You are assembling cars, and your job is to put the wheels on the vehicles. You have 3520 wheels, 14040 nuts (4 nuts needed per wheel) and 1000 car bodies at the start of the day (you have time to do more than 1000, and there will be no deliveries of additional parts during the day).

How many possible cars can roll off the assembly line?
What is the limiting reagent in this case?
If you only get to put the wheels on 850 cars that day, what is your productivity?

Answers

Answer 1
14040/4=3510 wheels per 4 nuts
3510/4=877.5 cars per 4 wheels
877 possible cars.

actual yield 850/theortical yield 877=96.92%

Related Questions

How many oxygen atoms are present in 0.500 mol carbon dioxide

Answers

Final answer:

There are 6.022 × 1023 oxygen atoms in 0.500 mol of carbon dioxide, calculated by doubling the moles of CO2 for oxygen and then multiplying by Avogadro's number.

Explanation:

The question asks how many oxygen atoms are present in 0.500 mol of carbon dioxide (CO2). To find this, we need to use Avogadro's number, which is 6.022 × 1023 atoms/mole, and the fact that each molecule of CO2 contains two oxygen atoms. Here is the calculation:

First, determine the number of moles of oxygen atoms. Since there are 2 moles of oxygen atoms for every mole of CO2, we have 0.500 mol × 2 = 1.000 mol of oxygen.

Next, multiply the number of moles of oxygen by Avogadro's number to get the total number of oxygen atoms: 1.000 mol × 6.022 × 1023 atoms/mole = 6.022 × 1023 oxygen atoms.

Therefore, 0.500 mol of carbon dioxide contains 6.022 × 1023 oxygen atoms.

In 0.500 mol of CO2, there are approximately 6.022 × 10^23 oxygen atoms, calculated using Avogadro's number and stoichiometry.

To determine the number of oxygen atoms in 0.500 mol of carbon dioxide (CO2), we can use Avogadro's number and the stoichiometry of the compound. Avogadro's number (6.022 x 10^23) represents the number of entities (atoms, molecules, ions) in one mole of a substance.

The chemical formula for carbon dioxide is CO2, which indicates that one mole of CO2 contains one mole of carbon atoms and two moles of oxygen atoms.

Given that the molar mass of oxygen (O) is approximately 16 g/mol, and CO2 has a molar mass of approximately 44 g/mol, we can find the moles of oxygen in 0.500 mol of CO2.

Moles of O = Moles of CO2 × (Moles of O / Moles of CO2)

Moles of O = 0.500 mol × (2 / 1) = 1.000 mol O

Now, using Avogadro's number, we can find the number of oxygen atoms:

Number of oxygen atoms = Moles of O × Avogadro's number

Number of oxygen atoms ≈ 1.000 mol × 6.022 × 10^23 atoms/mol

Number of oxygen atoms ≈ 6.022 × 10^23 atoms

What are the measurements for standard temperature and pressure (stp)? kp?

Answers

Standard Temperature and Pressure (STP) are 273.15 K (Kelvin) and 101.3 KPa (kilopascals).

You can substitute 1 ATM (atmosphere) for the kilopascal measurement. It is discouraged to use 0°C for the temp equivalent since negative temperature numbers can't be used in gas equations..

Acceleration is best defined as the rate of change of ____ of an object.

1. velocity
2. force
3. position
4. speed

Answers

Im guessing 4.speed because accelerating would be a vehicles ability to gain speed within a short amount of time 

Which ion channel opens in response to a change in membrane potential and participates in the generation and conduction of action potentials?

Answers

I know calcium helps with the generation of APs as well as sodium and potassium. I would have to say sodium-potassium pumps, but I could be incorrect.
Final answer:

The voltage-gated ion channel opens in response to a change in membrane potential and is involved in the generation and spreading of action potentials. As the membrane depolarizes, voltage-gated sodium channels open, allowing sodium ions to enter the muscle fiber, leading to the spread of action potential.

