The process to separate the various components of a liquid mixture is called a fractional distillation true false

Answers

Answer 1
DecantationDecantation is a process for the separation of mixtures, by removing a layer of liquid, generally one from which a precipitate has settled. The purpose may be either to produce a clean decant, or to remove undesired liquid from the precipitate (or other layers). Separate liquids
so it is false
Answer 2

The answer is true. I just had this question on a test and I got it wrong for saying false.


Related Questions

Ksp [caso4] = 2.4 × 10-5. determine the molar solubility of caso4 in a solution containing 0.100 m na2so4.

Answers

Final answer:

The molar solubility of CaSO4 in a solution containing 0.100 M Na2SO4 is 2.4 x 10−4 M, calculated using the Ksp value and the concentration of sulfate ions due to the common ion effect.

Explanation:

The molar solubility of CaSO4 in a solution containing 0.100 M Na2SO4 can be calculated using the solubility product constant (Ksp) and the concept of common ion effect. The solubility product expression for CaSO4 can be written as Ksp = [Ca²+ ][SO4²−]. Since the sodium sulfate solution already contains sulfate ions, we will consider the concentration of [SO4²−] as 0.100 M given in the question. The equation simplifies to Ksp = [Ca²+]*0.100. Therefore, the molar solubility is [Ca²+]= Ksp/0.100 which is 2.4 x 10−5/0.100 = 2.4 x 10−4 M. This suggests that in a 0.100 M Na2SO4 solution, additional CaSO4 would start precipitating when the [Ca²+] reaches 2.4 x 10−4 M.

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The molar solubility of CaSO₄ in a solution containing 0.100 M Na₂SO₄, with a Ksp of 2.4 × 10⁻⁵ is 2.4 × 10⁻⁴ M, which is lower than in pure water due to the common ion effect.

Calculating the molar solubility of calcium sulfate (CaSO₄) in a solution containing 0.100 M sodium sulfate Na₂SO₄ given the solubility product constant (Ksp) for CaSO₄ is 2.4 × 10⁻⁵.

Because Na₂SO₄ dissociates into 2 Na⁺ and 1 SO₄²⁻ in solution, the concentration of SO₄²⁻ due to Na₂SO₄ is 0.100 M. Since the solution is already saturated with sulfate ions, the molar solubility of CaSO₄ will be different from its solubility in pure water. The common ion effect will reduce the solubility of CaSO₄ in the solution.

To find the molar solubility of CaSO₄, let's set up the equation based on the Ksp expression:

Ksp = [Ca²⁺] [SO₄²⁻]

Since the concentration of SO₄²⁻ from Na₂SO₄ is already 0.100 M, and the Ksp for CaSO₄ is 2.4 × 10⁻⁵, the molar solubility of CaSO₄ in this solution is calculated as:

Ksp = (s) × (0.100 M)

2.4 × 10⁻⁵ = (s) × (0.100 M)

s = 2.4 × 10⁻⁴ M

Therefore, the molar solubility of CaSO₄ in a 0.100 M Na₂SO₄ solution is 2.4 × 10⁻⁴M.

The three beakers shown below contain solutions of [cof6]3–, [co(nh3)6]3+, and [co(cn)6]3–. based on the colors of the three solutions, which compound is present in each of the beakers?

Answers

[Co(CN)₆]³⁻ → Yellow
[Co(NH₃)₆]³⁺ → Orange
[CoF₆]³⁻ → Blue
Explanation:
- All the given compounds have octahedral geometry but the ligand in each are different with the same metal ion.

- Ligands strength order:     CN⁻ > NH₃ > F⁻ 

- The ligand CN will act as a strong field ligand so that the splitting is maximum when compared to NH₃ and F⁻

- If the splitting is more, the energy required for transition is more, and the wavelength is inversely proportional to energy.

- So CN complex will absorb at lower wavelength (yellow color)
Final answer:

The colors of the compounds in the beakers could potentially be: [CoF6]3– (green), [Co(NH3)6]3+ (yellow-orange), and [Co(CN)6]3– (red), although colors can vary based on different conditions.

Explanation:

The question asks us to identify the compounds present in three beakers based on the color of the solution. While this is generally impossible to answer with absolute certainty without more information or additional tests, we can make a fair guess based on some known color-characteristics of these compounds.

