLEASE HELP -- question in picture

Answers

The sequence of the decreasing the order of stability of the given compounds is :

BaCl₂  >  CaCl₂  > MgCl₂ > AlCl₃  > HCl > AgCl

What is reactivity series?

The reactivity series of metals or the activity series can be described as the arrangement of metals in the descending order of their reactivities.

The metals at the top of the activity series are powerful reducing agents and can be easily oxidized. These metals easily tarnish/corrode. The reducing ability grows weaker while moving down the series.

The electropositivity of the elements reduces as we move down the reactivity series of metals. All metals above hydrogen in the activity series liberate hydrogen gas upon reacting with dilute HCl.

As given the elements of the reactive metals form more stable compounds therefore, the metals like Ba, Ca, and Mg form more stable compounds than H or Ag.

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Answer:

pic attached

Explanation:

the spectrophotometer available to the student has a wavelength range of 400nm to 700nm. what wavelength should the student use to minimize the interference from the presence of the co2 (aq) ions?

Answers

The wavelength should be 600 nm to minimize the interference from the presence of the CO{2+} ions (aq).

What is spectrophotometer?

An analytical tool called as spectrophotometer is used to determine the emission or reflection of visible light, UV light, or infrared light objectively.  These are used to calculate intensity as a function of light source wavelength.

The spectrophotometer available to the student has a wavelength range of 400 nm to 700 nm. The maximum wavelength for CO{2+} curve is 500 nm. The two curves of CO{2+} and Cu{2+} intersects at 600 nm.

So, 600 nm should the student use for interference minimization for the presence of CO{2+} ions.

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What is the mass of 3.5 moles of Fe2O3?

Answers

Answer: 3.5 miles Fe203 = 55.89078 grams

Explanation:

PLS HELP
When studying mythology, Jaalib reads a description that says a particular figure is "vernal." What can he guess about
the figure?
O
they are related to spring
O
they are related to autumn
O
they are related to the tides
they are related to the moon

Answers

Answer: They are related to spring.

Explanation:

It should be right, I got this question correct.

How many valence electrons does C6H12O6 (glucose) have?

Answers

C₆H₁₂O₆ (glucose) has 72 valence electrons

Valence electrons are the electrons present in the outermost shell of any atom. So first we will find out the total number of atoms in glucose.

Total number of atoms in C₆H₁₂O₆ are:

    Number of carbon = 6

    Number of hydrogen = 12

    Number of oxygen = 6

Now we will find out the total number of valence electrons in each type of atom:

    Valence electrons in carbon = 4

    Valence electrons in hydrogen = 1

    Valence electrons in oxygen = 6

Calculate the total number of valence electrons in C₆H₁₂O₆ by multiplying the number of atoms with the number of valence electrons for each element. And then sum up all the valence electrons.

    valence electrons in C₆H₁₂O₆ = (6*4) + (12*1) + (6 * 6)

    valence electrons in C₆H₁₂O₆ = 24 + 12 + 36

    valence electrons in C₆H₁₂O₆ = 72

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a series rc circuit has a resistance of 155 ohms and a capacitive reactance of 270 ohms. how many degrees is angle theta?

Answers

Angle theta = 〖60.11〗^0

Angle theta = 〖60.11〗^0

Resistance is a measure of an electrical circuit's resistance to current flow. Resistance is measured in ohms, which is represented by the Greek letter omega (Ω). When electrons move through a conductor, such as a metal wire, an electric current flows. Electrons in motion can collide with ions in the metal. This complicates the current flow and causes resistance.

Given resistance  (R) = 155ohms

Capacitive reactance (Xc)  = 270 ohms

We have to find angle theta = ?

Tan θ= capacitive reactance/resistance

Tan θ = Xc/R

Tan θ = 270/155

θ = 〖tan^(-1) (〗⁡〖270/155〗)

θ = 〖tan^(-1) (〗⁡1.74)

θ = 60.11

Therefore angle theta = 〖60.11〗^0

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Two students are planning an investigation to determine which type of bond, ionic or covalent, is more polar. Which one of the tests would be relevant to their experiment?.

