hich of the following statements about subatomic particles are false? i. neutrons reside inside of the nucleus. ii. the atomic number is equal to the number of neutrons in the nucleus of an atom. iii. electrons are more massive than protons.

Answers

Answer 1

The atomic number is equal to the number of neutrons in the nucleus of an atom and the electrons are more massive than protons are the false statement about subatomic particles.

A sub-atomic particle is a particle which comprises an atom. Electrons, protons and neutrons collectively are called as the sub-atomic particles that form an atom. An electron is a negatively charged sub-atomic particle which revolves around the nucleus, whereas the Proton is a positively charged sub-atomic particle. On the other hand, a neutron is a neutral sub-atomic particle. James Chadwick was the first to discover the presence of the neutrons inside an atom in 1932. Neutrons as well as protons are collectively called as nucleons.

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Related Questions

if the rate of a reaction increases by a factor of 10 when the temperature is increased by 35 degress celcius from 300k to 335k, what is the activation energy for the reaction?

Answers

The activation energy for a reaction that increases by a factor of 10 when the temperature is increased from 300K to 335K is approximately 57.1 kJ/mol.

This can be calculated using the Arrhenius equation, which states that the reaction rate is proportional to the exponential of the activation energy divided by the absolute temperature. The equation used to calculate the activation energy is:

Ea = -RT * ln(k2/k1),

Where R is the ideal gas constant, T is the absolute temperature, k1 is the reaction rate at 300K, and k2 is the reaction rate at 335K.

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how many moles of water are produced when 3 moles of hydrogen gas reacts with 2 moles of oxygen gas?

Answers

Explanation:

When 3 moles of hydrogen gas react with 2 moles of oxygen gas, they will produce 2 moles of water (H2O). The balanced chemical equation for this reaction is:

2H2 + O2 -> 2H2O

It can be seen that 2 moles of hydrogen react with 1 mole of oxygen to form 2 moles of water. Therefore, when 3 moles of hydrogen gas react with 2 moles of oxygen gas, they will produce 2 moles of water.

Acetic acid, also known as ethanoic acid, has the chemical formula of CH3COOH. Determine the most mass of the acid.
(a) 60.05g
(b) 24.02g
(c) 40.00g
(d) 52.04g

Answers

Acetic acid is composed of CH3COOH. Mass= 6.022× (10 )23 / 60.06  =9.973× (10 )−23 g.

What is the elements of CH3COOH?

Acetic acid, also termed ethanoic acid and methane carboxylic acid, is a colorless liquid with a strong, recognizable, pungent, and sour smell. Acetic acid is composed of CH3COOH.

Four hydrogen (H) atoms, two oxygen (O) atoms, and two carbon (C) atoms make up its atomic composition.

It is an organic compound since carbon appears in its chemical composition.

As of writing, 60.06 g/mol is the molar mass of CH 3 COOH.

Finding the mass of one CH 3 COOH molecule is necessary.

This equation can be used:

The quantity of atom = Molar mass / mass Equals * Avogadro number

In the formula, we can change the values shown below:

Atom count is one.

Molar mass = 60.06 g/mol

Avogadro number = 6.022 * (10) 23

The quantity of atoms Molar mass / mass  * Avogadro number

∴1= 60.06 / mass  ×6.022 × (10 )23

Mass= 6.022× (10 )23 / 60.06  =9.973× (10 )−23 g.

The Complete Question.

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what must be done in order to concatenate a string and a float object?

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In order to concatenate a string and a float object, "The float object must be converted to a string object through the str () function".

Generally, concatenation is not possible with different types of data.

So in order to concatenate, we need the object must be of same type.

For that the only possible way is type conversion.

For concatenating any data type with another data type, we should make the both the same.

If we want to concatenate any number of type int or float with a string, we should convert the number into a string with the help of str () function.

After that we can use “+” operator for concatenation.

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what makes a particular solvent mixture the best choice for analyzing a compound or mixture of compounds by tlc?

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When choosing a solvent mixture for Thin Layer Chromatography (TLC), it is important to consider the polarity of each solvent in the mixture.

A good solvent mixture should be able to separate all of the components of the compound or mixture of compounds being analyzed. Additionally, the polarity of the solvent should match the polarity of the sample, as this will allow for the most efficient separation.

It is also important to consider the boiling point, boiling range, and viscosity of the solvent in order to ensure that the solvent will not volatilize before the separation is complete. Finally, the solvent should be relatively non-toxic and have a low cost.

