what is the main function of the mitochondria in a plant cell

Answers

Answer 1

Explanation:

The main function of the mitochondria in a plant cell is to generate energy for the cell through the process of cellular respiration. The mitochondria convert the energy stored in food into a form that the cell can use through the oxidation of glucose and other organic molecules, which produces ATP (adenosine triphosphate) - the energy currency of the cell. Additionally, the mitochondria play a role in regulating the cell's metabolic processes and also in controlling cell death (apoptosis).


Related Questions

To one decimal place, what is the volume of a cube (cm^3) with an edge length of 1.5 cm?

Answers

The cube has a volume of 3.4 cm³. The volume of an object or substance is the amount of space it occupies.

What's volume?

The volume of an object or substance is the amount of space it occupies. It is typically measured in cubic length units, such as cubic meters (m³), cubic centimeters (cm³), or cubic feet (ft³). Depending on the shape of the object, it can be calculated by multiplying the object's length, width, and height.

Calculating quantities like the volume of a container, the amount of a substance in a given space, and the displacement of fluids by solid objects are all based on the concept of volume, which is an essential one in engineering, physics, and mathematics.

A cube's volume is determined by cubing its edge length, so a cube with an edge length of 1.5 cm has the volume:

                       V = (1.5 cm)³

                            = 3.375 cm³

Rounding this to one decimal place gives:

                            V ≈ 3.4 cm³

So the volume of the cube is  3.4 cm³.

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An atom has 15 electrons. Find
i. Number of subshells
ii. Number of orbitals
iii. Number of electrons having azimuthal quantum number = 1

Answers

Answer:

Given that an atom has 15 electrons, here's the solution to each part of the problem:

i. Number of subshells:

The number of subshells can be determined by the electron configuration of the atom. The electron configuration of a neutral atom with 15 electrons is 1s2, 2s2, 2p6, 3s2. Thus, there are 4 subshells: 1s, 2s, 2p, and 3s.

ii. Number of orbitals:

The number of orbitals in each subshell can be determined by the value of the principal quantum number (n) and the angular momentum quantum number (l). The number of orbitals in a subshell is equal to 2l + 1.

For the subshell 1s, l = 0, so there is 1 orbital (2 * 0 + 1 = 1).

For the subshell 2s, l = 0, so there is 1 orbital (2 * 0 + 1 = 1).

For the subshell 2p, l = 1, so there are 3 orbitals (2 * 1 + 1 = 3).

For the subshell 3s, l = 0, so there is 1 orbital (2 * 0 + 1 = 1).

So in total, there are 6 orbitals: 1 for 1s, 1 for 2s, 3 for 2p, and 1 for 3s.

iii. Number of electrons having azimuthal quantum number = 1:

The azimuthal quantum number (m_l) represents the orientation of the orbital in space. The value of m_l can range from -l to +l in integer steps. For p orbitals, l = 1, so the possible values of m_l are -1, 0, and 1.

In this case, we're looking for the number of electrons with m_l = 1. In a full p orbital, there are 2 electrons with m_l = -1, 2 electrons with m_l = 0, and 2 electrons with m_l = 1.

Given that the atom has 15 electrons, it means that 2 of the electrons in the 2p subshell are unpaired (since there are an odd number of electrons). So in this case, there is 1 electron with m_l = 1.

If a gas has a volume of 1.1 L when there are 0.05 mol present, what will be the volume if the new volume of the gas if you use 0.600 mol of gas?

________ L

Answers

If you use 0.600 mol of gas, the gas will have a new volume of 13.2 L.

What is volume?

The amount of space a three-dimensional item takes up is measured by its volume. Usually, it is expressed in terms of liters (L), cubic meters (m3), or cubic feet (ft3).

How do you determine it?

The volume of the gas is directly proportional to the amount of gas (measured in moles) present, presuming constant temperature and pressure. Avogadro's Law describes this connection.

This law allows us to establish a proportion:

Amount1 / Volume1 = Volume2 / Amount2

If Volume2 is the new volume we wish to find, Volume1 is the initial volume, Amount1 is the initial amount of gas (in moles), and Volume2 is the new volume (in moles).