Answers

The property that will be least helpful in the determination of the bond type that has the strongest intermolecular forces is C. Conductivity in water.

It should be noted that the students wanted to investigate whether ionic or covalent bonds have stronger intermolecular forces.

In order to carry out the investigation, salt, sugar, and molar balls are used. Based on this, the property that is required for the investigation will be flammability, solubility in water, and the melting point.

The conductivity in water isn't required.

Calcium carbonate is heated and decomposes to form calcium oxide (CaO) and carbon dioxide (CO2). Which statement is true about the difference between calcium carbonate and calcium oxide?

Answers

Calcium oxide has different physical and chemical properties as compared to calcium carbonate. Option 1.

Differences between calcium oxide and calcium carbonate

Calcium carbonate and calcium oxide are unique from one another in terms of their physical and chemical properties, even though calcium oxide can be produced by the decomposition of calcium carbonate.

Both calcium carbonate and calcium oxide are only similar in terms of their color. They both appear white in color. Their differences include:

The chemical formula of calcium oxide is CaO while that of calcium carbonate is [tex]CaCO_3[/tex].Calcium oxide is able to react with water to form lime water, [tex]Ca(OH)_2[/tex]. Calcium carbonate, on the other hand, is insoluble in water.Both have different melting points.Calcium oxide cannot undergo a decomposition reaction, whereas, calcium carbonate can be decomposed further.

Thus, both calcium carbonate and calcium oxide exhibit different chemical and physical properties.

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The complete question is as below:

Calcium carbonate is heated and decomposes to form calcium oxide (CaO) and carbon dioxide (CO2). Which statement is true about the difference between calcium carbonate and calcium oxide?

Calcium oxide has different physical properties and different chemical properties.Calcium oxide has the same physical properties and different chemical properties.Calcium oxide has the same physical properties and the same chemical properties.Calcium oxide has different physical properties and the same chemical properties.

which is not a way for carbon dioxide to reach the atmosphere

Answers

The process that is not a way for carbon dioxide to reach the atmosphere is Photosynthesis; option C

What is the carbon cycle?

The carbon cycle is a biogeochemical cycle that describes the processes by which carbon is recycled between the living and non-living components of the environment.

The processes by which carbon is removed from the atmosphere and the processes by which carbon is returned to the atmosphere work together to ensure there is a balance of carbon in the environment.

The processes by which carbon is returned to the atmosphere in the form of carbon dioxide include the following:

respiration by living organismsburning of fossils fuelsdeath and decay of living organisms

The processes by which carbon is removed from the atmosphere include the following:

Photosynthesis in plants and algaedissolution of carbon dioxide in rainwater.

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Complete question:

Which of the following is not a way for carbon dioxide to reach the atmosphere?

a. forest fires

b. respiration

c. photosynthesis

d. burning of fossil fuels

block
wood with blac
4. Find the density of a piece of wood with a mass of 50.0 grams and a volume of 100. cm³.
=2g/cm3
Will it float on water?

Answers

The density of the wood will be 0.5g/cm³ . It will float in water because its density is than that of water i.e, 1g/cm³ .

Given that the mass of the substance is 50 g and its volume is 100cm³

So, its density will be given as,

Density= Mass/ Volume

=50/ 100 g/cm³

= 0.5 g/cm³

When placed in water, an object with a density greater than or less than that of  water will float or sink, respectively. A substance's density is a defining characteristic that is independent of  substance's volume.

The substance's density is less than that of water. Due to lower density than water, the substance will float on the surface of water.

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Please help! Its world science!
1. If you turn on the burner on a gas stove under a pan of cold water, energy moves from the burner to the pan of water. What is this type of energy transfer called?

