reggie puts a beaker of ice and water on a hot plate, and the ice slowly begins to melt as shown in diagram below. after a few minutes, only liquid water is in the beaker. eventually, the water becomes hot and boils. the liquid water changes to water vapor, which is a gas. how is the ice different from the water vapor that forms after the water begins to boil? a the ice has a higher temperature. b the ice has a lower boiling point. c the ice particles move faster. d the ice particles have less energy.

Answers

Answer 1

The ice is different from the water vapor that forms after the water begins to boil as the ice particles have less energy and they move slowly.

The ice has a lower boiling point. When the ice and water put on both the hot plate, the ice slowly takes up the heat and raises its temperature, melting the ice slowly. While the water slowly heats up and becomes vapor when it reaches its boiling point. The ice will melt faster as it has lower boiling point than water. Liquid water molecules are constantly travelling from one point to another, colliding into and sliding past each other. Water molecules in water vapor are spread apart and free to move. There is a lot of room between them.

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Related Questions

Which statement best describes the relationship between changes in air pressure and wind speeds? Responses When a high- and a low-pressure air mass are far apart, air moves quickly from low to high pressure. When a high- and a low-pressure air mass are far apart, air moves quickly from low to high pressure. When a high- and a low-pressure air mass are close together, air moves slowly from high to low pressure. When a high- and a low-pressure air mass are close together, air moves slowly from high to low pressure. When a high- and a low-pressure air mass are far apart, air moves slowly from high to low pressure. When a high- and a low-pressure air mass are far apart, air moves slowly from high to low pressure. When a high- and a low-pressure air mass are far apart, air moves quickly from high to low pressure.

Answers

The statement that best describes the relationship between changes in air pressure and wind speeds is:

When a high- and a low-pressure air mass are far apart, air moves quickly from low to high pressure.

How does air move?

Air moves in response to differences in atmospheric pressure. When there is a difference in pressure between two points, air will flow from high pressure to low pressure in an effort to balance out the difference. This flow of air creates wind.

The movement of air can also be influenced by the Earth's rotation and the heating of the Earth's surface by the sun, which creates complex patterns of air movement, including fronts, jet streams, and cyclones.

In general, wind moves from areas of high pressure to areas of low pressure in an effort to balance out differences in atmospheric pressure. The faster the pressure gradient, the stronger the wind speeds will be. When a high-pressure and a low-pressure air mass are far apart, the pressure gradient is steeper and the wind speeds are stronger.

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the value of the equilibrium constant k is a measure of how far the reaction proceeds toward the products at a given temperature. a small value of k indicates that the reaction favors the , whereas a large value of k indicates that the will be present in a higher proportion. multiple choice question. products; reactants

Answers

The value of the equilibrium constant "K" is the measure of how far the  reaction will proceed to  form products at a given temperature.

The rate of the reaction in forward direction Kf and the rate of the reaction in the backward direction Kb will give the value of equilibrium constant K.

It is given as K = Kf/Kb

A small value of K indicates that the reaction will favor in the direction of  the reactants. On the other hand, a large value of K indicates that the product will be formed in a higher proportion.

In an equilibrium reaction, the rate of the forward reaction is equal to the rate of the backward reaction.

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oxygen o2 has a molar mass of 32.0 g/mol . what is the average translational kinetic energy of an oxygen molecule at a temperature of 295 k ?

Answers

The average translational kinetic energy for oxygen molecule is 3691.4 j/mole.

Kinetic energy is defined as the power an object has because of its motion. If you want to boost up an object, then you must follow a force. Making use of the force requires you to do work. After work has been accomplished, energy is often transferred to the object, and the object might start moving with a new consistent speed.

The kinetic energy of an item is also defined as the electricity that it possesses due to its motion. Kinetic energy for the duration of its acceleration, the frame maintains this kinetic electricity except for its pace changes.

Transitional kinetic energy = 3/2 nRT

Transitional kinetic energy = 3/2 × 1 × 8.314 × 296 = 3691.4 j/mole

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calculate the boiling point (in degrees c) of a solution made by dissolving 9.70 g of naphthalene {c10h8} in 90.7 g of benzene. the kbp of the solvent is 2.53 k/m and the normal boiling point is 80.1 degrees c.

Answers

The boiling point of the solution made by dissolving 9.70 g of naphthalene in 90.7 g of benzene is 139.3 °C.

