How do the funtions of organelles help keep a cell functioning and could it do its function just as wellif an organell was missing or damage ?

Answers

Answer 1

The functions of organelles help to keep a cell functioning because they generate different products such as proteins in mitochondria required to maintain cell homeostasis.

What are the functions of cell organelles?

Cell organelles function as specialized structures within our cells that have specific functions. They are like tiny organs that work together to keep our cells functioning properly such as the nucleus, mitochondria, endoplasmic reticulum, Golgi apparatus, and peroxisomes.

Therefore, with this data, we can see that organelles aid in the upkeep of a cell by creating various substances, like the proteins made in mitochondria, that are vital for cell equilibrium.

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Related Questions

what is the standard temperature and pressure (stp) as defined by the international union of pure and applied chemistry (iupac)?

Answers

Answer:

Temperature: 0 degrees Celsius (273.15 degrees Kelvin or 32 degrees Fahrenheit) Pressure: 1 atm (101.325 kilopascal or 760 Torr).

Explanation:

Pls help ty:)! What are dipole-dipole interactions?

Answers

Answer:

Explanation:

Dipole-dipole forces or interactions exist between polar molecules. Some regions on a molecule have more electrons in a certain region, while others have fewer electrons in certain regions.

Atoms that are more electronegative than the rest of the molecule pull electrons closer. This creates a partial positive charge where electrons are not as close to one atom, and a partial negative charge where the electrons are closer to the other atom in the molecule. Water is a classic example of a polar molecule. Oxygen is quite electronegative so it pulls the shared electrons closer to itself--this creates a partial negative charge on oxygen. Hydrogen is not that electronegative so it does not pull the electrons close to itself--this creates a partial positive charge.

A dipole is created. The positive end of the dipole attracts the negative end of another molecule with a dipole.

Part B
Now observe the properties of the liquid in the container labeled unknown. Record the properties of the unknown
substance in the table.

Answers

Based on the observed properties of water and rubbing alcohol, the properties of the unknown substance are as follows;

It is colorless and dissolves readily in water but sparingly in rubbing alcohol.the substance is a polar substance

What are the properties of alcohol and water?

The properties of water are as follows:

water is a colorless, odorless, and tasteless liquidWater can dissolve saltwater is a polar liquid

The properties of rubbing alcohol are as follows:

rubbing alcohol is a colorless liquid with a sharp musty smellSalt dissolves sparingly in alcohol because it ionizes sparingly compared to water.rubbing alcohol is a non-polar liquid

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Complete question:

Part A

Water and rubbing alcohol have distinct properties and will react differently with the same substance. Observe these properties of water and rubbing alcohol: color, smell, and ability to dissolve the salt. Record your observations in the table. To observe the solubility of salt in the liquid, put a one-quarter teaspoon of salt into each container and stir. You may weigh out 1.5 g of salt on the electronic balance if you don’t have a one-quarter teaspoon measure.

Part B

Now observe the properties of the liquid in the container labeled unknown. Record the properties of the unknown substance in the table.

a compound has a pka of 7.4. what is the ph of the resulting solution after we add 30 ml of 1.0 m hydrochloric acid to 100 ml of a 1.0 m solution of this compound at ph 8.0

Answers

Resulting pH = 7.4

Using Henderson Hasselbalch equation,

Since pH = pKa + log([A]/[HA])

8 = 7.4 + log([A]/[HA]), hence [A]/[HA] = 4   .....(i)

0.1 L = 0.1 mole (moles/L), hence [A] +[HA] = 0.1   .......(ii)

using eqn (i) and (ii), [A] = 0.08 moles and [HA] = 0.02 moles

After adding 30 ml of HCL, 0.03 L = 0.03 moles (mole/L)

Since [A] reduces and [HA] increases,

[A] = 0.08 - 0.03 = 0.05 and [HA] = 0.02 + 0.03 = 0.05

So new pH of solution becomes,

pH = 7.4 + log(0.05/0.05) = 7.4

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Aluminum + hydrochloride acid yield aluminum chloride + hydrogen gas

What’s the balanced equation?

