convert each of the following by dimensional analysis: for full credit show all steps

Answers

Answer 1

a. 2.25 litre into milliliters = 2250 milliliters.

b. 56.4 m to km = 90.767 kilometers

c. 125.7 cm into inch = 49.489 inch

What is unit conversion ?

A unit conversion is the expression of the same property in a different unit of measurement. Time, for example, can be expressed in minutes rather than hours, and distance can be converted from miles to kilometers, feet, or any other length measurement.

Multiply the value in liters by the conversion factor '1000'. Then, 2.25 liters = 2.25 × 1000 = 2250 milliliters.

56.4 miles equal 90.7670016 kilometers.

125.7 centimeters = 49.49 inches. Formula is multiply the value in centimeters by the conversion factor.

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Related Questions

What is the formula of a compound containing K+ and O²+ ions?

Answers

the formula of a compound containing K+ and O²+ ions is Potassium oxide, K2O

what is Potassium oxide, K2O?

The ionic compound of potassium and oxygen is known as potassium oxide (K2O). This is the base. It is the simplest potassium oxide, and it is a pale yellow solid. It is an uncommon compound that is extremely reactive. A certain percent composition is used in the analysis of some industrial materials, such as cement and fertilizers, in order to approximate K2O.

The structure of K2O crystallizes as an antifluorite. In this motif, potassium ions are coordinated to 4 oxide ions and oxide ions to 8 potassium, which is the opposite of how the anions and cations were positioned in CaF2. When the basic oxide K2O reacts violently with water, caustic potassium hydroxide is formed. Since it is deliquescent, it will draw moisture from the air and start this powerful reaction.

As a fertilizer, it is extensively used in the agricultural sector. Additionally, the production of soap and glass both use potassium oxide. It is also known that potassium oxide is used in some medical procedures.

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suppose that we are told that the probability density for finding a photon on a screen is given by nm-1 between nm and nm, where there is a sensor that will register a 'click' if a photon is detected.
A. 0
B. ¼
C. ½
D. ¾
E. 1

Answers

Option C 1/2 will be the option that the sensor clicks if a photon is detected.

Probability = [tex]\int\limits^x_x {e(x)} \, dx[/tex]

                  = [tex]\int\limits^2_2 {1} \, dx[/tex]

                  = 2.5-2 = 0.5 = 1/2

A photon is a particle of light that carries the electromagnetic force. Photons are considered to be the basic building blocks of light and are responsible for many of its properties, including its ability to propagate through space and its interaction with matter.

The probability density function (pdf) for a photon describes the likelihood of finding the photon in a certain region of space. In other words, it gives us a way to determine the probability that a photon will be detected in a particular location on a screen or other detector.

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Orbitals with the same energy are called O A. atomic orbitals O B. quantum orbitals O C. antibonding orbitals D. degenerate orbitals O E. bonding orbitals

Answers

Orbitals with the same energy are referred to as degenerate orbitals. The correct answer D.

This means that the orbitals have the same energy level and their wavefunctions are indistinguishable from each other.

Degenerate orbitals can be either bonding, which means that the electrons within the orbital will have a lower energy when the orbitals overlap, or antibonding, which means that the electrons within the orbital will have a higher energy when the orbitals overlap.

When two atomic orbitals overlap, the electron density in the region between the nuclei of the two atoms may be either increased or decreased. If the electron density is increased, the resulting molecular orbital is called a bonding orbital, while if the electron density is decreased, the resulting molecular orbital is called an antibonding orbital.

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A mole of oxygen (O2) molecules and a mole of carbon dioxide (CO2) molecules at the same temperature and pressure have
different volumes.
the same number of molecules.
the same number of atoms.
different average kinetic energy per molecule.

Answers

A mole of oxygen (O2) molecules and a mole of carbon dioxide (CO2) molecules at the same temperature and pressure have higher average kinetic energy per molecule.

At the same temperature and pressure, a mole of oxygen (O2) molecules and a mole of carbon dioxide (CO2) molecules have the same number of molecules because a mole is defined as the amount of a substance that contains the same number of particles (Avogadro's number, approximately 6.022 x [tex]10^23[/tex]) regardless of the identity of the substance. The average kinetic energy per molecule is related to the temperature of the gas and the mass of the molecule. Therefore, a mole of oxygen molecules has a higher average kinetic energy per molecule than a mole of carbon dioxide molecules at the same temperature.