By entering the specified values, we obtain:

Volume2 / 0.600 mol = 1.1 L / 0.05 mol

For Volume 2, we solve as follows:

Volume2 = 1.1 liters / 0.05 mol / 0.600 mol = 13.2 liters

Therefore, if you use 0.600 mol of gas, the new volume of the gas will be 13.2 L.

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What is the concentration of compound A if the absorbance of a solution containing compound A is 0.445? The molar absorptivity of compound A is 13.7 (M-1cm-1) and the light path of a cuvette is 1.00 cm.

Answers

The concentration of compound A is 0.0325 M.

What is Absorbance?

In physics and chemistry, "absorbance" (also known as "optical density") is a measure of how much light is absorbed by a material as it passes through it.  It is expressed as a logarithmic ratio of the intensity of the incident light (I0) to the intensity of the transmitted light (I), typically using the formula A = -log(I/I0). The absorbance of a material depends on its composition and the wavelength of the incident light. Absorbance is commonly used to quantify the concentration of a substance in a solution, using a spectrophotometer or other optical instrument that can measure the amount of light absorbed by the solution at a specific wavelength. The Beer-Lambert law states that there is a linear relationship between absorbance and concentration, making it a useful tool in analytical chemistry and biochemistry.

According to question:

The Beer-Lambert law relates the absorbance of a solution to the concentration of a compound and the path length of the cuvette:

A = εlc

where A is the absorbance, ε is the molar absorptivity, l is the path length, and c is the concentration.

To solve for the concentration, we can rearrange the equation:

c = A / (εl)

Substituting the given values:

c = 0.445 / (13.7 M^-1cm^-1 x 1.00 cm)

c = 0.0325 M

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Forming glycogen, which is a polymer, from glucose monomers is an example of
A. oxidation
B. anabolism
C. catabolism
D. an acid-base reaction
E. an enzyme reaction

Answers

Forming glycogen, which is a polymer, from glucose monomers is an example of anabolism

What is anabolism?

Anabolism is a metabolic process that involves building larger molecules from smaller ones, typically using energy from metabolic pathways. This process is the opposite of catabolism, which is the breakdown of larger molecules into smaller ones.

Anabolic reactions play a crucial role in the growth and maintenance of cells and tissues, as well as in the storage of energy in the form of glycogen, fat, and other compounds.

Anabolic processes are responsible for the synthesis of proteins, nucleic acids, and other complex molecules that make up cells and tissues, and they also play a role in the regulation of various physiological processes, such as growth and development, energy metabolism, and immune function.

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if the researcher wishes to conduct her test at the 0.05 level, what is the critical value of z that she must beat to reject the null hypothesis

Answers

If the researcher obtains a z-score that is greater than 1.645, she can reject the null hypothesis at the 0.05 level of significance and conclude that the alternative hypothesis is supported.

To determine the critical value of z for a one-tailed hypothesis test at the 0.05 significance level (or alpha level), we need to use a z-table or statistical software.

For a one-tailed test with a 0.05 significance level, look for the z-score that corresponds to the 95th percentile of the standard normal distribution. Find the z-score that separates the bottom 95% of the distribution from the top 5%.

Using a z-table, find that z-score for 95th percentile is approximately 1.645.

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The dosage of an asthma drug is 7 mg/kg of body mass. Calculate the dosage, in milligrams, required for a 43 lb child.

Answers

The dosage of an asthma drug is 7 mg/kg of body mass. The required dosage for the 43 lb child is 32.2 mg.

What do you mean by drugs?

Drugs are substances intended for use in the diagnosis, cure, mitigation, treatment, or prevention of disease or to otherwise enhance physical or mental well-being.

An asthma drug is a medication used to treat asthma symptoms. Common types of asthma drugs include bronchodilators, corticosteroids, and anti-inflammatory drugs.

So,

43 lbs = 19.5 kg

7 mg/kg x 19.5 kg = 136.5 mg

136.5 mg = 32.2 mg (rounded to the nearest tenth)

Hence, the required dosage for the 43 lb child is 32.2 mg.

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A student combined two solutions of clear liquids in a test tube, after one minute a solid substance appeared in the test tube. Based on their observations, can the students correctly conclude that a chemical reaction occurred?

Answers

Yes, the student can correctly conclude that a chemical reaction occurred based on their observations of the two clear liquids combining to form a solid substance in the test tube.

