Consider the following reaction between oxides of nitrogen: NO2(g)+N2O(g)?3NO(g)
Part A
Use data in Appendix C in the textbook to predict how ?G? for the reaction varies with increasing temperature.

Answers

Answer 1

The reaction is spontaneous at all temperatures, so ?G? decreases as temperature increases.

Appendix C provides standard free energy of formation values for various compounds at 298 K. Using these values, we can calculate the standard free energy change (?G°) for the reaction at 298 K. The value of ?G° is negative, indicating that the reaction is spontaneous under standard conditions. Since ?G° is negative, ?G will decrease with increasing temperature according to the equation ?G = ?H - T?S. As the temperature increases, the positive T?S term becomes more dominant, causing ?G to decrease. Therefore, the reaction remains spontaneous at all temperatures, and ?G becomes more negative as the temperature increases.

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Related Questions

Heat energy can be transferred from one object to another because of _________.

Answers

Answer: Heat energy can be transferred from one object to another because of a difference in temperature.

Explanation: Heat energy is transferred from a warmer to a cooler object through conduction, convection and radiation. All of these require a temperature difference for heat to transfer.

Answer:

Temperature difference

Every matter has heat energy. The result of the movement of minute particles known as atoms, molecules, or ions in liquids, solids, and gases is nothing but heat energy. Heat energy can be transferred by one substance to another and the flow because of the temperature difference between two objects is known as heat.

I have 5mg of a powder chemical ubtance that I need to diolve in a olvent with a 2g/L olubility. I ultimately need to give two doe of the chemical: 10ug/L and 100 ug/L. Ultimately, I mut add between 5ul and 10ul to the olution. I can create up to 3 tock dilution. How can I olve thi problem? Pleae how all work o I can learn! Thank you

Answers

To solve this problem, you can use a serial dilution method to achieve the desired final concentration of the chemical substance in the solvent.

First, determine the amount of solvent you need to dissolve the 5mg of the chemical substance. Since the solubility of the chemical substance is 2g/L, you need to use 2.5L of solvent (5mg / 2g/L = 2.5L).

Next, create a stock solution by dissolving the 5mg of the chemical substance in 2.5L of solvent. This will give you a stock solution with a concentration of 2mg/L.

Then, create a series of dilutions from the stock solution to achieve the desired final concentrations of 10ug/L and 100ug/L. You can do this by taking a certain volume of the stock solution and adding an equal volume of solvent to it. This is known as a 1:1 dilution and will reduce the concentration by half.

To create a 2:3 dilution, you can take 2 parts of the stock solution and add 3 parts of solvent. By doing so, you can use the stock solution to create a series of dilutions, each with a lower concentration than the previous one, until you reach the desired final concentrations of 10ug/L and 100ug/L.

Finally, you can measure the volume of the solution needed to add to the final solution between 5ul to 10ul. It's important to keep in mind that the accuracy of this method depends on the precision of the measurements taken, especially when working with very low concentrations.

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How many particles would be found in 2.38g of (NH4)3PO4

Answers

Answer:

That is 2.38 divided by Moller Mosque. That is 149

Hope tht helped :)

Considering the following reaction
Pt²⁺(aq) + 2Br⁻(aq) ⇄ Pt(s) + Br₂(l) K=5.3 × 10³
if the concentration of Pt²⁺(aq) is 2.0 × 10⁻² M and the concentration of Br⁻(aq) is 2.0 × 10⁻² M
which of the following is true?
A. Q > K reactants will form more products as the system reaches equilibrium.
B. Q > K products will form more reactants as the system reaches equilibrium.
C. Q < K reactants will form more products as the system reaches equilibrium.
D. Q < K products will form more reactants as the system reaches equilibrium.
E. Q = K the system is at equilibrium.

Answers

B. Q > K products will form more reactants as the system reaches equilibrium.

The reaction quotient (Q) is calculated by multiplying the concentrations of the products raised to the power of their stoichiometric coefficients, divided by the concentrations of the reactants raised to the power of their stoichiometric coefficients.

Q = [Pt(s)][Br₂(l)] / [Pt²⁺(aq)][Br⁻(aq)]²

If the initial concentration of Pt²⁺(aq) is 2.0 × 10⁻² M and the concentration of Br⁻(aq) is also 2.0 × 10⁻² M, then Q = (1)(1) / (2.0 × 10⁻²)^3

Since the equilibrium constant (K) for this reaction is 5.3 × 10³, then Q > K which means that products will form more reactants as the system reaches equilibrium.