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Help!!! ILL MARK YOU AS BRAINLIST

A basketball player is 6.6 feet tall and weighs 210 pounds. Calculate his height and weight using metric units. (Show calculations, report correct significant figures and units)

Answers

The height and weight in metric units is 2.01m tall and 2.7 nm weight.

What is metric units?A measurement system in which the basic units are the meter, second, and kilogram.A conversion factor seems to be a number that is utilized to multiply or divide one set of units by another set of units. The appropriate conversion factor must be used when converting to an equal value.To achieve accuracy and avoid measurement confusion, we must convert one unit to another.

When converting 6.6 feet tall to metric units:

6.6ft x (0.3048m/1ft)

= 2.01168m

= 2.01m

Similarly converting 210 pounds to meters :

The in lbs to nm converter converts 210 inch pounds to newton meters and vice versa. Divide the number of newton meters in 210 inch pounds by 8.85.

So here,

210 /8.85

= 23.7288135593 nm

= 23.7 nm

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Which of the following is/are true regarding organic compounds? Select all that apply.
A) many are large and carry out complex functions
B) held together by hydrogen bonds
C) useful in building body structures
D) contain distinctive functional groups
E) contain carbon
F) all dissolve easily in water

Answers

The correct options are A) many are large and carry out complex functions, C) useful in building body structures, D) contain distinctive functional groups, and E) contain carbon.

Organic compounds are a type of chemical compound that contains carbon atoms bonded to other elements, such as hydrogen, oxygen, nitrogen, and others. They are found in all living organisms and are responsible for a wide range of biological processes, such as energy production, cellular respiration, and the synthesis of proteins and other biomolecules.

A) Many organic compounds are large and carry out complex functions, such as DNA and proteins.

B) Organic compounds are not held together by hydrogen bonds, but by covalent bonds.

C) Organic compounds are useful in building body structures, such as the cell membranes, muscles, and bones.

D) Organic compounds contain distinctive functional groups, such as carboxyl, amino, and hydroxyl groups, which give them their unique properties.

E) Organic compounds contain carbon, which is the basis for all life on Earth.

F) Not all organic compounds dissolve easily in water. Some, such as lipids, are hydrophobic and do not dissolve in water.

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How much dry solute would you take to prepare each of the following solutions from the dry solute and the solvent?
A.) 130 mL of 0.440 M KCl
B.) 116 g of 0.220 m NaNO3
C.) 116 g of 1.7 % KCl solution by mass
D.) How much solvent would you take to prepare the solution in part B?
E.) How much solvent would you take to prepare the solution in part C?

Answers

To prepare the solution in part B, you would need 1360 mL of solvent.

To prepare the solution in part C, you would need 26.4 mL of solvent

How to prepare each of the following solutions from the dry solute and the solvent?

A) To prepare 130 mL of a 0.440 M solution of KCl, you would need 0.440 M * 130 mL = 57.2 g of KCl.

B) To prepare 116 g of a 0.220 M solution of NaNO3, you would need 116 g / (85.01 g/mol) = 1.36 mol of NaNO3.

This would require 1.36 mol * 1000 mL/1 mol = 1360 mL of solvent.

C) To prepare 116 g of a 1.7% (by mass) KCl solution, you would need 116 g * (1.7 g/100 g) = 1.97 g of KCl.

This would require 1.97 g / (74.55 g/mol) = 0.0264 mol of KCl.

This would require 0.0264 mol * 1000 mL/1 mol = 26.4 mL of solvent.

D) To prepare the solution in part B, you would need 1360 mL of solvent.

E) To prepare the solution in part C, you would need 26.4 mL of solvent.

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The colorless gas nitryl chloride (ClNO2) reacts with water to give a mixture of nitric acid and hydrochloric acid .
(a) Write a balanced chemical equation for this reaction.
(b) Determine the concentration (in moles per liter) of each of the acids that result from the complete reaction of 5.82×10-2 moles of nitryl chloride with enough water to give a solution volume of 609 mL.
nitric acid : ?M
hydrochloric acid : ?M

Answers

(a) The balanced chemical equation for this reaction is:

ClNO2 + H2O → HCl + HNO3

(b)The concentrations of nitric acid and hydrochloric acid in the solution are both[tex]9.6 * 10^{-5} moles/L[/tex].

