1.2.1. determine the amount of energy released (in calories) when steam at 110°c (constant pressure) condenses and cools to produce 500 liters of water at 50°c?

Answers

Answer 1

The amount of energy released when steam at 110°C condenses and cools to produce 500 liters of water at 50°C is approximately 2.69 x 10^7 calories.

The amount of energy released during a phase change, such as condensation, can be calculated using the formula:

Q = mL

where Q is the amount of energy released, m is the mass of the substance undergoing the phase change, and L is the substance's latent heat of vaporization. The latent heat of vaporization is the amount of energy required to convert a given amount of a substance from a liquid to a gas at constant temperature.

In this case, we want to find the amount of energy released when steam at 110°C condenses and cools to produce 500 liters of water at 50°C. First, we need to convert the volume of water to mass:

500 liters of water = 500 liters * 1000 g/liter = 500,000 g

Next, we need to find the latent heat of vaporization of water at 110°C. According to data from steam tables, the latent heat of vaporization of water at this temperature is approximately 2257 J/g.

Finally, we can use the formula to calculate the amount of energy released:

Q = (500,000 g) * (2257 J/g) = 1.13 x 10^8 J

To convert this value to calories, we can use the conversion factor of 1 calorie = 4.184 J:

1.13 x 10^8 J / 4.184 J/cal = 2.69 x 10^7 calories

So, The amount of energy released when steam at 110°C condenses and cools to produce 500 liters of water at 50°C is approximately 2.69 x 10^7 calories.

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Related Questions

Write a 3-5 sentence summary explaining how a signal travels down a neuron, using the following terms: Action potential, neuron, Resting potential, Na+, Threshold, Repolarization, K+, Myelin Sheath, Hyperpolarization, Gated Channel, and Depolarization

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The signal travels by depolarization and repolarization.

How does  a signal travels down a neuron?

A signal, also known as an action potential, travels down a neuron by the process of depolarization and repolarization. When an electrical signal reaches the axon hillock, it triggers the opening of ion channels, which causes an influx of positively charged ions into the cell.

This influx leads to a local depolarization, which then triggers more ion channels to open and continue the depolarization along the length of the axon.

At the same time, potassium ion channels open, allowing potassium ions to exit the cell, causing repolarization. This cycle of depolarization and repolarization propagates the signal down the axon until it reaches the axon terminal, where it triggers the release of neurotransmitters, transmitting the signal to the next neuron or effector cell.

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What products will result when HClO is added to water?

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When HClO is added to water, hydrochloric acid (HCl) and hypochlorous acid (HClO) will be produced.

What is hydrochloric acid ?

Hydrochloric acid is a clear, strong, corrosive, and highly acidic solution of hydrogen chloride gas (HCl) in water. It is an important component of gastric acid and is used in industrial settings for various processes such as metal cleaning, etching, and dyeing. It is also found in household cleaning products.

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write a question think about what interests you in the roles cells play in the functions of different tissues. write a question that will be the basis of your investigation

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Cells give the body structure, absorb nutrients from food, convert those nutrients into energy, and perform specialized functions. They also contain hereditary material from the body in the form of DNA and can replicate themselves.

What is the function of cells?

All living things, from microorganisms to humans, rely on cells for structure and function. Scientists regard them as the tiniest form of life.

Cells contain the biological machinery that produces the proteins, chemicals, and signals that are responsible for everything that occurs within our bodies.

The cell's essential functions include: providing support and structure to the body. It promotes growth through mitosis.

Thus, The cell is the most fundamental functional unit of the human body.

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which of these compounds would be considered an acid? * a. hcl b. nacl c. naoh d. ch4

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The compounds that would be considered an acid is the correct option is a. HCl ( hydrochloric acid).

The acids are the substance that produces the hydrogen ions when dissolves in the water. The bases are the substance that produces the hydroxide ions when dissolve in the water.

1) HCl is the hydrochloric acid  , it is a strong acid as when it dissolve in the water it donate more hydrogen ions.

2) NaCl is the sodium chloride , it neither a base or nor the acid . It is a neutral salt.

3) NaOH is the sodium hydroxide , it is the base as it donates the hydroxide ions when dissolve in the water.

4) CH₄ is the methane and it is not the acid or the base. It is a neutral compound.

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g the density of liquid argon just above its melting point is 1.40 g/cm3 . calculate vv for liquid argon.