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be31 has a single electron. calculate the frequencies and wavelengths of light in the emission spectrum of the ion for the first three lines of each of the series that are analo- gous to the lyman and the balmer series of neutral hydro- gen. in what region of the spectrum does this radiation lie?

Answers

The frequencies and wavelengths of light in the emission spectrum of the Be3+ ion for the first three lines of each of the series that are analogous to the Lyman and the Balmer series are 48.8 eV, 97.6 eV, and 146.4 eV respectively, and wavelengths of 254 nm, 126 nm, and 84 nm respectively. This radiation lies in the ultraviolet region of the spectrum.

The frequencies and wavelengths of light in the emission spectrum of the Be3+ ion can be determined by calculating the energy of the electron in the ground state and in each of the excited states. The ground state energy of the ion is -13.6 eV.

The energy of the first three excited states of the ion is calculated by subtracting the ground state energy from the ionization energy, which is 13.6 eV. The frequencies and wavelengths of light of the three excited states are then calculated using the equation E=hv, where h is Planck's constant and v is the frequency of the light.

The wavelengths of light in the emission spectrum of the Be3+ ion for the first three lines of each of the series that are analogous to the Lyman and the Balmer series are 254 nm, 126 nm, and 84 nm respectively. These frequencies and wavelengths of light lie in the ultraviolet region of the spectrum.

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Complete question:

Be^3+ has a single electron. Calculate the frequencies and wavelengths of light in the emission spectrum of the ion for the first three lines of each of the series that are analogous to the Lyman and the Balmer series of neutral hydrogen. In what region of the spectrum does this radiation lie?

When you weigh ammonia, what fraction of it is hydrogen?

Answers

17.65 would be your answer

LEARNING PACKET 2ALL ABOUT THE PC
PROGRESS WORKSHEET
Instruction: In this progress worksheet,kindly answer all the given
question and write your answer neatly.
Identification: Read the statement below and write your answer on the blank
provided below.
1. It designed for the use of an individual to watch movies, surf the Internet, send e-mail,
type a
letter, or even compose your very own song.
Answer: _________________________________________________________________________
2. It is a type of computer that has greater power, storage, and versatility compared to
other types of computers for personal use.
Answer: _________________________________________________________________________
3. It refers to the computer that combines all the components of a personal computer—the
monitor, the keyboard, storage devices, memory, and the processor—into one package that
is easy to carry around.
Answer: _________________________________________________________________________
4. It is a computers are lighter than laptops but with the same processing power and features.
Answer: _________________________________________________________________________
5. It is operated by using a touch screen that has a virtual keyboard, or an electronically-sensitive
pad where users handwrite their notes.
Answer: _________________________________________________________________________
HELLO CAN SOMEONE HELP TO ASWER THIS PLS I NEED IT THE DUE IS TODAY

Answers

Personal computer is designed for the use of an individual to watch movies, surf the Internet, send e-mail, type a letter, or even compose your very own song.

2. Desktop computer is a type of computer that has greater power, storage, and versatility compared to other types of computers for personal use.

3. Laptop computer refers to the computer that combines all the components of a personal computer and is easy to carry around.

4. Ultrabook is a computers are lighter than laptops but with the same processing power and features.

5. Tablet computer is operated by using a touch screen that has a virtual keyboard, or an electronically-sensitive pad where users handwrite their notes.

What is the computer about?

Personal computer (PC) is a general term that refers to a computer that can be used by an individual for a variety of tasks such as watching movies, browsing the internet, sending emails, typing letters, and even composing music.

Therefore, Desktop computers are a type of personal computer that are designed for use at a fixed location. They have greater power, storage, and versatility compared to other types of computers for personal use. They generally have a separate monitor, keyboard, and processing unit, and are typically used for more demanding tasks such as gaming, video editing, and graphic design.

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Draw A Lewis Diagram For The Ether C2H5OC2H5.

Answers

The ether C2H5OC2H5 has the following Lewis structure. The valence shell electrons of a molecule are depicted in a highly condensed manner in a Lewis structure.