[CoF6]3– is generally green due to the color of the Cobalt(III) ion.

[Co(NH3)6]3+ is usually yellow to orange in color.

FInally, [Co(CN)6]3– commonly has a strong red color.

Note that in reality, actual colors can vary depending on concentration, temperature, and other factors.

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Give the percent yield when 28.16 g of co2 are formed from the reaction of 4.000 moles of c8h18 with 4.000 moles of o2. 2 c8h18(l) + 25 o2(g) → 16 co2(g) + 18 h2o(g) molar mass co2 = 44.01 g/mol

Answers

Final answer:

The percent yield of CO2 is calculated by dividing the actual yield (28.16 g of CO2) by the theoretical yield determined from the stoichiometry of the balanced chemical equation and the limiting reactant, and then multiplying by 100 to get the percentage.

Explanation:Percent Yield Calculation

The question asks for the percent yield of CO2 produced from the reaction of C8H18 with O2. First, we need to consider the balanced chemical equation:

Write the balanced chemical equation: 2 C8H18(l) + 25 O2(g)
ightarrow 16 CO2(g) + 18 H2O(g).Identify the limiting reactant. Since 4.000 moles of C8H18 and 4.000 moles of O2 are provided, O2 is the limiting reactant because the reaction requires 25 moles of O2 for every 2 moles of C8H18.Calculate the theoretical yield of CO2. Based on the stoichiometry of the reaction, one mole of O2 would produce 16/25 moles of CO2, so 4.000 moles of O2 would produce 4.000 * (16/25) moles of CO2.Convert moles of CO2 to grams. The molar mass of CO2 is 44.01 g/mol, so the theoretical yield in grams is the number of moles times the molar mass.Calculate the percent yield using the formula: (actual yield / theoretical yield) * 100. The actual yield is given as 28.16 g of CO2.

Therefore, the percent yield can be calculated by dividing the actual yield of CO2 (28.16 g) by the theoretical yield (calculated in step 4), and then multiplying by 100 to get a percentage.

In the nuclear transmutation represented by 168o(p, \alpha) 137n, the emitted particle is ________.

Answers

Answer is: the emitted particle is an alpha particle.

Nuclear reaction: ¹⁶O + p⁺ → ¹³N + α (alpha particle).
Alpha decay is radioactive decay in which an atomic nucleus emits an alpha particle (helium nucleus) and transforms into an atom with an atomic number that is reduced by two and mass number that is reduced by four.
When oxygen-16 gain one proton, atomic mass is 17, but when lose alpha particle atomic mass reduces by four to 13.

Predict which substance in each pair has greater molar entropy. (1) no2(g) n2o4(g) (2) ch3och3(l) ch3ch2oh(l) (3) hcl(g) hbr(g)

Answers

Entropy is measure of disorder in system. Higher the disorder, greater the entropy.

Pair 1: NO2 (g) and N2O4 (g)
In the above case, entropy of N2O4 is more as compared to NO2, because N2O4 has more number of bonds as compared to NO2. So large number of vibrational energy levels are available for energy distribution which results in increasing entropy.

Pair 2: CH3OCH3(l) and CH3CH2OH(l)
Above compounds are structure isomers. They have same number of bonds and vibrational energy levels. However, presence of -OH group in CH3CH2OH results in intermolecular interaction via H bonding. This results in an ordered structure in CH3CH2OH as compared to  CH3OCH3. Due to this entropy in CH3CH2OH is lower as compared to CH3OCH3.

Pair 3: HCl(g) and HBr(g)
In present case, HBr will have higher entropy as compared to HCl, because of larger number of sub-atomic particles in Br. Also, the higher molecular mass of HBr favors larger entropy. 
Final answer:

The substances with greater molar entropy in each case are: NO2(g), CH3OCH3(l), and HBr(g), due to factors such as number of atoms, molecule complexity and being heavier gases.

Explanation:

In predicting the substance with greater molar entropy in each pair, we have to consider the number of molecules and atoms, phase of matter and complexity of molecules. Here are the predicted substances:

NO2(g) - This molecule is monatomic when compared to N2O4. Molecules with more atoms have higher positional entropy, hence NO2 has higher molar entropy.CH3OCH3(l) - This is a more complex molecule as compared to CH3CH2OH. More complex molecules have higher entropy as there are more possible configurations of their atoms.HBr(g) - This substance is a gas and contains bromine which is heavier than chlorine in HCl. Heavier gases have larger molar entropy.