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The molar volume of liquid argon (Vv) is the volume occupied by one mole of the substance. Since the density of liquid argon just above its melting point is 1.40 g/cm3, we can calculate the molar volume of liquid argon by solving the following equation:

Vv = (1 mol/1.4 g) x (1 cm3/1 g) = 0.714 cm3/mol

Therefore, the molar volume of liquid argon is 0.714 cm3/mol.

Liquid volume is a measure of the amount of liquid a container can hold. It is usually measured in liters, gallons, or milliliters. Liquid volume is important in many applications, such as cooking and baking, as well as in laboratory experiments and medicine.

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how does the rate of disappearance of methane relate to the rate of reaction?

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The rate of disappearance of methane is directly proportional to the rate of the reaction.

The rate of a chemical reaction is a measure of how quickly the reactants are consumed and the products are produced. In the case of methane, the rate of its disappearance can provide important information about the reaction that is occurring.

If the rate of disappearance of methane is directly proportional to the rate of the reaction, this means that as the rate of the reaction increases, the rate at which methane is consumed will also increase. Conversely, if the rate of the reaction decreases, the rate of methane disappearance will decrease as well.

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Consider aqueous solutions of four compounds:

MgCl2,

Na2O, C12H22O11,

C2H5OH

Which two will conduct electricity?

A. MgCl2

and C12H22O11

B. Na2O and C2H5OH

C. MgCl2

and Na2O

D. C12H22O11

and C2H5OH


please answer asap thank you ! will give brainliest :)

Answers

Compound A is dissolved in the water and is employed for white washing. Compound B provides the walls a gleaming sheen. Compounds C is a compound used in monochrome photography. (1) AgCl, CaCO3, and Ca, respectively, are components C, A, and B. (OH) CaCO3, AgCl, and 2 (2) Ca (OH) (2) CaO, CaCO3, and AgBr (3) AgCl, CaO, and CaCO3 (4)

In two different beakers, aqueous solutions of the two compounds M-O-H and M'-O-H have been produced. If M, M', O, and H possess s electronegativities of 3.5, 1.72, 3.0, and 2.1, respectively, the solutions are: > Solutions containing of two co... In two distinct beakers, aqueous solutions of the two compounds M O H and M ′ O H have been produced.

Because it is composed of a powerful acid and a stronger base, sodium chloride in freshwater is a neutral molecule. Because a strong base and a weak acid were employed to produce the potassium carbonate aqueous phase, it is neutral.

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How many grams of KMnO4 would you need to make 1 L of a 2M solution? (Formula weight of 158.04 g/mol.)

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According to the given statement, 1 L of a 2M solution would require 316.08 grammes of KMnO4.

What is KMnO4 used for?

Additionally known uses for KMnO4 include printing on textiles and tanning leather. Even as a cleaning solution, insecticide, and antiseptic, this substance has many uses.

They are using the molar mass - KMnO4, which would be 158.04 grammes per mole, to compute this.

In order to create the solution, we should therefore need to mix 1800 ml of water with 316.08 grammes of KMnO4.

Once the KMnO4 has been dissolved, the solution's volume should be increased to a maximum if 2000 ml (2.0 L).

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WHOEVER ANSWERS FIRST GETS THE BRAINLIST

Answers

Answer:

A

Explanation:

Hope this helps

Answer:

To transport water and food.

Explanation:

What would happen if a saturated solution of potassium chloride (KCI) in 100 grams of water was cooled from 80C to 10C ?

Answers

After a saturated potassium chloride solution is made at 60 ° C, the solid potassium chloride separates from the saturated solution when the solution is cooled to room temperature.

How might a low potassium level affect you?

A low potassium level can cause muscle weakness, cramping, twitching, or even paralysis, and it can also lead to the emergence of irregular cardiac rhythms. Blood tests to determine the potassium level are used to make the diagnosis. Most of the time, all that is required is to eat meals high in potassium or take oral potassium supplements.

Does peanut butter have a lot of potassium?

Additionally, peanut butter provides you with some fiber, vitamins, and minerals, as well as other nutrients. With only 5 mg of sodium per serving, unsalted peanut butter provides a fantastic potassium-to-sodium ratio.

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the constant of proportionality in a rate expression is called the?

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The constant of the proportionality in a rate expression is called the rate constant.

The constant can be defines as the the relationship between the molar concentration of reactants and the rate of  chemical reaction is called as the rate constant. The rate constant symbol is k. The Rate constant is the dependent on the temperature.

For the zero-order reaction, the rate constant's unit is mol L⁻¹s⁻¹.