If 3.21 mol of a gas occupies 56.2 L at 44°C and 793 torr, 5.29 mol of this gas occupies what volume would it be under these conditions?

Answers

The 132 L  volume would it be under these conditions.

What is volume ?

Space is occupied by every three-dimensional object. Its volume serves as a gauge for this area. The area contained by an object's limits in three-dimensional space is referred to as its volume. Another name for it is an object's capacity.

What is mole ?

A mole is the atom's elementary particle, an ion. The mole of the substance is always related to the Avogadro number. The mole is always associated with the weight or mass of the element or substance. The standard unit of a mole is mol. The mole is a significant factor of the reactant and products to form an equation. A mole calculates the atom, ion, and substance weighs.

Therefore, 132 L  volume would it be under these conditions.

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4. A mass of 2.50 grams of blue, hydrated copper II sulfate is placed in a container and heated to remove all of the water. After heating 1.59 grams of white, anhydrous copper II sulfate remains. What is the formula and name of the original hydrate?

Answers

The formula of the original hydrate is CuSO4 · 5H2O, and its name is copper (II) sulfate pentahydrate.

How to find the formula and name of the original hydrate

First we need to use the mass information provided in the problem and the molar masses of the relevant compounds.

First, we can calculate the mass of water that was present in the original hydrate:

Mass of water = Mass of hydrate - Mass of anhydrous salt

Mass of water = 2.50 g - 1.59 g

Mass of water = 0.91 g

Next, we can calculate the number of moles of anhydrous copper (II) sulfate that remained after heating:

Number of moles of anhydrous salt = Mass of anhydrous salt / Molar mass of anhydrous salt

Molar mass of anhydrous copper (II) sulfate = (1 x 63.55 g/mol) + (1 x 32.06 g/mol) + (4 x 16.00 g/mol) = 159.61 g/mol

Number of moles of anhydrous salt = 1.59 g / 159.61 g/mol

Number of moles of anhydrous salt = 0.00997 mol

We can then calculate the number of moles of copper (II) sulfate that were present in the original hydrate:

Number of moles of copper (II) sulfate = Number of moles of anhydrous salt

Number of moles of copper (II) sulfate = 0.00997 mol

Finally, we can use the mass of copper (II) sulfate and the number of moles of copper (II) sulfate to determine the formula and name of the original hydrate. The formula of the hydrate will be in the form of CuSO4 · xH2O, where x is the number of water molecules per formula unit.

The molar mass of CuSO4 is (1 x 63.55 g/mol) + (1 x 32.06 g/mol) + (4 x 16.00 g/mol) = 159.61 g/mol.

The mass of CuSO4 in the original hydrate is 2.50 g - 0.91 g = 1.59 g.

The number of moles of CuSO4 in the original hydrate is therefore 1.59 g / 159.61 g/mol = 0.00997 mol.

The ratio of moles of water to moles of CuSO4 in the original hydrate is:

x = (moles of water) / (moles of CuSO4)

x = (0.91 g / 18.02 g/mol) / 0.00997 mol

x = 5.06

Therefore, the formula of the original hydrate is CuSO4 · 5H2O, and its name is copper (II) sulfate pentahydrate.

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How many moles in 2.6 grams of Argon?

Answers

0.065 moles are there in 2.6 grams of Argon.

What is moles?

Moles, in chemistry, are a measure of the amount of a substance. One mole is equal to 6.022 x 10^23 particles or molecules of that substance. This number is known as Avogadro's number. Moles are used to measure the amount of a substance because it is easier to work with than counting individual particles or molecules. For example, it is easier to work with the number of moles of a substance than to count the individual atoms, molecules, or ions.

No. of moles =given mass/molar mass

Or,

n=w/m ______ (1)

So in this question we are given the value of w= 2.6 g

Now, the molar mass of argon is 39.948 g/mol

m=39.948 g/mol

So, substituting these values in equation (1) we get,

n= 2.6/ 39.948 = 0.065 mol

Therefore, 0.065 moles are in 2.6 grams of Argon.

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Which best describes a chemical reaction that follows the law of conservation of matter
A. The reactants have the same mass as the product
B. The reactants have the same density as the product
C. The products conserves all physical properties of the reactant
D. The products conserve all chemical properties of the reactants

Answers

Answer:

A

Explanation:

The Law of Conservation of Matter says that the amount of matter (mass) stays the same, even when matter changes its form.

