Chromium (Cr) can combine with chlorine (Cl2) to form chromium chloride (CrCl3).

Which equation is a correct representation of this reaction?

Responses

2Cr + Cl2 → CrCl3

2 upper case C lower case r plus upper case C lower case l subscript 2 end subscript rightward arrow upper case C lower case r upper case C lower case l subscript 3 end subscript,

Cr + Cl2 → CrCl3

upper case C lower case r plus upper case C lower case l subscript 2 end subscript rightward arrow upper case C lower case r upper case C lower case l subscript 3 end subscript,

2Cr + 3Cl2 → 2CrCl3

2 upper case C lower case r plus 3 upper case C lower case l subscript 2 end subscript rightward arrow 2 upper case C lower case r upper case C lower case l subscript 3 end subscript,

2Cr + 3Cl2 → CrCl3

Answers

Answer 1

The combination of the chlorine and the chromium species is designated by the reaction [tex]2Cr + 3Cl_{2} ------- > 2CrCl_{3}[/tex]. Option B

What is the correct representation?

We know that the term reaction has to do with the way in which two atoms are combined in a compound. Now, the reaction must be balanced. This implies that the number of atoms on the reactant side must be the same as the number of atoms on the products side.

We are talking about how to write the reaction between the chromium atom and the chlorine atom. We know that we have to find out which of the reaction is balanced and that is; [tex]2Cr + 3Cl_{2} ------- > 2CrCl_{3}[/tex]

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Related Questions

solid aluminum nitrate is added to distilled water to produce a solution in which the concentration of the nitrate ion, [no3-], is 0.60 m. what is the concentration of aluminum ion in this solution? (note: square brackets around a chemical formula indicates the molarity of that particular species)

Answers

The solid Aluminium Nitrate is added to distilled water to produce the solution, the concentration of Aluminium ions in the solution is 0.20 M

The Solid Aluminium Nitrate Al[NO₃]₃ consists of a ratio of 1 Aluminium ion consisting of 3 Nitrate ions per formula unit.

Thus, the concentration of [NO₃]³⁻ is given as 0.60M

1 [Al]³⁺  →  3[NO₃]

∴ 1 [Al]³⁺ → 1/3 × 0.60

1 [Al]³⁺ → 0.20 M

Hence, the concentration of aluminum ions in the solution is 0.20 M.

The Aluminium Nitrate appears to be a white, crystalline solid. Though it is a non-combustible compound but can accelerate the burning of combustible materials. In large quantities, it could lead to explosions.

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Put the following elements in order from smallest to largest atomic radius: Carbon, Oxygen, Tin, Strontium
Rank the following elements by increasing atomic radius: Carbon, Aluminum, Oxygen, Potassium

Answers

The order of the atomic radius is;  

1) Potassium, Aluminum, Carbon,  Oxygen

2)  Potassium, Aluminum, Carbon, Oxygen

What is the order of the atomic radius?

We know that the atomic radius has to do with the distance between one atom and another in that are not covalently combined. We know that the atomic radius is a function of the group to which the atom belongs.

We know that the atomic radius increases down the group but would tend to decrease across the period as more shells are added to the atom of the element.

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which is the major product of the reaction of ethyl grignard and propiophenone (ethyl phenyl ketone)?

Answers

2-Methyl-butan-2-ol is the major product of the reaction of ethyl grignard and propiophenone (ethyl phenyl ketone).

What type of reaction is Grignard?

The nucleophile in a keto or aldehyde is coupled to alkyl, ethyl ester, vinyl, or allylic halides in the Fermentation process, an organo combination of carbon monoxide. It takes place in this process for carbon-carbon bonds to form.

What purpose does Grignard reagent serve?

It is possible to count the halogen atoms in a halide compound using Grignard reagents. For the chemical examination of several glycerides as well as numerous cross-coupling processes for the synthesis of various dioxide and carbon-heteroatom linkages, Grignard degradation is employed.