C

|

H-C-H

|

O-C-H

|

H-C-H

|

H

How does the Barnes structure rule work?

Lewis structure, also referred to as electron-dot framework, is indeed a structural formula wherein the dots serve as placeholders for electrons; two dots between bonded ions signify a covalent link. Gilbert Newton Lewis, the man behind its 1916 introduction, gave it its name.

Why is Lewis structure significant? What is it?

A molecule's valence shell electrons are shown in a very simple manner via a Lewis structure. It serves as a visual representation of how the electrons surrounding particular molecules' atoms are positioned. For bonds involving two atoms, electrons are displayed as "dots" or as a line.

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carbon tetrachloride CC4 (g) can be synthesized according to the reaction represented above. A chemist runs the reaction

Answers

0.310 moles of [tex]Cl_{2}[/tex] are present in the container, according to the reaction. This is the answer to the given question.

What is Carbon tetrachloride?

Carbon tetrachloride is a manufactured chemical that does not occur naturally. It is a clear liquid with a sweet smell that can be detected at low levels. It is also called carbon chloride, methane tetrachloride, perchloromethane, tetrachloroethane, or benziform. Carbon tetrachloride molecules have tetrahedral molecular geometries in which the central carbon atom is bonded to four chlorine atoms.

What effects does carbon tetrachloride have on people?

The liver and kidneys are harmed by acute exposure to high quantities of carbon tetrachloride in drinking water. Headache, lightheadedness, fatigue, sluggishness, and impaired vision are further signs. Extremely high doses can also result in death, vomiting, or stomach pain.

Determination of number of moles:

(0.4) (25) = (0.0821) (n) (120+273)

Moles of [tex]Cl_{2}[/tex],n = 0.310 mol

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Please help chemistry

Answers

The mass of the Ag formed is 1080 g.

What is the mass formed?

Since we do not have the equation of the reaction, it means that we have to write down the equation of the reaction by ourselves so that we can be able to answer the question and we have;

[tex]2AgNO_{3} + Zn ----- > Zn(NO_{3} )_{2} + 2Ag[/tex]

We have that zinc is the limiting reactant so;

If 1 mole of zinc forms 2 moles of Ag

5 moles of zinc forms 5 * 2/1 = 10 moles of Ag

Mass of the Ag = Number of moles * molar mass

= 10 moles * 108 g/mol

= 1080 g

The mass of the silver is 1080 g

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pKa of alkanes is the negative base-10 logarithm of the dissociation constant of alkanes. pKa of alkanes is the measure of its tendency to keep a proton, [H+][H+] at its ionization centre.

Answers

The pka of the alkanes is the negative of the base - 10 logarithm of the dissociation constant of the alkanes. The pka of the alkanes is the tendency to measure to keep the proton [H⁺] to its ionization Centre.

The pka value is the method that is used to indicate acidic strength of the substance. The pka of the alkanes is the negative log of the value. The methane that is CH₄ is the very weak acid , pka = 50. The hybridization of the carbon in the alkanes , is the s character percentage  and the electronegativity , both are important to indicate the value of the pka in alkanes.

Thus, the pka value of the alkanes , is they have the larger value nearly about 50.

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The atomic mass of the element platinum (Pt) is 195.08 amu. How many atoms of platinum are in 195.08 grams?(1 point)
Responses

3.087×1021 atoms
3 point 0 8 7 times 10 to the 21th power atoms

6.022×1023 atoms
6 point 0 2 2 times 10 to the 23th power atoms

1.951×1025 atoms
1 point 9 5 1 times 10 to the 25th power atoms

1.175×1026 atoms

Answers

The mass of 6.02211023 platinum atoms is 195.08 g.

What is the purpose of platinum?

Jewelry is frequently made of platinum. However, catalytic converters for vehicles, trucks, and buses are where it is primarily used. Each year, this meets around 50% of the need. The conversion of engine emissions into less dangerous waste products is made possible by platinum.

What materials make up platinum?

Six isotopes make up natural platinum: platinum-190 (0.012%), platinum-192 (0.782%), platinum-194 (32.86%), platinum-195 (33.78%), platinum-196 (25.21%), & platinum-198 (7.36 percent). With the exception of platinum-190, that has been described as just a long-lived alpha emitter, all are stable.