In the equation:
Na₂CO3 + 2HCI → 2NaCl + H₂O + CO₂
How many moles of HCI are required to produce 15.91 g of CO₂

Answers

Answer:

0.7244 moles of HCI

Explanation:

To solve for the number of moles of HCI required to produce 15.91 g of CO₂, we need to use the balanced equation of the reaction:

Na₂CO₃ + 2HCI → 2NaCl + H₂O + CO₂

From the equation, we can see that 1 mole of Na₂CO₃ reacts with 2 moles of HCI to produce 1 mole of CO₂.

Since the desired amount of CO₂ is 15.91 g, we can convert it to moles:

15.91 g / 44.01 g/mol = 0.3622 mol CO₂

And since 1 mole of Na₂CO₃ reacts with 2 moles of HCI to produce 1 mole of CO₂, then 0.3622 mol CO₂ is produced from 0.3622 * 2 = 0.7244 moles of HCI.

Therefore, 0.7244 moles of HCI are required to produce 15.91 g of CO₂.

133/53l +0/-1e + ? answer

Answers

A nuclear reaction is indeed a process in nuclear physics including nuclear chemistry. Therefore, the reaction is ¹³³I₅₃  +   ⁰e₋ [tex]\rightarrow[/tex] ¹³³Te₅₂.

What is nuclear reaction?

A nuclear reaction is indeed a process in nuclear physics including nuclear chemistry wherein two nuclei, or perhaps a nucleus as well as an external quantum particle, collide to form one or even more new nuclides.

As a result, a nuclear reaction should result in the transformation with at least one nuclide. If a nuclear interacts with some other nucleus as well as particle and then separates without affecting the structure of any nuclide, this is referred to be a nucleotide interaction.

¹³³I₅₃  +   ⁰e₋ [tex]\rightarrow[/tex] ¹³³Te₅₂

Therefore, the reaction is ¹³³I₅₃  +   ⁰e₋ [tex]\rightarrow[/tex] ¹³³Te₅₂.

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The wavelength of energy required to photoionize X from its 3rd excited state is Y nm. Pick the sets of X and Y that are correct.

A: X: Li2+, Y: 163nm
B: X: Be3+, Y: 163nm
C: X: Li2+, Y: 91.6nm
D: X: Be3+, Y: 91.6nm

Answers

Answer:

D: X: Be3+, Y: 91.6nm.

Explanation:

The energy required to photoionize an ion from its excited state depends on the electron configuration and energy levels of the ion. Option D corresponds to the ionization energy for Be3+ from its 3rd excited state, which is known to be 91.6 nm. Options A and C correspond to incorrect ionization energies for Li2+ and cannot be the correct answer.

ALLEN

What is the net ionic equation for the following reaction?
H2O2 + 2KI + 2HCl → 2H2O + I2 + 2KCl

Answers

H[tex]_2[/tex]O[tex]_2[/tex] + 2ICl [tex]\rightarrow[/tex] I[tex]_2[/tex] + 2OH⁻ is the net ionic equation for the given reaction.  The net ionic equation is frequently employed in acid-base neutralization, double displacement, and redox processes.

What is net ionic equation?

The net ionic equation is indeed a chemical equation for something like a reaction that only includes the species that are involved in the reaction. The net ionic equation is frequently employed in acid-base neutralization, double displacement, and redox processes.

In those other terms, the net ionic includes elements to water-based processes involving strong electrolytes.

H[tex]_2[/tex]O[tex]_2[/tex] + 2KI + 2HCl → 2H[tex]_2[/tex]O + I[tex]_2[/tex]+ 2KCl

H[tex]_2[/tex]O[tex]_2[/tex] + 2K⁺+2I⁻ + 2H⁺ + 2Cl⁻ → 2H⁺ + 2OH⁻ + I[tex]_2[/tex]+ 2K⁺ + 2Cl⁻

H[tex]_2[/tex]O[tex]_2[/tex] + 2ICl [tex]\rightarrow[/tex] I[tex]_2[/tex] + 2OH⁻

Therefore, H[tex]_2[/tex]O[tex]_2[/tex] + 2ICl [tex]\rightarrow[/tex] I[tex]_2[/tex] + 2OH⁻ is the net ionic equation for the given reaction.