For the first-order reaction, the rate constant's unit is s⁻¹.

For the second-order reaction, the rate constant's unit is mol L s⁻¹.

Thus, the rate constant is the constant of proportionality in a rate expression .

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what type(s) of intermolecular forces exist between br2 and ccl4? question 22 options: a) dispersion forces, ion-dipole, and dipole-dipole b) dispersion forces c) dispersion forces and ion-dipole d) dispersion forces and dipole-dipole e) none. since both are gases at room temperature, they do not interact with each other.

Answers

None. Since both are gases at room temperature, they do not interact with each other.

How does temperature affect the strength of intermolecular forces?

Temperature affects the electricity of intermolecular forces indirectly, by way of increasing the kinetic energy of molecules, inflicting them to move faster and lowering the time they spend in near proximity to every different, hence weakening the forces. As temperature increases, the molecules gain greater power, and the bonds between them turn out to be looser, reducing their attractive forces. This is why, generally, the electricity of intermolecular forces decreases with growing temperature.

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Fluorine is the most electronegative element on the periodic table, which means that, in an ionic bond, fluorine will always (1 point).

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Since fluorine is the most electronegative element in the periodic table, it will always attract electrons away from other elements in an ionic bond therefore, option c is the right choice.

When there is an electron exchange between the atoms that results in the development of ions, an ionic bond, also known as an electrovalent bond, is the sort of bond that is created between the two elements.

While the other atom acquires the electron and develops a negative charge and forms an ion known as the anion, the atom that loses an electron develops a positive charge and creates an ion known as the cation.

Due to the two atoms' opposing electric charges, they are drawn to one another and form an ionic connection.

Ionic compounds are brittle, rigid, and effective electrical conductors.

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whether an allele is dominant or recessive depends on

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The specifics of the proteins for which an allele codes determine whether it is dominant or recessive. The words might also be subjective, adding to the ambiguity.

Depending on how you look at it, the same allele might be either dominant or recessive. The sickle-cell allele, which is discussed further below, is a prime example.

The key aspect to remember is that there is no common mechanism by which dominant and recessive alleles function. Recessive alleles are not physically "dominant" or "repressed" by dominant alleles.

Dominant and recessive inheritance are helpful ideas for forecasting the likelihood of an individual getting specific characteristics, particularly genetic illnesses.

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Slicing an average loaf of bread gives 13 medium thickness slices. Each slice of bread is to be coated with 0. 050 oz of mayonnaise. Each sandwich of two bread slices contains one slice of ham and one slice of cheese. Half of the sandwiches need to contain a sliced olive, while the other half have no olive.

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36 loaves of bread and 23.1 ounces of mayonnaise are needed to make all of the sandwiches.

A sandwich is a type of food typically composed of two slices of bread with various fillings in between, such as meat, cheese, vegetables, and condiments. Sandwiches are a popular food item for lunch or a quick and convenient meal, as they are portable and easy to eat with one's hands.

The fillings can vary widely, ranging from simple combinations like peanut butter and jelly to more elaborate mixtures like grilled chicken with cheese, lettuce, and mayonnaise.

Explanation:

Number of slices of ham = 231

Given that each sandwich has 1 slice of ham.

Then 231 slices of ham will be in 231 sandwiches

A single sandwich is made up of 2 bread slices, Then bread slices in 231 sandwiches will be: 2 x 231 = 462

Each bread slice is applied with 0.0500 ounces of mayonnaise.

Then 462 bread slices will have 462 x 0.050 oz = 23.1 oz

1 bread loaf = 13 bread slices

Then breads loaves in 462  bread slices: 462 / 13 ≈ 35.5 = 36

Therefore, 36 loaves of bread and 23.1 ounces of mayonnaise are needed to make all of the sandwiches.

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What are 5 extensive properties?

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Volume, size, mass, length, and weight are 5 extensive properties.

Define intensive and extensive properties of a system.

According to how a property changes as the size (or extend) of a system changes, physical qualities of materials and systems are sometimes classified as either intensive or extensive. According to IUPAC, an extensive property is one whose magnitude is additive for subsystems, whereas an intensive property has a magnitude that is independent of the system's size.

The size of the system or the volume of the system have no bearing on an intensive property. It may not be uniformly dispersed throughout space; it may differ from one region of a body of matter or radiation to another. Intensive attributes include things like temperature (T), refractive index (n), density (), and hardness (). In contrast, subsystems' comprehensive attributes, such as mass, volume, and entropy, are additive.