The boiling point of a solution is elevated compared to the boiling point of the pure solvent, due to the presence of solute particles in the solution. The boiling point elevation can be calculated using the following equation:

ΔT = Kb x molality

where ΔT is the change in boiling point, Kb is the boiling point elevation constant, and molality (m) is the concentration of the solute expressed in mol/kg.

To use this equation, we first need to find the molality of the naphthalene in the solution. To do this, we need to find the number of moles of naphthalene in the 9.70 g sample:

9.70 g naphthalene / 128.17 g/mol

=> 0.0758 mol naphthalene

Next, we need to find the mass of the solvent in the solution, which is 90.7 g. The molality of the naphthalene can then be calculated as follows:

molality = moles solute / mass of solvent (in kg)

=> 0.0758 mol / (90.7 g / 1000 g/kg)

=> 0.0837 mol/kg

Now that we have the molality, we can calculate the boiling point elevation:

ΔT = Kb x molality

=> 2.53 K/m x 0.0837 mol/kg

=> 0.2111 K

Finally, we can use the boiling point elevation to find the boiling point of the solution:

Boiling point of solution = boiling point of solvent + ΔT

=> 80.1 °C + (0.2111 K x 273.15)

=> 80.1 + 59.18

=> 139.3 °C

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the atomic weight of copper is 63.55. what is the most likely decay mode for the radioactive isotope 68cu?

Answers

The atomic weight of copper is 63.55. The most likely decay mode for the radioactive isotope 68Cu is beta decay, where it transforms into 68Ni.

Beta Decay of 68Cu Isotope

Beta decay is a type of radioactive decay in which a neutron in an unstable nucleus decays into a proton, releasing an electron and an antineutrino. In the case of 68Cu, which is a radioactive isotope, the beta decay process results in the transformation of the isotope into 68Ni. This happens because the neutron-proton ratio in 68Cu is too high, making the nucleus unstable. To achieve stability, a neutron in the nucleus decays into a proton, emitting an electron and an antineutrino. The result is a new element with a different atomic number, in this case, 68Ni. Beta decay is one of the main mechanisms by which unstable isotopes transform into more stable isotopes and is a crucial process in the life cycle of stars and in the formation of elements heavier than iron.

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a flexible container at an initial volume of 3.10 l contains 6.51 mol of gas. more gas is then added to the container until it reaches a final volume of 15.9 l. assuming the pressure and temperature of the gas remain constant, calculate the number of moles of gas added to the container. number of moles of gas:

Answers

The number of moles of gas added to the container are 26.88 moles.

A mole is the mass of a substance made up of the same number of fundamental components. A mole fraction shows how many chemical elements are present.

The following formula is used to determine how many moles of a gas should be introduced to the container.

preliminary concentration = 6.51 moles

starting moles - final moles

the final mole calculation

3.10L = 6.51 moles

15.9 L =?   moles

by cross multiplication

15.9 L x 6.51 moles/ 3.10 L = 33.39 moles

Consequently, the  number of moles added =  33.39  moles -6.51  moles

= 26.88 moles

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when is it important to wear safety goggles in the laboratory? group of answer choices when using liquid chemicals in the lab. when i start pouring or transferring chemicals at the lab bench. any time there are chemicals or laboratory equipment present in the lab. only when my lab ta tells me to. as soon as my lab partners put on their goggles.

Answers

It is important to wear safety goggles in the laboratory any time there are chemicals or laboratory equipment present in the lab.

This includes when using liquid chemicals, pouring or transferring chemicals at the lab bench, or simply because chemicals or equipment are present in the lab. Wearing safety goggles provides a barrier to protect your eyes from potential chemical splashes, dust, or other hazards that could cause injury or damage to your eyes. Additionally, wearing safety goggles is a basic safety measure that is typically required by laboratory protocols and recommended by laboratory safety guidelines. It is important to always follow established laboratory safety procedures and guidelines to minimize the risk of injury in the lab.

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if you dissolve 0.3 moles of HBr in 1 L of water, what do you expect to be present in the beaker after the compounds have had time to react? O H2Br, OH, and H2O O H30*, Br", and H2O O BrOH and H307 O HBr, H307, Br", and H2O

Answers

D) HBr, H307, Br", and H2O components expect to be present in the beaker after the compounds have had time to react.

What do you call HBr in water?

Hydrogen bromide (HBr), a diatomic molecule, combines in water to create hydrobromic acid, a caustic acid. HBr has a pH of 0.21. One of the strongest mineral acids is this one. When highly toxic and highly soluble in water gaseous hydrogen bromide is dissolved in the water, an acidic environment and corrosive liquid (HBr) is generated.

