how many protons would iron need to lose to become a form of potassium?

Answers

Answer 1

Iron need to lose 7 protons to become a form of potassium.

What is electron, proton and neutron?

The atom's building blocks are the electron, proton, and neutron. A core nucleus with neutrons and protons makes up the atom. The nucleus is surrounded by electrons. Electrons are negatively charged, while proton and neutron are positively charged. An atom's nucleus is made up of electrons, protons, and neutrons.

The term proton derives from pro.ton 'pro-tän, which has a mass of 1.673 × 10⁻²⁷ kilogram.

As we know, atomic number of iron (Fe) is 26.

Thus, a neutral atom of iron has 26 protons, 30 neutrons, and 26 electrons.

Also, atomic number of potassium (K) is 19.

Thus, a neutral atom of potassium has 19 protons, 20 neutrons, and 19 electrons.

So, iron need to lose 7 protons to become a form of potassium.

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Related Questions

calculate the density of 5.00kg and 105.00L

Answers

Density is the mass divided by the volume.
5.00kg/105.00L = 0.04762 kg/L
You may have to convert the units of the volume/mass if you are required to give the answer in a specified unit.

an ideal gas has a density of 1.38×10−6 g/cm3 at 1.00 × 10 −3 atm and 80.0 ∘c . identify the gas. an ideal gas has a density of 1.38×10−6 at 1.0010 and 80.0 . identify the gas. argon chlorine neon hydrogen oxygen nitrogen

Answers

The calculated mass shows that the given mass is oxygen.

calculation:-

P=m/v by  arranging  the  equation  we  get

R =0.082atm/mol/k

Mm=pRT/P = [(1.10  x10^-6 x1000g/l) xo.082  

atm/mol/k x(80+273] /(1.00  x10^-3) = 31.84  to the nearest ten is 32.

The ideal gas density depends on the molecular weight temperature and pressure of the system. Density is an important parameter in heat and mass transfer calculations. It is also used to derive many important dimensionless numbers such as the Reynolds number and the Peclet number.

Real gases approach ideal gas behavior at relatively low densities low pressures, and high temperatures. At high temperatures, the gas molecules have enough kinetic energy to overcome the intermolecular forces, but at low temperatures, the gas has less kinetic energy, so the intermolecular forces are more pronounced.

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how many milliters of 1.00 m koh should be added to 100 ml of solution containing 10.0 g of histidine hydrochloride (his.hcl fm 191.62) to get a ph of 9.30?.

Answers

52.18mL of KOH should be added to 100 mL of solution containing 10.0 g of histidine hydrochloride to get a pH of 9.30.

What is pH?

pH is a measurement of the acidity or basicity of aqueous or other liquid solutions in terms of digits. The phrase, which is frequently used in chemistry, biology, and agronomy, converts hydrogen ion concentrations, which typically vary between 1 and 1014 gram-equivalents per liter, into numbers between 0 and 14.

Given:

pH = 9.30

pH = -log [[tex]H^{+}[/tex]]

9.30 = -log [[tex]H^{+}[/tex]]

antilog (-9.30) = [[tex]H^{+}[/tex]]

[[tex]H^{+}[/tex]] = 5.01 × [tex]10^{-10}[/tex] M

Strong acid (His HCl) + strong base (KOH)

[[tex]H^{+}[/tex]] = [tex]\frac{-M_{B}V_{B}n_{fB} + M_{A}V_{A}n_{fA}}{V_{final}}[/tex]

[tex]M_{B}[/tex] and [tex]M_{A}[/tex]= Molarity

[tex]V_{A}[/tex] and [tex]V_{B}[/tex] = Volume

[tex]n_{fA}[/tex] = n factor for acid

[tex]n_{fB}[/tex] = n factor for KOH

5.01 × [tex]10^{-10}[/tex] M = [tex]\frac{-1 M X V_{B} X 1 + 0.52 X 100 X 1 }{V_{A} + V_{B} }[/tex]