Answers

Aluminum + hydrochloride acid yield aluminum chloride + hydrogen gas therefore the balanced equation is 2Al+6HCl→2AlCl₃+3H₂.

What is a Chemical reaction?

This is referred to as the process in which one or more substances which are called the reactants, are converted to one or more different substances known as the products and it involves the exchange of electrons between elements.

In this scenario, when Aluminum and hydrochloride acid reacts they form aluminum chloride and hydrogen gas which is the product and the equation can be seen above.

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What will most likely happen when two bromine atoms bond together?
The atoms will become less stable.
An ionic bond will hold them together.
A covalent bond will hold them together.
A metallic bond will hold them together.

Answers

A covalent bond will hold them together

What type of narrow, curved rock formation forms when a sea cave is continually eroded?

Answers

Sea Arches are formed when a cave continues to be eroded and expanded until it cuts through a headland.

What is produced when a sea cave is eroded continually?

A sea cave forms when a sea arch pursues to be eroded and widened until the rock becomes too weak to carry the roof of the sea cave and collapses into the sea. Caves are devised by the dissolution of limestone. Rainwater collects carbon dioxide from the air and as it percolates through the soil, which rotates into a weak acid.

Sea caves occur on almost every precipice headland or coast where the waves break straight on a rock cliff and are formed Sea caves by mechanical erosion rather than the chemical solution procedure that is responsible for the majority of inland caves.

So we can conclude that Sea caves or littoral caves are formed fundamentally from erosion caused by waves

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When 2. 00 mol of SO2Cl2 is placed in a 2. 00-L flask at 303 K, 56% of the SO2Cl2 decomposes to SO2 and Cl2. Calculate Kc for this reaction at this temperature

Answers

At 303 K, 56% of the SO2Cl2 in a 2.00 mol flask of SO2Cl2 dissolves into SO2 and Cl2. At this temperature of 303 K, the Kc for this reaction is 1.58.

The decomposition of SO2Cl2 to SO2 and Cl2 is a reversible reaction. The equation for the reaction is:

SO2Cl2(g) <==> SO2(g) + Cl2(g)

We know that 56% of the SO2Cl2 has decomposed, so we can assume that the equilibrium constant, Kc, is less than 1. To calculate Kc, we will use the equilibrium concentrations of the reactants and products.

We know that the initial concentration of SO2Cl2 is 2.00 mol/2.00 L = 1.00 M, and that 56% of the SO2Cl2 has decomposed, so the equilibrium concentration of SO2Cl2 is 1.00 M * 0.44 = 0.44 M

The equilibrium concentrations of SO2 and Cl2 can be calculated by assuming that they are produced in equal amounts, so the equilibrium concentration of each will be 0.56 M (0.56 mol/L)

Kc is defined as the concentration of products raised to the power of their stoichiometric coefficients, divided by the concentration of reactants raised to the power of their stoichiometric coefficients.

Kc = [SO2][Cl2] / [SO2Cl2]^2

Kc = (0.56 M)^2 / (0.44 M) = 1.58

So the Kc for this reaction at 303 K is 1.58

It's worth noting that equilibrium constant, Kc, is not a constant but a function of temperature, concentration and pressure. The value of Kc for a reaction is different at different temperatures, pressures, etc.

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if the pipe is filled with helium at the same temperature, what fundamental frequency fhe will it produce? take the molar mass of air to be 28.8 g/mol and the molar mass of helium to be 4.00 g/mol . express your answer in hertz.

Answers

The fundamental frequency of sound in helium if the pipe is filled with it at the same temperature will be 766.13 Hertz.

A certain organ pipe which is open at both the ends, produces a fundamental frequency equal to 285 Hz in air. It can be considered that the length of the pipe is L. Its wavelength will be represented as:

λ = 2L -- (eq 1)

The frequency of sound will be given as

f = v / λ, where f is the frequency, v is the velocity of sound in air and λ is the wavelength. Replacing the value of λ from equation 1.