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please help!!
(this is Rutherford's Black box experiment)
- please answer all the questions in full sentences :D
- do not answer "i'm not sure" on here.

1) Suppose the marble usually rolled right to the end of the box without bouncing off anything, what would this tell you about the size of the targets?


2) What conclusions did Rutherford draw from his data and how did the data change the model of the atom?


3) Niels Bohr was a student of Rutherford, Bohr's work went on to modify the atomic model even more. What changes did Bohr make to advance our understanding of the atom?

Answers

Answers:

1) If the marble usually rolls right to the end of the box without bouncing off anything, this indicates that the size of the targets is appropriate for the marble.

2) Rutherford's data led him to conclude that atoms are mostly empty space, with a very small, very dense nucleus at the center. This data changed the model of the atom from a solid, indivisible sphere to a mostly empty space with a small, dense nucleus.

3) Bohr's model of the atom was an improvement on Rutherford's model. Bohr made the following changes:

proposed that electrons orbit the nucleus in discrete energy levelsexplained the stability of atoms by postulating that electrons can only occupy certain energy levelsproposed that when an electron jumps from one energy level to another, it emits or absorbs a photon with an energy equal to the difference in the energy levels

These changes helped to explain the spectral lines of atoms and the stability of atoms.

In an isolated system, two copper bars at different temperatures transfer energy until both are at the same temperature How would the transfer of energy be difñerent if the bars were in an open system?

Answers

The copper bars and the surrounds would transfer energy energy be different if the bars were in an open system.

What is isolated system with example?

Systems that are isolated are ones whose energy is constant at all times. Heat is neither generated nor absorbed in isolated systems. An illustration of such an isolated system Thermos flasks are the ideal illustration of isolated systems. There is neither a gain nor a loss of energy because the thermally flask is completely insulated.

Are isolated and isothermal systems similar?

As a result, isothermal processes are not able to occur in closed systems. Q. In a thermodynamics cycle, the unit is in contact with an outside source of heat, and changes happen gradually to make regulating the temperature easier. An adiabatic process isolates the system.

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WILL MARK BRAINLIEST! 100 POINTS!
A solution of 0.2 M sulfuric acid is titrated with a 0.2 M basic solution. In three to five sentences, explain how you can use the results of the titration as evidence for the ratio of sulfuric acid and the base in the balanced chemical reaction for the titration.

(Please answer in three to five sentences)

Answers

If there are 0.2 M solutions of both acid and base, the concentrations of hydrogen and hydroxide ions will be equal at equivalence point.

The reaction of sulfuric acid and a basic solution BOH occurs as follows;

H2SO4(aq) + 2BOH(aq) -----> B2SO4(aq) + 2H2O(l)

In the question, we are told that that both the solution of the sulfuric acid and the basic solution are 0.2 M.

The point where all the hydrogen and hydroxide ions have reacted according to the stoichiometry of the reaction. If there is really equimolar amounts of acid and base, the concentration of hydrogen and hydroxide ions will be equal at equivalence point.

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What is the frequency of a wave whose wavelength is 5.67 x 10^-7

Answers

The frequency of a wave whose wavelength is 5.67 × 10-⁷m is 5.3 × 10¹⁴Hz.

How to calculate frequency?

Wavelength is the length of a single cycle of a wave, as measured by the distance between one peak or trough of a wave and the next.

The wavelength of a wave is often designated in physics as λ, and corresponds to the velocity of the wave divided by its frequency as follows:

λ = v/f

Where;

λ = wavelengthv = velocity of wavef = frequency of the wave

The frequency is the quotient of the number of times, n, a periodic phenomenon occurs over the time (t) in which it occurs.

According to this question, a wave has a wavelength is 5.67 × 10-⁷m. The frequency can be calculated as follows:

5.67 × 10-⁷ = 3 × 10⁸/f

f = 3 × 10⁸ ÷ 5.67 × 10-⁷

f = 5.3 × 10¹⁴Hz.