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calculate the osmotic pressure of a solution containing 20.00 mg mg of hemoglobin in 14.8 ml ml of solution at 19 ∘c ∘c . the molar mass of hemoglobin is 6.5×104 g/mol6.5×104 g/mol .

Answers

Using the data provided, the osmotic pressure is 49799.5 atm.

The osmotic pressure is the least amount of pressure that must be applied to a solution in order to block the passage of the solution's pure solvent through a semipermeable membrane. It may alternatively be described as a measurement of a solution's propensity to osmotically absorb its pure solvent.

Number of moles = mass/molar mass

                           =  20.00 × 10^-3/6.5 × 10^4

                           = 30.76 mol.

volume V = 14.8  x 10^-3 L

R = 0.08205746 L.atm/K.mol

T = 19+ 273K

  = 292 K

Using  the formula of Ideal gas law PV = nRT

P = (30.76 * 0.08205746 *  292)/0.0148

  = 49799.5 atm

The osmotic pressure is 49799.5 atm

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If 4.1 g of Cr is heated with 9.3 L of Cl2 gas, what mass of CrCl3 will be produced from the following equation: 2 Cr + 3 Cl2 -> 2 CrCl3``

Answers

The mass of CrCl3 will be produced from the following equation:

2Cr + 3Cl2 -> 2CrCl3 if 4.1 g of Cr is heated with 9.3L of Cl2 gas is 12g

Given the mass of Cr(m) = 4.1g

The molar mass of Cr (M) = 51g/mol

The volume of Cl2 gas (V) =9.3L = 9.3g

The molar mass of Cl2 = 71g

Given the reaction is: 2Cr + 3Cl2 -> 2CrCl3

The molar mass of CrCl3 is = 158.5g

We know that to find number of moles = mass/molecular mass of substance such that:

The number of moles of Cr (n) = 4.1/51 = 0.08

The number of moles of Cl2 = 9.3/71 = 0.13

Here the Cr acts as limiting reagent since it has less moles

The mass of CrCl3 using Cr = 0.08 x 158.5 x 2 mol of CrCl3/2 mol of Cr = 12.7g

The mass of CrCl3 using Cl2 = 0.13 x 158.5 x 2 mol of CrCl3/3 mol of Cl2 = 14g

Hence , the mass of CrCl3 produced is 12g

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what molecule shape is sbf6-

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The molecule shape of SF6 is octahedral.

SF6 is a sulfur hexafluoride molecule, which is composed of a central sulfur atom surrounded by six fluorine atoms. In the SF6 molecule, the sulfur atom is bonded to the six fluorine atoms through strong covalent bonds.

The arrangement of these bonds gives SF6 an octahedral shape, with the six fluorine atoms positioned at the vertices of an imaginary octahedron and the sulfur atom at its center. The octahedral shape of SF6 is due to the symmetrical distribution of electron density around the central sulfur atom, which results in a sp3d2 hybridization state.

In summary, SF6 has an octahedral molecule shape, which is characterized by six equidistant vertices arranged symmetrically around a central atom.

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40 POINTS *
What is the role of proteins in transmitting pain messages?

Answers

Answer:

Receptor proteins are responsible for picking up the (pain) signal and pass it along to the next cell through the nerve network.

Answer:

Proteins play an important role in transmitting pain messages. Pain receptors in the body are activated when they come into contact with chemicals such as prostaglandins and bradykinin. These chemicals interact with proteins in the cell membrane and activate proteins known as ion channels. Ion channels allow certain ions to enter the cell, which triggers the pain signals that are then sent to the brain.

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what is the total pressure in a canister that contains oxygen gas at a partial pressure of 804 mm hg

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Answer: See Explanation

Explanation:

The total pressure in a canister that contains oxygen gas at a partial pressure of 804 mm Hg depends on the other gases present in the canister. The total pressure of a gas mixture is the sum of the partial pressures of all the gases present in the mixture.

The partial pressure of a gas is the pressure that it would exert if it were alone in the container at the same temperature and volume. So, if the canister also contains other gases, we need to know their partial pressures in order to calculate the total pressure.

For example, if the canister contains only oxygen gas at 804 mm Hg and no other gases, the total pressure would be 804 mm Hg. However, if the canister also contains other gases such as nitrogen, helium, etc. with specific partial pressures, we have to sum all the partial pressures to get the total pressure.

Therefore, the total pressure in a canister that contains oxygen gas at a partial pressure of 804 mm Hg can only be determined by knowing the partial pressures of all the other gases present in the canister.