285 = 331.29/ 2L

L = 0.5812 m

Let us assume that v' is the velocity of sound in helium. Then,

v/v' = [tex]\sqrt{m'}[/tex]/[tex]\sqrt{m}[/tex] , where, m is the molar mass of air and m' is the molar mass of helium.

v' = 331.29/ 0.372

v' = 890.56 m/s

To calculate the fundamental frequency of sound is helium,

f' = v' / λ

f' = 890.56 / 2 × 0.5812

f' = 766.13 hertz

So, the fundamental frequency of sound is helium is 766.13 hertz.

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If purple flowers are dominant in a plant and white flowers are recessive in that plant, then when purple-flowered plants with two dominant genes are mated with white-flowered plants with two recessive genes, the first generation of offspring should have
A
100% white flowers

B
75% purple flowers and 25% white flowers

C
50% purple flowers and 50% white flowers

D
100% purple flowers

Answers

If purple flowers are dominant in a plant and white flowers are recessive in that plant, then when purple-flowered plants with two dominant genes are mated with white-flowered plants with two recessive genes, the first generation of offspring should have 100% purple flowers. Therefore, option D is correct.

What is dominant gene?

In genetics, dominance occurs when one variant of a gene on a chromosome masks or overrides the effect of another variant of the same gene on the opposite copy of the chromosome.

The first variant is called dominant, while the second is called recessive. When there is dominance, it is always expressed. When no dominant genes are present, recessive genes are expressed.

Purple-flowered plants with two dominant genes should produce 100% purple flowers in the first generation when mated with white-flowered plants with two recessive genes.

The attached Punnett square shows the above combination.

Thus, option D is correct.

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Bella is writing a research paper on ocean currents. Which two sources should she consult?

Answers

Articles published by universities or  government agencies. 3. Article published in 2015 and updated a research week ago.

Which two sources should she consult?When it comes to digging deeper into scientific research, books and scientific journals are usually your best bet. Academic journals are often the best place to find reliable and authoritative content and are considered one of the most authoritative sources to use when writing academic papers.Most studies use both primary and secondary sources. They complement each other and help  build a compelling argument. Primary sources are more reliable as evidence, while secondary sources show how your research relates to existing research.  Books provide more detailed information  than encyclopedias or websites. It is written by authors selected by publishers for their expertise and is therefore a reliable source of information. Information is also checked by other experts and editors before publication.

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marble (calcium carbonate) reacts with hydrochloric acid solution to form calcium chloride solution, water, and carbon dioxide. find the percent yield of carbon dioxide if 126.1 g is collected when 372.7 g of marble reacts. hint: write a balanced chemical equation.

Answers

The percent yield of carbon dioxide if 126.1 g is collected when 372.7 g of marble reacts is 76.9 %

The reaction is given as :

CaCO₃  +   2HCl   ----->   CaCl₂  +  H₂O  +   CO₂

The mass of carbon dioxide = 126.1 g

The mass of the calcium carbonate = 372.7 g

The moles of calcium carbonate  = mass / molar mass

                                                 = 372.7 / 100

                                                 = 3.727 mol

1 mole of CaCO₃ produces 1 mole CO₂

Moles CO₂ = 3.727 mol

The mass of CO₂ = moles × molar mass

                             =  3.727 × 44

                             = 163.98 g

The percent yield of carbon dioxide = ( 126.1 / 163.98 ) × 100 %

                                                             = 76.9 %

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A compound called calcium nitrate tetrahydrate is analyzed and determined to contain 0.44 moles of calcium nitrate. How many moles of water does this compound contain?

Answers

Calcium nitrate tetrahydrate is written as Ca(NO3)2.4H2O, which means that it contains one mole of calcium nitrate (Ca(NO3)2) and four moles of water (4H2O).