Why is HBr water soluble?

Because of its capacity to establish intermolecular hydrogen bonds with water, HBr is soluble in water. The difference in electronegativity between H and Br causes a dipole to emerge in HBr.

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if you dissolve 0.3 moles of HBr in 1 L of water, what do you expect to be present in the beaker after the compounds have had time to react?

A)H2Br, OH, and H2O

B) H30*, Br", and H2O

C)BrOH and H307

D) HBr, H307, Br", and H2O

Date Lab Sec. Name Desk No. L a. How is the pressure of the vaporized liquid determined in this experiment? b. How is the volume of the vaporized liquid determined in this experiment? c How is the temperature of the vaporized liquid determined in this experiment? d. How is the mass of the vaporized liquid determined in this experiment?

Answers

The pressure, volume, temperature and mass can be determined from the experiment .

What is pressure?

A force per unit area is referred to as pressure. It is measured in units of pascals (Pa) or pounds per square inch and is defined as the force per unit area that a substance exerts on its surroundings (psi). Pressure is a scalar quantity that is inversely proportional to the area the force acts on and proportionate to the force exerted on a surface.

a. pressure gauge or a manometer can be used to calculate the evaporated liquid's pressure.

b. You can measure the displacement of a known volume of air or use a gas metre to calculate the volume of the evaporated liquid.

c. You can use a thermometer, such as a mercury-in-glass or a digital one, to gauge the temperature of the vaporised liquid.

d. The mass of the liquid that has been vaporised can be calculated by weighing the container before and after the operation, then deducting the difference to get the liquid's mass.

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how do the electron configurations of the lanthanides and actinides differ from the electron configurations of other transition metals

Answers

The f-sublevels of the lanthanide and actinide elements are only partially occupied. Whereas transition metals exists in various oxidation states.

An atom's electron configuration shows how electrons are distributed among its orbital shells and subshells.

The electron configuration typically describes the orbitals of an atom in its ground state, but by compensating for any lost or gained electrons in the orbitals that follow, it can also be used to represent an atom that has ionized into a cation or anion.

Chemical elements that are members of the lanthanide class have valence electrons in the 4f orbitals. Chemical elements that belong to the actinide class have valence electrons in their 5f orbitals. Because they have a large number of shells, inner transition metals are made up of rather hefty atoms.

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was there supercooling? would you expect the water or sugar solution to have the most super cooling why>?

Answers

Because the presence of the sugar would produce nucleation spots and enable the development of ice crystals, the sugar solution should be distilled to ensure that Super Cooling happens more effectively than the water solution.

Lowering a liquid or gas's temperature below its freezing point without causing it to solidify is known as supercooling. When a liquid is cooled below its freezing point without solidifying, the process is known as supercooling. In the case of water, ice formation requires a seed crystal or a nucleation location. The temperature of a supercooled liquid increases as freezing progresses because the substance releases its latent heat during the transition from solid to liquid form. The substance becomes hotter as a result of latent heat.

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240 CDs in astore are rock albums. These 240 CDs make up 80% of the CDs. How many CDs are in the store?

Answers

There are total 300 CDs in the store, while  240 CDs are rock albums, which make up to 80% of the CDs.

What is a percentage?

Percentage is a way of representing a number as a fraction of 100. It is often used to express a portion or share of a total quantity. In mathematical terms, a percentage is a dimensionless number that represents a ratio of two quantities as a fraction of 100.

It can also be expressed as decimals or as a fraction. To convert a percentage to a decimal, divide the percentage by 100.

For example, 50% as a decimal would be 0.5. To convert a percentage to a fraction,  divide the percentage by 100 and then simplify the fraction as much as possible. 50% as a fraction would be 50/100 = 1/2

Calculation for the  total  number of CDs at a store

Let the total number of CDs in the store be xNumber of  Rock album CDs is 240 CDsPercentage of  Rock album CDs in the store is 80%

The equation for the above would be

240 CDs = 0.8 * x

The equation states that the number of rock albums (240 CDs) is equal to 80% of the total number of CDs in the store (x)

By isolating  x and dividing both sides of the equation by 0.8( that is simplification of 80%)

240 CDs / 0.8 = 0.8 * x / 0.8

240 CDs / 0.8 = x

Calculate the value of x by dividing 240 CDs by 0.8:

x = 240 CDs / 0.8

x = 300CDs

Therefore, the total number of CDs in a store are 300

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write both the structure and name for each of the eight alkanes with unbranched carbon chains starting with one carbon and ending with eight carbons.