(a) The balanced chemical equation for this reaction is:

ClNO2 + H2O → HCl + HNO3

(b) The concentration of each acid in the solution can be calculated by using the equation:

moles acid = (moles reactant × mole ratio of acid) / solution volume

For nitric acid:

moles HNO3 = [tex]\frac{ (5.82 * 10^{-2 }moles ClNO2 * 1 mol HNO3 / 1 mol ClNO2) }{609 mL}[/tex]

moles HNO3 = [tex]9.6 * 10^{-5} moles/L[/tex]

For hydrochloric acid:

moles HCl =[tex]\frac{(5.82 * 10{-2} moles ClNO2 * 1 mol HCl / 1 mol ClNO2) }{ 609 mL}[/tex]

moles HCl =[tex]9.6 * 10^{-5} moles/L[/tex]

Therefore, the concentrations of nitric acid and hydrochloric acid in the solution are both[tex]9.6 * 10^{-5} moles/L[/tex]

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If the decomposition of (NH4)2(CO3) is a first-order process with a rate constant of 0.116 s-1, how much ammonium carbonate would remain after 34.1 s, starting from a concentration of 0.947 M?

Answers

The rate of the decomposition of 0.947 M ammonium carbonate is 0.109 M/s. Then, the concentration of the reactant after 3.4 s is 0.64 M.

What is reaction rate?

The rate of a reaction is the rate of disappearance of the reactants or rate of appearance of the products. The rate is directly proportional to the concentration of the reactants.

For a first order reaction:

rate = k [A]

given k = 0.116 s⁻¹

[A] = 0.947 M.

Rate of decomposition = 0.947 M × 0.116 s⁻¹ = 0.109 M/s.

Then, after 3.4 s = 3.4 × 0.109 M/s. = 0.370 M disappears.

The remaining concentration of the reactant = 0.947 - 0.370 = 0.64 M.

Therefore, the remaining concentration of ammonium carbonate will be 0.64 M.

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which is least polar H-O or H-P

Answers

The least polar is H-P when it is compared with H-O.

What is Polarity?

This is referred to as a term which is depicted by the separation of electric charge leading to a molecule or its chemical groups having an electric dipole moment, with a negatively charged end and a positively charged end.

H-P is actually non polar since the difference was zero while H-O bond which is present in a water molecule is polarized due to the large difference in the electronegativity values of the oxygen and hydrogen atoms and is therefore the reason why the least polar substance in this scenario is H-P.

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The bond that is least polar is H-P

What is polarity?

Polarity refers to the distribution of electrical charge within a molecule or ion. Polarity arises from the unequal sharing of electrons in a covalent bond, or from the presence of ions with different charges.

Polarity plays an important role in determining the chemical and physical properties of a substance, as well as in its interactions with other polar or non-polar substances. For example, polar substances tend to dissolve well in polar solvents, while non-polar substances tend to dissolve well in non-polar solvents.

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when describing the uncertainty of a measurement, the term _____ refers to the closeness between a measurement and its accepted value, whereas the term _______ refers to the closeness among a set of measurements.

Answers

When describing the uncertainty of a measurement, the term accuracy refers to the closeness between a measurement and its accepted value, whereas the term precision refers to the closeness among a set of measurements.

What is measurement?

Measurement is the process of measuring a quantity, namely comparing the value of the quantity we are measuring with other similar quantities that are used as a reference.

There are 2 things that need to be considered in measurement, namely accuracy, and precision.

When describing the uncertainty in the measurement process, accuracy is needed which refers to the closeness between the measurement and the received value, while precision is needed to refer to the closeness between a series of measurements.

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Suppose that Daniel has a 2.50 L bottle that contains a mixture of O2 , N2 , and CO2 under a total pressure of 4.70 atm. He knows that the mixture contains 0.270 mol N2 and that the partial pressure of CO2 is 0.250 atm. If the temperature is 273 K, what is the partial pressure of O2 ?

Answers

The total pressure of a gas is defined as the sum of the partial pressures of the individual gases. The partial pressure of O₂ is 2.03 atm.

What is partial pressure?

The partial pressure of a component gas in a mixture is defined as the pressure that gas would exert if present alone in the vessel at the same temperature as that of the mixture.