Since we know that the compound contains 0.44 moles of calcium nitrate, we can use the coefficient of the water in the chemical formula to find out how many moles of water the compound contains. The coefficient of water in the chemical formula is 4, so we can use it to calculate the number of moles of water in the compound:

0.44 moles of calcium nitrate x 4 moles of water/1 mole of calcium nitrate = 1.76 moles of water.

So the compound contains 1.76 moles of water.

an acid that has a high percentage ionization in solution is called a acid, while an acid that has a low percentage ionization is called a acid. acid strength is a measure of how readily a compound donates a(n) .

Answers



Acid the tendency of an acid to donate a proton. Thus, the more readily a compound donates a proton, the stronger the acid.

Acids and bases are measured using the pH scale.The relative strength of an acidacidacid can be predicted based on its chemical structure. In general, an acid is stronger when the H–A bond is more polar. Acidity is also greater when the H–A bond is weaker and when the conjugate base, A⁻, is more stable.acids are defined as being able to donate protons in the form of hydrogen ions; whereas bases are defined as being able to accept protons.This took the Arrhenius definition one step further as water is no longer required to be present in the solution for acid and base reactions to occur.

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Discuss the basic oxygen method (BOD) for manufacture of steel. Compare the process with open hearth.
(Compare)

Answers

The BOF method can also get rid of other pollutants in addition to carbon.

What is basic open hearth process?

The open-hearth furnace (OHF) transforms a charge of scrap and liquid blast-furnace iron into liquid steel using the heat produced by the combustion of gaseous or liquid fuels. By blowing pure oxygen into a bath of molten blast-furnace iron and scrap, the basic oxygen process (BOP) creates steel.

Oxygen and a metal react to generate metallic oxide. Oxygen and several metals interact to generate metal oxides. Sodium and potassium are soft metals that are simple to cut, exposing a surface that is initially shiny but quickly becomes dull.

In addition to carbon, additional contaminants can also be eliminated using the BOF technique. Sulfur (S) and phosphorus (P) are two components with significant roles in the production and refinement of steel (P).

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Strontium-90 has a half-life of 28.8 years. If you start with a 10-gram sample of strontium-90, how much will be left after 115.2 years? Justify your answer.

Answers

It would be at least 210.3 years

compare the three states of matter in terms of their shape and volume. explain in your own words why a gas takes both the shape and volume of its container, compared to solids and liquids?

Answers

Solids have a fixed volume as well as a fixed shape. Liquids have a fixed volume but liquids do not have a fixed shape. Gases do not have a fixed volume or a fixed shape and take up the shape and volume of the container they are placed in due to the weak intermolecular forces of attraction.

Among the three states of matter, solids have the most rigid structure. This is because solids have the strongest intermolecular forces of attraction amongst them and have a fixed shape as well as volume.

Among solids, liquids and gases, liquids have intermediate forces of attraction and hence they have a fixed volume but not a fixed structure and hence they take the shape of the container in which they are kept.

Particles of gases have the weakest intermolecular forces of attraction and hence they have no fixed volume or fixed shape and hence gases take up both the shape as well as the volume of the container they are kept in.

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at what point in the citric acid cycle do the methyl carbon from acetyl-coa and the carbonyl carbon from oxaloacetate become chemically equivalent?

Answers

The methyl carbon from acetyl-CoA and the carbonyl carbon from oxaloacetate become chemically equivalent at the point of the citric acid cycle where the enzyme citrate synthase catalyzes the condensation of acetyl-CoA and oxaloacetate to form citrate.

The citric acid cycle, also known as the Krebs cycle, is a series of chemical reactions that occurs in the mitochondria of cells. One of the key steps in this cycle is the condensation of acetyl-CoA and oxaloacetate to form citrate. This reaction is catalyzed by the enzyme citrate synthase. During this reaction, the carbonyl carbon of oxaloacetate and the methyl carbon of acetyl-CoA are chemically equivalent in the molecule of citrate. This reaction marks the starting point of citric acid cycle and forms the first intermediate of the citric acid cycle.