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The half-life of cobalt-60 is 5.20 yr. how many milligrams of a 2.000-mg sample remain after 10.50 years?

Answers

final amount =initial anount *(1/2)^(t/half life)

final amount =2.000 mg *(1/2)^(10.5/5.20) = 0.493 mg remain after 10.5 years

which of the following naturally orccuing radioisotopes would be most useful in dating objects

Answers

Potassium -40half life = 1.28 ×10∧9.
Radioisotope can be used to determine the age of fossils, to treat skin disease, to sterilize foodstuffs, and also to sterilize surgical instruments.
Radioisotope dating is a way to estimate a fossil's age by a method of analyzing the elemental isotopes which are within the rocks which it is in.

Which element has the electron configuration shown above

Answers

The answer is Neon (Ne)

The 2p shell is the elements on period 2 from Boron to Neon on the periodic table. The 6 means it has 6 electrons and is sixth in line so it must be Neon.
One element that has the electron configuration (1s22s22p6) is Neon.

He rate constant for the forward reaction, k1, is 297 l·mol–1·min–1 and the rate constant for the reverse reaction, k–1, is 393 l·mol–1·min–1 at a given temperature. the activation energy for the forward reaction is 42.1 kj·mol–1, while the activation energy for the reverse reaction is 22.1 kj·mol–1. determine the equilibrium constant, k, of this reaction.

Answers

Equilibrium constant of reaction,
 = [tex] \frac{rate.constant.forward.reaction}{rate.constant.of.backward.reaction} [/tex]
= [tex] \frac{297}{393} [/tex]
=0.7557

The equilibrium constant is a number that shows the extent to which reactants are converted into products. The equilibrium constant of the reaction is 0.76.

What is equilibrium constant?

The equilibrium constant is a number that shows the extent to which reactants are converted into products.

We know that to obtain the equilibrium constant; K = k1/k-1 where;

k-1 = rate constant of reverse reaction

k1 = rate constant of forward reaction.

Hence;

K = 297 l·mol–1·min–1/393 l·mol–1·min–1

K = 0.76

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Glacier and erosion in a sentence

Answers

a glasier can cause an eroision miles away from eachother

propose a reasonable synthesis to get benzylamine from toluene

Answers

Benzyl Amine is synthesized from Toluene in two steps;

Step 1: Bromination of Methyl Group in Toluene:
                                                                             Bromination is carried out on methyl group present on Benzene ring through free radical mechanism by treating toluene with N-Bromosuccinimide (NBS) and Benzyl Bromide is formed.

Step 2: Benzyl Bromide into Benzyl Amine;
                                                                    This step is carried out utilizing a neme reaction "Gabriel Reaction". Benzyl bromide is treated with Potassium Phthalamide and an intermediate is formed which on treatment with Hydrazine produces Benzyl amine.

Final answer:

The synthesis of benzylamine from toluene involves an oxidation step to convert toluene to benzaldehyde followed by reductive amination with an amine such as methylamine to yield the desired benzylamine.

Explanation:

To propose a reasonable synthesis to get benzylamine from toluene involves several steps. Initially, toluene can be oxidized to benzaldehyde through the oxidation reaction. This would typically involve a reaction with an oxidizing agent like KMnO4 in an aqueous base or CrO3 with acidic conditions. Once benzaldehyde is obtained, the next step is to convert it into benzylamine. This can be achieved by the reductive amination process, where benzaldehyde can react with an amine such as methylamine and then be reduced, often using a reducing agent like NaBH4 or H2 with a catalyst. To ensure that the amine added is solely the benzyl amine desired, the N-alkylation can be controled through the choice of appropriate reagents and conditions.

One possible method would utilize methylamine in the presence of a reductive agent to convert the aldehyde group to the desired primary amine. The overall reaction from toluene to benzylamine would likely proceed with good to high yields, assuming that the correct reaction parameters and purification techniques are employed.

What is the de broglie wavelength of a 0.17-kg hockey puck moving at 37 m/s ?

