A piece of metal weighing 5.10 g at a temperature of 48.6 c was placed in a calorimeter in 20.00 ml of water at 22.1 degrees c the final equilibrium temperature was found to be 29.2 what is teh specific heat of the metal

Answers

Answer 1
Heat gained is equal to the heat lost;
Heat lost by metal  = 5.10 ×y ×19.4, where y is the specific heat capacity of the metal.
                              = 98.94 y
Heat gained by water = 20 g× 4.18 j/g× 7.1
                                  = 593.56 Joules
Therefore; 98.94 y = 593.56
                            y = 593.56/98.94
                               = 5.99919 j/g
                               ≈ 6.0 j/g
Therefore, the specific heat capacity of the metal is 6.0 J/g°C
Answer 2

At the final equilibrium temperature, the specific heat capacity of the metal is 5.999 J/g°C.

Given the following data:

Mass of metal = 5.10 gramsFinal temperature of metal = 48.6°CInitial temperature of water = 22.1°CFinal temperature of water = 29.2°CMass of water = 20.00 ml = 20 gramsSpecific heat capacity of water = 4.18 J/g°C

To find the specific heat capacity of the metal:

Mathematically, quantity of heat is given by the formula;

[tex]Q = mc\theta[/tex]

Where:

Q represents the quantity of heat.m represents the mass of an object.c represents the specific heat capacity.∅ represents the change in temperature.

The quantity of heat lost by the water = The quantity of heat gained by the metal.

[tex]Q_{lost} = Q_{gained}\\\\mc\theta = mc\theta\\\\20(4.18)(29.2 - 22.1) = 5.10c(48.6 - 29.2)\\\\83.6(7.1) = 5.10c(19.4)\\\\593.56 = 98.94c\\\\c = \frac{593.56}{98.94}[/tex]

Specific heat capacity of metal, c = 5.999 J/g°C

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Related Questions

A molecule has the formula ab3 and the central atom is in a different plane from the surrounding three atoms. its molecular shape is __________.

Answers

Answer: trigonal pyramidal

A gas at 300 k and 4.0 atm is moved to a new loacation with a temperature of 250 k. The volume changes from 5.5 L to 2.0 L. What is the pressure of the gas at the new location?

Answers

Answer is: the pressure of the gas is 9,2 atm.
p₁ = 4,0 atm.
T₁ = 300 K.
V₁ = 5,5 L.
p₂ = ?
T₂ = 250 K.
V₂ = 2,0 L.
Use combined gas law - the volume of amount of gas is proportional to the ratio of its Kelvin temperature and its pressure. 
p₁V₁/T₁ = p₂V₂/T₂.
4 atm · 5,5 L ÷ 300 K  = p₂ · 2,0 L ÷ 250 K.
0,0733 = 0,008p₂.
p₂ = 9,2 atm.

How many hydrogen atoms are there in 7.30 moles of ethanol

Answers

Final answer:

To find the number of hydrogen atoms in 7.30 moles of ethanol, multiply the number of moles of hydrogen per mole of ethanol (6) by the total moles of ethanol (7.30), resulting in 43.8 moles of hydrogen. Then, multiply by Avogadro's number to get approximately 2.64 × 1025 hydrogen atoms.

Explanation:

To calculate the number of hydrogen atoms in 7.30 moles of ethanol, we first need to understand the chemical composition of ethanol. The chemical formula for ethanol is C2H6O, which indicates that each mole of ethanol contains 2 moles of carbon (C), 6 moles of hydrogen (H), and 1 mole of oxygen (O). Therefore, in one mole of ethanol, there are 6 moles of hydrogen atoms.

To find the total number of hydrogen atoms in 7.30 moles of ethanol, we multiply the number of moles of hydrogen per mole of ethanol (6) by the number of moles of ethanol (7.30):

Number of hydrogen atoms = 6 moles H/mole C2H6O × 7.30 moles C2H6O

Number of hydrogen atoms = 43.8 moles of hydrogen atoms.

Since one mole contains Avogadro's number of atoms, which is approximately 6.022 × 1023 atoms per mole, we calculate the total number of hydrogen atoms as follows:

Number of hydrogen atoms = 43.8 moles H × 6.022 × 1023 atoms/mole

Number of hydrogen atoms = approximately 2.64 × 1025 hydrogen atoms.