Explanation:

The ion channel that opens in response to a change in membrane potential and participates in the generation and conduction of action potentials is known as a voltage-gated ion channel. As the membrane depolarizes, voltage-gated sodium channels are triggered to open. Sodium ions then enter the muscle fiber initiating a process known as excitation-contraction coupling which results in an action potential, a transmission of an electrical signal, swiftly spreading along the entire membrane. This mechanism is critical to the function of neurons and muscle fibers.

Typically, the voltage of the inner portion of the membrane is negative. When this voltage becomes less negative, the voltage-gated channel allows ions to cross the membrane. It is also worth noting, that voltage-gated channels can become inactivated for a brief period after activation, during which they will not open in response to a signal.

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Write a possible full set of quantum numbers for the electron gained when a bromine atom (br) becomes a bromide ion (br−).

Answers

Quantum numbers are a set of numbers used to describe the position and the motion of an electron within the atom.

Quantum numbers are as follows:
n-quantum number : represents the energy level
l-quantum number : represents the orbital (s,p,d,f,....)
ml-quantum number : represents the position of the electron within the orbital
ms-quantum number :  represents the spin of the electron within the electron pair.

Bromine has an atomic number of 35.
So, the configuration of the Br is: [Ar] 3d10 4s2 4p5

Now, we will add one electron to the Br to be a negative ion (Br-).
This extra electron will be added to the 4th principle level in the p-orbital.

So, the quantum numbers that represent the extra electron added to the Br will be as follows:
n = 4 (it is added in the 4th principle level)
l = 1 (it is added in the p-orbital)
ml = 1
ms = -1/2


The possible values of all quantum numbers for the electron gained by Br atom to form [tex]{\text{B}}{{\text{r}}^-}[/tex] is [tex]\boxed{n=4,\;l=1,\;{m_l}=1,\;{m_s}=-\frac{1}{2}}[/tex]

Further explanation:

Quantum numbers:

Quantum numbers govern the size, energy, shape, and orientation of an orbital. The four quantum numbers are as follows:

1. Principal Quantum Number (n): It denotes the principle electron shell. The values of n are positive integer (1, 2, 3,…).

2. Angular Momentum Quantum Number (l): It represents the shape of an orbital. The value of l is an integer from 0 to (n-1). (Refer to the table in the attached image)

3. Magnetic Quantum Number[tex]\left( {{m_l}} \right)[/tex]: This quantum number represents the orientation of the orbital in space. The value of [tex]{m_l}[/tex]lies between –l to +l. The formula to calculate the value of [tex]{m_l}[/tex] is as follows:

[tex]{m_l}=-l,(-l+1),.....,0,1,2,.....,(l-1),l[/tex]

Therefore, the total number of [tex]{m_l}[/tex] values for a given value of l is 2l+1.

4. Electron Spin Quantum Number[tex]({m_s})[/tex]: It represents the direction of the electron spin. Its value can be [tex]+ \frac{1}{2}[/tex]or[tex]- \frac{1}{2}[/tex].

The atomic number of bromine (Br) is 35 and its electronic configuration is [tex]\left[ {{\text{Ar}}} \right]\;3{d^{10}}4{s^2}4{p^5}[/tex]. When it gains an electron, it forms [tex]{\text{B}}{{\text{r}}^ - }[/tex] whose electronic configuration becomes [tex]\left[ {{\text{Ar}}} \right]\;3{d^{10}}4{s^2}4{p^6}[/tex].

The principal electron shell in [tex]{\text{B}}{{\text{r}}^ - }[/tex] is 4p. So its principal quantum number for the added electron in [tex]{\text{B}}{{\text{r}}^ - }[/tex] is 4.

The angular momentum quantum number for p orbital is 1. So the value of l for the added electron in [tex]{\text{B}}{{\text{r}}^ - }[/tex] is 1.

The value of magnetic quantum number for the electron in [tex]{\text{B}}{{\text{r}}^ - }[/tex] ranges from -1 to 1, including 0. But by convention this electron is added to [tex]{p_z}[/tex] orbital so the value of [tex]{m_l}[/tex] for the added electron in [tex]{\text{B}}{{\text{r}}^ - }[/tex] is 1.