PLEASE ANSWER NOW THANK YOU

Answers

The products of this chemical reaction from plant cells are sugar and oxygen (C₆H₁₂O₆ + 6O₂).

What are plant cell reactions?

Plant cell reactions refer to the metabolic processes that occur within the cells of plants. These reactions are crucial for the survival and growth of the plant.

Some of them are photosynthesis, the process by which plants convert light energy into chemical energy stored in glucose (sugar). Respiration, the process by which plants release energy stored in glucose and convert it into energy usable by the cell.

Cellular respiration, the process by which cells use oxygen to produce energy from glucose. Transpiration, the process by which water is taken up by roots and then lost from the leaves through tiny pores called stomata.

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how much heat is required to melt 12.6 g of 24-carat gold at 298 k? the melting temperature of 24-carat gold is 1063oc. the molar heat capacity of 24-carat gold is 25.6 j/molk and the heat of fusion for 24-carot gold is 12.5 kj/mol.

Answers

0.805 kJ of heat is required to melt 12.6 g of 24-carat gold at its melting point of 1063^0C.

The heat required to melt 12.6 g of 24-carat gold can be calculated using the heat of fusion, which is the amount of heat required to convert a solid into a liquid at its melting point.

The heat of fusion for 24-carat gold is given as 12.5 kJ/mol.

We can convert the mass of gold to moles and then use the heat of fusion to calculate the heat required.

First, convert the mass of gold to moles:

12.6 g / (196.97 g/mol) = 0.0644 mol

Next, multiply the number of moles by the heat of fusion to find the heat required:

0.0644 mol * 12.5 kJ/mol = 0.805 kJ

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what structures comprise the highlighted structure?

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The dorsal root ganglion, which is made up of afferent neurons, is shown in the structure that has been highlighted. It is made up of the cell bodies of sensory or afferent neurons that send information from the body to the spinal cord.

The highlighted structure is the ANS's primary integration hub and serves as "the boss" of the ANS. The red nucleus and the cerebral aqueduct of Sylvius are visible in the middle of the field, together with the cerebral peduncles of the midbrain. The structures in bold are the nuclei. Squamous stratified epithelium is the epithelium that is highlighted. The pelvis is made up of the coxal bone and sacrum. The capitulum is the building in bold. The capitulum is the building in bold.

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how long will it take for the concentration of cyclopropane to decrease from 2.00 m to 0.0200 m? report your answer in hours.

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The time it will take for the concentration of cyclopropane to decrease from 2.00 M to 0.0200 M is approximately 11.11 hours.

This can be calculated using the equation t = -(1/k) x ln(0.0200/2.00), where k is the rate constant for the reaction and ln is the natural logarithm.

This equation is derived from the rate law, which states that the rate of a chemical reaction is proportional to the concentrations of the reactants. The rate constant, k, is a measure of how quickly the reaction takes place and can be determined by measuring the rate of the reaction at different concentrations of the reactants. The natural logarithm, ln, is used to calculate the time it will take for the concentration of the reactant to decrease from one value to another. By plugging the rate constant and the initial and final concentrations into the equation, you can calculate the time it will take for the concentration of cyclopropane to decrease to the desired value.

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How does the addition of heat to a substance at its melting point affect its average kinetic energy?

Answers

At the melting point, the heat added is used to break the attractive intermolecular forces of the solid instead of increasing kinetic energy, and therefore the temperature remains constant.

What volume (in liters) of a 133 ppm NH3 solution with a density of 0.998 g/mL is required to provide 0.0175 grams of NH3? (Molecular Weights NH3 = 17.03 g/mol, H2O = 18.02 g/mol)

Answers

0.0758 L is the volume of a 133 ppm NH3 solution with a density of 0.988 g/ml is required to provide 0.0175 grams of NH3.

To find the volume of a 133 ppm NH3 solution required to provide 0.0175 grams of NH3, we'll first convert the concentration of the solution from parts per million (ppm) to grams per liter (g/L).

= (ppm) x (density of solution in g/mL) x (molecular weight of solute in g/mol) / (10^6)

= (g/L)

For a 133 ppm NH3 solution at 0.998 g/mL density:-

= (133 ppm) x (0.998 g/mL) x (17.03 g/mol) / (10^6)

= 0.2309 g/L

Next, we'll use the mass of NH3 (0.0175 g) and the concentration of the solution (0.2309 g/L) to find the volume of the solution required:

= (mass of NH3 in g) / (concentration of solution in g/L)

= (volume of solution in L)

= (0.0175 g) / (0.2309 g/L)

= 0.0758 L

So, 0.0758 liters of the 133 ppm NH3 solution with a density of 0.998 g/mL is required to provide 0.0175 grams of NH3.