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The mot table conformation of mot aldopyranoe i one in which the larget group,the -CH2OH group i equatorial. However D-idopyranoe exit primarily in a conformation with an axial -CH2OH group. Write formula for the two chair conformation of the alpha-D-idopyranoe which the -CH2OH group i axial and one with the -CH2OH group i equatorial and provide an explanation

Answers

Each derivative is easily manufactured on a multigram scale and only requires an easy chromatographic purification.

What D-idopyranoe exit primarily in a conformation?

It is explained how to make 1,2,3,4,6-penta-O-acetyl-D-idopyranose into benzoyl protected allyl and benzyl -D-idopyranosides, as well as D-idopyranosyl trichloroacetimidate.

The compound alpha-D-glucopyranose... The anomers and diastereomers of -D-glucopyranose are respectively. Their anomeric carbon atom configurations are different.

Each derivative simply needs a straightforward chromatographic purification and can be produced on a multigram scale.

Therefore, They are anomers as a result. Additionally, they are not superimposable and are not mirror reflections of one another. They are diastereomers as a result.

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Each derivative is easily manufactured on a multigram scale and only requires an easy chromatographic purification.

What D-idopyranoe exit primarily in a conformation?

It is explained how to make 1,2,3,4,6-penta-O-acetyl-D-idopyranose into benzoyl protected allyl and benzyl -D-idopyranosides, as well as D-idopyranosyl trichloroacetimidate.

The compound alpha-D-glucopyranose... The anomers and diastereomers of -D-glucopyranose are, respectively. Their anomeric carbon atom configurations are different.

Each derivative simply needs a straightforward chromatographic purification and can be produced on a multigram scale.

Therefore, They are anomers as a result. Additionally, they are not super imposable and are not mirror reflections of one another. They are diastereomers as a result.

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Without certain tools, scientists would not be able to collect certain types of data in space. Why is this idea by explaining one tool that scientists use to collect data that they would not be able to collect without this technology.

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The  idea by explaining one tool that scientists use to collect data that they would not be able to collect without this technology as it would not give results with accuracy.

What is accuracy?

Accuracy in terms of chemistry can be defined as to how close a measurement is to the true value.There are three types of accuracy:

1) Point accuracy-It means accuracy is present at that point of scale only.It does not give any information about the accuracy of the instrument.

2)Percentage of true value--It is the accuracy  which is determined by identifying accuracy of the instrument  and comparing it with the measured true value.

3)Percentage of scale range- It is the accuracy  which determines accuracy of the measurement.

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a 0.50 mole sample of co2g at 2.0 atm occupies 11.2 liters

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The temperature of the sample is 3527.8 K, or approximately 3254.6°C.

What is ideal gas law?

Ideal gas law is the equation of state of hypothetical ideal gas.

As, PV = n RT, where P is pressure, V is volume, n is number of moles, R is the ideal gas constant (8.31 J/mol*K), and T is temperature in Kelvin.

2 atm * 11.2 L = 0.50 mol * 8.31 J/mol*K * T

Converting atm to pascals:

2 atm * 101325 Pa/atm = 202650 Pa

202650 Pa * 11.2 L = 0.50 mol * 8.31 J/mol*K * T

T = (202650 * 11.2) / (0.50 * 8.31)

T = 3527.8 K or 3254.6°C.

Therefore, the temperature of the sample is 3527.8 K, or approximately 3254.6°C.

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Note: The question given on the portal is incomplete. Here is the complete question.

Question:  A 0.50 mole sample of CO2(g) at 2 atm occupies 11.2 liters. What is the temperature of the sample?

which of the following samples should be used as the background blank to calibrate the spectrometer

Answers

DI water should be used as the background blank to calibrate the spectrometer.

A spectrophotometer is a device used to measure the intensity of light as a function of its wavelength. In order to ensure accurate results, it is necessary to calibrate the spectrophotometer using a background blank. The background blank is used to account for any background interference that may affect the measurement. DI water, or deionized water, is a common choice for the background blank because it is pure and has a neutral pH, making it a good choice to ensure accuracy. Iron(III) nitrate and potassium thiocyanate solutions contain ions that may affect the measurement, so they are not suitable for use as a background blank. Iron(III) thiocyanate complex ion stock solution is a more specialized solution and is not typically used as a background blank for spectrophotometry.

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Complete question:

Which of the following samples should be used as the background blank to calibrate the spectrophotometer? Choose the single best answer.