The atoms of which elements are least likely to form chemical bonds? Check all that apply.

phosphorus (P)
helium (He)
sodium (Na)
carbon (C)
oxygen (O)
neon (Ne)
argon (Ar)

Answers

The elements that apply are argon, neon and helium. These elements are called inert gasses and have unique properties that make them unreactive. These elements are so unreactive that they are classified as chemically inert.
The elements belong to a group in the periodic table known as the Noble Gases. They belong to family 18 of the periodic table and have atoms with 8 valence electrons. This configuration causes the gases to be unreactive.

Answer:

A

Explanation:

How does the rate of effusion of sulfur dioxide, so2, compare to that of helium (he)? (note: the molar masses are so2 = 64 g/mol; he = 4.0 g/mol.)?

Answers

sulfur dioxide diffuses at one quarter the rate of helium :)

Answer : The rate of effusion of helium gas is four times of the rate of effusion of sulfur dioxide gas.

Solution : Given,

Molar mass of sulfur dioxide gas = 64 g/mole

Molar mass of helium gas = 4.0 g/mole

According to the Graham's law, the rate of effusion of gas is inversely proportional to the square root of the molar mass of gas.

[tex]R\propto \sqrt{\frac{1}{M}}[/tex]

or,

[tex]\frac{R_1}{R_2}=\sqrt{\frac{M_2}{M_1}}[/tex]

where,

[tex]R_1[/tex] = rate of effusion of sulfur dioxide gas

[tex]R_2[/tex] = rate of effusion of helium gas

[tex]M_1[/tex] = molar mass of sulfur dioxide gas

[tex]M_2[/tex] = molar mass of helium gas

Now put all the given values in the above formula, we get

[tex]\frac{R_1}{R_2}=\sqrt{\frac{4.0g/mole}{64g/mole}}[/tex]

[tex]\frac{R_1}{R_2}=\frac{1}{4}[/tex]

Therefore, from this we conclude that, the rate of effusion of helium gas is four times of the rate of effusion of sulfur dioxide gas.

What is the name of the compound with the formula niso3?

Answers

nickle (II) sulfite - b/c the charge on Ni can be +2 or +3 i Believe. SO3 has a charge of -2 the you need nickel II (+2) to make a proper ionic bond

The compound with the formula NiSO₃ is called nickel(II) sulfite.

In chemical nomenclature, we use systematic naming rules to name chemical compounds based on their chemical formulas. The formula nickel(II) sulfite represents a compound that contains the elements nickel (Ni), sulfur (S), and oxygen (O).

To name this compound:

Identify the cation (positively charged ion) and the anion (negatively charged ion) in the formula. In this case, the cation is nickel (Ni²⁺) and the anion is the polyatomic ion sulfite (SO₃²⁻).

Use the name of cation followed by name of the anion. Since the nickel ion (Ni²⁺) has a fixed charge of +2, we use the Roman numeral "II" in parentheses after "nickel" to indicate its charge. The polyatomic ion sulfite (SO₃²⁻) consists of one sulfur atom and three oxygen atoms.

Putting it all together, we get the name "nickel(II) sulfite" for the compound with the formula NiSO₃.

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Which statement about the orinoco river is true.

A. IT FLOWS THROUGH ECUADOR

B. IT IS SECOND LONGEST RIVER IN SOUTH AMERICA

C. IT FLOWS THROUGH VENEZUELA

D. IT EMPTIES INTO THE PACIFIC OCEAN

Answers

C location is in venezuela
C it flows through Venezuela

What steps are always part of both the process of technological design and the process of scientific investigation?

Answers

What are the products when ammonia (NH3) decomposes according to this equation?
NH3 nitrogen and hydrogen
nitrogen dioxide and hydrogen
nitrous oxide and hydrogen
nitrogen trioxide and hydrogen
nitric acid and hydrogen gas

Both technological design and scientific investigation involve making observations, identifying questions, researching, formulating hypotheses, and testing them.

The steps that are always part of both the process of technological design and the process of scientific investigation include: making observations, identifying a question to be answered, conducting research on existing knowledge, forming a hypothesis, and then testing that hypothesis.

It is important in both processes to document each step, provide justification for decisions, and communicate the results clearly. In doing so, the science connection behind each choice and the justification for the selected solution, based on factors and weights of requirements and constraints, should be well articulated.