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Answer:

The answer is 6.022 * 10^23 atoms

Explanation:

Six and twenty-two thousandths times ten to the twenty-third power atoms.

Which of the following ground-state electron configurations represents the element with the lowest
electronegativity?
Choose 1 answer:
A [Ar]3d¹04s²4p4
B [Ar]3d¹04s²4p5
[Kr]4d²25s²
D [Kr]4d¹05825p4

Answers

The answer is A [Ar]3d¹04s²4p4. This electron configuration represents the element Argon, which has the lowest electronegativity of the elements listed. Electronegativity is a measure of an atom's ability to attract electrons, so Argon has the lowest ability to do so.

What is electron configuration?

Electron configuration is an arrangement of electrons in an atom or molecule in which each orbital is occupied by the maximum number of electrons with opposite spins. It describes the way that electrons are distributed among the available orbitals of an atom. Electron configuration is important because it determines the chemical properties of the atom, including reactivity and the way it bonds with other atoms. The distribution of electrons in an atom or molecule is determined by the quantum numbers associated with each electron. These quantum numbers indicate the energy, angular momentum, and other properties of the electrons. The electron configuration of an atom or molecule is determined by solving the Schrödinger equation for that particular atom or molecule.

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At what approximate positions might the following compounds show IR absorptions?

Answers

The following substances may have IR absorptions between 3000 and 2850 cm-1 and between 1725 and 1705 cm-1, approximately.

Describe IR absorption.

The interplay between the molecular polarity transition moments associated with the molecular vibrations and the IR applied electric vector, in general, is what causes IR absorption. An electric field vector as well as the dipole changeover moment are parallel when absorption is greatest.

What is the cause of IR absorptions?

In the potential vibrational and rotational modes, only molecules with minor energy differences can absorb IR. The oscillations or rotations inside a molecule must result in a net shift in the molecule's dipole moment in order for it to absorb IR.

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this can release toxic chemicals when heated ( not vegetable oil, and it starts with the letter T)

Answers

Natural gas and propane stoves this can release toxic chemicals when heated.

What is toxic chemical ?

A toxic chemical is defined as the substance that can be poisonous or cause health effects. For example, ammonia, acid, bleach, chlorine, and carbon monoxide.

Natural gas and propane stoves can release harmful pollutants into the air like carbon monoxide, formaldehyde. Which can be toxic to people and pets. By using a wood stove or fireplace to cook can result in grater levels of indoor air pollution from wood smoke.

Thus, Natural gas and propane stoves this can release toxic chemicals when heated.

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what mass of disodium tetra oxo sulphate (vi) will be dissolved in 100g of water, if the mole fraction of Na2So4 is 0.039?

Answers

Answer: 0.277g of disodium tetra oxo sulphate (vi) will be dissolved in 100g of water, if the mole fraction of Na2So4 is 0.039. ✅

PLEASEEEE GIVE BRANLIEST

Explanation:

The mass of a solute dissolved in a solvent can be calculated using the formula:

mass of solute = mole fraction of solute x mass of solvent / molar mass of solute

In this case, we are trying to find the mass of disodium tetra oxo sulphate (vi) (Na2SO4) dissolved in 100g of water, with a mole fraction of 0.039.

mass of Na2SO4 = (0.039) x (100g) / (142.04 g/mol)

mass of Na2SO4 = 0.277 g

So, 0.277 g of disodium tetra oxo sulphate (vi) will be dissolved in 100g of water, if the mole fraction of Na2So4 is 0.039. ✅

Identify the conjugate base for each acid.
conjugate base of H3 PO4 :
conjugate base of HSO4-:
conjugate base of NH4+:

Answers

the conjugate base for each acid is conjugate base of H3 PO4 : PO4^3-

conjugate base of HSO4- : SO4^2-, conjugate base of NH4+ : NH3

A conjugate base is a species that is formed by the removal of a proton (H+) from an acid. An acid is defined as a species that can donate a proton, and a conjugate base is the species that results after a proton is removed. The acid and its conjugate base differ by only one proton, and are therefore related by the common ion effect.When an acid loses a proton, it becomes its conjugate base, and when a base gains a proton, it becomes its conjugate acid. Conjugate bases are typically less acidic than the acids from which they are derived, as they have an extra pair of electrons to stabilize the negative charge.Conjugate bases are also important in acid-base reactions, as they participate in the transfer of protons. They often play a key role in acid-base equilibria, and the strength of a conjugate base is often measured by its basicity constant (pKb).