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A 50.0 mL sample of gas at 20.0 atm of pressure is compressed to 40.0 atm of pressure at constant temperature. What is the new volume? (4 points) 0.0100 mL 0.325 mL 25.0 mL 100. mL

Answers

The new volume of the gas is 25.0 mL, which is half of the original volume of 50.0 mL.

What is gas?

Gas is a state of matter that is composed of particles with no definite shape or volume. It is composed of molecules that are in constant motion, colliding with each other and the walls of the container in which they reside. Gas can exist in either a gaseous or liquid state, depending on the temperature and pressure.

The change in volume of a gas is directly proportional to the change in pressure if the temperature is kept constant. This means that if the pressure is doubled, the volume of the gas is halved.
This means that if the pressure of the gas is increased from 20.0 atm to 40.0 atm, the volume of the gas is halved.
This means that the new volume of the gas is 25.0 mL, which is half of the original volume of 50.0 mL.

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Answer:

25.0 mL

Explanation:

we will use Boyle's law for this example. P1V1 = P2V2

p1 = 20.0

v1 = 50.0

p2 = 40.0

we are solving for V2

[tex]v2 = \frac{50 x 20}{40}[/tex]

= 25

A reaction is occurring in a test tube. How is heat transmitted to the surroundings?.

Answers

Heat can be transmitted from a test tube to the surroundings by several different mechanisms, including conduction, convection, and radiation.

Conduction is the transfer of heat through a material, from a region of higher temperature to a region of lower temperature. In the case of a test tube, heat can be conducted through the glass walls and into the surrounding air or other materials that the test tube is in contact with.
Convection is the transfer of heat through the movement of fluids or gases. In the case of a test tube, as the contents of the test tube heat up, convection currents can be set up within the liquid or gas, which can transfer heat to the surrounding air or other materials.

Radiation is the transfer of heat through electromagnetic waves, such as infrared radiation. As the test tube and its contents heat up, they will emit some amount of infrared radiation, which can be absorbed by the surrounding air or other materials and contribute to the transfer of heat to the surroundings.
In general, the mechanism of heat transfer that dominates will depend on a variety of factors, such as the specific materials involved, the temperature difference between the test tube and the surroundings, and the rate of heating.

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Belief that the color red is a hopeful color or that it is associated with death are examples of:
Group of answer choices

various saturations.

cultural contexts.

a color model.

various palettes

Answers

Belief that the color red is a hopeful color or that it is associated with death are examples of cultural contexts. That is option B.

What is cultural contexts?

Cultural contexts can be defined as the belief, ideas and norms that are shared by a group of people which is usually passed from generation to generation.

There are usually four aspects of cultural context are setting, lifestyle, purpose, and falling action.

The belief that colour red is associated with death is related to culture because red is associated with the colour of blood.

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Given the following compounds, predict what the reaction products would be?

Ie: potassium sulfate and barium nitrate

K2SO4 + Ba(NO3)2 KNO3 + BaSO4 (not balanced) BaSO4 is a precipitate

Lithium chloride and silver hydroxide


Sodium iodide and silver nitrate



Calcium hydroxide and potassium carbonate

Answers

In the example process, potassium hydroxide and sulfuric acid combine to form potassium sulphate, a salt, and water. The reaction therefore  reaction. An acid-base reaction occurs with potassium hydroxide.

How does K2SO4 Ga NO3 2 2kno3 Barium sulfate react?

BaSO4(s) + 2 KNO3 = K2SO4(aq) + Ba(NO3)2(aq) (aq) This equation depicts a metathesis process, also known as the double displacing (replacement) reaction, where the reactant ions swap positions to create new products.

Does a precipitate between Ba Nh4-n 2 and K2SO4 form?

Potassium sulphate (K2SO4) and barium nitrate (Ba(NO3)2) combine to form barium sulphate (Simple object access protocol) and potassium (KNO3). This double displacement reaction results in the formation of a precipitate.

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How would you calculate the molar mass of a compound?

Add together all the atomic masses of the component atoms to determine the molar mass of a compound containing numerous atoms.

What is the molar mass of Ca(NO3)2?

Answers

Add together all the atomic masses of the individual atoms to determine the molarity of the a compound with numerous atoms. Ca(NO3)2 has a molar mass of 164.1 g/mol.