How many molecules of carbon dioxide are in 95 grams of carbon dioxide (co2)?

Answers

95 grams of carbon dioxide equal 2.15 moles. This can be found using Avogadro's number (6.02 x 10^23)

The combustion of ammonia in the presence of excess oxygen yields no2 and h2o: 4 nh3 (g) + 7 o2 (g) → 4 no2 (g) + 6 h2o (g) the combustion of 43.9 g of ammonia produces ________ g of no2.

Answers

The combustion of ammonia in presence of excess oxygen yields NO2 and H2O.
The molar mass of ammonia is 17.02 g/mol
Therefore, moles of ammonia in 43.9 g
          = 43.9 /17.02
          = 2.579 moles
From the equation the mole ratio of ammonia to nitrogen iv oxide is 4:4
The molar mass of NO2 is 46 g/mol
The number of moles of NO2 is the same as that of ammonia since they have equal ratio,
 = 2.579 moles
Therefore, mass of NO2
   = 2.579 moles ×46
   = 118.634 g
   ≈ 119 g


Final answer:

The combustion of 43.9 g of ammonia produces 118.6 g of NO2.

Explanation:

To determine the mass of NO2 produced from the combustion of 43.9 g of ammonia, we first need to calculate the moles of ammonia used. The molar mass of ammonia (NH3) is 17.03 g/mol. We can use the molar ratio from the balanced equation to find the moles of NO2 produced.

4NH3 (g) + 7O2 (g) → 4NO2 (g) + 6H2O (g)

From the balanced equation, the molar ratio between NH3 and NO2 is 4:4. Therefore, the moles of NO2 produced is also equal to the moles of NH3 used. Finally, we can calculate the mass of NO2 produced by multiplying the moles of NH3 used by the molar mass of NO2 (46.01 g/mol).

Mass of NO2 produced = Moles of NH3 used × Molar mass of NO2

Now let's plug in the numbers:

Mass of NO2 produced = 43.9 g × (46.01 g/mol / 17.03 g/mol) = 118.6 g

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Match each boundary with its description

1. convergent __________________________________________.
2. divergent __________________________________________.
3. transform ___________________________________________.

This plate boundary creates new land, like the seafloor at the mid-atlantic ridge.

This plate boundary can cause earthquakes from plates rubbing along side each other.

This plate boundary usually forms mountains due to colliding plates.

Answers

Convergent- This plate boundary usually forms.....
Divergent- This plate boundary usually creates...
Transfrom- This plate boundary can cause earthquakes...

Answer: 1. convergent :This plate boundary usually forms mountains due to colliding plates.

2. divergent :This plate boundary creates new land, like the seafloor at the mid-atlantic ridge.

3.transform :This plate boundary can cause earthquakes from plates rubbing along side each other.

Explanation:

Convergent boundaries are the areas on the surface of the Earth where two or more lithospheric plates collides. One of the late slides beneath the other making area highly prone to earthquakes.

Divergent boundaries are the areas on the surface of the Earth where two tectonic plates moves away from each other.Due this movement of plates a ridge is created like sea floor at the mid-Atlantic ridge.

Transform are the area on the surface of the Earth where two plates slides away past to each other due to which gives rise to  earthquakes.

Claire created a model to study the day and night cycle of Earth as shown here. What causes different points on the globe to receive light at different times, explaining the day and night cycle of Earth?


the rotation of the lamp
the revolution of the lamp
the rotation of the globe
the revolution of the globe

Answers

THE answer is c the rotation of the globe

Answer:

the rotation of the globe

Explanation:

As mentioned the model is representing the day and night cycle of earth thus the lamp must be the sun and the globe is earth.

The earth completes one year in taking one complete revolution around the sun (globe revolve around lamp).Thus due to revolution of earth the year gets completed.

The day and night of earth is due to rotation of earth on its own axis. The earth took 24 hours to complete one rotation on its axis.

Thus the rotation of globe causes it to receive light at different times.

Energy can be changed from one form to another. Changes in the form of energy are called energy conversions. In an automobile engine, fuel is burned to convert ________energy into heat energy. The ________energy is then changed into ________energy.

Answers

In an automobile engine, fuel is burned to convert chemical energy into __ energy. This energy is then changed into __ energy.