                       = [tex]\frac{-V_{B} + 52.18 }{100 + V_{B} }[/tex]

[tex]n_{fB}[/tex] = [tex]n_{fn}[/tex] = 1

5.01 × [tex]10^{-10}[/tex] M (100 + [tex]V_{B}[/tex] )= [tex]V_{B} - 52.18[/tex]

5.01 × [tex]10^{-10}[/tex] + 5.01 × [tex]10^{-10}[/tex] [tex]V_{B}[/tex] = -[tex]V_{B}[/tex] + 52.18

2.18 - 5.01 × [tex]10^{-8}[/tex] = 5.01 × [tex]10^{-10}[/tex] [tex]V_{B}[/tex] + [tex]V_{B}[/tex]

[tex]V_{B}[/tex] = 52.17999 mL ≅ 52.18mL of KOH.

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suppose you burn a 2.4 g sample of potato chips. you use the heat given off from that process to heat 29.8 g of water from 16.9 oc to 20.5 oc. what is the caloric value (in kcal/g) of the potato chips? type answer:

Answers

Heat absorbed by water is calculated as follows: 34.3 g x 5.4 oC x 1.00 calorie/g oC = 185.22 cal ( 0.18522 Kcals) Kcal/gram of potato chips = 0.18522/2.4 g, or 0.077 Kcal/g, is the unit of measurement for the caloric content of potato chips.

What do we refer to as caloric?

The self-repellent fluid known as caloric, which moves from hotter to colder bodies, is the basis of the debunked scientific hypothesis known as the caloric theory of heat. In addition, it was believed that caloric could enter and exit liquids and solids by way of their pores.

Why is it called extremely caloric?

Supplement. Foods abundant in protein, carbohydrate, fat, vitamins, and minerals make up the high-calorie diet kind of diet. There might be between 4,000 and 5,000 calories consumed daily on this kind of diet.

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Chlorine has a total of 17 electrons and 7 valence electrons. Why are these two numbers different?.

Answers

Chlorine contains a total of 17 electrons which are filled in different orbitals of which 7 electrons are located in the outermost energy level or orbital.

The orbital, or fixed routes or energy levels, used by the electrons to surround the nucleus in an atom are known as orbitals. Electrons are filled in ascending energy level order. Lower energy levels fill up first as a result. The final electrons, known as valence electrons, are filled in the outermost energy levels. There is a set number of electrons that can fit in each shell. Chlorine is the seventeenth element on the periodic table and possesses 17 electrons, seven of which are in the outermost shell.

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A sample of 6.81 moles of cesium fluoride is
reacted with 8.23 moles of xenon hexafluoride
to produce cesium xenon heptafluoride. Using
the balanced equation below, calculate the
maximum amount in moles of cesium xenon
heptafluoride that can be produced.
CsF+XeF6- CsXeF7

Answers

Answer:

6.91 moles cesium xenon heptafluoride

Explanation:

The balanced equation

            CsF + XeF6 = CsXeF7

tells us that we should expect 1 mole of cesium xenonheptafluoride (CsXeF7) for every 1 mole of cesium fluoride consumed, a molar ratio of 1:1.  It also says we will use 1 mole of xenon hexafluoride, XeF6, for each mole of cesium fluoride.

The 6.91 moles of CsF will therefore require 6.91 moles of XeF6 to completely react.  We are in luck, since there are 8.23 moles of XeF6, more than enough to react with all the CsF.  In fact, there should be (8.23 moles - 6.91 moles =) 1.32 moles of XeF6 left over, unreacted.  CsF is the "limiting reagent:"  the reaction will stop once it is consumed.  We can assume that all of the CsF will react, so that will result in the same number of moles of CsXeF7 produced, since the molar ratio of the two is 1:1 reactant/product.

A
solution of NaOH contains.
11.6 grams of solute to 150cm³ of
solution. What is the molarity
of
the solution?