Total pressure, P = p₁ + p₂ + p₃ + ...

From the ideal gas equation the number of moles of N₂ can be calculated as:

PV = nRT (Ideal gas equation)

n = PV / RT

R is the gas constant (0.0821  )

n = 4.70  × 2.50 / 0.0821 × 273

n = 0.5243 mol

Mole fraction = Number of moles / Total number of moles

Mole fraction of N₂ = 0.270  / 0.5243 = 0.5149

Partial pressure of a gas = Mole fraction × Total pressure

pN₂ =  0.5149 × 4.70 = 2.420 atm

P = pO₂ + pN₂ + pCO₂

4.70 = pO₂ +2.420 + 0.250

pO₂ = 2.03 atm

Thus partial pressure of O₂ is 2.03 atm.

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Two pure elements react to form a compound. One element is an alkali metal, X, and the other is a halogen, Z. What can you say about the compound?
a. It has the formula XZ
b. It does not dissolve in water c. It contains tonic bonds.
d. It contains covalent bonds.

Answers

What can be said about compounds of two pure elements that break apart is b. It does not dissolve in water

What are halogens?

Halogens are one of six non-metallic elements that make up group 17 (Group VIIa) on the periodic table.

Group VIIa elements are called halogens which consist of fluorine (F), chlorine (Cl), bromine (Br), Iodine (I), and Astatine (At). The element has 7 valence electrons in the ns2 np5 subshell.

This electron configuration ultimately makes the halogen elements highly reactive. In addition, halogens also tend to absorb one electron to form a negatively charged ion.

If two pure elements react to form a compound. One element is the alkali metal X, and the other element is the halogen, Z, so these compounds will not dissolve in water.

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How many grams of HGO can be produced by the complete reaction of 25.00 ml of liquid Hg?

Answers

The entire reactions of 25.00 ml of molten Hg can yield 5.416 g of HgO.

HgO can be dissolved or not.

HgO is 3.5 x 10-4 mol dm-3 in water soluble at 308 K.

• When compared to 298 K, this temperature has a higher solubility in NaOH solutions. Furthermore, unlike at 298 K, when it is most soluble in water, the point of minimal absorption is in the very low alkaline area (Figure I).

The chemical equation that describes how Hg & O2 react to generate HgO is as follows:

2 Hg (l) + O2 (g) -> 2 HgO (s)

moles = 1 M * 0.025 L = 0.025 moles

Finally, to convert the number of moles to grams, multiply the number of moles by the molar mass of HgO, which is 216.59 g/mol.

mass = moles * molar mass

mass = 0.025 moles * 216.59 g/mol = 5.416 g

So, 5.416 g of HgO can be produced by the complete reaction of 25.00 ml of liquid Hg.

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which of the following is an example of a homogeneous mixture? select the correct answer below: A. oil and vinegar B. salad dressing C. chocolate chip cookie D. soil E. maple syrup

Answers

A good example of a homogenous mixture would be maple syrup. Option E.

What are homogenous mixtures?

Homogeneous mixtures are gases, solids, or mixtures with uniform distribution of components. The components of homogeneous mixtures are uniformly dispersed within the mixtures.

Oil and vinegar don't mix and will therefore not form a uniform mixture.Salad dressings consist of different components but are usually not uniformly distributed.Chocolate chip cookies consist of different components that are not uniformly dispersed.Soil consists of different components but is also not uniformly dispersed.

Maple syrup consists of sugar and water. Sugar is soluble in water, thus, forming a homogeneous mixture with water.

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noncovalent interactions are critically important to the function of biomolecules. which of the following statements is/are (a) valid reason(s) for this importance?A.The effect of these weak interactions is cumulative. B.Their bond energies are ~10-100 times weaker than ordinary covalent bonds. C.Noncovalent interactions are made up of hydrogen bonding, electrostatic interactions, and dispersion forces. D.All of the listed statements are valid reasons for this importance.

Answers

D. All of the listed statements are valid reasons for the importance of noncovalent interactions in biomolecules.

The importance of noncovalent interactions in biomolecules is due to a combination of several factors:

A. The effect of these weak interactions is cumulative: Even though individual noncovalent interactions are weak, their combined effect can be significant and play a crucial role in the stability

B. Their bond energies are ~10-100 times weaker than ordinary covalent bonds: Because of their weaker bond energies, noncovalent interactions can be easily disrupted or formed, nature of biological systems.