Therefore, 5.3 × 10¹⁴Hz is the frequency of the wave

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a solution is made by dissolving 21.5 g of sodium chloride, nacl, in enough water to make exactly 100 ml of solution. what is the concentration (molarity) of nacl in mol/l?\

Answers

The concentration molarity of NaCl is 3.76 mol/l.

The concentration of a substance is the quantity of solute found in a given amount of solution. Concentrations are normally expressed in terms of molarity, defined because of the variety of moles of solute in 1 L of solution.

Calculation:-

mass = 21.5 g

volume = 100 ml = 0.1 L

the molar mass of NaCl = 58.5

mole = mass/molar mass

         = 21.5 / 58.5

        = 0.376

concentration = mole /volume

                        = 0.376 / 0.1

                        = 3.76

The Concentration of an answer is a measure of the quantity of solute that has been dissolved in a given amount of solvent or answer. A concentrated answer is one that has a rather huge quantity of dissolved solute.

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a five part per million standard has a percent transmission on a spectrometer of 34.780. what is the absorbance?

Answers

The absorbance of the sample with 34.780 percent transmittance is 3.54

What is transmittance?

Transmittance is the fraction of the incident light which passes through the sample and comes out successfully. In spectrometer, the detector detects the amount of light coming out of the sample and converts the reading into digital display. Absorbance is the fraction of the light which is being absorbed by the given sample.

The absorbance of the sample is,

A = 2 - log (-% T)

where, A = absorbance, %T = transmittance

A = 2 - log (-34.780) = 2 - (-1.54) = 3.54

Therefore, the absorbance of the sample having 34.780 percentage transmittance is 3.54.

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the half-life of the reaction in trial 4 is less than the half-life in trial 1. explain why, in terms of activation energy.

Answers

Trial 4's half-life of the reaction is shorter than Trial 1's half-life. Because the activation energy and half life are both precisely related. In comparison to trail 4, trail 1 activation energy is higher.

A reaction's t1/2, or half-life, It occurs when the concentration of a reactant is halved from its starting concentration. T1/2 is used to represent it.

Activation energy is the required amount of energy to start the reaction. Kilojoules per mole (kJ/mol) is the unit used to measure the activation energy (Ea) of a reaction. Activation energy is the force that causes an object to begin acting in a certain way or to start a specific process.

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1. Which of the following gas samples contains the largest number of molecules?
(A) 12 g of He (molar mass=4)
(B) 14 g of N₂ (molar mass=28)
(C) 34 g of NH3 (molar mass= 17)
(D)88 g of CO₂ (molar mass = 44)

Answers

The molar mass of the gas samples must be known to find the greatest concentration of molecules.

What is a molar mass?

A substance's molar mass is its mass in grams per mole of the chemical. A mole measures a substance's quantity of atoms, molecules, or ions. A mole is 6.022  1023 molecules of any given chemical.

Molar Mass calculation formula

M=m/n

M= molar mass

m=mass of substances (in grams).

n= number of moles of a substance.

How is molar mass determined, and why is it important?

One mole of material is weighed to determine its molar mass. Add the masses of all the components in a molecule to determine the molecular mass of the molecule by multiplying the subscript (number of atoms) by the atomic mass of each element in the molecule.

Using the molar mass formula,

M= 12/4 = 3,

It can be determined that 3 moles (or 3*avogadro number of molecules) are present.

Hence we can conclude that option (a) is correct.

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the future value of a single sum: increases as the compound rate increases. increases as the compound rate decreases. decreases as the compound rate increases. increases as the number of compound periods decreases. decreases as the number of compound periods increases.

Answers

The future value of a single sum increases as the compound rate decreases.

Future value is the total amount received at a particular point in time if the initial investment and the interest earned on the initial investment are included.