Answers

Answer:

1.93 molar, or M

Explanation:

By definition, molarity is defined as moles/liter.  A 0.5 molar (or M) solution will have 0.5 moles of solute per 1.0 liter.  To answer this question, first calculate how many moles of NaOH there are in 11.6 grams of the compound.  We'll need the miolar mass of NaOH, which is 40 grams/mole.  This is found by adding the atomic masses of each atom in the compound:

Na:     23

O:      16

H:         1

Total: 40 g/mole

The moles of NaOH is found by dividing the mass by the molar mass:

        (11.6 grams NaOH)/(40 g/mole NaOH) = 0.29 moles NaOH

0.29 moles NaOH is contained in 15cm^3 of solution.  Convert 15cm^3 into liters (L):

 (15 cm^3)*(1 ml/cm^3)*(1 liter/1000 ml) = 0.015 liters

cm^3 and ml both cancel with these conversion factors, leaving only liters, L.

The solution consists of 0.29 moles of NaOH in 0.15L.  It's concentration is therefore:

  (0.29 moles)/(0.015L) = 1.93 molar, or M

Double Replacement Worksheet
Write the formula unit equation for this reaction occuring in water: Barium perchloate and sodium sulfate are mixed to form sodium perchlorate and barium sulfate.

1. Na2SO4(aq) + Ba(ClO)2(aq) → 2 NaClO(aq) + BaSO4(s)

2. Na2SO4(aq) + Ba(ClO3)2(s) → 2 NaClO3(aq) + BaSO4(s)

3. Na2SO4(aq) + Ba(ClO3)2(aq) → 2 NaClO3(aq) + BaSO4(s)

4. Na2SO4(aq) + Ba(ClO4)2(aq) → 2 NaClO4(s) + BaSO4(aq)

5. Na2SO4(s) + Ba(ClO4)2(aq) → 2 NaClO4(s) + BaSO4(aq)

6. Na2SO4(aq) + Ba(ClO4)2(s) → 2 NaClO4(aq) + BaSO4(s)

7. Na2SO4(aq) + Ba(ClO4)2(aq) → 2 NaClO4(aq) + BaSO4(s)

Answers

The formula unit when barium perchlorate reacts with sodium sulfate to produce sodium perchlorate and barium sulfate would be: [tex]Ba(ClO_4)_2 (aq) + Na_2SO_4 (aq) -- > 2NaClO_4 (aq) + BaSO_4 (s)[/tex]

Chemical reaction

The reaction between barium perchlorate and sodium sulfate to produce sodium perchlorate and barium sulfate is a double decomposition reaction whose chemical equation can be derived as follows:

Formula for sodium sulfate = [tex]Na_2SO_4[/tex]

Formula for barium perchlorate = [tex]Ba(ClO_4)_2[/tex]

Formula for sodium perchlorate = [tex]NaClO_4[/tex]

Formula for barium sulfate = [tex]BaSO_4[/tex]

Since barium sulfate is insoluble, the chemical equation for the reaction would be:

[tex]Ba(ClO_4)_2 (aq) + Na_2SO_4 (aq) -- > 2NaClO_4 (aq) + BaSO_4 (s)[/tex]

In other words, a double decomposition reaction can also be a precipitation reaction in which two aqueous salts exchange radicals to produce one aqueous and one insoluble salt.

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Identify the balanced nuclear equation for the overall decay of cobalt-60 resulting in beta and gamma emission after the two-step process.

Answers

the balanced nuclear equation for the overall decay of cobalt-60 resulting in beta and gamma emission after the two-step process. is the chemical equation of 60_27Co->60_28Ni+0_-1e+0_Oy

Chemical equations are symbols and chemical formulas that depict a chemical reaction symbolically. With a plus sign separating the entities in both the reactants and the products and an arrow pointing in the direction of the products to indicate the direction of the reaction, the reactant entities are given on the left and the product entities on the right. Chemical formulas can be mixed, structural (represented by pictures), or both. The absolute values of the stoichiometric numbers are shown as coefficients next to the symbols and formulas of the various entities. Jean Beguin drew the first chemical equation in 1615.