1 ) Heat
2 ) Mechanical

"In an automobile engine, fuel is burned to convert chemical energy into "heat" energy. This energy is then changed into "mechanical" energy"

(Goes from Chemical energy, heat energy, to mechanical energy.)

Answer: 1. Chemical energy

2. Mechanical energy

Explanation:

The law of conservation of energy states that energy changes from one form of energy to another but it is neither created nor destroyed.

The fuel consists of chemical energy which when burn results in the release of energy in the form of heat or thermal energy. The heat energy is converted into mechanical energy by the internal machinery of the automobile engine. This mechanical energy is used to run the automobile.

What is the use of calcium chloride?

Answers

Interesting question! I never thought of it before.

1. It is used in things like bottled water.
2. It is used on the roads to help melt snow in winter.
3. It is used in pickles because it has a very salty taste. That's a good use for it for people that have high blood pressure.
4. It is used in swimming pools as a water hardener. I like in the country and I cannot imagine water needing to be hardened. You should see what our humidifies look like. Calcium is a really ugly deposit. It's hard to get off things. I wonder what it does to our intestines and stomach from all the water we drink.
5. It is used as a drying agent. Those little packages you get in pill bottles (you may be too young to seen this sort of thing) could be calcium chloride which will keep the moisture away from your pills.

That should get you going.
 

Which of these is a combustion and synthesis reaction?

A. CH4 + 2 O2 → CO2 + 2 H2O

B. Mg + O2 → MgO

C. H2O → H2 + O2

D. CaO → Ca + O2

Answers

A is the correct answer. A combustion reaction creates carbon dioxide and water. A is the only answer choice were carbon dioxide and water are made.

Answer:

It's B!

Explanation:

Which term describes the degree to which an element attracts electrons? view available hint(s) which term describes the degree to which an element attracts electrons? oxidation. reduction. electronegativity. polarity?

Answers

Answer is: electronegativity.
Electronegativity (χ) is a property that describes the tendency of an atom to attract a shared pair of electrons. Atoms with higher electronegativity attracts more electrons towards it, electrons are closer to that atom. For example fluorine has electronegativity approximately χ = 4 and oxygen χ = 3,5, fluorine attracts electron and he has negative charge and oxygen has positive charge.

Oxyacids contains at least one h+ and an oxyanion. the " sulfurous " oxyacid contains the oxyanion ________.

Answers

The correct answer is Oxyanion Nitrite. Oxyanion is referred to as an ion which contains one or more oxygen atoms that are bonded to another chemical element. It has a generic formula of A. xO z− y, wherein A, stands for a chemical element, while O, stands for an Oxygen atom

Answer:

Oxygenation Nitrite

Explanation:

Will the ph of a solution of nh4cn be >7, <7, or =7?

Answers

pH of a solution will be higher than 7

Ammonium cyanide is a salt formed by hydrogen cyanide and ammonia. Ammonia is a weak base and hydrogen cyanide is a weak acid. 
NH₄CN + H₂O ⇒ NH₃ + HCN 

NH₄⁺ + H₂O -----> H₃O⁺ + NH₃

CN⁻ + H₂O -----> HCN + OH⁻ 

Although both compounds are weak electrolytes, NH₃ is somewhat stronger base than HCN is a strong acid, so the solution reacts alkaline. We can prove this using Ka and Kb values:

Ka(HCN) = 4.9 x × 10⁻¹⁰

Kb(NH₃) = 1.8 × 10⁻⁵
Kw= 1.0 × 10⁻¹⁴

Let's first calculate Ka for NH₄⁺: 
Ka(NH₄⁺) x Kb(NH₃) = pKw

Ka(NH₄⁺) = Kw/Kb(NH₃) = 5.6 x 10⁻¹⁰

Then, Kb for CN⁻:

Kb(CN⁻) x Ka(HCN) = pKw

Kb(CN⁻) = Kw/Ka(HCN) = 2 x 10⁻⁵

 
From this, we can see that the acid constant NH4⁺ is much lower than the base constant of CN⁻, which will say that the solution of NH₄CN will react slightly alkaline because of the higher presence of hydroxyl ions in solution.


In a titration, 25.9 mL of 3.4 x10^-3 M Ba(OH)2 neutralized 16.6 mL of HCL solution. What is the molarity of the HCL solution?