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Liquid nitrogen has different properties from gaseous nitrogen. Is it a chemical change when liquid nitrogen warms to gaseous nitrogen? yes, because chemical changes result in different properties. No, because chemical changes do not result in different properties. No, because the different properties are physical while the chemical properties remain the same. Yes, because warming is a chemical change even though the physical properties remain the same.

Answers

No, it is a physical change. Changing states is physical. A chemical change is to change the nature of something by changing it's chemical makeup.

What is a chemical change?Chemical synthesis, also known as the creation of new compounds through chemical fusion, or chemical decomposition, the process by which one material breaks down into two or more other substances, results in chemical changes. Chemical reactions are what these processes are known as, and they typically cannot be reversed without triggering more chemical reactions.A chemical change is a long-lasting transformation in which new types of substances are created, each with a unique chemical composition and set of physical and chemical characteristics from the original substance.A chemical reaction causes a chemical change, but a physical change occurs when matter changes forms without changing its chemical identity. Burning, frying, rusting, and rotting are some examples of chemical changes. Boiling, melting, freezing, and shredding are a few examples of physical changes.

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An aqueous base ionization reaction always generates Select the correct answer below:

O hydroxide.

O hydronium.

O water.

O none of the above.

Answers

An aqueous base ionization reaction always generates hydroxide ions. The bases when dissolves in the water it will produces the hydroxide ions.

The bases are the substances that when dissolves in the water it will produces the hydroxide ions. The hydroxide ion is the OH⁻ ion. The acids are the substance which when dissolves in the water it will produces the hydroxide ions in the water. The example of the base ionization is given as below :

A  +  H₂O  ⇄ OH⁻  HA⁺

The bases are the substance which can neutralize the acid by the reaction with the hydrogen.

Thus , an aqueous base ionization will produce the hydroxide ions always.

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What is 3co2 + 4H2O = H2CO3?

Answers

Answer:

Bicarbonate is naturally produced by the reaction of carbon dioxide (CO2) with water. (H2O) to produce carbonic acid (H2CO3), which dissociates to a bicarbonate ion and a. proton (H. + ).

What is the limiting reactant for each amount of reactants in the following reaction: 2Na (s) + Br2 (g) -> 2 NaBr (s)

a) 2 mol Na, 2 mol Br2
b) 2.5 mol Na, 1 mol Br2
c) 1.8 mol Na, 1.4 mol Br2
d) 12.6 mol Na, 6.9 mol Br2

Answers

Calculating the amount of product that can be formed by each reactant

Which is the limiting reactant N2 or H2?

Since we have of hydrogen gas, we have more than enough to react all of the nitrogen gas, and the nitrogen gas will be used up before the hydrogen gas. As a result, nitrogen gas is the limiting reactant.

1.2mol Na x (2mol NaBr/2mol Na) = 2 mol NaBr***Limiting

2mol Br2 x (2mol NaBr/1mol Br2) = 2 mol NaBr

2. 1.8mol Na x (2mol NaBr/2mol Na) = 1.8 mol NaBr**Limiting

1.4mol Br2 x (2mol NaBr/1mol Br2) = 2.8 mol NaBr

3. 2.5mol Na x (2mol NaBr/2mol Na) = 2.5 mol NaBr

1mol Br2 x (2mol NaBr/1mol Br2) = 2 mol NaBr***Limiting

4. 12.6mol Na x (2mol NaBr/2mol Na) = 12.6 mol NaBr***Limting

6.9mol Br2 x (2mol NaBr/1mol Br2) = 13.8 mol NaBr

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For each of the following balanced chemical equations, calculate how many moles of product(s) would be produced if 0.500 mole of the first reactant were to react completely. You will have 2 different answers for each of these (one for each product).
*Hint: Set up a mole to mole ratio both starting with 0.500 moles

1. CO2g + 4H2g -> CH4g + 2H2Ol

2. C3H8g + 5O2 -> 4H2Ol + 3CO2g​

Answers

Answer:

Explanation:

Use the reactant as the baseline for the molar ratios of the other reaction components.  In the first reaction, setting the CO2 to 1 mole aloows us to assign relative moles to the other reaction components (ratios of that component to CO2).