A. Iron(III) nitrate solution

B. Iron(III) thiocyanate complex ion stock solution

C. DI water

D. Potassium thiocyanate solution.

What signal would be easier to interpret when it arrived at a far away destination? digital or analog?

Answers

Digital signals are easier to interpret when they arrive at a faraway destination compared to analog signals.

Analog signals are continuous signals that represent physical measurements, such as sound waves or voltages.

Binary digits (0s and 1s) are combined to create digital signals, which are then translated into electrical impulses for transmission. They are less prone to interference and noise during transmission, and the signal may be precisely recreated at the other end. Analog signals, on the other hand, are continuous electrical impulses that are susceptible to interference and noise, making it more challenging to correctly interpret the information after transmission. The preferred signal type for long-distance communication is therefore digital.

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Sort the following into the proper waste container/area. 1. Solid Waste 2. Liquid Waste Container 3. Glass Waste Container 4. Trash 5. Sink Match : used filter paper, acetone rinse, broken waterless condenser, leftover water from ice bath, leftover starting material, reaction filtrate, melting point tube,

Answers

The institutional architecture that oversees the processes of receiving, source-separating, storing, transferring, processing, and disposing of solid waste.

An effective waste management plan ought to include solid waste disposal. The method of receiving, processing, recovering resources from solid waste, and finally disposing of it is known as integrated solid waste management. An waste management strategy's three main elements are source reductions, reduction, and disposal.

These three types of trash are all essential for the management of solid waste.

It may also include paper, polymer, tetra packages, plastic canisters, glass bottles, metal objects, wood fragments, aluminium foil, and a number of other substances. Food waste, which is categorised as wet rubbish, has the potential to present.

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the retrosynthetic arrow in the following scheme describes a reaction that would use which of the reagents below? br2, hυ etona kotbu hbr, roor hbr

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The arrow of retrosynthesis. Indicates that the species on the left is a descendant of the species on the right.

Arrow of bond dipole. The arrow head is pointing to the more electronegative atom (the - atom), while the crossed end is above the more electropositive atom (the + atom).

This is a retrosynthetic arrow, which means that the species before the arrow (which is typically more complicated) is synthesized from the species after the arrow (normally less complicated).

One or more steps can be used to create the target molecule.

We use this type of arrow to plan forward syntheses of more complex molecules by strategically detaching the more complex molecule.

Example showing Retrosynthetic approach:

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why do you not purify adipoyl chloride

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Adipoyl chloride, also known as hexanedioic acid chloride, is an organic chemical compound commonly used in the synthesis of polymers and other chemicals. Purifying this compound, however, is not a common practice due to its reactive and dangerous nature. In this article, we will discuss why it is not advisable to purify adipoyl chloride.

Adipoyl chloride is a highly reactive compound that can readily react with water, organic solvents, and other materials present in the purification process. This can cause the formation of unwanted by-products and impurities, which can make the final product less pure and potentially hazardous. Additionally, adipoyl chloride is a toxic and flammable substance that can pose a significant risk to workers and the environment if handled improperly.

Moreover, adipoyl chloride is usually synthesized in small quantities and used in reactions immediately, so there is often no need to purify it further. The impurities present in the original synthesis process are typically not significant enough to affect the outcome of the reaction. Furthermore, purifying this compound requires specialized equipment, solvents, and procedures that are not commonly available in a laboratory setting, making it challenging and expensive to purify.

In conclusion, the reactive and dangerous nature of adipoyl chloride, combined with the lack of a significant need for purification and the difficulties involved in purifying it, make it advisable not to purify this compound. Instead, it is safer and more practical to use it as-is in chemical reactions or syntheses.

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how does the law of conservation of mass affect balanced chemical equations?

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The law of conservation of mass is a fundamental principle in chemistry that states that the total mass of a system remains constant, regardless of the chemical changes that occur within it.

This law affects balanced chemical equations in the following ways:

The number of atoms of each element in the reactants must equal the number of atoms of that element in the products.To balance the equation, coefficients are added in front of the formulas of the reactants and products to indicate the correct ratio of atoms.Balancing the equation ensures that the total mass of the reactants is equal to the total mass of the products, which satisfies the law of conservation of mass.If the equation is not balanced, the law of conservation of mass would be violated, indicating that the equation is incorrect or incomplete.

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what happens if the solvent line reaches the top of your tlc plate?

Answers

When the solvent has reached top of plate, the plate is removed from the developing chamber, dried, and the separated components of the mixture are visualized. If the compounds are colored, visualization is straightforward. Usually compounds are not colored, so a UV lamp is used to visualize plates.