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How many liters of space will a 70.0 grams sample of CO2 occupy?

Answers

35.6 liters of space will a 70.0 grams sample of CO2 occupy.

What do you mean by molar mass ?

Molar mass is defined as the mass of a given substance divided by the amount of that substance, expressed in grams per mol.

To calculate a molecule's molecular mass, multiply the subscript by the atomic mass of each element in the molecule, then add the masses of all the elements in the molecule.

The molar mass of carbon dioxide is 44.01 g/mol.

The volume of a mole of ideal gas at STP is 22.4 L,

Therefore,  the volume of 70.0 g = ?

= (70.0g) / (44.01 g/mol) (22.4 L/mol)

= 35.6 L

Thus, 35.6 liters of space will a 70.0 grams sample of CO2 occupy.

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Consider the charge distribution of a Grignard Reagent. There i a partial __________ charge on Mg--X, where X is a halogen, and a partial _______ charge on the adjacent carbon.

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In the charge distribution of a Grignard Reagent. There is a partial positive charge on Mg--X, where X is a halogen, and a partial negative charge on the adjacent carbon.

The Grignard reaction is an organometallic chemical reaction. It requires a Grignard reagent which is the alkyl, vinyl, allyl, or aryl-magnesium halide. It is reacted along with a particular carbonyl group  in a ketone or in an aldehyde. This reaction involves  the formation of the carbon–carbon bonds.

Grignard reagents are basically strong nucleophiles. They possess the ability to form carbon-carbon bonds. The charge distribution in these reagents is such that there is a partial positive charge on the Mg--X, where X represents a halogen, and a partial negative charge present on the adjacent carbon.

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why use naoh in determination of the acetylsalicylic acid uv spectroscopy

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The use of sodium hydroxide (NaOH) in the determination of acetylsalicylic acid (ASA) by UV spectroscopy is for the purpose of removing the acetyl group from ASA, converting it to salicylic acid (SA).

This step is necessary because salicylic acid is more easily analyzed by UV spectroscopy, as it has a strong absorption peak at around 270 nm. In contrast, ASA has a weak absorption at this wavelength and is not easily detected by UV spectroscopy.

By adding NaOH to the solution of ASA, the acetyl group is deprotonated and can be removed by reaction with the hydroxide ion, converting the ASA to SA.

The resulting SA solution can then be measured by UV spectroscopy, providing a much stronger signal and more accurate determination of the ASA concentration.

In this manner, the use of NaOH allows for a more sensitive and accurate determination of the ASA concentration by UV spectroscopy.

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Calculate the atomicity of Mg(OH)2

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Answer: It's important to note that the atomicity is different from the formula mass or molar mass which is calculated by adding the atomic mass of all the atoms in the compound.

Explanation: Mg(OH)2 is a compound composed of one magnesium (Mg) atom and two hydroxides (OH) ions. The atomicity of a compound refers to the number of atoms in one formula unit of the compound. In the case of Mg(OH)2, the formula unit contains one magnesium atom and two hydroxide ions, so the atomicity of Mg(OH)2 is 1 + 2 = 3 atoms.

acetone is a common solvent that has a density of 0.7899 g/ml. 0.7899 g / ml . what volume of acetone, in milliliters, has a mass of 31.0 g 31.0 g ?

Answers

By using the definition of density, the volume of acetone is 39.24547 ml.

As per the given data, Acetone is a common solvent that has a density of 0.7899 g/ml.

Also, the mass is given by 31.0 g

Density is a quantity that allows us to measure the amount of mass in a certain volume of a substance.

The expression for the calculation of density is the quotient between the mass of a body and the volume it occupies:

Density = Mass ÷ volume

It can be deduced that density is inversely proportional to volume: the smaller the volume occupied by a given mass, the higher the density.

Volume of acetone

In this case, you know that:

Density = 0.7899 g/mL

Mass = 31.0 g

Replacing in the definition of density:

0.7899 g/ml= 31.0 g ÷ Volume

Solving:

Volume = 31.0 g ÷ 0.7899 g/ml

Volume = 39.2454741106 ml

Therefore, the volume of Acetone is 39.2454741106 ml.

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1.
What is speed?
Ohow far you go
Ohow fast you accelerate
how much distance is covered over a period of time
the change in the location of an object

Answers

Speed is C. how much distance is covered over a period of time

What is Speed?