Answers

First, We have to write the equation for neutralization:
Ba(OH)2 + 2HCl → BaCl2 + 2H2O 
so, from the equation of neutralization, we can get the ratio between Ba(OH)2 and HCl. Ba(OH)2 : HCl = 1:2 
- We have to get the no.of moles of Ba(OH)2 to do the neutralization as we have 25.9ml of 3.4 x 10^-3 M Ba(OH)2.
So no.of moles of Ba(OH)2 = (25.9ml/1000) * 3.4x10^-3 = 8.8 x 10^-5 mol
and when Ba(OH)2 : HCl = 1: 2 
So the no.of moles of HCl = 2 * ( 8.8x10^-5) =  1.76 x 10^-4 mol

So when we have 1.76X10^-4 Mol in 16.6 ml (and we need to get it per liter)
∴ the molarity = no.of moles / mass weight
                        = (1.76 x 10^-4 / 16.6ml)* (1000ml/L) = 0.0106 M Hcl

Final answer:

The molarity of the HCl solution is determined by using the volume and molarity of Ba(OH)2 to find the moles of HCl neutralized, which in this case results in a molarity of 0.01061 M for the HCl solution.

Explanation:

To calculate the molarity of the HCl solution, we will use the data provided from the titration of Ba(OH)2 with HCl. We are given that 25.9 mL of 3.4 x 10-3 M Ba(OH)2 completely neutralized 16.6 mL of HCl solution.

First, we calculate the number of moles of Ba(OH)2:

# moles Ba(OH)2 = Volume (L) x Molarity = (0.0259 L) x (3.4 x 10-3 M) = 8.806 x 10-5 moles

The balanced chemical equation for the reaction is:

Ba(OH)2 + 2 HCl → BaCl2 + 2 H2O

From the equation, we see that 1 mole of Ba(OH)2 reacts with 2 moles of HCl. Therefore, the moles of HCl neutralized by Ba(OH)2 would be twice the number of moles of Ba(OH)2, which is 2 x 8.806 x 10-5 = 1.7612 x 10-4 moles.

Now, we can find the molarity of the HCl solution:

Molarity HCl = # moles HCl / Volume HCl (L) = 1.7612 x 10-4 moles / 0.0166 L = 0.01061 M

Using the data in the table, which of the conjugate acids below is the weakest acid?

Answers

Final answer:

The weakest acid is the one with the weakest conjugate base. It won't ionize completely in water and operates under the inverse proportionality principle between Ka and Kb.

Explanation:

According to the principle of Bronsted-Lowry acids, the strength of an acid is determined by its ability to lose or donate a proton. This proton is then accepted by its conjugate base. When dissolving in water, a strong acid tends to lose its proton completely, hence it is completely ionized, and produces a large number of hydronium ions. Its conjugate base is weak, as it cannot accept many protons due to the acid's complete ionization. On the contrary, a weak acid only partially ionizes, hence, its conjugate base is strong, being able to accept many protons. Furthermore, there's an inverse relation between Ka (acid dissociation constant) and Kb (base ionization constant), meaning the stronger the acid, the weaker the base, and vice versa.

To find out the weakest acid in a list of conjugate acid-base pairs, we need to look for the acid with the weakest conjugate base listed above water in the table, in Figure 14.8. This indicates that the acid is weak and doesn't readily give up protons when dissolved in water.

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What effect does the water temperature have on solution rate hypothesis?

Answers

if the table have more density, then the temperature of the water increases

If a neutral atom of boron (B) contains 5 protons, 5 electrons and 6 neutrons, what is the mass number of this atom? (2 points)
21
11
10
5

Answers

i believe the answer is 11, its been awhile since i was in science
The atomic mass it 11. 5 Proton and 6 Neutrons is 11 mass. Protons and Neutrons both weigh 1U.

Which of the following is the last step in performing a titration?
a.finding out which pH indicator works
b.determining the concentration of an unknown base
c.finding the number of moles of product produced in a reaction
d.determining the molecular masses of the products in the reaction

Answers

The last step in performing a titration is determining the concentration of an unknown base. So the answer to your question is letter B. The concentration maybe either an acid or base. The other choices are the earlier procedures in performing titration.

Which of the following is NOT an assumption of the kinetic theory of gases?

Gas particles are in constant random motion.

The volume of individual gas particles is zero.

The particles in a gas are attracted to each other.

Gas particles collide without losing energy.

Answers

The correct answer is

The particles in a gas are attracted to each other.