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Marie anne lavoisier drew illustrations of the equipment she and her husband used in their experiments. Why was this important?.

Answers

Marie Anne Lavoisier realized how crucial it was to create drawings of the tools she and her husband employed in their research. In order to impart knowledge, this is crucial.

It is widely acknowledged that Lavoisier's major contributions to chemistry came mostly from his transformation of the field from a qualitative to a quantitative one. The discovery of the function of oxygen in combustion is what made Lavoisier famous. He challenged the phlogiston idea and identified and called the elements oxygen and hydrogen (1778). Lavoisier contributed to the development of the metric system, created the first comprehensive list of elements, and reformed chemical nomenclature. In addition to discovering that matter's mass never changes despite its form or shape, he also anticipated the creation of silicon in 1787. Lavoisier served as the general manager of the Ferme and was a key member of several aristocratic councils

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how many minutes will it take to plate out 2.19 g of chromium metal from a solution of cr3 using a current of 55.2 amps in an electrolyte cell?

Answers

3.69 minutes will be needed to plate the chromium metal in the solution.

The charge transfer amount may be provided by:

q = It

where I is the current, t is the time, and q is the charge transfer

Q can be calculated by:

Moles of Cr = 0.0423 mole; As, moles = 2.19/51.9

Also, there is transfer of 3 electrons, thus, charge transfer will be faraday constant multiplied by 3

Charge transfer = 0.0423 *3*  96500 C

Charge transfer = 12245.85 C

As, q = it

12245.85 = 55.2 * Time

Time = 221.845 sec = 3.69 min

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If 60 g of a radioactive substance naturally decays to 15 g after 16 hours, what is the half-life of the radioisotope?.

Answers

The half-life of a radioisotope is 8 hours if 60 g of such a radioactive substance spontaneously degrades to 15 g after 16 hours.

What sort of substance is a radioisotope?

Uranium is the most well-known illustration of a naturally occurring radioisotope. The only other form of naturally occurring uranium , uranium, which has three less electrons in its atom and is less permanent or radioactive, makes up the remaining 0.7%.

What are the uses of radioisotopes?

Utilized in investigations on the survival of red blood cells. used to sterilize medical equipment and to increase the dependability and safety of commercial fuel oil burners. used in radiography, food radiation, gauges, and treatment for cancer.

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Select the correct answer from each drop-down menu. water is an important part of the biogeochemical cycles on earth. complete the sentences about water. in the water cycle, water from rivers, lakes, and streams, enters the atmosphere through . in the carbon cycle, water exits the pores of leaves in plants by a process known as . in the nitrogen cycle, move nitrogen from the atmosphere into the soil.

Answers

Water is a daily necessity for human survival. We might be able to go a week without eating, but we couldn't last even three days without drinking. In addition, 70% of our bodies are made of water.

Evaporation is the process through which surface water from lakes, rivers, and oceans turns into water vapor and travels into the atmosphere with a little help from solar energy.

Through the process of transpiration, which involves the evaporation of water from plants largely through the pores in their leaves, plants lose liters of water each day.

The inert form of nitrogen gas is deposited into soils during the nitrogen fixation process from the atmosphere and surface waters, primarily through precipitation.

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Complete the mechanism for the given reaction by adding the missing bonds, charges, nonbonding electrons, and curved arrows. Do not delete any pre-drawn bonds, charges, or lone pairs. If you accidentally delete a vital part of the structure, use the undo button on the lower left of the drawing canvas.

Answers

By adding missing bonds, charges, nonbonding electrons, and curved arrows, the mechanism for the given reaction is depicted in the attached image.

Mechanism of Organic Reaction An organic reaction mechanism is typically represented by the overall reaction type (which can be substitution, addition, elimination, oxidation, reduction, or rearrangement), the presence of any reactive intermediates, the nature of the initiating reagent, the presence of any catalysis facilitated by a catalyst, and, finally, its stereochemistry.