The spin quantum number has two values, either [tex]+ \frac{1}{2}[/tex] or [tex]- \frac{1}{2}[/tex]. But the electron added in Br is the second electron being added to [tex]{p_z}[/tex] orbital so by convention, the value of [tex]{m_s}[/tex] for the added electron in [tex]{\text{B}}{{\text{r}}^-}[/tex] is [tex]{\mathbf{ - }}\frac{{\mathbf{1}}}{{\mathbf{2}}}[/tex].

The possible set of four quantum numbers for the electron gained by Br atom to form [tex]{\text{B}}{{\text{r}}^ - }[/tex] is n = 4, l = 1, [tex]{m_l} = 1[/tex] and [tex]{m_s} =  - \frac{1}{2}[/tex].

Learn more:

1. Allowed values of [tex]{m_l}[/tex]: https://brainly.com/question/2920448

2. Calculation of volume of gas: https://brainly.com/question/3636135

Answer details:

Grade: Senior School

Subject: Chemistry

Chapter: Structure of the atom

Keywords: quantum numbers, Br, Br-, electron, 35, electronic configuration, n, l, ml, ms, principal quantum number, angular momentum quantum number, electron spin quantum number, magnetic quantum number, n = 4, ml=1, ms=-1/2, l=1.

Which of these was a characteristic of the rutherford model of the atom, but not the thomson model?

Answers

thompson didnt have a nucleus (since rutherford discovered it)

What is the mass number of an oxygen isotope that has nine neutrons? what is the name of this isotope?

Answers

The mass number of this isotope is 17. The name of the isotope is Oxygen-17.

Isotopes are the forms of same element with same atomic number but different mass number due to different number of neutrons. The name of isotope of oxygen is Oxygen-17.

What is element?

Element generally consist of atoms or we can atoms combine to form element. Atoms of an element is always same, means all the properties of all atoms of one type of element is same. Different element have different types of atoms.

Oxygen-16 has atomic number 8, which means number of electron is 8 , number of proton is 8 and number of neutron is also 8. If we increase the number of neutron by 1 that is 9 then the mass number of oxygen will be increased by 1 that is 17. Now the new element is oxygen-17 which is an isotope.

Therefore, the name of isotope of oxygen is Oxygen-17.

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Explain why an atom may go through nuclear decay but another won't? use examples to support your answer.

Answers

Nuclear decay or radioactive decay is a process by which the nucleus of an unstable atom loses energy that is in terms of its mass. The radioactivity may cause an atom to lose whichever of its subatomic particles.

The explanation as why some of the atoms go through nuclear decay while others do not its because of the stability of some atoms. Atoms usually tend to follow octet rule, those which do not follow through this may experience the nuclear decay. 

What is the concept of galactic recycling?

Answers

Galactic recycling is a natural phenomenon in which the stars expel some gas into the space so that it would mix with the interstellar medium. As a result, this would produce new younger stars. So, basically, the concept done here is the mass and energy conservation. In order to create new species, the energy must come from another source.

Which part of a watershed is the high point of land that separates adjacent watersheds?

Answers

"The Divide" young blood
Final answer:

A dividing ridge or watershed divide separates adjacent watersheds, like the Continental Divide in North America where rivers flow in opposite directions. Mount Elbert is the highest point on this divide, and Longs Peak is a notable mountain along it.

Explanation:

The high point of land that separates adjacent watersheds is known as a dividing ridge or watershed divide. This feature determines the direction in which water flows across the landscape. In North America, the Continental Divide is a well-known example of a watershed divide where the line of the highest points marks the separation between rivers flowing eastward and westward. The highest point along this line is Mount Elbert, and a prominent mountain along the Continental Divide is Longs Peak.

Watershed divides can be found in various forms around the world, such as the Western Highlands in Europe, which provide natural separations for watersheds. The concept of watersheds is vital not only for understanding water flow but also for environmental management, as it affects the collection and distribution of water resources.

Which description below represents a hydrocarbon?
a. an organic compound that contains only carbon and hydrogen atoms
b. an organic compound that contains the maximum number of hydrogen atoms
c. an organic compound that contains fewer than the maximum number of hydrogen atoms
d. a group of compounds in which there is a constant increment of change in molecular structure from one compound in the series to the next?