Answers

1. CH4, Methane

2. C2H6, Ethane

3. C3H8, Propane

4. C4H10, Butane

5. C5H12, Pentane

6. C6H14, Hexane

7. C7H16, Heptane

8. C8H18, Octane

Alkanes are a class of organic compounds made up of only carbon and hydrogen atoms. They are also known as "saturated hydrocarbons," as all of the carbon-carbon bonds are single bonds and there are no double or triple bonds between the carbon atoms.

The eight alkanes listed above are unbranched, meaning that they have a straight chain of carbon atoms, with no branches or side chains.

Each of these eight alkanes has a different number of carbon atoms, ranging from 1 carbon in methane to 8 carbons in octane. The naming convention for alkanes is based on the number of carbon atoms in the molecule, with the suffix "-ane" added to the end.

For example, ethane has 2 carbon atoms, and so it is named "ethane," while heptane has 7 carbon atoms, and so it is named "heptane."

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What special label do you have to use when naming ionic compounds with transition metals?
Responses
A Roman numeralsRoman numerals
B Greek numerals

Answers

We have to use Greek numerals for  ionic compounds with transition metals.

What are transition metals?

Transition metals are a group of elements in the periodic table located in the d-block, which includes the elements from 21 (Sc) to 30 (Zn), 39 (Y) to 48 (Cd), and 57 (La) to 80 (Hg).

They are characterized by having partially filled d orbitals in their electron configuration and are known for their unique physical and chemical properties, such as being able to form multiple oxidation states and exhibiting variable valence.

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Which two statements in the table are true about the changing salt concentrations of ocean water?

Answers

When Earth's ice increases, ocean water gets less salty and when water evaporates from the oceans, the remaining water becomes more salty. Therefore, the correct option is option 2,3.

What is concentration?

Concentration in chemistry refers to the quantity of a material in a certain area. The ratio of the solute in a solution to the solvent or whole solution is another way to define concentration.

Concentration may be expressed as per unit mass rather than volume. Although concentration is often used to describe chemical solutions, it may be computed for any combination. When Earth's ice increases, ocean water gets less salty and when water evaporates from the oceans, the remaining water becomes more salty  are true about the changing salt concentrations of ocean water.

Therefore, the correct option is option 2,3.

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A chemical reaction yields 3 moles of lithium hydroxide (lioh). how many grams of lithium hydroxide are present? question 4 options: 3 g 24 g 48 g 72 g

Answers

A chemical reaction yields 3 moles of lithium hydroxide (lioh), so 72 grams of lithium hydroxide are present.

The mass of a compound present in a mole of sample is ideally and obsoletely equivalent to the molar mass of the compound. The molar mass of the compound has been the sum of the constituent in a formula unit.

The molar mass of lithium hydroxide (mwt) has been given as the following:

M(wt) = M (Li) + M (o) + M (h)

Where, the mass of Li is 6.941 gm.

The mass of oxygen is 16 g

The mass of hydrogen is 1 gm.

Substituting the values for molar mass (mwt) of LiOH:

M(wt) = M (Li) + M (o) + M (h)

M(wt) = 24 gm

The molar mass of LiOH has been calculated to be 24 g.

Since, we are calculating for 3 moles.

So, 24x3 = 72 grams.

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how does one coulomb of charge compare with the charge of a single electron?

Answers

A coulomb, or 1 C, has a mass of 6.25 1018 electrons. 6.25 billion billion electrons, to be exact.

Who or what is an electron?

A negatively charged neutrino known as an electron can either be free or attached to an atom (not bound). One of the three main types of molecules within an atom is an atom that is bonded to it; the other two being protons and neutrons.

Which also goes by the name electron?

Today, electrons are the name given to these negative charges cathode ray particles. Electrons are incredibly light, negatively charged particles. The total number atomic protons and neutrons in an atom equals the mass of that atom. .

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we can only do ideal calculations when we are at standard temperature and pressure. True or False

Answers

It is true that under conditions of normal pressure and temperature, we can only make perfect calculations.

How hot and how pressured is it typically?

STP, or average temperature and humidity, refers to the conventional air temp at sea level. The temperature and pressure are, respectively, 0 °C and 1 atm.

Why do scientists use standard temperature and pressure?

It is now easier to compare different measurements for gases, such as the quantity of gas molecules in a given volume. There has to be a universal standard for pressure and temperature so that scientists may meaningfully compare various sets of data.