Future value calculations are used for various accounting functions. The most common use is to understand how much money is in investment at a given point in time due to interest income.

The formula for the final value of the single sum is

              Future value = P ( 1 + i )n

where P is the principal amount

          i is the interest rate

          n is the number of years

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how much current is needed to plate 5g of Copper metal on a cathode from a copper sulfate, CuSO4 solution in 2 hours?

Answers

33× 10⁻⁷ A current is needed to plate 5g of Copper metal on a cathode.

Explain faraday's law of electrolysis.

It states that during electrolysis, the amount of chemical reactions occurring at the electrodes under the influence of electrical energy is proportional to the amount of electricity conducted through the electrolyte.

n = zFQ

Where, n = moles of copper metal

n = 5/63.54

n = 0.078 moles

z = Number of electrons in the half-cell reaction

Cu²⁺ + 2e⁻ ⇔ Cu

z = 2

F = Faraday constant (96,485 A/mol)

Now, substitute the values in the equation mentioned above:

0.078 = 2 × 96,485 × Q

Q = 4.04 × 10⁻⁷ C

Since Q = I × t

Where, Q = charge

I = Current

t = Time (2 hours or 120 min.)

4.04 × 10⁻⁷ C = I × 120

I = 4.04 × 10⁻⁷/120

I = 33× 10⁻⁷ A

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a. is the diode forward or reverse biased? explain your answer. b. what is the acceptor concentration on the p-side? c. what is the donor concentration on the n-side? d. what is the intrinsic carrier concentration? e. do low level injection conditions apply? f. what bias (in volts) is applied to the diode?

Answers

The diode is forward-biased. The acceptor concentration on the p-side is [tex]N_{A}[/tex] = 10¹⁶ cm⁻³. The donor concentration on the n-side is [tex]N_{D}[/tex] = 10¹⁴ cm⁻³.  The intrinsic carrier concentration is [tex]n_{i}[/tex] = 3.16×10¹¹ cm⁻³. Yes, the low-level injection condition applies. The bias (in volts) applied to the diode is [tex]V_{A}[/tex] = 0.18V.

The diode is forward-biased because of the excess electrons on the P-side and the excess holes on the N-side. In the intrinsic carrier concentration on the P-side n₀p₀ = 10¹⁶ × 10⁷ = 10²³ = [tex]n_{i}[/tex] = √10²³ = 3.16×10¹¹ cm⁻³, while on the N-side n₀p₀ = 10¹⁴×10⁹ = [tex]n_{i}[/tex] = √10²³ = 3.16×10¹¹. The low-level injection applies on the P-side as Δn(-[tex]x_{p}[/tex]) = 10¹⁰ << p₀ and on the N-side Δp([tex]x_{n}[/tex])=10¹² << n₀ = 10¹⁴.

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A gas at 65.0°C occupies 4.22 L. If the pressure remains the same, at which
Celsius temperature will the volume be 3.87 L?

Answers

A gas at 65.0°C occupies 4.22 L. If the pressure remains the same, at which Celsius temperature will the volume be 3.87 L out to be 310 degrees

You can leave the pressure out of both sides of the equation since the pressure is constant to make it easy.

so all you have is volume over Temp = new volume over new temp which is we don't know.

4.22 liters over 338 Kelvin = 3.87 liters over T

cross multiply and solve for T which comes out to be 310 degrees K or 37 degrees C

Yes you are right it is 310

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explain why chromatography separates substances in the mixture​

Answers

Chromatography is a method for simulating the separation of two or more dissolved particles that are present in a solution in extremely tiny amounts. The solutes, or the constituents of a sample mixture, are separated through a physical process as a result of their differing distributions between the stationary and mobile phases. Greek words "chroma" and "graphene" are used to denote colour and writing, respectively. The method was initially employed to separate colors.The notion of dividing the constituent components into two phases—a stationary phase and a mobile phase.This is the foundation of the chromatographic separation process. The mixture of the compounds to be separated that has been dissolved in a liquid or gas is referred to as the mobile phase. The term "stationary phase" refers to a solid matrix that is porous and through which the sample contained in the mobile phase percolates.