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Chelsea went camping for one week. Each night she saw the moon and noticed that the moon seemed to be getting larger. Which kind of moon was she
seeing?
O Full moon
O Waning Moon
O Waxing Moon

Answers

The type of moon that Chelsea was seeing is full moon (option A).

What is the moon?

The moon is any natural satellite of a planet. It is defined to be a celestial body that makes an orbit around a planet, including the eight major planets, dwarf planets, and minor planets.

The eight phases of the moon are as follows;

new moonwaxing crescentfirst quarterwaxing gibbousfull moonwaning gibbousthird quarterwaning crescent

According to this question, Chelsea went camping for one week. Each night she saw the moon and noticed that the moon seemed to be getting larger.

It can be said that Chelsea is seeing the full moon.

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Put the following elements into 5 pairs of elements that have similar chemical reactivity : F,Sr,P,Ca,O,Br,Rb,Sb,Li,S

please help I'm failing

Answers

The 5 pairs of the elements that have the similar chemical reactivity are :F and Br, Sr and Ca, P and Sb, O and S, Li and Rb.

1) The Fluorine F and Bromine Br are elements are from the halogen family. They are highly electronegative and exhibit similar reactivity.

2) Sr and Ca are belongs to alkaline earth metals. They are found in group II. Their oxidation state is +2.

3) P and Sb are belongs to the group 5 of the periodic table and they have the some similar chemical reactivity.

4) O and S are both nonmetals and they can be found in the group 6 with -2 oxidation state.

5) Li and Rb are belongs to the alkali metals, they form ionic bonds with the halogen family.

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Is copper (II) chloride an element, a heterogeneous mixture, a compound, or a homogeneous mixture?

Select one:
a. Element.
b. Heterogeneous mixture.
c. Compound.
d. Homogeneous mixture.

Answers

D homogeneous mixture

Answer: B a heterogeneous mixture

Explanation:

Given The Following Data, Calculate ΔrH∘ΔrH∘ For The Reaction: N2O(G)NO2(G)⟶3NO(G)N2O(G)NO2(G)⟶3NO(G)

Answers

Give names to equations 1, 2, and 3.Equation 3.2 N2O (g) N2 (g) + 0.5 O2 (g) H = -81.6 kJEquation 2: NO (g) + 1/2 O2 (g) + (1/2) NO2 (g) = +56.55 kJ

Equation 1 states that N2 (g), O2 (g), 2NO (g), and H = +180.7 kJ.

See Equation of state for cosmological applications of this (cosmology). See Optimum control General technique for further information on how this idea is used in optimal control theory.An equation of state is a thermodynamic formula used in physics, chemistry, andthermodynamics to describe the state of matter under a particular set of physical parameters, such as pressure, volume, temperature, or internal energy.[1] The Helmholtz free energy is used to formulate the majority of current equations of state. The characteristics of pure substances and mixtures in their liquid, gaseous, and solid forms as well as the state of matter

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a sample of bismuth weighing 0.687 g was converted to bismuth chloride by reacting it first with hno3, and then with hcl, followed by careful evaporation to dryness. the mass of the bismuth chloride obtained was 1.032 g. what is the empirical formula of bismuth chloride? you won't be able to make the numbers a subscript. for instance, for mgcl2 enter mgcl2.

Answers

The empirical formula of bismuth chloride is Bi1 Cl8.9.The empirical formula of a compound is the simplest ratio of the atoms in the compound.

To determine the empirical formula of bismuth chloride, we need to determine the number of moles of each element present in the compound. First, we can find the number of moles of bismuth present in the sample by dividing the mass of the sample (0.687 g) by the molar mass of bismuth (208.98 g/mol): 0.687 g / 208.98 g/mol = 0.00327 mol .Next, we can find the number of moles of chlorine present in the compound by dividing the mass of the bismuth chloride obtained (1.032 g) by the molar mass of chlorine (35.45 g/mol): 1.032 g / 35.45 g/mol = 0.029 mol. To find the ratio of the atoms in the compound, we divide the number of moles of each element by the smallest number of moles calculated:0.00327 mol / 0.00327 mol = 1 (Bismuth) 0.029 mol / 0.00327 mol = 8.9 (Chlorine)Therefore, the empirical formula of bismuth chloride is Bi1 Cl8.9.