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The increase in energy when tetrahedral bond angles deviate from the optimum angle of 109.5 degree is known as _________ strain. Steric
Axial
Torsional
cycloalkanes
equatorial
lower
alkanes
angle
ring flip

Answers

The increase in energy when tetrahedral bond angles deviate from the optimum angle of 109.5 degree is known as angle strain.

In cycloalkanes, the carbon atoms are sp3 hybridized, which would imply an ideal tetrahedral bond angle of 109.5 degree whenever possible. cycloalkanes look like shapes such as a triangle, square, tetrahedral. all the rings are in a flat or planar shape. Bayer Theory suggests that the difference between the ideal bond angle (which is 109.5° for sp3 carbon) and the angle in the planer cycloalkane causes the strain, which is called angle strain. According to the Bayer Theory, cyclopentane would be the most stable because its bond angle, 108°, is closest to the ideal angle of 109.5°. Cyclopropane would be the least stable one since it has the largest angle deviation of 49.5° (60° vs 109.5°). It was also predicted that cyclohexane would be less stable than cyclopentane because of the larger angle deviation (10.5° deviation for cyclohexane vs 1.5° for cyclopentane), and as the number of sides in the cycloalkanes increases beyond six, the stability decreases.

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under which conditions do gases behave most ideally? select all that apply. multiple select question. when gas particles are small at high temperatures at low temperatures at low pressures when gas particles repel each other

Answers

Under very low temperature or high pressure the gases behave the most ideally.

A theoretical gas known as an ideal gas is made up of several randomly moving point particles with no interparticle interactions. [1] Because it abides by the ideal gas law, a condensed equation of state, and is amenable to statistical mechanics analysis, the ideal gas concept is helpful. If, for instance, the interaction is totally elastic or is thought of as point-like collisions, the constraint of zero interaction can frequently be disregarded.

Many real gases behave qualitatively like an ideal gas under various temperature and pressure settings, where the gas molecules (or atoms for monatomic gases) take on the function of the ideal particles.

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when an exothermic reaction is carried out in a coffee-cup calorimeter, what statement is correct? a. qwater is negative. b. the enthalpy of the products is lower than that of the reactants. c. the temperature of the water decreases. d. the enthalpy change for the reaction is positive. e. the reaction absorbs heat from the water.

Answers

The correct statement about an exothermic reaction carried out in a coffee-cup calorimeter is that the enthalpy of the products is lower than that of the reactants. Therefore, the correct answer is option B.

Exothermic reaction is a term that means the heat will be released during the reaction, making the environment warmer. In a coffee-cup calorimeter, the heat increases the temperature of coffee contents, which includes water.

In an exothermic reaction, the enthalpy of the product will be lower than that of reactants (B is correct).

During the reaction, heat is released so the water temperature will increase (C and E are incorrect).

Since the enthalpy of the product is lower, the enthalpy change will be negative (D is incorrect).

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Balance the following redox reaction if it occurs in acidic solution. What are the coefficients in front of h+ and fe3+ in the balanced reaction?.

Answers

The coefficient of  in the balanced equation is 8 and coefficient of fe3+  is 5.

What is balance reaction?

balance reaction is a equation where the numbers of atom of each type in the reaction is the same on both reactance and product sides.

To balance a redox reaction in the acidic medium, the number of atoms of all the elements involved in the reaction must be equal for substrates and product.

The reaction given as-

Fe2+MnO4+------>Fe3+ +Mn3+

The change in the oxidation number of the elements on reaction is seen.

Fe changes its oxidation state from +2  +3, change is +1

The oxidation state of Mn changes from +7  +2, change is -5

There is required 5 atoms of Fe for 1 atom of Mn.

With this, the equation can be written as:

The reaction is further balanced with H and O, with formation of .

The coefficient in front of  is 8 and that of  is 5.

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a chemist determined by measurements that .0700 moles of barium sulfide participate in a chemical reaction. calculate the mass of barium sulfide that participates. round your answer to 3 signeficant digits

Answers

The mass of barium sulfide that participates is 118.57grams.

Is the gas barium sulfide liquid?