C. Noncovalent interactions are made up of hydrogen bonding, electrostatic interactions, and dispersion forces: These three types of interactions allow for the specificity and diversity of biological interactions and play key roles in processes such as protein folding, DNA recognition, and ligand binding.

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a reaction in which the energy of the reactants exceeds the amount of energy required for the reaction to proceed is called _____.

Answers

A reaction in which the energy of the reactants exceeds the amount of energy required for the reaction to proceed is called exergonic reaction .

What is an exergonic reaction?

An exergonic reaction is one in which energy is released. Under constant temperature and pressure, Gibbs free energy (G) is negative because the reactants lose energy . These reactions typically do not require any energy to occur and thus occur spontaneously.

Exergonic reactions occur on their own. Exothermic reactions, such as mixing sodium and chlorine to make table salt, combustion, and chemiluminescence, are examples of exergonic reactions.

Thus, A reaction in which the energy of the reactants exceeds the amount of energy required for the reaction to proceed is called exergonic reaction .

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from the following items, which is closest in size to one mole of gas at stp? group of answer choices a microwave a car an elephant a marble

Answers

A microwave is a proper response (option C). At Standard Temperatures and Pressures (STP), a mole of gas equals 6.022 x [tex]10^{23}[/tex] particles, which is a very huge volume of gas.

This is a huge number that is significantly larger than the majority of daily things. The size of a mole of gas at STP is considerably less than that of an automobile, an elephant, or even a marble.

Conversely, a microwave is the closest in size to this extraordinarily big volume of gas, even though it is still considerably less than a mole of gas at STP.

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The question is -

From the following items, which is closest in size to one mole of gas at STP?

A) A car

B) An elephant

C) A microwave

D) A marble

In a very violent reaction called the thermite reaction, aluminum metal reacts with iron (III)oxide to form iron metal and aluminum oxide.Fe2O3 + AI → Fe + Al₂O₃What mass of aluminum will react 150 g of iron (III) oxide?

Answers

The mass of aluminum required to react with 150 g of iron (III) oxide is 75 g . This is calculated by using the following equation: mass of aluminum = (mass of iron (III) oxide / 2).

Therefore, 75 g of aluminum is required to react with 150 g of iron (III) oxide.

In the thermite reaction, a very exothermic reaction occurs when aluminum metal reacts with iron (III) oxide, producing iron metal and aluminum oxide. The reaction equation is as follows: Fe2O3 + AI → Fe + Al2O3. The reaction is highly exothermic, with a large amount of heat being released in the process.

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Which statement best describes the difference between a combustion reaction and a single-replacement reaction?
• Combustion reactions are always redox reactions.
• Combustion reactions are always exothermic.
• Single replacement reactions always involve oxygen.
• Single-replacement reactions are always combustion reactions.

Answers

Distinguishes a single-replacement reaction from a combustion reaction. One element in a compound is switched out for another in a single replacement reaction.

What does a combustion reaction look like?

The oxygen present in the air and the fuel, which is wood, continually react in a combustion process. While the fog you see is co2, the fire that is created is energy been released in a protracted exothermic process.

What happens when something burns?

An item quickly reacts with oxygen in the biological process of burning to create heat. The initial material is referred to as the feed, and the oxygen's source as the oxidizer. Although it is often a liquid for airplane propulsion, the fuel could be a hard, liquids, or gas.

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A vessel containing the following gases is analyzed by a scientist:He, Ne, Ar, KrWhich of the following gases would be moving the slowest?A) NeB) ArC) KrD) He

Answers

The slowest moving gas would be He, since He has the lowest atomic weight of all the gases being analyzed.

This means that He molecules have the least amount of energy, and thus move the slowest.  The speed at which a gases molecule moves is determined by its kinetic energy, which is proportional to the square of its mass. Therefore, the He molecules have the least kinetic energy and thus move the slowest. This is because He has the lowest atomic weight of all the gases: He (2.0), Ne (20.2), Ar (39.9), and Kr (83.8). The higher the atomic weight, the greater the kinetic energy and thus the faster the molecules will move.

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A gas has a pressure of 1.43 atm and occupies
a volume of 7.7 L. If the gas is compressed to
a volume of 1.64 L, what will its pressure be,
assuming constant temperature?