Multiply those ratios times the reactant number of moles to find the moles of the other components.  For example, 0.5 moles of CO2 will react with (0.5)*(4) moles of O2.  It will produce (0.5)*(1) mole of V=CH4 and (0.5)*(2) moles of H2O.

        1. CO2g + 4H2g -> CH4g + 2H2Ol

Ratio       1            4               1            2

 moles

            0.5         2               0.5         1

        2. C3H8g + 5O2 -> 4H2Ol + 3CO2g​

Ratio         1            5               4           3

  moles

        0.5              2.5             2.0        1.5

List five reasons why knowledge of celestial motion was important to our ancestors.
[please answer as fast as possible]

Answers

The five reasons why knowledge of celestial motion was important to our ancestors are:

NavigationAgricultureTimekeepingReligionAstronomyThe knowledge of celestial motion was important to our ancestors for the following reasons:Navigation: They needed to Understand the motion of celestial bodies, such as the sun, moon, and stars, which allowed early humans to navigate at sea and on land.

Agriculture: They needed the Knowledge of celestial motion was used to create calendars and predict seasonal changes, which was crucial for planting and harvesting crops.

Timekeeping: They Observed the movement of celestial bodies which was used to create accurate timekeeping devices, such as sundials and water clocks.

Religion: Most of the ancient cultures associated celestial bodies with gods and goddesses, and understanding their motion was important for religious ceremonies and predictions.

Astronomy: By studying the motion of celestial bodies, ancient astronomers were able to gain a greater understanding of the universe, and develop theories about the nature of the cosmos.

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True or false? If the same reaction is carried out twice, once at high pressure and once at low pressure, the reaction at low pressure will have a shorter reaction time.

Answers

If the same reaction is carried out twice, once at high pressure and once at low pressure, the reaction at low pressure will have a shorter reaction time is referred to as a false statement.

What is Reaction time?

This is referred to as the speed at which a chemical reaction takes place and is also the measure of the change in concentration of the disappearance of reactants or the change in concentration of the products.

Increase in the temperature and pressure will lead to a shorter reaction time while a decrease in the temperature and pressure will lead to a longer reaction time which is therefore why false was chosen as the correct choice.

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Answer: False.

Explanation: At higher pressures, there are more particles per unit volume. This means that they are closer together, so there will be more frequent successful collisions and a faster rate of reaction.

IF4+ shape ?
a. octahedral
b. seesaw
c. square pyramidal
d. tetrahedral
e. trigonal pyramidal

Answers

Option (b) is correct. The shape of IF4 is seesaw geometry. This is a three dimensional arrangement determined by VSEPR theory.

According to the VSEPR theory, the shape or molecular geometry of a covalent structure is described by the three-dimensional arrangement of the bonding electron pairs around its central atom. We can determine the shape of a particular structure by using the valence shell electron pair repulsion, VSEPR theory. The seesaw geometry occurs when a molecule has a steric number of 5 with the central atom being bonded to 4 other atoms and 1 lone pair. An atom bonded to 5 other atoms forms a trigonal bipyramid with two axial and three equatorial positions but in the seesaw geometry one of the atoms is replaced by a lone pair of electrons which is always in an equatorial position. This is true because the lone pair occupies more space near the central atom than does a bonding pair of electrons.

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CAN SOMEONE PLEASE HELP ME, THANK YOU!!! I NEED THE ANSWER BEFORE 1/12, TMRW
Would you need to chemically or physically change the parts in order to separate a
compound? Explain why.

Answers

Answer: Only chemically.

Explanation: A compound is a pure substance composed of two or more different atoms chemically bonded to one another. That means that it can not be separated into its constituents by mechanical or physical means and only can be destroyed by chemical means.

Draw The Skeletal Structure Of D-Alanine.

Answers

In the skeletal structure of an organic compound, it is assumed that there is an atom at the end of any two lines, and at the junction of any two lines is a Carbon atom. This type of structure omits all atoms is Hydrogen atoms except those directly bonded to a hetero atom.

The skeletal structure or line formula or shorthand formula for the organic compound is a type of molecular structural formula in which a line represents the position of carbon and hydrogen atoms. the position of carbon atoms in skeletal is indicated by the ends and intersection of lines and hydrogen atoms inferred from the no. of bonds shown to each other. ( carbon atom must have four bonds).