2. If you burn wood in a fireplace, which type of energy resource are you using?

3. Which form of energy is an important factor in making electricity from water power?

4. What is a hydrocarbon?

5. What byproduct of nuclear energy has caused concerns about the use of this resource and why?

6. Which chemical element exposed in surface coal mining can cause environmental problems in nearby bodies of water?

7. What is the original source of most energy used on Earth?

8. When we burn a fuel, what is released that allows work to be done?

9. For biomass, solar, coal, natural gas, oil, and geothermal energy, identify each energy resource as renewable or non-renewable.

10. What factors are important in judging how helpful an energy resource is to us?

Answers

Energy as the ability to do work.

What is energy?

Energy has been defined as the ability to do work. Modern civilization is possible because people have learned how to change energy from one form to another and then use it to do work. People use energy to walk and for bicycle, to move cars along roads and boats through water, to cook food on stoves, to light our homes and offices, to manufacture products.

There are different forms of energy, which may include:

HeatLightMotionElectricalChemicalGravitationalMagnetic

These forms of energy can be grouped into two general types;

Potential (stored energy)Kinetic (working energy)

Explanations

1. This is called convection.

2. You are using chemical energy and converting it to thermal (heat) energy.

3. Kinetic energy is the important factor

4. A hydrocarbon is an organic compound consisting entirely of hydrogen and carbon. Hydrocarbons are generally colourless and hydrophobic, and their odors are usually weak or exemplified by the odors of gasoline. Examples of hydrocarbons are coal, petroleum, natural gas and tar. They are used as energy sources.

5. Radioactive waste. These materials can remain radioactive and dangerous to human health for thousands of years.

6. Mercury.

7. The energy of the sun is the original source of most energy used on Earth.

8. Heat is released and this heat expended allows work to be done.

9.

biomass - renewablesolar - renewablecoal - non-renewablenatural gas - non-renewableoil - non-renewablegeo-thermal energy - renewable

10.

It produces a lot of heat per unit mass.It does a huge amount of work per unit mass.It is easily accessible.It is easy to store and transport.It is economical.It produces less amount of smoke.

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Which is NOT a form of thermal energy transfer?
O conduction
O convection
O spontaneity
O radiation

Answers

Answer:

C I think, haven't done this in awhile

Explanation:

I took science

C spontaneity. Conduction, convection, and radiation are the 3 most common forms of thermal energy transfer.

What type of particles are represented by the crosses(X)? Helpp please

Answers

Answer: The valence shell electrons are represented by crosses.

Explanation:

The outer shell of each atom is drawn as a circle. Electrons from one atom are shown as dots, and electrons from other atoms are shown as crosses. The circles overlap where covalent bonds are present.

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How many moles are in 5.6 x 1023 particles of H2SO4?

Answers

0.93 moles are present in 5.6 x 1023 particles of H2SO4

number of moles= given particle/ Avogadro number

number of moles= 5.6 x 1023 particles/6.022×10^23

number of moles=0.93 mol

The mole idea is a useful way to indicate how much of a substance there is. Even one gram of a pure element is known to have an enormous number of atoms when working with particles at the atomic (or molecular) level. The mole idea is frequently applied in this situation. The unit of measurement that receives the most attention is the "mole," which is a count of a sizable number of particles.

Popularly known as the Avogadro constant, the quantity 6.02214076×10^23 is frequently represented by the letter "NA". Atoms, molecules, monoatomic and polyatomic ions, as well as other particles, are examples of the elementary entities that can be represented in moles (such as electrons).

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the enthalpy of solution is positive when ch3cn dissolves in formaldehyde. use this information to list the stages in order of increasing enthalpy.

Answers

The enthalpy of solution ∆H is positive when CH3CN dissolves in formaldehyde. Use this information to list the stages in order of increasing enthalpy A<D<B<C.

The net result of the energy absorbed or dissipated as heat by the solution when a given amount of solute is dissolved in a solvent at constant pressure. The amount of heat released or absorbed when a substance melts is not constant. It depends on the final solute concentration.