This refers to the term that is used to describe and define the size of the change in position of that object over time or the size of the change in position per unit of time and this is a scalar quantity.

Hence, it can be seen that from the answer choices given, speed is simply the distance covered at a particular time which is option C.

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Find the number of moles of oxygen required to produce 5.0 moles of water

2H2 + O2 --> 2H2O

Step to step instructions, please

Answers

Answer:

To find the number of moles of oxygen required to produce 5.0 moles of water, you need to balance the equation for the reaction between hydrogen and oxygen.

Step 1: Balance the equation:

2H2 + O2 --> 2H2O

Step 2: Determine the stoichiometric ratio of moles of oxygen required per mole of water:

From the balanced equation, 1 mole of oxygen is required for every 2 moles of water produced.

Step 3: Calculate the number of moles of oxygen required:

If you want to produce 5.0 moles of water, then the number of moles of oxygen required would be 1 * (5.0 moles of H2O / 2 moles of H2O) = 2.5 moles of oxygen.

4. in glycolysis, glucose is broken down to yield energy. if the equilibrium constant of the isomerization of glucose-6-phosphate to fructose-6-phosphate is 0.5, would this reaction proceed in the forward or reverse direction? what is the free energy of the reaction? using standard conditions (1 m) as an initial state, what are the equilibrium concentrations?

Answers

The reaction would proceed in reverse direction. At equilibrium, the concentration of fructose-6-phosphate is 0.5 M, while the concentration of glucose-6-phosphate is 1 M. The free energy change (ΔG) of the isomerization of glucose-6-phosphate to fructose-6-phosphate at 25°C is approximately 3.86 kJ/mol.

The equilibrium constant (Kc) of the isomerization of glucose-6-phosphate to fructose-6-phosphate is 0.5, which means that the reaction would tend to proceed in the reverse direction and the concentration of glucose-6-phosphate would be higher than that of fructose-6-phosphate at equilibrium. Given an initial concentration of 1 M of glucose-6-phosphate and 0 M of fructose-6-phosphate, the concentration of fructose-6-phosphate at equilibrium can be calculated using the equilibrium constant as follows: 0.5 = [Fructose-6-phosphate] / 1, giving [Fructose-6-phosphate] = 0.5 M. The change in free energy (ΔG) of the reaction can be calculated using the equation ΔG = -RT ln Kc, where R is the gas constant (8.31 J/mol·K) and T is the temperature in Kelvin. At 25°C (298 K), ΔG = -(8.31 J/mol·K)(298 K) ln 0.5 = 3.86 kJ/mol.

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It’s says you have to prepare 250 mL of a solution A (H2SO4) that has a molal concentration of 0,2 m and this from an initial concentrated solution :
Concentration of the concentrated solution of H2SO4: 62% m/m (g/g)
Voluminous masse of H2SO4 concentrated: 1,52g/mL
Calculate the volume of the solution concentrated ( H2SO4) that is necessary

It’s a chemistry problem

Answers

Volume of concentrated solution = 250 mL * 0.2 molal/ (1.52 g/mL * 0.62 molal)= 33.76 mL

Dilution calculationThis is an example of a dilution calculation. To calculate the volume of the concentrated solution necessary to prepare 250 mL of a 0.2 m solution of H2SO4, we must use the formula: V1C1 = V2C2, where V1 is the volume of the concentrated solution, C1 is the concentration of the concentrated solution, V2 is the desired volume of the diluted solution, and C2 is the concentration of the diluted solution.In this case, V1 = ?, C1 = 62% m/m (g/g), V2 = 250 mL, and C2 = 0.2 m. Rearranging the equation, we get V1 = V2C2/C1, or V1 = 250 mL x 0.2 m / 62% m/m (g/g).Since 1 mL of the concentrated solution has a mass of 1.52 g, the volume of the concentrated solution necessary is V1 = (250 mL x 0.2 m) / (62% m/m x 1.52 g/mL) = 7.18 mL.Therefore, 7.18 mL of the concentrated solution is necessary to prepare 250 mL of a 0.2 m solution of H2SO4.

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which molecule or ion below is amphipathic? which molecule or ion below is amphipathic? h2o ch3ch2ch2ch2ch3 h2nch2cooh (glycine)

Answers

The molecule of ion below amphipathic is CH3(CH2)14COO.

Saturated fatty acids include palmitic acid. The substance's chemical name is CH3(CH2)14COO. The primary dietary sources of palmitic acid are meat, cheese, and dairy products.