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If 38.9 g of carbon reacts with excess iron (III) oxide, how many moles of carbon dioxide
will form?

Answers

The reaction is:
C + Fe2O3 → CO2 + Fe
Given:
Mass of C = 38.9 g
38.9 g C x (1 mol C / 12.011 g C) = 3.239 mol C
Since 1 mol C will produce 1 mol CO2 in the reaction, the number of moles of CO2 formed is 3.239 mol.

What is mole?

Mole is a unit of measurement used in chemistry to measure the amount of a substance, usually in terms of its mass. One mole of a substance is equal to its molecular weight in grams. The term originated from the Latin word ‘moles’, which means ‘mass’. Moles are commonly used to measure the amount of a substance in a given volume.

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Please help, will give brainiest
QUESTION 1.
Element X on Planet Qatar has three known isotopes: X-121 with a relative abundance of 43.2%, X-123 with a relative abundance of 53.1%, and X-129 with a relative abundance of 3.70%. What is the average atomic mass in amu of Element X given this information?

QUESTION 2.
How did Rutherford's experiment change the way scientists had previously viewed atomic structure? How did this pave the way for subsequent changes up to and including the currently accepted quantum mechanical atomic model?

QUESTION 3.
How is percent abundance related to average atomic mass?

Answers

Answer 1

The average atomic mass in a.m.u of Element X given this information is 122.358.

Answer 2

Rutherford's experiment change the way scientists had previously viewed atomic structure as it provided insight into atomic structure.

Rutherford's experiment paved the way for subsequent changes up to and including the currently accepted quantum mechanical atomic model as his  model of the atom, the structure of the nucleus became more well-defined following the discovery of protons (1919) and neutrons (1932) as the particle constituents of the nucleus.

Answer 3

The percent abundance is related to the number fraction as fi = Pi/100  and used as in the formula written above in order to find average mass

What is atomic structure?

Atomic structure refers to the structure of an atom comprising a nucleus (centre) in which the protons (positively charged) and neutrons (neutral) are present.

The average atomic mass in a.m.u of Element X given this information is ((121 * 43.2) + (123 * 53.1) + (129 * 3.70)) / 100

=5227.2 + 6531.3 + 477.3

=12235.8 / 100

122.358

Rutherford's experiment change the way scientists had previously viewed atomic structure as it provided insight into atomic structure, and Rutherford's model of the atom was proposed as a small, positive, massive nucleus contains the very vast majority of the mass of the entire atom with negatively charged electrons surrounding it at relatively large distances.

Rutherford's experiment paved the way for subsequent changes up to and including the currently accepted quantum mechanical atomic model as his  model of the atom, the structure of the nucleus became more well-defined following the discovery of protons in 1919 and neutrons in 1932 as the particle constituents of the nucleus.

It was during the 1920s that a "wave mechanical model" came along through the work of several physicists most importantly de Broglie, Heisenberg, and Schrodinger) and Bohr's concept of electrons "orbiting" the nucleus was abandoned in favor of "orbitals" which are more abstract probabilistic representations of electronic structure within an atom.

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Data Table 1: Stoichiometry Values Initial: CaCl2 2H2O (g) 1.50 Initial: CaCl2 2H2O (mol) 0.00102 Initial: CaCl2 (mol) 1.132 Initial: Na2CO3 (mol) 0.00102 Initial: Na2CO3 (g) 0.108 Theoretical: CACO3 (g) 0.102069 Mass of Filter paper (g) 1.00 Mass of Filter 1.05 Paper CACO3 (g) + Actual: CACO3 (g) % Yield:

Answers

The actual yield is not specified in the data provided, so it is not possible to calculate the % yield.

The % yield for this reaction can be calculated by dividing the actual yield (mass of CACO3 on the filter paper) by the theoretical yield (calculated from the stoichiometry of the reaction) and multiplying by 100.

% yield = (Actual: CACO3 (g) / Theoretical: CACO3 (g)) x 100

Actual yield is the amount of product obtained in the experiment. In this case, the actual yield of calcium carbonate (CACO3) is the mass of CACO3 obtained on the filter paper.

To calculate the actual % yield, you need to know the mass of CACO3 obtained from the experiment.

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