Barium sulfate is available as a powder to be dissolved in water, a liquid suspension, a paste, and a tablet. The paste and tablet are taken orally, while the powder and water mixture, suspension, and enema (liquid instilled into the rectum) are all administered.

Avogadro's law states that 1 mole of each substance contains 6.023×10²³ Avogadro's number of particles and takes up 22.4 L at STP.

The following equation is used to determine the moles:

Number of moles = given mass/molar mass

Moles of  BaSO₄ = 0.700moles

Molar mass of BaSO₄= 169.39 g/mol

Mass = 0.7×169.39

Mass = 118.57grams.

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a 25.0 ml sample of 0.105 m hcl was titrated with 31.5 ml of naoh. what is the concentration of the naoh? group of answer choices 0.075 m 0.105 m 0.132 m 0.0833 m none of the above

Answers

A 25.0 ml sample of 0.105 m HCl was titrated with 31.5 ml of NaOH. the concentration of the NaOH is 0.0833 M.

given that :

molarity of HCl, M1 = 0.105 M

volume of HCl V1 = 25 mL

Molarity of NaOH M2 = ?

volume of NaOHV2  = 31.5 mL

by using the titration equation we get :

molarity of HCl × volume of HCl = molarity of NaOH × volume of NaOH

M1 V1 = M2 V2

M2 = (M1 V1 ) / V2

M2 = ( 0.105 × 25 ) / 31.5

M2 = 0.0833 M

The concentration of NaOH = 0.0833 M.

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what atomic or hybrid orbitals make up the sigma bond between and in acetic acid, ch3cooh ? ( is the second carbon in the structure as written. is the first oxygen in the structure as written.) orbital on orbital on what is the approximate c1-c2-o1 bond angle? angle

Answers

An sp2 hybrid orbital from the carbon-1 and the same from the oxygen-1 atoms combine to form the sigma bond between them.

The bond angle is approximately 120°.

The carbon-1 atom is the carbon attached to the two oxygens and the other carbon of the methyl functional group. The oxygen-1 is the carbonyl oxygen that has a double bond to carbon-1. This double bond is made up of one sigma bond and on pi bond. In order for the carbon to be attached to three atoms and be stable requires sp2 hybridization to form single bonds to the three attached atoms leaving one p-orbital available to make the pi-bond part of the double bond. Oxygen also is sp2 hybridized with the other two hybrid orbitals occupied by two pairs of nonbonding electrons. The molecular geometry associated with sp2 hybridization is trigonal planar which is flat triangular in shape with carbon-1 being in the middle. The bond angle formed between carbon-2/carbon-1/oxygen-1 will be 120° as will be the angles between carbon-2/carbon-1/oxygen-2 and oxygen-1/carbon-1/oxygen-2.

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how many electrons does each sphere contain? (the atomic mass of aluminum is 26.982g/mol26.982g/mol , and its atomic number is 1313 .)

Answers

72.8 x 10²³ electrons each sphere contain.

How to solve ?

m = mass of each aluminium sphere = 0.0250 kg = 0.0250 x 1000 g 25g

M = atomic mass = 26.982 g/mol

n = number of moles

Number of moles is given as

n = m/M

n = 25/26.982

n = 0.93

N₀ = Avogadro's number = 6.023 x 10²³

N = number of atoms

Number of atoms is given as

N = n N₀

N = (0.93) (6.023 x 10²³) = 5.6 x 10²³ atoms

= number of electrons per atom = 13

= total number of electrons

Total number of electrons are given as

=  N

= (13) (5.6 x 10²³)

 = 72.8 x 10²³ electrons

What is charge electron ?

The mass of an electron is roughly 1/2000 that of a neutron or proton, and it has an electric charge of 1. The letter e is typically used to represent electron charge. It is a fundamental physical constant that is used to express the 1.602 10-19 coulomb, which is the unit of naturally occurring electric charge.

Do electrons have a charge?

Negative charge characterizes electrons. Proton and electron charges have exactly the same size but in the opposite direction. There is no charge on a neutron. Protons and electrons are drawn to one another because their charges are in opposition.