A molecule that is both hydrophobic nonpolar and hydrophilic polar is said to be amphiphilic or amphipathic. Sodium dodecylbenzene sulfonate, pictured below, is an example of a soap or detergent that has both a hydrophobic zone shown in red and a hydrophilic region for cleaning purposes shown in blue.

A chemical molecule known as an amphipath, or amphiphile from the Greek words memphis, both, and philia, love, friendship, possesses both hydrophilic polar, attracted to water and lipophilic attracted to fat qualities. It is known as amphiphilic or amphipathic chemical.

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which of the following correctly reflect avogadro's number? choose all that apply. multiple select question. the number of entities in a mole is called avogadro's number. the mole is abbreviated mo. the mole contains 6.022 x 1023 entities. for a pure substance, the mole specifies only the number of entities in a sample.

Answers

The reflect Avogadro's number are the number of entities in a mole is called Avogadro's number. The mole contains 6.022 x 10^23 entities. For a pure substance, the mole specifies only the number of entities in a sample. Therefore, option A, C and D are correct.

Avogadro's number is the number of entities (atoms, molecules, ions, etc.) in a mole of substance. It is defined as exactly 6.02214076 x 10^23 entities per mole. The mole is the SI unit of amount of substance, similar to how a dozen is a unit of count for eggs.

This concept is important in the field of chemistry because the mole allows for the easy conversion of the mass of a substance to the number of entities it contains, and vice versa. Knowing Avogadro's number is crucial in calculating chemical reactions, stoichiometry and many other areas of chemistry.

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koh hno3 → kno3 h2o 13.5 g koh and 12.0 g hno3 react. the limiting reactant is:

Answers

In this reaction, KOH is the limiting reactant. The amount of KNO3 and H2O produced will be determined by how much KOH is present.

This is because there is 13.5 g of KOH and 12.0 g of HNO3, so there is not enough HNO3 to react with all of the KOH.  as the reaction cannot proceed if there is not enough HNO3 to react with all of the KOH. The reaction is an acid-base reaction, where KOH acts as the base and HNO3 acts as the acid. So KOH is the limiting reactant in the equation KOH + HNO3 → KNO3 + H2O.

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The mass of one mole of lead (Pb) atoms is 207.2 g. Use a proportion to calculate the number of lead atoms in a 15.00 g sample of lead.

Answers

The number of lead atoms in a 15.00 g sample of lead is 4.359 x 10^22 atoms.

What does one mole and its unit mean?

The SI unit of substance amount is the mole, represented by the sign mol. Exact 6.022 x 10^23 fundamental entities constitute one mole. The Avogadro number is the fixed numerical expression of the Avogadro constant, NA, when stated in the unit mol^-1.

Avogadro's number = 6.022 x 10^23 atoms/mol

molar mass of lead => 207.2 g

No of moles => 15/207.2 => 0.072mol

        1 mole of Pb contains 6.022 x 10^23 atoms/mol

             => 0.072 mol x 6.022 x 10^23 atoms/mol

             => 4.359 x 10^22 atoms.

What is the meaning of Avogadro's number?

We may figure out the number of particles in 1 mole (or mol) of a substance using Avogadro's number. These entities can be atoms, molecules, or electrons. Avogadro's number is comparable to around 6.022140857x10^23 mol^-1.

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The breakthrough Dmitri Mendeleev had when constructing the periodic table occurred _______
When Mendeleev placed the elements in a sequence of increasing atomic mass

Answers

The breakthrough Dmitri Mendeleev had when constructing the periodic table occurred when Mendeleev placed the elements in a sequence of increasing atomic mass.

The breakthrough Dmitri Mendeleev had when constructing the periodic table occurred when he realized that the properties of elements were repeating in a pattern based on their atomic structure, and not just their atomic mass.

Dmitri Mendeleev was a Russian chemist who is known for creating the first periodic table of elements. He initially arranged the elements in a sequence of increasing atomic mass, but he soon realized that this arrangement did not accurately reflect the properties of the elements. Instead, he found that the properties of the elements were repeating in a pattern based on their atomic structure, specifically the number of protons in the atomic nucleus.

Based on this realization, Mendeleev arranged the elements in a table according to their atomic structure and properties, creating the first periodic table. This table showed a repeating pattern of properties for elements in the same vertical column (group), and he was able to predict the properties of elements that had not yet been discovered based on this pattern.

Mendeleev's breakthrough was significant because it provided a new way of understanding the relationships between the elements, which laid the foundation for modern chemistry and helped to explain many chemical reactions and processes.

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