The enthalpy of a solution is expressed in kJ/mol at a nearly constant temperature. The energy change can be viewed as consisting of three parts endothermic bond breaking in the solute and solvent and the formation of an attractive force between the solute and solvent. The enthalpy of a solution describes the total amount of heat absorbed or released when two substances go into the solution. This sum can be either positive or negative.

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Given the equation Mg + 2HCl → MgCl₂ + H₂, how many moles of hydrogen chloride are needed to produce 16 moles of magnesium chloride?

Answers

When we simplify a given equation we get a following answer

8 moles of HCl needed to produce 16 moles of magnesium Chloride

As per definition, mole is a same amount of number which contains same number of chemical species like atoms, molecules, ion, etc.

Mg   +    2HCl   →   MgCl2 + H2

1mole     2mole      1 mole    1 mole

Here, when 1 mole of Mg reacts with 2 mole of HCl then 1 mole of MgCl2 and 1 mole of H2 forms.

As per the question, to form 16 moles of MgCl2 we need 8 moles of HCl

to get our euqation done.

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Choose the three factors that most significantly influence the properties of nanoscale materials.

a. bulk material properties.
b. elemental compostion.
c. size.
d. shape.
e. quantum mechanical effects

Answers

b. elemental composition d. shape and e. quantum mechanical effects  three factors significantly influence the properties of nanoscale materials.

Nanoscale material are the set of substances that have least one Critical dimension less than 100 nanometer. That have magnetic, electrical and optical properties. S and P blocks are there in the nanoscale materials. Nanoscale materials are mostly concentrated in the s and p blocks Nano elements. Nanoscale material have have structure with dimensions at the nanoscale.so it has size of 1-100nm.The shape of the nanomaterials are in various shapes like rod shape spherical shape ,fibers and cups. In the nanoscales quantum effects dominates the electrical optical properties of the system. They create new opportunity for manipulating the response of the system.

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What is the oxidation state for nitrogen

Answers

Nitrogen has an oxidation state of +3 in the oxide N₂O₃ (a dark blue liquid with acidic properties) and nitrous acid HNO₂.

determine the percent yield of a reaction that produces 22.6 g of fe when 50.00 g of fe2o3 react with excess al according to the following reaction. Molar Mass Fe2O3 = 159.7 g/mol

Answers

The percent yield of the reaction is 82%

First step: make the chemist equation.

2 Al (s) + Fe2O3 (s) → 2 Fe (s) + Al2O3 (s)

As the statement says that aluminium is in excess, the limiting reactant is the Fe₂O₃.

Second step: Find out the moles in the reactant.

Molar weight Fe2O3: 159.7 g/m

Mass / Molar weight = moles

50 g /159.7 g/m = 0.313 moles

Third step: Analyse the reaction. 1 mol of Fe2O3 makes 2 moles of Fe.

1 mol Fe2O3 ____ 2Fe

0.313 mol Fe2O3 ____ 0.626 moles

Molar weight Fe = 55.85 g/m

Moles . molar weight = mass

55.85g/m . 0.626m = 34.9 grams

This will be the 100% yield of the reaction but we only made 22.6 g

34.9 g ____ 100%

22.6 g ____ 64.75 %

Hence, the percent yield is 64.75 %.

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in a williamson ether synthesis, you start by adding a base like methoxide to deprotonate a phenol so the deprotonated phenolate can act as a nucleophile. the moles of base should be

Answers

The moles of the base should be equal to the moles of phenol.

What is Williamson ether synthesis ?

An alkoxide ion acts as a nucleophile in the Williamson ether synthesis, an SN2 reaction in which an alkyl halide loses a halide ion to produce an ether. The reaction involves configuration inversion at chiral centers and may be constrained by potential competing elimination reactions.

What is nucleophile?

An atom or molecule that seeks the positive center of a chemical reaction, such as the atom's nucleus, is referred to as a nucleophile in chemistry because it has an electron pair that is available for bonding.

Therefore, the moles of base should be equal the mole of phenol.

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