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why are the temperature and pressure dependent properties in the saturated mixture region? (2 points)

Answers

Because boiling or condensation in a saturated mixture zone happens at a specific temperature, the pressure and temperature are dependent parameters in this region.

What is the saturated mixture's quality?

According to thermodynamics, the mass fraction of vapor in a saturated combination is referred to as the vapor quality; thus, saturated vapor has a quality of 100% and saturated liquid has a quality of 0%.

What is a liquid that is saturated?

A liquid that is going to evaporate is a saturated liquid. Water is in the liquid phase at 1 atm and 20 degrees Celsius (compressed liquid). Water is a liquid that is ready to evaporate at 1 atm pressure and 100 degrees Celsius (saturated liquid).

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Calculate the mass of copper metal product. Show work!
CuSO4 + Zn →→ Cu + ZnSO4
g Cul=????
Pleaseeeee helppp

Answers

As per the given reaction, one mole of copper sulphate reacts to give one mole of Cu. 100 ml of 0.05 M copper sulphate contains 0.005 number of moles of CuSO₄.

What is copper sulphate ?

Copper sulphate is an ionic compound formed by the reaction of copper metal with other metal sulphate. Copper sulphate undergoes redox reaction with other metals forming copper metal.

Given that, the reaction system contains 100 ml of 0.05 M of copper sulphate.

The no.of moles of copper sulphate = volume × molarity

no.of moles = 0.1 L × 0.05 M = 0.005 moles.

As per the reaction, 0.005 moles of copper sulphate will give 0.005 moles of Cu.

atomic mass of Cu = 63.5 g/mol

then mass of 0.005 moles of Cu = 0.005 g ×63.5 g/mol = 0.317 g.

Therefore, the mass of copper formed in this reaction is 0.317 g.

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Your question is incomplete. But your complete question probably was:

CuSO4 + Zn →→ Cu + ZnSO4

 if excess of zinc is added to 100ml of 0.05M CuSO4  the amount of copper formed is:

determine the molality of a solution of water dissolved in ethanol for which the mole fraction of water is 0.492.

Answers

The molality of a solution of water dissolved in ethanol is 0.0273 for which the mole fraction of water is 0.492.

Given the mole fraction of water (x_water) in the solution of water and ethanol, the molality (m) can be calculated as follows:

= m

= (x_water) / (MW_water)

where MW_water is the molecular weight of water (18.015 g/mol).

= m

= (0.492) / (18.015 g/mol)

= 0.0273 mol/kg

Therefore, the molality of the solution of water and ethanol is 0.0273 mol/kg.

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what is the mass percent of oxygen in propionic acid, c3h6o2?

Answers

Answer:

43.23%.

Explanation:

The mass percent of oxygen in propionic acid (C3H6O2) can be calculated by dividing the mass of oxygen in the molecule by the total mass of the molecule and multiplying by 100.

First, find the molar mass of propionic acid:

C3H6O2 = 3 x 12.01 + 6 x 1.01 + 2 x 16.00 = 74.08 g/mol

Next, find the mass of oxygen in one mole of propionic acid:

2 x 16.00 g = 32.00 g

Finally, divide the mass of oxygen by the total mass and multiply by 100:

(32.00 g / 74.08 g) x 100% = 43.23%

So, the mass percent of oxygen in propionic acid is 43.23%.

What is one major environmental issue that CFL have on the environment?

This has to do with elements and the electromagnetic spectrum

Answers

Answer:

CFLs (compact fluorescent lights) contain small amounts of mercury, a toxic heavy metal. If a CFL bulb breaks, the mercury can be released into the environment, where it can contaminate water and soil, and harm wildlife and human health. This is considered one of the major environmental issues associated with CFLs.

13. what observational evidence do you have to support that combustion is a chemical change? an appropriate answer requires a minimum of two pieces of evidence. there is observational evidence that have to support that combustion is a chemical change. burning steel wheel, candle, sulfur, splint, results in the formation of new chemical.

Answers

Burning a steel wheel, a candle, some sulfur, or a splinter produces new chemicals which is an observable evidence that suggests combustion is a chemical transformation.

The five elements of chemical change are: color change, precipitate or gas production, gas formation, odor change, and temperature change. A chemical reaction in which both light and heat can be seen is the burning of wood. We refer to a reaction as being exothermic when it produces heat. In other words, heat is transmitted from the reactants to the environment outside. When a chemical interacts with oxygen to release energy, a combustion event will always take place. For instance, methane burns in oxygen and produces carbon dioxide and water as byproducts. The oxidation of the carbon in the methane is demonstrated by the production of carbon dioxide. Also, burning of substance results in the release of heat and light energy, which is a sign of chemical change.