Answers

The answer is A, an organic compound that contains only carbon and hydrogen atoms

If a thermometer outside your classroom indicates a temperature of 61 degrees Fahrenheit, what is the temperature in degrees Celsius

Answers

That would be 16.1 degrees Celsius

Answer:That would be 16.1 degrees Celsius 

The human body obtains 835 kJ of energy from a chocolate chip cookie. If this energy were used to vaporize water at 100 ∘C, how many grams of water could be vaporized? The heat of vaporization of water at 100 ∘C is 40.7 kJ/mol. Assume that the density of water is 1.0 g/mL.

Answers

If there is 1 mol vaporized per 40.7 kJ of heat, that means 20.516 mol of water can be vaporized, found by the equation 835 kJ/40.7 kJ = 20.516 mol. To find the mass of 20.516 mol of water, you take the mass of one mol of water, 18.0148 grams, found by multiplying avogadro's number (6.022 x 10^23) by the mass of one water molecule, and multiply it by 20.516. This results in 369.5916368 grams of water vaporized.

Answer:

Amount of water that can be vaporized = 369 g

Explanation:

Heat content of the cookie (q) = 835 kJ

Latent heat of vaporization of water (ΔHvap) = 40.7 kJ/mol

Density of water = 1 g/ml

Calculation:

Heat content of cookie = Heat absorbed by water

q = n(ΔHvap)

n = moles of water

n = q/ΔH = 835 kJ/ 40.7 kJ/mol = 20.516 moles

Molar mass of water = 18 g/mol

Mass of water = moles * molar mass = 20.516 moles * 18 g/mol = 369.3 g

Write 578,000,000 in scientific notation.

Answers

5.78 x 10^-9
all you need to do is count the decimal places
Final answer:

To write 578,000,000 in scientific notation, move the decimal point to the left until there is only one non-zero digit to the left of the decimal point, resulting in 5.78 × 10^8.

Explanation:

To write 578,000,000 in scientific notation, we need to move the decimal point to the left until there is only one non-zero digit to the left of the decimal point. In this case, we can move the decimal point 8 places to the left, resulting in 5.78 × 108.

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In which process is glucose oxidized to form two molecules of pyruvate?

Answers

That should be glycolysis
Final answer:

Glycolysis is the biological process where glucose is oxidized to form two molecules of pyruvate. Here, glucose is broken down using ATP and NAD+, generating energy for the cell and creating substrates for the Krebs cycle in the presence of oxygen.

Explanation:

The process in which glucose is oxidized to form two molecules of pyruvate is known as glycolysis. In the presence of ATP and NAD+, glucose is broken down into pyruvate, yielding a net gain of two ATP and two NADH molecules. These molecules carry high-energy electrons that are used later to produce even more ATP in the mitochondria. If oxygen is present, the pyruvate continues to the Krebs cycle (also known as the citric acid cycle) for further processing and energy extraction. Thus, glycolysis is a crucial step in cellular metabolism, converting glucose into usable energy and preparing it for further oxidation in the Krebs cycle if aerobic conditions are met.

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If a solution contains 1 x 106 hb molecules, how many o2 binding sites are available? if the solution of hb is 50% saturated with o2, how many binding sites are occupied by o2? if the hb solution is 23% saturated with o2, how many binding sites are occupied by o2?

Answers

Actually each molecule of Hb can bind four oxygen molecules. So given 1 x 10^6 Hb, so there are 4 x 10^6 binding sites available.

If only 50% of the Hb are bound, so this means that 2 x 10^6 binding sites are occupied by O2. However we must remember that hemoglobin binding is an all-or-nothing phenomenon. Meaning that each molecule of Hb binds four molecules of oxygen or zero at all.

If 23% is saturated, so the number of binding sites occupied is 0.92 x 10^6 binding sites or 9.2 x 10^5 binding sites.

Which intermolecular force of attraction is the strongest between molecules of hcl?