Answers

Im taking lambda as x (wavelength)

m = 0.17 kg

v=37m/s

h=6.62*10^-34m²kg/s

x= h/mv


[tex]x = 6.62 \times 10 ^{ - 34} \div 0.17 \times 37[/tex]
[tex]x =1.05 \times {10}^{ - 34} m[/tex]

The wavelength of a hockey of mass 0.17kg traveling at a speed of37 m/s can be calculated by using De Broglie's equation and it comes out to be  1.05m×10⁻³⁴m.

What is De Broglie's equation?

The De Broglie's equation is an equation which shows that a particle has a wave length and hence particle can show wave nature. Any matter can have two nature one is particle nature and other is wave nature.

The wave nature in a particle was given by De Broglie Particle nature of a matter can be described by the phenomenon of black body radiation. Photoelectric effect two shows particle nature nature of light.

Mathematically,

[tex]{\lambda}=\frac{h}{mv}[/tex]

where,

[tex]{\lambda}[/tex]=wavelength=?

m=mass of hockey=0.17kg

h=Plank's constant

v=velocity of hockey=37 m/s

Substituting all given values in the equation

[tex]\lambda[/tex]= (6.626×10⁻³⁴)÷(0.17kg ×37 m/s )=1.05m×10⁻³⁴m

Thus the wavelength of motorcycle is 1.05m×10⁻³⁴m.

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.War nickels, produced from 1942-1945 are composed of 56% copper, 35% silver and 9% manganese. How many moles of each element are found in a 5.00 g nickel coin?

Answers

The moles  of each element  found in a 5.00 g nickel coin is calculated as below

moles =mass/molar mass

calculate the mass of each element  =% composition of element/100 x total mass of  nickel

Mn = 9/100 x5 = 0.45g
Cu=56/100 x5= 2.8 g
Ag= 35/100x5=  1.75 g
moles of each element is therefore=
Mn = 0.45g/54.94 =  8.19 x10^-3 moles

Ag=1.75g/107.87 g/mol = 0.0162 moles

Cu = 2.8 g/63.5 g/mol=0.0441  moles





Please help kind of confused here.
In the early 1900s, Henry Gwyn-Jeffreys Moseley added to the development of the modern periodic table. Which answer best explains how Moseley started his investigations?
1. by reviewing the work of those who contributed to the previous versions of the table
2. by making an entirely new organizational scheme for the previous versions of the table
3. by analyzing the work of a select group of contributors to the previous versions of the table
4. by rejecting the work of all those who had previously developed the earlier versions of the table

Answers

2. by making an entirely new organizational scheme for the previous versions of the table 

Moseley took Mendeleevs periodic table which was organized by weight and organized the elements instead by at atomic number

Answer:

The correct answer is 1. Moseley started his investigations by reviewing the work of those who contributed to the previous versions of the table.

Explanation:

Henry Gwyn Jeffreys Moseley was a British physicist. His most important scientific contribution was the proof of the correctness of the concept of atomic numbers in chemistry.

In 1913, using X-ray spectroscopy, he found a systematic relationship between the wavelength and the atomic number. Previously, it was assumed that the atomic number was an arbitrary number based on the order of the atomic masses, but had to be changed to bring an element into the right place in the periodic table. Moseley's discovery showed that atomic numbers had an experimentally measurable basis. In addition, he showed that there were gaps in numbers 43, 61 and 75 (known today as the radioactive elements technetium and promethium, as well as the stable but rare rhenium). His work was further proof of the then controversial atomic theory.

If you start with 4.0 grams of sodium flouride (NaF), how many grams of magnesium flouride (MgF2) will be produced? The molar mass of NaF is 42g/mole and the molar mass of MgF2 is 62g/mole.

Answers

rgrudfogheruhguirgree

If I cut the height of an object in half, what will happen to its GPE?
A. Not enough info
B. Double
C. Disappear
D. Halve

Answers

the answer is D im 80% sure.
Final answer:

If you cut the height of an object in half, its gravitational potential energy (GPE) will also halve.

Explanation:

If you cut the height of an object in half, its gravitational potential energy (GPE) will also halve.

GPE is determined by the height of the object and its mass. When you cut the height in half, the GPE is reduced by half because the potential energy is directly proportional to the height.