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How does knowing the properties of a substance enable you to identify a substance?

Answers

Every substance might have its own unique properties. They can be of characteristic physical and chemical properties  by which they can be identified.

What is physical properties?

Physical properties of a substance include the properties related to its mass, volume, density its phase change etc. Various physical properties include density, conductivity, melting point, boiling point etc.

Chemical properties of a substance include its reactivity, bond type etc. The reactivity of each substance may vary based on their bond type and intermolecular force of attraction. Each substance shows different reactivity  towards air, water, with other metals and chemicals.

Similarly, the state of each substance it mostly exists will be different. Therefore, by determining the physical and chemical properties of the substance, we can identify the substance.

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how does the standard entropy of a substance depend on its molar mass? the larger the molar mass, the lower the entropy. the standard entropy of a substance does not depend on its molar mass. the larger the molar mass, the greater the entropy.

Answers

The bigger the molar mass, the greater the entropy at room temperature. When looking at the state of matter of objects, entropy generally increases with increasing molecular complexity.

What is entropy ?

Entropy, a measure of a system's thermal energy per unit temperature not available for useful work. Work is obtained from ordered molecular motion, the amount of entropy is also a measure of the molecular disorder or randomness of a system. The concept of entropy gives us deep insight into the direction of spontaneous change in many everyday phenomena. Introduced in 1850 by German physicist Rudolf Clausius, it is the pinnacle of 19th-century physics.

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a 0.2046 g sample of a diprotic acid of the general formula h2a required 18.55 ml of a 0.1040 m naoh solution to neutralize it in an acid-base titration. what is the molar mass of the diprotic acid?

Answers

The molar mass of the diprotic acid is 212 grams/mol.

Perimeter

Mass of a diprotic acid = m₂ = 0.2046 gThe general formula H₂A Volume of NaOH = V₁ = 18.55 mL = 0.01855 LMolarity of NaOH = M₁ = 0.1040 M

Calculate the mole of a diprotic acid

n NaOH = M₁ × V₁
n NaOH = 0.01855 × 0.1040
n NaOH = 0.0019292 molH₂A + 2NaOH → Na₂A + 2H₂OFrom coefficient H₂A and NaOH
[tex]\frac{n_2}{n_1} = \frac{1}{2}[/tex]
[tex]\frac{n_1}{0.0019292} = \frac{1}{2}[/tex]
[tex]n_1 = \frac{0.0019292}{2}[/tex]
n₁ = 0.0009646 mol

Calculate the molar mass

[tex]n_2 = \frac{m_2}{M_2}[/tex]

[tex]M_2 = \frac{m_2}{n_2}[/tex]

[tex]M_2 = \frac{0.2046}{0.0009646}[/tex]

M₂ = 212 g/mol

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What is Electrovalant Bond?​

Answers

Answer:

ionic bond, also called electrovalent bond, type of linkage formed from the electrostatic attraction between oppositely charged ions in a chemical compound. Such a bond forms when the valence (outermost) electrons of one atom are transferred permanently to another atom.

Explanation:

a ground-state h atom absorbs a photon of wavelength 93.78 nm, and its electron attains a higher energy level. the atom then emits two photons: one of wavelength 2626 nm to reach an intermediate level, and a second to reach the ground state. what was the wavelength of the second photon emitted?

Answers

Wavelength of the second photon emitted is 97.3nm. By using the formula E = hc/λ.

What is hydrogen energy level?