Answers

The final pressure of the gas will be 7.38 atm after it is compressed to a volume of 1.64 L.

What is pressure?

Pressure can be defined as the force applied perpendicular to the surface of an object per unit area over which that force is distributed.

The pressure of the gas after compression can be calculated using the ideal gas law:

P1V1 = P2V2

Where

P1 is the initial pressure V1 is the initial volumeP2 is the final pressure V2 is the final volume

Rearranging the equation for P2, we have:

P2 = P1 * (V1 / V2)

Plugging in the given values, we get:

P2 = 1.43 atm * (7.7 L / 1.64 L) = 7.38 atm

Therefore, The final pressure of the gas will be 7.38 atm after it is compressed to a volume of 1.64 L.

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20. Maltose, C₁₂H₂2O1, is a sugar produced by malting (sprouting) grain. A solution of maltose at 25C has an osmotic pressure of 5.50 atm. What is the molar concentration of maltose?​

Answers

If Maltose, C₁₂H₂2O1, is a sugar produced by malting (sprouting) grain. A solution of maltose at 25C has an osmotic pressure of 5.50 atm. the molar concentration of maltose is: 0.0381 mol/L.

How to find the molar concentration of maltose?

We can use the relationship between osmotic pressure and molar concentration to calculate the molar concentration of maltose.

Π = CRT

where:

Π = osmotic pressure (in atm)

C = molar concentration of the solute (in mol/L)

R = ideal gas constant (0.0821 L·atm/mol·K)

T =  temperature in Kelvin (25°C = 298 K)

Hence,

C = Π / (RT)

C = 5.50 / (0.0821 * 298)

C = 0.0381 mol/L

Therefore the molar concentration of maltose in the solution is 0.0381 mol/L.

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A scientist weighed three laboratory samples and recorded the data below. Record the total weight by determining the sum of the samples and then record the weight using scientific notation.

Sample 1: 0.00261 grams
Sample 2: 0.00362 grams
Sample 3: 0.00180 grams

Answers

Sample 1 = 2.61 * 10^-3 g

Sample 2  = 3.62 * 10^-3 g

Sample 3 - 1.80 * 10^-3 g

What is the scientific notation?

We know that when we talk about the scientific notation we are talking about the way that we can use to reduce the bulk of the figures such that the figures that we have would be minimal.

In this case we have been told that the values of the samples can be given by;

Sample 1: 0.00261 grams

Sample 2: 0.00362 grams

Sample 3: 0.00180 grams

The task is to write these values by the use of the scientific notation.

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12. If a gas canister contains 1.45 L of fuel, and the fuel density is 0.710 g/cm³. What is the mass of the fuel contained in the gas canister? (1cm³= 1mL)

Answers

The density of the fuel within a gas canister is 0.029 cm³ if the canister holds 1.45 L of gasoline and the gasoline has a density of 0.710 g/cm³.

Why is density crucial?

A place's density describes how many things there are there, which could include people, animals, plants, or other objects. To calculate density, multiply this quantity by the area's dimensions. The population density of a nation is determined by dividing the total population by the area, measured in square kilometers and miles.

According to the given information:

Volume of canister = 1.45 L.

Convert it to cm³.

The conversion formula is : 1 L = 1000 cm³

So;

1.45 L = 1.45 L × (1000 cm³)/1 L

= 1450 cm³

Mass of the fuel = volume × density

= 1450 cm³ × 0.710 g/ cm³

= 1029.5 g

Convert g to kg:

1029.5 g × (1 kg/ 1000 g)

= 1.0295 kg.

= 1.03 kg (approximately)

Mass of drop of gasoline = 22 mg

= 22 mg ×(1 g/ 1000 mg)

= 0.022 g

Volume = mass/ density

= 0.022 g/ (0.754 g/cm³)

= 0.029 cm³

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What is the hybridization and the bond angle in SO3?

Answers

Answer and Explanation:

In SO3, sulfur is the central atom and is bonded to three oxygen atoms.

To determine the hybridization of the central atom in SO3, we first need to count the number of electron groups around the sulfur atom. An electron group can be a lone pair of electrons or a bond (single, double or triple bond) to another atom.

In SO3, the sulfur atom is bonded to three oxygen atoms, and there are no lone pairs on the sulfur atom. Therefore, the total number of electron groups around the sulfur atom is 3.