For example, if a book has a certain GPE at a certain height, cutting the height in half will result in the book having half the GPE it had before.

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The (C4H1 0)3N represents a___ amine.
A. Primary
B. Secondary
C. Tertiary

Answers

C. tertiary :) hope this helps

Answer :The correct answer for (C₄H₁₀ )₃ N is C) TERTIARY AMINE .

The substitution level of nitrogen in amine or in simple words , description of carbon atoms attached to a given nitrogen in any amine is of 4 types :

1 ) Primary amine :

When the given nitrogen is attached to only one carbon then substitution level is known as PRIMARY amine.

Example : CH₃NH₂ : The nitrogen is attached to only one carbon (CH₃) . Hence it is primary amine

2) Secondary amine :

When the given nitrogen is attached to two carbons .

Example : (CH₃)₂NH : The nitrogen is attached to two carbon ( CH₃)₂ , hence it is secondary amine .

3) Tertiary amine :

When the given nitrogen is attached to three carbon atom .

Example : (CH₃)₃NH : The nitrogen is attached to 3 carbons atoms (CH₃)₃ . Hence it is a tertiary amine

4) Quaternary amine : when the nitrogen attached to 4 carbon atoms and amine posses a positive charge on it , its is known as quaternary amine .

Example : (CH₃)₄N⁺ : The nitrogen is attached to 4 carbons and nitrogen . hence it is quaternary amine .

(Image attached )

The given compound is (C₄H₁₀ )₃ N has 3 groups of C₄H₁₀ attached to N , means 3 carbons attached to N , ( image attached ) . Hence it can be said that (C₄H₁₀ )₃ N is TERTIARY AMINE .

Hence correct option is C) Tertiary amine .

During an oxidation-reduction reaction, the number of electrons gained is

A) equal to the number of electrons lost

B) equal to the number of protons gained

C) less than the number of electrons lost

D) less than the number of protons gained

Answers

A balanced redox reaction maintains the number of electrons transferred throughout the reaction. So, the number of electrons gained is equal to the number of electrons lost, or A.
Final answer:

During a redox reaction, the number of electrons gained is equal to the number of electrons lost, demonstrating the law of conservation of charge.

Explanation:

In an oxidation-reduction reaction, also known as a redox reaction, the number of electrons gained is equal to the number of electrons lost. This principle is known as the law of conservation of charge which states that the total charge before a reaction must equal the total charge after the reaction.

So, when one substance loses electrons (oxidation), another must gain them (reduction). Therefore, the correct answer is A) equal to the number of electrons lost.

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For a reaction to be spontaneous under standard conditions at all temperatures, the signs of δh° and δs° must be __________ and __________, respectively.

Answers

Final answer:

A reaction is spontaneous under standard conditions at all temperatures when ΔH° is negative and ΔS° is positive, leading to a negative Gibbs free energy change (ΔG°).

Explanation:

For a reaction to be spontaneous under standard conditions at all temperatures, the signs of ΔH° (ΔH degree) and ΔS° (ΔS degree) must be negative and positive, respectively. According to the Gibbs free energy equation, ΔG° = ΔH° - TΔS°, where T represents the absolute temperature in Kelvin. If ΔH° is negative (exothermic reaction) and ΔS° is positive (increase in entropy), the Gibbs free energy change (ΔG°) will always be negative, indicating that the reaction is spontaneous. Conversely, if ΔH° were positive and ΔS° negative, ΔG° would be positive and the reaction non-spontaneous at all temperatures.

Choose all the answers that apply. Muscles in the small intestine are _____. striated voluntary involuntary smooth cardiac

Answers

The muscles in the small intestine are smooth muscles and they are involuntary.

The muscles can be seen in the muscularis externa layer of the small intestine. Those muscles are arranged in two ways as outer is longitudinal and inner is circular way.  Those muscles help to do movements of small intestine.

Answer:

The answer is smooth and Involuntary.

Explanation:

Smooth muscles are involuntary which means they automatically do a function without the brain telling it to.