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f the actual yield of the reaction was 25 % instead of 100 % , how many molecules of no would be present after the reaction was over?

Answers

If the actual yield of the reaction was 25 % rather than 100 % , then the number of molecules of O2 present after the reaction was over would be 1 molecules.

The limiting reactant is the reactant that runs out first and determines the theoretical yield of the reaction. In this case, NO is the limiting reactant.

To calculate the theoretical yield of O2, we need to know the molar ratio of O2 to NO2 in the balanced chemical equation. If 8 molecules of NO2 are produced, we can use the balanced equation to determine the number of molecules of O2 that should be produced.

2NO + O2 -> 2NO2

We know that for every 2 molecules of NO, 1 molecule of O2 is consumed and 2 molecules of NO2 are produced.

Therefore, if 8 molecules of NO2 are produced, the number of O2 that should be produced is:

8 molecules NO2 / 2 = 4 molecules O2

If the actual yield of the reaction is 25% instead of 100%, we can calculate the actual yield of O2 by multiplying the theoretical yield by the percentage yield:

4 molecules O2 * 25% = 1 molecule O2

So, if the actual yield of the reaction is 25% instead of 100%, then 1 molecule of O2 would be present after the reaction is over.

"

Complete question

If the actual yield of the reaction was 75% instead of 100%, how many molecules of O2 would be present after the reaction is over? The# of No2 molecules is 8 if it goes through completion and NO is the limiting reactant.

"

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What is required for a fossil to become petrified?

o decay

O ground water

bacteria

mold

Lice

O minerals

Answers

Minerals is required for a fossil to become petrified.The preserved remains, or signs of remains, of extinct animals are called fossils.

The remnants of the creature itself are not fossils! They're stones. An full organism or only a portion of one can be preserved as a fossil. Leaves, feathers, shells, bones, and shells may all turn into fossils. Fossils come in a wide range of sizes. Only a microscope can see microfossils. Microfossils include pollen and bacteria. Petrified trees or dinosaur bones are examples of macrofossils. Once preserved remains have aged 10,000 years or more, they are considered fossils. Deep underground rock formations are a common place to find fossils. Through replacing the original material and filling the original pore spaces with minerals, petrification is the process by which biological material turns into a fossil.

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the superalloys divide into three basic groups, according to the base metal used in the alloy. which one is not one of these three groups.

Answers

The superalloys divide into three basic groups, according to the base metal used in the alloy. Name the three groups: (1) iron-based alloys, (2) nickel-based alloys,and (3) cobalt-based alloys.

WHAT IS SUPERALLOY

Superalloy materials are materials that have been developed to have the ability to maintain their strength at high temperatures (> 650oC) for a long time. A good combination of high strength and good ductility at low temperatures as well as good surface stability, surface stability means corrosion resistance, the formation of Cr2O3 and Al2O3 will improve surface stability. Superalloys originate from group VIIIB elements and generally consist of various combinations of Fe, Ni, Co, and Cr.

There are also alloying elements in smaller amounts, including W, Mo, Ta, Nb, Ti, Al, and V. Alloys in small amounts play a role in increasing strength by:

1.     Mechanism of solid solution strengthening (W, Mo, Ti),

2.      Forming carbides (W, Mo, Nb, Ta, Ti, V),

3. Precipitation strengthening (Al and Ti).

The reinforcement mechanism in superalloys is also controlled by means of:

1. Minimizing the formation of brittle phases: sigma phases, chi phases,

2. Controlling the carbide that is formed (so that it is not too brittle),

3. Controlling the grain size (so that the strength does not decrease).

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How many electrons are exchanged when this reaction is balanced? mn(s) + cr3 (aq) → mn2 (aq) + cr(s)

Answers

We must take into account the quantity of electrons exchanged in order to balance this redox reaction. Manganese (Mn) undergoes a shift in oxidation state from 0 (in the solid form) to +2.