Do not allow the solvent front to reach the top of plate. That may cause erroneous Rf values and may cause spots that are close together to run into each other. Take plate out with tweezers and mark the solvent front line with pencil as soon as possible

With the solvent above sample spot, it will be submerged and therefore it will not travel up the plate by capillary action in the mobile phase and as result, no observation will be made as no spots will be on developed plate.

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explain your prediction for the effect na cl- might have on glucose transport. in other words, explain why you picked the choice that you did. how well did the results compare with your prediction?

Answers

The prediction for the effect that Na⁺ Cl⁻ might have on the glucose transport is that when decreasing  the NaCI lead to decrease in the osmotic pressure.

The  effect of Na⁺ Cl⁻  that might have on the glucose transport is that when decreasing the NaCI lead to decrease in the osmotic pressure. This is due to reason that the water will need to diffuse at the higher concentration gradient till the equilibrium will reached. The glucose is transported across the membrane via the  GLUT transporters.

Thus, on increasing the NaCI concentration lead to increase in the osmotic pressure , this is the  effect that Na⁺ Cl⁻ .

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When 14. 00 ml of hcl of unknown concentration (but less than that of the base) are reacted with 13. 00 ml of 2. 15 m naoh, 1. 56 kj of heat are released. What is the molarity of the hcl solution?.

Answers

The molarity of the HCl solution is 1.99 M

For a variety of uses in chemistry, neutralizing reactions between acids and bases are utilized to create a neutral product (salt). As a result, since the HCl and NaOH reaction is the subject of this question, we can write:

HCl+NaOH ⇒NaCl +H₂O

How is molarity determined?

The following formula can be used to determine a solution's molarity:

M₁V₁ = M₂V₂

Where;

M₁ is the acid's molarity.

M₂ is the base's molarity.

V₁ = acid volume

V₂ is the base volume.

Where there is a 1:1 mole ratio between the acid and the base, allowing us to set up the following:

M acid Vacid =Mbase Vbase

Macid 14. 00 ml = 2. 15 M 13. 00 ml

M acid = 2.15 x 13 / 14

M acid = 1.99 M

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xef4 lewis structure

Answers

There are 36 valence electrons in total in the Lewis structure of XeF4. Each atom is examined to determine when it has an octet-full outer shell after the valence electrons have been added.

XeF4: Is it a tetrahedron?

So, a square planar choice is the right response. The quantity of lone pairs ought to always be taken into account while sketching complex structures. Since xenon and this example both contain four fluorine atoms, it is possible to confuse the shapes of the tetrahedron with the square planar structure.

Is the Lewis structure of XeF4 nonpolar or polar?

The chemical XeF4 is non-polar in terms of polarity. XeF4 is square planar due to its symmetrical geometrical nature. A zero is produced by the cancellation of the dipoles throughout the Xe-F bond.

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There are 36 valence electrons in total in the Lewis structure of XeF4. Each atom is examined to determine when it has an octet-full outer shell after the valence electrons have been added.

XeF4: Is it a tetrahedron?

So, a square planar choice is the right response. The quantity of lone pairs ought to always be taken into account while sketching complex structures. Since xenon and this example both contain four fluorine atoms, it is possible to confuse the shapes of the tetrahedron with the square planar structure.

Is the Lewis structure of XeF4 nonpolar or polar?

The chemical XeF4 is non-polar in terms of polarity. XeF4 is square planar due to its symmetrical geometrical nature. A zero is produced by the cancellation of the dipoles throughout the Xe-F bond.

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Arrange the following in order of decreasing temperature.
1- 273K
2-133 degrees F
3- 351 K
4- 25 degree C
5- 95 degree F
6- 58 degree F
7- 146 degree C

Answers

273 K

133 degrees F = 329 K

351 K

25 degree C = 298 K

95 degree F = 308 K

58 degree F = 287 K

146 degree C = 419 K

419 K > 351 K > 329 K > 308 K > 298 K > 287 K > 273 K

What is temperature ?

The concept of temperature is used to convey quantitatively how hot and cold something is. Using a thermometer, one can gauge temperature. Thermometers are calibrated using different temperature scales that traditionally relied on different reference points and thermometric materials for definition.

Temperature is measured in Celsius (°C), Kelvin (K), Fahrenheit (°F), or Rankine and refers to the average molecular kinetic energy within a substance or system (R). It is a quantifiable physical attribute of an object, also referred to as a state variable.

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