A sample of gas occupies 10.0 l at 100.0 torr and 27.0
c. calculate the pressure if the temperature is changed to 127c while the volume remains constant. (133 torr)

Answers

The pressure  of a sample  of a gas if the temperature  is changed  to 127  c  while  the volume  remains  constant   is calculated  using gay lussac law formula

that is P1/T1 = P2/V2
P1 = 100 torr
T1 = 27+273 = 300 k
T2 =127 +273 =400 k
P2=?

by  making P2 the subject of the formula
P2=T2P1/T1

=100  x 400/300 = 133.3 torr

Final answer:

To calculate the new pressure of a gas when the temperature changes and volume remains constant, we apply Gay-Lussac's Law, which involves converting temperatures to Kelvin and using the relationship P1/T1 = P2/T2.

Explanation:

The student's question involves calculating the pressure of a sample of gas when the temperature is changed while keeping the volume constant. This is a typical problem you might encounter in a chemistry class when discussing gas laws, specifically relating to Gay-Lussac's Law, which states that the pressure of a gas is directly proportional to its absolute temperature, provided that the volume remains constant.

Since the volume is constant, we can use the Gay-Lussac's Law formula: P1/T1 = P2/T2, where P1 and T1 are the initial pressure and temperature, and P2 and T2 are the final pressure and temperature, respectively. Remember to convert temperatures to Kelvin. Initially, we have P1 = 100.0 torr and T1 = (27.0 + 273.15) K. The final temperature is T2 = (127 + 273.15) K. Solving for P2, we get the final pressure.

Bombardment of uranium-235 with a neutron generates tellurium-135, 3 neutrons, and ________.

Answers

Answer is: zirconium-98.
Nuclear reaction: ²³⁵U + n°→ ¹³⁵Te + ⁹⁸Zr + 3n°.
Atomic number of uranium is 92, atomic number of zirconium (Zr) is 40 and atomic number of tellurium (Te) is 52, 92 = 40 + 52.
Uranium has atomic mass 235, zirconium has 98 and tellurium has 135:
235 + 1 = 135 + 98 +3, 236 = 236.
n° is neutron.
Symbol for atomic number is Z and for atomic mass is A.

Bombardment of uranium-235 with a neutron produces tellurium-135, three neutrons, and molybdenum-98.

When uranium-235 (U-235) is bombarded with a neutron, it first forms U-236, which is unstable.

This unstable isotope undergoes nuclear fission, resulting in the production of tellurium-135 (Te-135), three neutrons, and another element, which we need to determine.

In fission reactions, the sum of the atomic masses and the number of protons must be equal on both sides of the equation.

Here’s the reaction:

U-235 + neutron ⟶ Te-135 + 3 neutrons + X

Starting with 235 (U-235) + 1 (neutron) = 236 mass units total.

The mass of Te-135 is 135 units.

Since three neutrons (3 x 1 = 3 units) are produced, the remaining mass is:

236 - 135 - 3 = 98 units.

Since tellurium (Te) has an atomic number of 52, and assuming the fission product balances the protons and neutrons in the equation, the remaining fission product is molybdenum-98 (Mo-98) with an atomic number of 42.

Completing the equation:

U-235 + neutron ⟶ Te-135 + 3 neutrons + Mo-98.

When two molecules of methanol (ch3oh) react with oxygen, they combine with three o2 molecules to form two co2 molecules and four h2o molecules. how many h2o molecules are formed when 66 methanol molecules react?

Answers

[tex]2CH_{3}OH +3O_{2}--\ \textgreater \ 2CO_{2}+4H_{2}O From reaction 2 molecules CH_{3}OH give 4 molecules H_{2}O. [/tex]

[tex] \frac{2 molecules CH_{3}OH}{4 molecules H_{2}O} = \frac{66 molecules CH_{3}OH}{x molecules H_{2}O} x= 4*66/2=132 molecules of H_{2}O[/tex]

The number of water molecules formed when 66 molecules of ethanol react is; 132 molecules of water.

When two molecules of methanol react with oxygen.

They combine with three O2 molecules as implied in the question to form CO2 molecules and four H20 molecules.

The reaction between methanol and oxygen is as follows;

2CH3OH + 3O2 --> 2CO2 + 4H2O

According to the equation,

2 molecules of CH3OH = 4 molecules of H2O

Therefore,

66 molecules of CH3OH = x molecules of H2O

In essence, the number of x molecules of water formed when 66 molecules of ethanol react is;

x = (66 × 4)/2

x = 132 molecules of water.