(in the aqueous state). This indicates that during the process, Mn loses two electrons. Chromium (Cr) goes from +3 (in the aqueous state) to 0 in terms of oxidation state (in the solid state). This indicates that throughout the process, Cr gains 3 electrons. Equal to the amount of electrons that Cr obtains, Mn loses the same number of electrons. Consequently, the following is the balanced equation for this reaction: 2Mn2+(aq) + 3Cr = 2Mn(s) + 3Cr3+(aq) (s) In this balanced equation, this reaction involves the exchange of two electrons.We must take into account the quantity of electrons exchanged in order to balance this redox reaction. Manganese (Mn) undergoes a shift in oxidation state from 0 (in the solid form) to +2.

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How many moles of CO2 are formed?

Answers

The number of moles of CO2 formed from the reaction would be 50 moles.

Stoichiometric problem

The reaction has to do with the combustion reaction of ethyne in oxygen to form carbon dioxide and water. From the balanced equation of the reaction below:

2C2H2(g) + 5O2(g) ==> 4CO2(g) + 2H2O(g)

The mole ratio of C2H2 to CO2 is 1:2. This means for every 1 mole of C2H2 that burns in adequate oxygen, 2 moles of CO2 will be produced.

Using this established mole ratio, the number of moles of CO2 that will be formed from 25.0 moles of C2H2 would be:

1 mole C2H2 = 2 moles CO2

25 moles C2H2 = 25x2/1

                          = 50 moles CO2

In other words, the number of moles of CO2 that will be formed from 25.0 moles of C2H2 is 50 moles.

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how many moles of CO2 are formed from 25.0 moles C2H2

2C2H2(g) + 5O2(g) ==> 4CO2(g) + 2H2O(g)

I need help with these questions

Answers

It is true that two or more atoms held together with bonds to make up a moleculeIt is true that two or more substances mixed together make up a compoundIt is true that pure substances are made of atoms in a specific ratioIt is true that pure substances are made of only one type of atomIt is true that at least two types of atoms are required to make a compoundIt is true that at least two types of atoms are required to make a moleculeIt is true that mixtures can be made of two elements, two compounds or an element and a compound. It is false that compounds can be made of two elements, two mixtures, or an element and a mixture

What is a compound, mixture, pure substance?

A chemical compound is a substance formed by the union of two or more chemical elements in a fixed ratio, the union being a chemical bond.

A pure substance is a substance that are made up of only one kind of particle and have a fixed or constant structure. Pure substances are further classified as elements and compounds.

A molecule is the smallest particle of a specific element or compound that retains the chemical properties of that element or compound; two or more atoms held together by chemical bonds.

A mixture is a compound made up of two or more chemical components that are not chemically linked together. This means that a mixture can be made of elements, compounds etc. but not the other way round.

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The following data was collected when a reaction was performed experimentally in the laboratory.


Determine the maximum amount of Fe that was produced during the experiment. Explain how you determined this amount. (5 points)

(WILL GIVE BRAINLIEST NEED ASAP)

Answers

the maximum amount of Fe that could be produced is 2 moles for the product if reactants Fe2O3 Al2O3

The maximum amount of Fe that was produced during the experiment can be determined by using the balanced equation of the reaction.

Fe2O3 + 2Al -> 2Fe + Al2O3

From the information given, we know that 3 moles of Fe2O3 and 5 moles of Al were used in the reaction. By using the stoichiometry of the reaction, we can determine the maximum amount of Fe that could be produced.

For every 3 moles of Fe2O3 that reacts, 2 moles of Fe are produced.

So the maximum amount of Fe that could be produced is 2 moles.

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The complete question is:

When a reaction was performed experimentally in the laboratory, the following data was collected.

Products of Reactants

Fe2O3 Al2O3 Fe 3 moles 5 moles?

Calculate the maximum amount of Fe produced during the experiment. Explain how you arrived at this figure.

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