Answers

There are two kinds of forces, or attractions, that operate in a molecule so hydrogen would be the strongest attraction

What is one characteristic of a sample of matter that indicates it is a pure substance?
A) It can be separated using by a physical means, such as filtering.
B) The components in a pure substance do not have to be in definite ratios.
C) If the composition of a sample varies, the sample is a pure substance.
D) If the composition of a sample is fixed, the sample is a pure substance.

Answers

A pure substance may be an element or a compound. It can be described as a substance that cannot be separated merely by physical means. A chemical change must occur. Also, it must have a definite ratio of individual elements if it is a compound to obey the Law of Definite Proportions. Thus, from the choices, the answer would be letter D.

Answer:

The answer is D) on USA Test prep

Explanation:

True or false: if two atoms are in the same group they have the same number of electron shells.

Answers

False: I believe if two atoms are in the same group it would not mean they have the same number of electron shells BUT it would mean that if the two atoms are in the same group they would have the same number of valence electrons.


Hoped this helped :)

Hey Brainly Student! Your answer us true, SUPRISE FACT ABOUT ATOMS!!: When you think of an atom what do you think of? Problily a small circle with afew rings around it right? Well, actually an atom doesnt look like that at all!! An atom looks sort of like the Solar System, and the little rights are like the rotation the planets spin in, also the little star like balls/dots dont actually go around the atom's center, but go in many diffrent places it can be far from the atom, or can be very close! An atom is unpredictable, so there is no correct answer to where the atom's little balls/dots will end up next. I hope this helped, and also hope you liked/loved the Fun-Fact!! Your fellow Brainly user, GalaxyGamingKitty

What is the ionic ratio for a mixture of li and o forming an ionic bond?

Answers

Li2O
So 2:1 ratio, Li:O

What chemical property distinguishes a metal from a nonmetal?

Answers

Final answer:

Electronegativity is the chemical property that distinguishes a metal from a nonmetal. Metals have low electronegativity and tend to lose electrons, while nonmetals have high electronegativity and tend to gain electrons.

Explanation:

The chemical property that distinguishes a metal from a nonmetal is electronegativity. Electronegativity is the tendency of an atom to attract electrons towards itself in a chemical bond. Metals generally have low electronegativity, which means they tend to lose electrons and form positive ions. Nonmetals, on the other hand, have high electronegativity and tend to gain electrons to form negative ions.

For example, consider sodium, a metal, and chlorine, a nonmetal. Sodium has a low electronegativity and readily loses an electron to become a sodium ion with a positive charge. Chlorine, on the other hand, has a high electronegativity and readily gains an electron to become a chloride ion with a negative charge.

Electronegativity is an important property for understanding the behavior and reactivity of elements, as it determines how atoms interact with each other in chemical reactions and the formation of compounds.

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Final answer:

The property that distinguishes a metal from a nonmetal is conductivity.

Explanation:

The chemical property that distinguishes a metal from a nonmetal is conductivity.

Metals are good conductors of heat and electricity, while nonmetals are poor conductors. The ability of metals to conduct electricity is due to the presence of free or delocalized electrons that are able to move easily throughout the metal structure.

In contrast, nonmetals do not have these free electrons and therefore do not conduct electricity well.

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What percent yield of ammonia is produced from 15.0 kg each of h2 and n2, if 13.7 kg of product are recovered? assume the reaction goes to completion?

Answers

First of all, convert given masses to number of moles:

H2 = 15 kg / (2 kg / kmol) = 7.5 kmol

N2 = 15 kg / (28 kg / kmol) = 0.5357 kmol

NH3 = 13.7 kg / (17 kg/ kmol) = 0.8059 kmol

 

The balanced chemical reaction is:

N2 + 3H2  -->  2NH3

 

We can see that N2 is the limiting reactant and for every 1 mole of N2, there are 2 moles of NH3 produced, hence:

 

NH3 theoretically produced = 0.5357 kmol * (2 / 1) = 1.0714 kmol

 

Therefore the percent yield assuming that the reaction is complete is:

 

% yield = (0.8059 kmol / 1.0714 kmol) * 100

% yield = 75.22%

The percent yield of ammonia produced from 15.0 kg each of H₂ and N₂, with 13.7 kg of product recovered, assuming the reaction goes to completion, is approximately 75.7%.