What is an element's molar mass?

The density in grams with one molar (6.02 x 1023 molecules) of a metal is its molar mass. Therefore, in the majority of circumstances, all you need to do is look at an element's atomic mass (atoms) on the periodical table to determine its molar mass. Keep in mind that it is the number that is listed beneath the element's name and symbol.

How is a substance's molar mass determined *?

The mass in kilograms of one mole of an substance is its molar mass. As this video demonstrates the computed molar mass can then be used to translate between mass and the quantity of moles in the substance.

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Each of the following are either a weak acid or a weak base that will partially ionize to form 2 ions. Complete the ionization equation for each.
HCN + H2O ⇌
HF + H2O ⇌
NH4OH + H2O ⇌
C5H5N + H2O ⇌

Answers

A weak acid or a weak base is a substance that partially ionizes to form two ions in aqueous solution.

What exactly do you mean by  aqueous solution?

An aqueous solution is basically a solution in which the solvent is water. Aqueous solutions can contain salts, acids, bases and other compounds. These solutions are often used in chemistry, biology and medicine for a variety of purposes.

HCN + H2O ⇌ H+ + CN- (weak acid)

HF + H2O ⇌ H+ + F- (weak acid)

NH4OH + H2O ⇌ NH4+ + OH- (weak base)

C5H5N + H2O ⇌ H+ + C5H5N- (weak acid)

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Build the molecular models of the compounds listed below and draw the Fischer projection for each of them. In the Fischer projection when the compound has more than one stereogenic center the longest carbon chain is drawn from top to bottom (vertical), with the functional group carbon at the top (top). Identify the pairs of molecules that represent enantiomers and diastereomers and identify each stereogenic center by writing R or S next to it.

Answers

The R or S designation is assigned to each stereogenic center based on the priority of the substituents attached to that carbon atom.

Enantiomers are pairs of molecules that are non-superimposable mirror images of each other. Enantiomers have the same chemical and physical properties, except for their interaction with polarized light. Enantiomers have opposite configurations at every stereogenic center, so they have opposite R or S designations.

Diastereomers, on the other hand, are stereoisomers that are not mirror images of each other. Diastereomers have different physical and chemical properties, and they have different configurations at one or more stereogenic centers. Unlike enantiomers, diastereomers do not have opposite R or S designations.

To identify stereogenic centers in a molecule, one needs to determine the number of different substituents attached to a carbon atom. The R or S designation is assigned to each stereogenic center based on the priority of the substituents attached to that carbon atom.

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To what volume should you dilute 0.20L of a 15.0M NaOH solution to obtain a 3.00M NaOH?​

Answers

Answer: 1 L

Explanation: M1V1 = M2V2

Given :

M1 =15  M

V1=0.2 L

M2=3  M

V 2= ?

15 × 0.2 = 3V2

​Thus, V 2=1  L

Metallic bond and intermolecular force

Answers

Metallic Bonds are bond formed between two metals and is considered an Intramolecular force.

Intermolecular forces include London Dispersion, Dipole-Dipole bonding and hydrogen bonding.

How many moles of nitrogen gas are produced when 36. 0 g of NH4NO3 reacts?

Answers

[tex]0.225 moles[/tex] of nitrogen gas are produced when[tex]36.0 g[/tex] of NH4NO3 reacts.

The reaction for the decomposition of ammonia nitrate (NH4NO3) is given by:

NH4NO3 → N2 + 2H2O

The number of moles of nitrogen gas (N2) produced when 36.0 g of NH4NO3 reacts can be determined using the following steps:

1. Calculate the molar mass of NH4NO3.

[tex]Molar mass of NH4NO3 = (1 *14.007 g/mol) + (4 *1.008 g/mol) + (3 * 14.007 g/mol) \\ = 80.042 g/mol[/tex]

2. Calculate the number of moles of NH4NO3 present in the given mass.

Number of moles =[tex]\farc{Mass}{Molar mass}\\ = \frac{36.0 g}{80.042 g/mol}\\ = 0.45 moles[/tex]

3. Calculate the number of moles of nitrogen gas produced.

Number of moles of N2 produced = [tex]\frac{0.45 moles}{2 }= 0.225 moles[/tex]

Therefore,36.0 g of NH4NO3 react with oxygen to generate g of nitrogen gas  [tex]0.225 moles[/tex].