The number of water molecules formed when 66 molecules of ethanol react is; 132 molecules of water.

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Acetyl-coa and succinyl-coa are both high-energy thioesters, but their chemical energy is put to different uses. explain how the chemical energy is used in the two cases.

Answers

Why are Acetyl-CoA and succinyl-CoA, both high energy thioesters, chemical energies put to different uses?
The energy released by hydrolysis of acetyl-CoA is needed for the condensation reaction that links acetyl moiety to oxaloacetate, yielding citrate. The energy released by hydrolysis of succinyl-CoA drives the phosphorylation of GDP, yielding GTP

Some reactions of the citric acid cycle are endergonic. Explain how the overall cycle is exergonic.
The sum of the energies of the individual reactions is -44.3kJ for each mole of acetyl-CoA that enters the cycle

Which enzymes of the citric acid cycle are missing from the glyoxylate cycle?
isocitrate dehydrogenase, alpha-ketoglutarate dehydrogenase, and succinyl-CoA synthetase

James is looking at a parallel circuit plan for lighting. There is a battery providing the power. There are switches labeled A,B,C,D that can be turned on to close the circuit. Which switch does not have to be on for light 3 to function?

Answers

the answer is D because for light 3 to function switch d does not  have to turn on

For light 3 to function, switch D does not have to be on. This diagram shows a parallel circuit that provides more than one way for the current to return to the power source.

What is the mass of 2.30 moles of magnesium chloride, mgcl2?

Answers

Mole Road Map:                            ÷            ×
Mass (grams) ⇄ Moles ⇄ Particles (atoms, molecules, etc.)
                        ×            ÷
                        ↓            ↓
             Molar Mass     6.02 × 10^23 (Avogadro's number)

Molar Mass of Magnesium Chloride: 1 Mg: 24.3
                                                        + 2 Cl: 2(35.5)
                                                          95.3 g/mol MgCl2
2.30 mol × 95.3 g/mol MgCl2 ≈ 219. grams MgCl2 (according to significant figures)

ASAP HELP GIVING TO CORRECT PERSON A BRAINLIEST REWARD

Cellulose is a polymer that makes up plant cell walls. Cellulose is made from a chain of C6H10O5 molecules.

Which monomers are most likely used to produce cellulose?

a)nucleotides and amino acids
b)glucose molecules
c)nucleotides
d)amino acids

Answers

It's B: glucose molecules

Answer:

Answer is B

Explanation:

. how many lone pairs of electrons are present in the lewis structure of calcium sulfide?

Answers

Answer:
            Four

Explanation:
                     Calcium Sulfide is an ionic compound made up of Ca²⁺ and S²⁻.
Ca²⁺ is formed as,

                                   Ca    →    Ca²⁺  +  2 e⁻

These two electrons are accepte by Sulfur as,

                                     S  +  2 e⁻    →    S²⁻

So, before accepting 2 electrons S was having six valence electrons, after accepting two electrons from Ca it has 8 electrons which are present in four pairs as shown below,

What is the molar concentration of a phosphoric acid (h3po4) solution if 55.5 ml of the solution requires 35.5 ml of .150 m naoh to completely react with the phosphoric acid?

Answers

The  molar  concentration  of H3PO4  solution  is calculated  as below

find the  moles of NaOH  reacted =molarity x volume
= 35.5 x0.150 = 5.325  moles

write a balanced  reacting  equation
=NaOH +3 H3PO4 = Na3PO4 + 3H2O

by  use of reacting ratio between NaOH  to H3PO4  which  is 1:3  the moles of  H3Po4 is therefore
= 5.325moles/3= 1.775 moles

molar  concentration is therefore of H3PO4=  moles /volume
=1.775/55.3 = 0.0320 M of H3PO4

How many milliliters of 0.564 m hcl are required to react with 6.03 grams of caco3 ?

Answers

First write up a balanced equation
CaCO3 + 2 HCl = CO2 + CaCl2 + H2O

Find how many moles of CaCO3 you are dealing with
6.03 g x 1 mol / 100 g = .0603 moles

However, you need twice as much HCl
.0603 x 2 moles / .564 M = .21 L
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