To calculate the percent yield, we first need to determine the theoretical yield, which is the amount of product that would be formed if the reaction went to completion with 100% efficiency.

The balanced chemical equation for the production of ammonia from hydrogen (H₂) and nitrogen (N₂) is:

[tex]\[ N_2(g) + 3H_2(g) \rightarrow 2NH_3(g) \][/tex]

From the stoichiometry of the reaction, 1 mole of N₂ reacts with 3 moles of H₂ to produce 2 moles of NH₃. The molar masses of N₂, H₂, and NH₃ are approximately 28.02 g/mol, 2.016 g/mol, and 17.03 g/mol, respectively.

First, we calculate the moles of N₂ and H₂:

[tex]\[ \text{Moles of } N_2 = \frac{15.0 \times 10^3 \text{ g}}{28.02 \text{ g/mol}} \approx 535.4 \text{ mol} \][/tex]

[tex]\[ \text{Moles of } H_2 = \frac{15.0 \times 10^3 \text{ g}}{2.016 \text{ g/mol}} \approx 7439.7 \text{ mol} \][/tex]

Since the reaction requires 3 moles of H₂ for every mole of N₂, and we have more than enough H₂, N₂ is the limiting reactant. Therefore, the theoretical yield of NH₃ is determined by the amount of N₂:

[tex]\[ \text{Theoretical yield of } NH_3 = 535.4 \text{ mol} \times \frac{2 \text{ mol } NH_3}{1 \text{ mol } N_2} \times \frac{17.03 \text{ g}}{1 \text{ mol } NH_3} \][/tex]

[tex]\[ \text{Theoretical yield of } NH_3 \approx 18037.4 \text{ g} \approx 18.0374 \text{ kg} \][/tex]

Now, we calculate the percent yield using the actual yield (13.7 kg) and the theoretical yield:

[tex]\[ \text{Percent yield} = \left( \frac{\text{Actual yield}}{\text{Theoretical yield}} \right) \times 100\% \][/tex]

[tex]\[ \text{Percent yield} = \left( \frac{13.7 \text{ kg}}{18.0374 \text{ kg}} \right) \times 100\% \approx 75.97\% \][/tex]

using hooke's law F spring equals K triangle X find the force needed to stretch a spring 2cm if it has an elastic constant of 3 N/cm

Answers

Data:

Hooke represented mathematically his theory with the equation:

F = K * x  

On what:

F (elastic force) = ?

K (elastic constant) = 3 N/cm

x (deformation or elongation of the elastic medium) = 2cm

Solving:

[tex]F = K * x[/tex]

[tex]F = 3\:\dfrac{N}{\diagup\!\!\!\!\!\!cm}*2\:\diagup\!\!\!\!\!\!cm[/tex]

[tex]\boxed{\boxed{F = 6N}}\end{array}}\qquad\checkmark[/tex]

Answer:


C. 6 N

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The force needed to stretch the spring 2 cm is 6 N.

Hooke's Law states that the force exerted by a spring is directly proportional to the displacement from its equilibrium position, and this force is expressed as [tex]\( F = k \Delta x \),[/tex]  where [tex]\( F \)[/tex] is the force exerted by the spring, [tex]\( k \)[/tex]  is the spring constant (elastic constant), and [tex]\( \Delta x \)[/tex]  is the displacement from the spring's equilibrium position.

Given:

- The displacement [tex]\( \Delta x \)[/tex] is 2 cm.

- The spring constant [tex]\( k \)[/tex] is 3 N/cm.

Using Hooke's Law, we can calculate the force [tex]\( F \)[/tex] as follows:

[tex]\[ F = k \Delta x \] \[ F = (3 \, \text{N/cm}) \times (2 \, \text{cm}) \] \[ F = 6 \, \text{N} \][/tex]

Therefore, the force needed to stretch the spring 2 cm is 6 N.

What was the problem with Rutherford's model? a. It described a nucleus. c. It could not explain the chemical properties of elements. b. It did not include electrons d. It described quantums.

Answers

What was the problem with Rutherford's model?



c. It could not explain the chemical properties of elements.

What are the first ten elements of the periodic table?