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A polar molecule with the two electrically charged regions on either end is called a _____

Answers

Poles, Similar to a magnet's north and south poles, the two electrically charged regions on either end of the molecule are referred to as poles. A dipole is a molecule that has two poles.

Are there two positive ends to polar molecules?

A polar molecule is one that has an unbalanced charge on one side, according to the meaning of the term in chemistry. It has a partial charge area. One end is marginally favorable, the other marginally negative. They often have an unbalanced distribution of electrons and are asymmetrical.

What other name does a polar molecule go by?

Similar to a magnet's north and south poles, the two electrically charged regions on either end of the molecule are referred to as poles. Due to its two poles, a polar molecule is known as a dipole. A polar bond itself can also be referred to as a dipole.

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based on the balanced thermochemical reaction, how much heat is produced when 25.0 g of methanol reacts with 38.7 g of oxygen?

Answers

541.6 kJ heat is produced when 25.0 g of methanol reacts with 38.7 g of oxygen.  

We need to determine in this Thermochemical reaction ,which reactant is limiting by converting each mass into moles--->
Thermochemical reaction

25.0 g CH3OH / 32.0419 g/mol = .780 mol

38.7 g O2 / 31.9988 g/mol = 1.209 mol

Actual mol CH3OH / mol O2 = .780/1.209 = 0.645

mol CH3OH / mol O2 = 0.67

methanol is limiting here -

kJ = .746 mol CH3OH (1452 kJ/ 2 mol CH3OH) = 541.6 kJ

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a 19.40 mass % aqueous solution of potassium phosphate has a density of 1.05 g/ml. calculate the molality of the solution.

Answers

The molality of the 19.40 mass % aqueous solution of potassium phosphate is 1.87 mol/kg.

Molality is defined as the number of moles of solute per kilogram of solvent.

To calculate the molality of a solution, we first need to determine the mass of solute in the solution.

In this case, 19.40 g of solute is present in 100 g of solution, so the mass of solute (m_solute) is 0.1940 x 100 g = 19.40 g.

Next, we need to determine the mass of solvent, which can be calculated from the density (d) and volume (V) of the solution.

The volume of the solution can be calculated from the mass and density as:

V = m / d

Finally, the molality of the solution can be calculated as:

molality = moles of solute / mass of solvent (in kilograms) = (m_solute / Molar mass) / (V / 1000 g/L)

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rx: 30ml of 20% fluoxetine suspension your pharmacy stocks: 40% fluoxetine suspension how many ml of the 40% suspension would be needed for the dilution?

Answers

Answer:

15 mL

Explanation:

Using the dilution formula m1v1=m2v2 and substituting values= 20(30)=40v2 and solving via algebra we get 15 mL

before running a titration, you calculate the expected endpoint. however, when performing the experiment, you pass the expected endpoint with no visible color change. what is the most likely problem with the titration set-up? select one: there was an air bubble in the buret tip. the buret tip is leaking titrant into the analyte. the analyte solution is being stirred too quickly. there is not enough indicator in the analyte.

Answers

The most likely problem with the titration set-up is an air bubble in the buret tip.

An air bubble in the buret tip can affect the accuracy of a titration by reducing the amount of titrant that is dispensed into the analyte solution. This can result in the appearance of passing the endpoint without a visible color change, as the titrant has not actually reacted with all of the analyte.

To avoid this problem, it is important to gently tap the side of the buret to remove any air bubbles before starting the titration, and to be mindful of air bubbles forming during the titration process. Additionally, checking the accuracy of the buret by performing a calibration before starting the titration can help to ensure that the results are reliable.

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What should you do with the leftover chemicals after and experiment? What should you do with the products of an experiment?

Answers

Chemical waste should be kept in the proper containers after the experiment. The EHS Hazardous Waste Program must be used to dispose of the majority of chemical wastes.

How should chemical containers be emptied?

Any empty glass object or container can be put in a shattered glass container; it doesn't have to be broken. If the chemical is not on the list of acutely hazardous waste and the empty container is made of metal or plastic, it should be thrown out with regular trash.

How are chemical wastes managed?

Treatment options for hazardous waste encompass chemical, thermal, biological, and physical processes. Ion exchange, precipitation, oxidation, reduction, and neutralizing are some examples of chemical processes. High-temperature incineration is one thermal process that is able to cleanse and destroy some organic wastes.

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