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In general, how can you determine the mass number of the daughter product after alpha decay has taken place? how can you determine the atomic number?.

Answers

to determine the mass number of the daughter product after alpha decay has taken place Subtraction of 4 from the parent element yields the mass of the daughter product. Subtraction of 2 from the parent atom yields the atomic number of the daughter product.

Assume X is a parent element with atomic number Z and mass number A; if X decays, we obtain a daughter element Y with atomic number Z1 and mass number A1, as well as an alpha particle with atomic mass 2 and mass number 4. An alpha particle is a doubly ionised Helium atom with atomic number 2 and mass number 4.

Alpha degeneration

X4 → YA¹ + He.

The mass numbers and atomic numbers of a reaction must be balanced on either side of the equation.

→ A=A1+4

Z = Z1+2

As a result, A1 = A-4 and Z1 = Z-2.

As a result, subtracting 4 from the parent element yields the mass of the daughter product.

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If a sulfuric acid (H₂SO₄, MM = 98.09 g/mol) solution is completely neutralized with 61.37 mL of the NaOH solution above what was the mass in grams of sulfuric acid in the solution. Remember, you need a balanced chemical reaction for stoichiometry. (do not forget about SF)

Answers

The mass of the reacted sulfuric acid in solution is 3.01 g.

What is a reaction?

The reaction that we have here involves the combination of an acid and a base and result of such a reaction is that we would have salt and water as the products.

From the equation of the reaction;

2 NaOH (aq) + H₂SO₄ (aq) ----> Na₂SO₄ (aq) + 2 H₂O (l)

We can see that the mole ratio of the reaction is 2:1

Number of moles of sodium hydroxide = concentration * volume in liters

If the concentration of the NaOH solution is 1.0 M

Moles of NaOH reacted = 1.0 * 61.37 mL * 1 L / 1000 mL

= 0.06137 moles

Moles of  H₂SO₄ reacted = 0.0614 / 2

= 0.0307 moles

Mass of  H₂SO₄ reacted = 0.0307 * 98.09

= 3.01 g

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In the video, the semipermeable membrane separates the two solutions of different concentrations. Watch the video and identify which of the following statements are correct Check all that apply. View Available Hints) The solvent can ideally move in both directions through the semipermeable membrane. Solute particles can move in both directions through the semipermeable membrane. Osmosis occurs when the solvent molecules move from a solution of higher solute concentration to a solution of lower solute concentration A pressure equal to that of the osmotic pressure will result in reverse osmosis. The movement of the solvent particles from the concentrated solution to the dilute solution is known as reverse osmosis.

Answers

In the video, the semipermeable membrane separates the two solutions of different concentrations.

B. The solvent can ideally move in both directions through the semipermeable membrane.

D. The movement of the solvent particles from the concentrated solution to the dilute solution is known as reverse osmosis.

Examples of solvents Water, ethanol, methanol, and acetone are a few typical examples of solvents. A substance that can dissolve a certain solute and combine with it to produce a solution is referred to as a "solvent."

Osmosis is the movement of a solvent through a semipermeable membrane to separate two solutions with different solute concentrations. Osmosis is the process by which a solvent is transferred from a solution with a lower solute concentration to one with a greater solute concentration.

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in class we derived the regular solution model for a binary system . the free energy of mixing for the solution model is (expressed per mole):

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Answer:

A. Gmir ZuXAXB + RT (XA lnXA + XB ln Xp) Where W = WAB (WAA + WBB) and Z = the coordination number of each atom in the crystal.

Explanation:

Free enthalpy is another name for Gibbs's free energy. The energy associated with a chemical reaction needed to carry out work is known as Gibbs-free energy.

The formula: can be used to compute Gibbs free energy.

ΔG=ΔH-TΔS.

The difference between the reaction's enthalpy and its product of changing temperature and entropy yields the Gibbs free energy.