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How many moles of anions are in 34.8 g of AlF3 A l F 3 ?

Answers

There are 0.610 moles of anion  which are present in 34.8 g of aluminium trifluoride  compound or AlF₃.

What is a mole?

Mole is defined as the unit of amount of substance . It is the quantity which measures amount of substance of how many elementary particles are present in a  that given substance.

It is defined as exactly 6.022×10²³ elementary entities. The elementary entity can be a molecule, atom ion depending on which  type of substance is present. Amount of elementary entities which are  present  in a mole is called as Avogadro's number.

Number of moles of anion =mass/molar mass= 34.8/57= 0.610

Thus, there  are 0.610 moles of anion present in 34.8 g of aluminium trifluoride or AlF₃.

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A 33.41 g piece of copper at 95.6 Celsius was placed in a sample of water at 21.65 Celsius. The temperature of the water increased to 22.87 Celsius. To what mass of water was the cooper added? The specific heat of copper is 0.385 J/g C

Answers

Answer:

43.63 g of water.

Explanation:

We can use the equation for heat transfer to solve for the mass of water:

q = cmΔT

where

q = heat transfer

c = specific heat

m = mass

ΔT = change in temperature

The heat transfer from the copper to the water can be expressed as:

q = cmΔT

q = (33.41 g)(0.385 J/g°C)(95.6°C - 21.65°C)

And the heat transfer caused a change in temperature in the water, which can be expressed as:

q = mLΔT

q = (m)(4.18 J/g°C)(ΔT)

Equating the two expressions for heat transfer, we can solve for the mass of water:

(33.41 g)(0.385 J/g°C)(95.6°C - 21.65°C) = (m)(4.18 J/g°C)(22.87°C - 21.65°C)

m = (33.41 g)(0.385 J/g°C)(95.6°C - 21.65°C) / (4.18 J/g°C)(22.87°C - 21.65°C)

m = 43.63 g

So the copper was added to 43.63 g of water.

Given 6. 000 moles of aluminum (al ) , how many grams of aluminum oxide (al 2o 3) will be produced?.

Answers

[tex]1.223*10^3g[/tex] of   aluminum oxide (al 2o 3) will be produced when 6. 000 moles of aluminum (al ) is present.

Aluminum oxide (Al2O3) is formed when Aluminum (Al) reacts with Oxygen (O2). The equation for this reaction is:

2Al + 3O2 → Al2O3

We can thus calculate the amount of Al2O3 produced in this reaction. Since there are 6. 000 moles of Al, we can calculate the number of moles of Al2O3 produced using the equation above.

[tex]2 * 6. 000 moles Al = 12. 000 moles Al2O3[/tex]

We can then convert the moles of Al2O3 to grams using the molar mass of Al2O3, which is 101.96 g/mol.

[tex]12. 000 moles Al2O3 * 101.96 g/mol = 1.223 * 10^{3} g Al2O3[/tex]

Therefore, [tex]1.223*10^3g[/tex] of   aluminum oxide (al 2o 3) will be produced when 6. 000 moles of aluminum (al ) is present.

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Hydrogen iodide decomposes according to the equation shown below. The second order rate constant for this reaction is 1.6 x 10-3 M-1*s-1 at 700 oC. If the initial concentration of HI is 5.1 x 10-2 M, how many seconds will it take for the concentration to be reduced to 4.9 x 10-3 M at 700 oC?

Answers

This equation describes how hydrogen iodide breaks down. At 700 degrees Celsius, the reaction's second order constant is 1.6 x 10-3 L mol-1 s-1. if the first

How does hydrogen fuel work?

Energy created from other sources can be transported, transported, and stored using hydrogen. Many processes can be used today to manufacture hydrogen fuel. Nowadays, electrolysis and natural gas reforming, a thermal process, are the two most used techniques. Solar-powered and biological processes are some additional techniques.

What is an atom of hydrogen?

An atom of the element hydrogen is known as a hydrogen atom. A single positively charged neutron and a single negative charge electron are present in the electrically neutral atom, and they are both held to the nucleus by the Electrical charges. Around 75% of the universe's total baryonic mass is made up of atomic hydrogen.

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