A photon's frequency and Planck's constant are used to calculate the quantum energy. The relationship between wavelength and frequency is inverse, as seen below.

v = c/ λ

The energy of photon of light: given by the formula,

E = hv

E = hc/λ

Given,

wavelength of photon of light at higher energy level is 93.78 nm.

wavelength of photon of light at intermediate level is 2626 nm = 2626×10⁻⁹m

Etotal = hc/λ

Where,

E is the energy of a photon.

h is the Planck's constant (6.626×10⁻³⁴J⋅s)

c is the speed of light (3.0×10⁸m/s)

λ is the wavelength, wavelength is 93.78 nm.

1nm = 1×10⁻⁹m

Therefore, conversion of 93.78 nm into m is, 93.78nm=93.78×10⁻⁹m

Substitute:

Etotal = [tex]\frac{(6.626 . 10^{-34} )(3.0 . 10^{8}) }{93.78 .10^{-9} }[/tex]

Etotal = 2.12 × 10⁻¹⁸ J

the energy of 1 photon, E1 = [tex]\frac{(6.626 . 10^{-34} )(3.0 . 10^{8}) }{2626 .10^{-9} }[/tex]

E1= 7.57×10⁻²⁰

the energy of 2 photon, E2 = Etotal-E1

E2 = 2.044× 10⁻¹⁸J

wavelength of second photon,

λ = hc/E2

λ = [tex]\frac{(6.626 . 10^{-34} )(3.0 . 10^{8}) }{2.04 .10^{-18} }[/tex]

λ = 9.73 × 10⁻⁸m

conversion of m into nm, 1m = 1×10⁹nm

Therefore, conversion of 9.73×10⁻⁸m into nm is

9.73×10⁻⁸m = 9.73×10⁻⁸×10⁹nm =97.3nm

∴ wavelength of second emitted photon is 97.3nm.

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while determining the volume during this experiment (part ii), if the total volume of the flask were incorrectly reported as 125 ml, how would this error affect the calculated molar mass of the unknown volatile liquid? explain.

Answers

While determining the volume during this experiment .if the total volume of the flask were incorrectly reported as 125 ml,  this error affect the calculated molar mass of the unknown volatile liquid. yes

The number of mole calculated by the following formula :

number of moles = mass / molar mass

greater the number of number of moles low the molar mass.

the ideal gas equation is given as :

P V = n RT
and the volume is directly proportional to moles . if the volume increases molar mass decreases.

Thus, While determining the volume during this experiment .if the total volume of the flask were incorrectly reported as 125 ml,  this error affect the calculated molar mass of the unknown volatile liquid. yes

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Ignoring sign which transition is associated with the greatest energy change?

N=1 to n=3

N=3 to n=5

N=2 to n=1

N=3 to n=2

Answers

According to the given statement The transition from  n=1 to n=3 results in the largest energy change.

How do you calculate energy change?

Energy change Equals energy in Minus energy out. To calculate the energy transfer for a reaction, add the bond energy for all the atoms in the reactants (this is the "energy in") and the bond values for all the bonds with in products (this is the "energy out").

What causes energy to change?

Energy is capable of changing its forms. For instance, electrical energy transforms into thermal and light heat when a lightbulb is turned on. A automobile transforms the gasoline's molecular bonds' stored energy into a variety of other forms. Chemical energy is converted to light in the engine through a chemical reaction.

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calculate the heat (q) in kj released with combustion of methanol using 801 grams of water and the change in temperature is 4.3 degree celsius. the specific heat of water is 4.18 j/(g*c).

Answers

The heat (q) in kJ released with combustion of methanol using 801 grams of water and the change in temperature is 4.3 degree Celsius. the specific heat of water is 4.18 J/(g °C) is 14397.17 J.

given that :

The specific heat capacity is given as :

q = mc ΔT

where ,

m = mass = 801 g

c = specific heat capacity = 4.18 J/g °C

ΔT = change in temperature = 4.3  °C

q = heat = ?

now, by solving the values we get :

q = mc ΔT

q = 801 × 4.18 × 4.3

q = 14397.17 J

Thus, The heat (q) in kJ released with combustion of methanol using 801 grams of water and the change in temperature is 4.3 degree Celsius. the specific heat of water is 4.18 J/(g °C) is 14397.17 J.