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a solution is prepared by dissolving 50.0 g of sucrose, c12h22o11, in 250. g of water at 25°c. what is the vapor pressure of the solution if the vapor pressure of water at 25°c is 23.76 mm hg?

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The vapors pressure of water at 25°c is 23.76 mm hg is 23.51 mmHg.

Moles of  the sucrose is mass/molar mass

= 50.0/342.3 = 0.1461 mol

Moles of water = mass/molar mass

= 250/18.02 = 13.87 mol

Mole fraction of water = moles of water/(moles of water + moles of sucrose)

= 13.87/(13.87 + 0.1461) = 0.9896

Vapor pressure of solution = mole fraction of water x vapor pressure of water

= 0.9896 x 23.76 = 23.51 mmHg

In chemistry, a solution is a special type of homogeneous mixture composed of two or greater materials. In this sort of mixture, a solute is a substance dissolved in another substance, called a solvent.

The solution is a homogeneous aggregate of 1 or extra solutes dissolved in a solvent. solvent: the substance in which a solute dissolves to supply a homogeneous aggregate.

The constituent debris of a solution is smaller than 10-9 meters in diameter. Constituent particles of a solution can not be visible to the eye. solutions do no longer scatter a beam of mild passing through it.

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camphor has a lower melting point range than that of borneol. does this make sense in terms of its structure? explain your reasoning. what about borneol versus isoborneol

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As can be seen from the structures of camphor and borreol, camphor has a ketone group while borreol has groups with alcohols activities. Through hydrogen bonding, the melting point of the boreal is higher.

Alcohols' melting point and boiling points are always thinner than those of ketones. the light of the intermolecular hydrogen bond. hence, the melting point. in the boreal is higher. Waxy, combustible, and translucent solid, camphor has a potent scent. It has the terpenoid compound C10H16O in its chemical makeup. The big East Asian evergreen tree known as the camphor laurel (Cinnamomum camphora) is where you can find it. The compounds with the general formula R-OH, where R is an alkyl or a substituted alkyl group, are known as alcohols. Alcohols are hence alkane derivatives in which one or more H.

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an [ select ] reaction is a bimolecular substitution reaction. bimolecular means that two different compounds are important for determine the rate (kinetics), they are the

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The acronym S N2 stands for substitution, nucleophilic, and bimolecular, indicating that the rate-determining step involves two molecules. S stands for substitution, N for nucleophilic, and the number two stands for bimolecular.

The solvent in which an SN2 reaction occurs has a sizable impact on the reaction's rate. Protic solvents (those capable of donating hydrogen bonds, like water or alcohol) are used to reduce the power of the nucleophile through vigorous solvation.

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a sample of nitrogen at 20oc in a volume of 875 ml has a pressure of 730 mm hg. what will be its pressure at 20oc if the volume is changed to 955 ml?

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0.0014 atm is the pressure of nitrogen at 20 °C and 730 mm Hg initial pressure when its volume increases from 875 ml to 955 ml

The mass of the gas remains constant

Since the mass of the gas is maintained during the change in volume, the number of moles with the initial volume must first be calculated.

To calculate the moles of gas, the ideal gas equation is used:

PV = nrt

where

P = Pressure

V=Volume

n = moles

T = temperature

R = gas constant

It is cleared n:

n = PV/Rt

Calculation of moles of gas

n = PV/Rt

Data

P = 730 mmHg = 0.96 atm

V = 875ml = 0.875L

n = ?

T = 20°C = 293.15K

R = 0.082 L atm/mol °K

n = PV/Rt

n = 0.96. 0.875 / 0.082. 293.15

n = 0.84 / 24.03

n = 0.035 moles

Gas pressure calculation after volume change

Knowing the moles of nitrogen, the new pressure of the gas is calculated after changing its volume.

Data

P = ?

V = 955ml = 0.955L

n = 0.035 moles

T = 20°C = 293.15K

R = 0.082 L atm/mol °K

P = nRt/V

P = 0.035. 0.955 / 0.082. 293.15

P = 0.033 / 24.03

P = 0.0014 atm

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