The hybridization of the central atom in SO3 is sp2. This means that the sulfur atom has three hybrid orbitals that are involved in bonding with the oxygen atoms.

The bond angle in SO3 is approximately 120 degrees. This is because the three oxygen atoms are arranged symmetrically around the central sulfur atom, with each bond angle at 120 degrees.

explain why mould did not grow well on the bread spinkled with lemon juice?​

Answers

Answer:

The mold didn't grow as well on the bread sprinkled with lemon juice because lemon juice is acidic. Acids hinder the growth of many common fungi and bacteria.

The moulds are neither plants nor animals, they are part of the kingdom fungi. They are found in many colours including white. The acid hinders the growth of mould.

What is mould?

The moulds are defined as the microscopic fungi that live on plant or animal matter. They can be found indoors and outdoors and they are part of our natural environment.

The some of the important factors which affect the mould growth are temperature, acidity, pH, moisture levels, etc. The lemon juice contains the acid citric acid. So it has acidic character.

The mould cannot grow well on the bread sprinkled with lemon juice because the lemon juice is acidic. The acids hinder the growth of several fungi and bacteria. The pH of lemon juice is around 3. So the acidic substances can kill a lot of moulds.

But vinegar does not kill all moulds and its pH is around 2.5.

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A gas has a pressure of 1.43 atm and occupies
a volume of 7.7 L. If the gas is compressed to
a volume of 1.64 L, what will its pressure be,
assuming constant temperature?

Answers

Considering the Boyle's law, if the gas is compressed to a volume of 1.64 L, the pressure will be 6.714 atm.

Definition of Boyle's law

Boyle's law establishes the relationship between the pressure and the volume of a gas when the temperature is constant. Boyle's Law states that the pressure of a gas in a closed container is inversely proportional to the volume of the container: If the pressure increases, the volume decreases while if the pressure decreases, the volume increases.

The mathematical expression of this law is

P×V=k

where

P is the pressure.V is the volume.k is a constant.

Being an initial state 1 and a final state 2, it is fulfilled:

P₁×V₁=P₂×V₂

Final pressure in this case

In this case, you know:

P₁= 1.43 atmV₁= 7.7 LP₂= ?V₂= 1.64 L

Replacing in Boyle's law:

1.43 atm× 7.7 L=P₂× 1.64 L

Solving:

(1.43 atm× 7.7 L)÷1.64 L=P₂

6.714 atm= P₂

Finally, the pressure will be 6.714 atm.

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When cleaning a buret, begin by coating the inside with____ (detergent/water/NaOH solution) most of it out, then drain the rest by ______
(opening the stopcock/disassembling the buret, turning the buret upside-down). Rinse with________ (deionized water/tap water/acetone), then hang upside-down on a buret rack.

Answers

When cleaning a buret, begin by coating the inside with NaOH solution most of it out, then drain the rest by opening the stopcock. Rinse with acetone , then hang upside-down on a buret rack.

Why do we rinse burette with solution?

To avoid contamination, the burette, like the pipette, should be rinsed with distilled water before filling with the solution.

Rinse the buret with the liquid you intend to use two or three times. Fill the buret with a small amount of liquid, turn the pipet horizontally, and rotate it so that the liquid contacts the entire inside surface of the buret.

Thus, When cleaning a buret, begin by coating the inside with NaOH solution most of it out, then drain the rest by opening the stopcock.

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following the formal sign convention, please match the heat and work interactions with their appropriate signs:

Answers

The formal Positive sign convention for, work done by the system and heat transfer into the system. The Negative sign convention for heat transfer out of the system and work done to the system.

Thermodynamics is a special branch of chemistry that deals with concepts of heat, temperature and work and interconversion of heat into other forms of energy. Sign convention for heat : Heat transfer into the system is positive and heat transfer from the system is negative. In other words, all heat exchanges that increase the energy of a system are positive and all heat exchanges that decrease the energy of a system are negative. Sign rule for work :

If the task is running on the system, its sign is positive.If the system works, the sign is negative.

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Complete question:

Following the formal sign convention, please match the heat and work interactions with their appropriate signs:Positive or Negative

1) work done by the system

2) heat transfer into the system

3) heat transfer out of the system

4) work done to the system

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