Answers

Hydrogen
helium
lithium
beryllium 
carbon
oxygen 
fluorine 
sodium
magnesium
aluminium 
  

I'm sure these 10 are the first. 

What components did you collect to convert your two molecules of pyruvate to acetyl-coa?

Answers

You need to have NAD+ as a source of oxidation for the pyruvate, as well as a supply of coenzyme A. CO2 is released by the pyruvate as a carboxyl group is removed

Final answer:

In biology, high school students learn about the conversion process of pyruvate into acetyl CoA for the Krebs cycle. The components involved include Pyruvate Dehydrogenase Enzyme, Acetyl CoA, and Oxaloacetate.

Explanation:

In the process of converting three-carbon pyruvate molecules into two-carbon acetyl groups for entry into the Krebs cycle, several components are involved:

Pyruvate Dehydrogenase Enzyme: This enzyme catalyzes the conversion of pyruvate into acetyl Coenzyme A (acetyl CoA) in the mitochondrial matrix.

Acetyl CoA: The two-carbon molecule formed from the conversion of pyruvate, ready to enter the Krebs cycle.

Oxaloacetate: A four-carbon molecule in the Krebs cycle that combines with acetyl CoA to initiate the cycle by forming citrate.

What is the difference between applied and pure chemistry?

Answers

I hope this helps.
have a great day.

What are the charges and relative masses of the three main subatomic particles?

Answers

Proton:
    Charge= +1         Relative Mass=1
Neutron:
    Charge= 0          Relative Mass=1
Electron:
    Charge= -1         Relative Mass= 1/1836(negligible) 
Final answer:

The three main subatomic particles in an atom are protons, neutrons, and electrons. Protons have a mass of 1.0073 amu and a charge of +1, neutrons have a mass of 1.0087 and no charge, and electrons have a mass of 0.00055 amu and a charge of -1. The sum of the particles' masses doesn't equal an atom's actual mass which is termed as a mass defect in nuclear chemistry.

Explanation:

The question refers to the basic properties of three primary subatomic particles found in an atom: protons, neutrons, and electrons. A proton has a mass of 1.0073 atomic mass units (amu) and a charge of +1. A neutron has a slightly higher mass of 1.0087 amu and is neutral, holding no charge. An electron has a much lighter mass of about 0.00055 amu and it carries a charge of -1.

However, it's interesting to note that if you add up the mass of these subatomic particles, the total doesn't equal the actual mass of an atom. For instance, the total mass of six protons, six neutrons, and six electrons is approximately 12.0993 amu, a bit larger than the known 12.00 amu of a carbon atom. The discrepancy is referred to as the mass defect and is explained in detail in the field of nuclear chemistry.

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If samples of silver and lead each had volumes equal to 1cm3 which sample would have the greater mass and what would the difference in the masses be

Answers

Density of Silver = 10.5 g / cm^3

Density of Lead = 11.34 g / cm^3

 

So the masses of each given a volume of 1 cm^3 is:

 

mass of Silver = 10.5 grams

mass of Lead = 11.34 grams

 

So we see that Lead has greater mass for similar volume.

 

The difference is:

11.34 – 10.5 = 0.84 grams

When patterning a shotgun, what is a sufficient percentage of pellets within a 30-inch circle? at least 25% of the load, concentrated in the center at least 35% of the load, with even distribution at least 45% of the load, concentrated in the center at least 55% of the load, with even distribution?

Answers

According to state hunter's education standards, your shotgun pattern within a 30 inch circle should be concentrated in the center at least 55% of the load, with even distribution.

When patterning a shotgun, a sufficient percentage of pellets within a 30-inch circle depends on the specific shooting requirements and preferences. However, a commonly recommended standard is to have at least 55% of the load with an even distribution within the 30-inch circle.

Having  55% of the load with an even distribution within the 30-inch circle ensures a dense and consistent pattern, increasing the chances of hitting the target effectively. It is important to note that individual shooting styles and the intended use of the shotgun may vary, so it is advisable to pattern the shotgun and adjust the load distribution accordingly for optimal performance.

Hence, at least 55% of the load, with even distribution, is prescribed.

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