:)

The following is NOT an assumption of the kinetic theory of gases :  The particles in a gas are attracted to each other.

Further explanation

Kinetic Molecular Theory (KMT) states that a gas consists of molecules that move at a constant and random speed. The collisions between molecules are perfectly elastic so that no energy is wasted.

The molecules move in straight lines until they collide

Energy because this motion is expressed as Kinetic energy (KE) which can be formulated as:

 [tex] \displaystyle KE = \frac {1} {2} mv ^ 2 [/tex]

The average kinetic energy value is only affected by temperature changes. The higher the temperature, the average kinetic energy of the molecule increases

This molecule is very small when compared to the distance between molecules, so the volume of gas contains mostly empty space

Gas particles move randomly (both speed and direction, as vector)

From the question :

Gas particles are in constant random motion.

Particle motion creates kinetic energy.

they collide between particles or the walls of its container

The volume of individual gas particles is zero.

The volume of the individual particles is negligible

The particles in a gas are attracted to each other.

The motion of each particle is independent (no attraction or repulsion)

Gas particles collide without losing energy

The collisions are elastic, so there is no loss of kinetic energy, only transferred from between particles

Learn more  

inertia affect during a collision  

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Henry's Law  

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ideal gas  

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Keywords: Kinetic Molecular Theory, Collisions, The average kinetic energy , gas molecule

When an atom loses one electron, the charge on its ion is _____?

Answers

Final answer:

When an atom loses one electron, it becomes a positively charged ion, known as a cation, with a +1 charge due to more protons than electrons.

Explanation:

When an atom loses one electron, the charge on its ion becomes positively charged. This occurs because there are now more protons than electrons in the ion. Atoms that lose electrons are referred to as cations. For example, when a neutral sodium atom loses one electron, it transforms into Na+, which signifies a cation with a +1 charge. The loss of electrons results in a higher number of protons than electrons, leading to a positive charge on the resulting ion, making sodium a cation, Na+, with a +1 charge. This process is essential for forming ions in chemistry, as ions are atoms that have gained or lost electrons, resulting in an imbalance that gives them a net charge.

Katie rolls a toy car off the end of a table
? A B C D

Answers

its c just took test

At a certain temperature, the equilibrium constant, kc, for this reaction is 53.3. at this temperature, 0.500 mol of h2 and 0.500 mol of i2 were placed in a 1.00-l container to react. what concentration of hi is present at equilibrium?
equation: h2 + i2 = 2hi

Answers

The concentration of HI present at equilibrium is approximately 1.13 M.

To find the equilibrium concentration of HI in the reaction between hydrogen (H₂) and iodine (I₂) to form hydrogen iodide (HI), we can follow these steps:

The balanced chemical equation for the reaction is:

[tex]H_2(g) + I_2(g) \rightleftharpoons 2HI(g)[/tex]

The given equilibrium constant, K_c, for this reaction at a certain temperature is 53.3.

In this scenario, we have:

0.500 moles of H₂ 0.500 moles of I₂ Volume of the container = 1.00 L

This means that the initial concentrations of H₂ and I₂ are:

[tex][H_2]_{initial} = \frac{0.500 \text{ moles}}{1.00 \text{ L}} = 0.500 ext{ M}[/tex]

[tex][I_2]_{initial} = \frac{0.500 \text{ moles}}{1.00 \text{ L}} = 0.500 ext{ M}[/tex]

Let’s denote the change in concentration of H₂ and I₂ at equilibrium as -x (since they will decrease) and the increase in concentration of HI as +2x (because 1 mole of each H₂ and I₂ produces 2 moles of HI). The changes can be summarized as:

[tex][H_2] = 0.500 - x[/tex]
[tex][I_2] = 0.500 - x[/tex]
[tex][HI] = 0 + 2x[/tex]

At equilibrium, we can express K_c:

[tex]K_c = \frac{[HI]^2}{[H_2][I_2]}[/tex]

Substituting the equilibrium concentrations into the expression:

[tex]53.3 = \frac{(2x)^2}{(0.500 - x)(0.500 - x)}[/tex]

This simplifies to:

[tex]53.3 = \frac{4x^2}{(0.500 - x)^2}[/tex]

Cross-multiplying gives:

[tex]53.3(0.500 - x)^2 = 4x^2[/tex]

Expanding the left side:

[tex]53.3(0.250 - x + x^2) = 4x^2[/tex]

This leads to:

[tex]13.325 - 53.3x + 53.3x^2 = 4x^2[/tex]

Combining terms yields:

[tex]49.3x^2 - 53.3x + 13.325 = 0[/tex]

To solve this quadratic equation, we apply the quadratic formula:
[tex]x = \frac{-b \pm \sqrt{b^2 - 4ac}}{2a}[/tex]
Where:

a = 49.3,b = -53.3,c = 13.325.