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Which best represents a balanced equation?
200 grams of carbon dioxide
A. 120 grams of carbon plus 20 grams of oxygen -
B. 120 grams of carbon plus 50 grams of oxygen 200 grams of carbon dioxide
C. 120 grams of carbon plus 80 grams of oxygen 200 grams of carbon dioxide
D. 120 grams and carbon plus 100 grams of oxygen - 200 grams of carbon dioxide

Answers

Answer:

i think its C i may be wrong...

Explanation:

the molar heat of fusion of water is 6.02 kj/mol. calculate the energy required to melt 46.8 g of water.

Answers

When the molar heat of fusion of water is 6.02 kJ/mol, it takes 15.4 kJ of energy to melt 46.8 g of water. The enthalpy of a substance changes due to heat of fusion , which releases energy.

To convert a substance from a solid to a liquid while maintaining pressure, a certain amount of the substance must be used.

A thermodynamic system's enthalpy, which is one of its properties, is calculated by adding the system's internal energy to the product of its pressure and volume. It is a state heat of fusion that is employed in numerous measurements in chemical, biological, and physical systems while the pressure is constant. Called enthalpy

46g/18g equals mols of water.

mole-1 equals 2.56 mole

1 mole melts at a temperature of 6.02KJ of heat.

Heat needed to melt 2.56 moles is equal to 6.02kJ*2.56 = 15.4kJ.

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which statement is correct for an endothermic reaction? a. bonds in the products are stronger than the bonds in the reactants. b. bonds in the reactants are stronger than the bonds in the products. c. the enthalpy of the products is less than that of the reactants. d. the reaction is spontaneous

Answers

It is appropriate for just an endothermic reaction when the reactant's bonds are stronger than the product's bonds.

The correct answer is B

What is an endothermic reaction? 

Chemical reactions classified as endothermic occur when the reactants absorb heat energy from their surroundings to produce products. These occurrences have a cooling effect because they make their immediate surroundings colder.

What action is endothermic?

If heat is absorbed by system from of the environment, the reaction and physical change is endothermic. As a result of the system absorbing heat from its surroundings during an endothermic process, the environment's temperature drops.

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the half-life of palladium-100 is 4 days. after 24 days a sample of palladium-100 has been reduced to a mass of 7 mg. what was the initial mass (in mg) of the sample?

Answers

448.142 mg was the initial mass (in mg) of the sample

What is half life ?

Half-life in radioactivity, the time interval required for half of the nuclei in a radioactive sample to decay (spontaneously converted to other types of nuclei by the release of particles and energy), or equivalently, the number of decays required Halve the amount of radioactive material per second of time interval.

For example, the radioisotope cobalt 60 used in radiotherapy has a half-life of 5.26 years. Therefore, after this interval, a sample that originally contained 8 g Cobalt-60 will only contain 4 g Cobalt-60 and emit half the amount of radiation. After another 5.26 year interval, the sample contains only 2 g of Cobalt-60. However, both the volume and the mass of the original sample are such that the unstable cobalt-60 nuclei decay into stable nickel-60 nuclei, leaving undecayed cobalt.

7/e^-4.1592 =448.142

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What is another name for the activation energy barrier in a reaction?
A.
transition state
B.
changing state
C.
top of reaction
D.
needed energy

Please help me.

Answers

Either Top of reaction or needed energy. Because energy must be added to reactants to overcome the energy barrier.
Which is recovered when products are then formed.

Brainliest. Help please

Answers

Answer:

Sulphate ion

Explanation:

Zinc will undergoes oxidation. Zn2+ - - > Zn + 2e-

Copper will undergoes reduction. Cu2+ + 2e- - - > Cu

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