Calculating the discriminant:
[tex]b^2 - 4ac = (-53.3)^2 - 4(49.3)(13.325)[/tex]
Let's calculate
[tex]= 2840.89 - 2631.89 = 209.00[/tex]

Now substituting back into the formula, we compute:
[tex]x = \frac{53.3 \pm \sqrt{209}}{2(49.3)}[/tex]
Finding the positive root:
[tex]x \approx 0.563 \text{ (taking only the positive root for concentration)}[/tex]

We can now calculate the final concentration of HI:
[tex][HI]_{eq} = 2x = 2(0.563) \approx 1.126 ext{ M}[/tex]

Consider the chemical equilibrium of the reaction. NH4OH(aq) mc014-1.jpg NH4+(aq) + OHmc014-2.jpg(aq) What will happen to the chemical equilibrium if NH4Cl is added to this solution? The chemical equilibrium will shift to the right. The chemical equilibrium will not shift. The chemical equilibrium will shift to the left. The chemical equilibrium will be lost.

Answers

The chemical equilibrium will shift to the left.
Since NH4+ ions are a product of the original reaction, increasing their concentration will shift the equilibrium toward the reactants.

Le chateliers principle is applicable only to reversible reaction not to the irreversible reaction . The equilibrium will shift to the left side of the reaction that is towards the reactant on increasing the amount of NH₄Cl .

What is Le chatelier's principle?

According to  le chatelier's principle if any change in temperature, pressure or concentration of reactant is brought in the reaction that is in equilibrium then the the equilibrium will shift so as to tend to counteract the effect of the change.

The balanced reaction is

[tex]\rm NH_4OH(aq) \rightleftharpoons NH_4^+(aq) + OH^-(aq)[/tex]

If we add [tex]\rm NH_4Cl[/tex] to the reaction the number of ions of [tex]NH_4^+[/tex] increases in the product side and hence the reaction will counteract to change and equilibrium shift towards left.

Therefore, the equilibrium will shift to the left side of the reaction that is towards the reactant on increasing the amount of NH₄Cl.

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how do you think earths internal processes cause surface features on earth as large as mount everest

Answers

Hey there


The answer is all in the plate tectonics :

when plate tectonics collide together in a subduction zone where the crust of a sinking oceanic plate melts, they form a mountain 



Hopes this Helps u :D  

Explanation:

The mountain ranges like the Himalayas, where Mt. Everest is situated, and other bigger peaks are the outcomes of plate tectonics, resulting mainly due to huge slabs of Earth's crust colliding with each other. The point where collision takes place is known as a subduction zone, in which one of the subducts or slabs goes underneath, and the other gets on the top. When such kind of phenomenon take place, the push of one slab against the other, and the friction resulting on both the slabs lead to the formation of mountain ranges with the peaks like of Mt. Everest.

Write a balanced equation to show the reaction of sulfurous acid with lithium hydroxide to form water and lithium sulfite

Answers

H2SO3 + 2LiOH = 2H2O + Li2SO3
Final answer:

Sulfurous acid and lithium hydroxide react in a neutralization reaction to form water and lithium sulfite. The balanced chemical equation is H2SO3 + 2LiOH -> Li2SO3 + 2H2O.

Explanation:

The question asks for a balanced equation that demonstrates the reaction between sulfurous acid (H2SO3) and lithium hydroxide (LiOH). This reaction is typically categorized as a type of acid-base reaction called neutralization, where an acid reacts with a base to produce salt and water. Here, sulfurous acid acts as the acid, and lithium hydroxide is the base. The products are lithium sulfite and water.

The balanced chemical equation is as follows: H2SO3 + 2LiOH -> Li2SO3 + 2H2O

This equation demonstrates that one molecule of sulfurous acid reacts with two molecules of lithium hydroxide to produce one molecule of lithium sulfite and two molecules of water.

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