4. What is one important assumption about the properties
ht assumption about the properties of an ideal gas under the kinetic-
molecular theory of gases?
a) All ideal gases have the same molar mass or molecular weight
b) Ideal gases all have the same partial pressure in a mixture of gases
c) The collision of ideal gas molecules is assumed to be perfectly elastic
d) Ideal gas properties have no effect on the behavior of ideal gases
5. Convert 34 degrees Celsius to temperature expressed as Kelvin.
a) -239. Kelvin
b) 134 Kelvin
c) 93.2 Kelvin
d) 307 Kelvin​

Answers

Answer 1
The correct answer is c) The collision of ideal gas molecules is assumed to be perfectly elastic.The correct answer is d) 307 Kelvin.

4)

Under the kinetic-molecular theory of gases, one important assumption about the properties of an ideal gas is that the collision between gas molecules is perfectly elastic. This means that during collisions, there is no net loss or gain of kinetic energy. The gas molecules simply exchange energy, changing direction and speed, but the total energy of the system remains constant.

This assumption is crucial in understanding the behavior of ideal gases because it helps explain various gas properties, such as the relationship between pressure, volume, and temperature. The perfectly elastic collisions allow the gas molecules to freely move and exert pressure on the walls of the container.

5)

To convert degrees Celsius to Kelvin, you simply add 273.15 to the temperature in Celsius.

In this case, to convert 34 degrees Celsius to Kelvin, you would add 273.15:

34 degrees Celsius + 273.15 = 307.15 Kelvin

Therefore, the temperature expressed as Kelvin is 307 Kelvin.


Related Questions

To find the number of neutrons in To find the number of neutrons in and
you would subtract

Answers

Answer:

To find the number of neutrons we would subtract the number of protons from mass number of an atom.

Explanation:

An atom consist of electron, protons and neutrons. Protons and neutrons are present with in nucleus while the electrons are present out side the nucleus.

All these three subatomic particles construct an atom. A neutral atom have equal number of proton and electron. In other words we can say that negative and positive charges are equal in magnitude and cancel the each other. For example if neutral atom has 6 protons than it must have 6 electrons. The sum of neutrons and protons is the mass number of an atom while the number of protons are number of electrons is the atomic number of an atom.

For example:

The mass number of carbon is 12 amu and it has six protons thus to find the number of neutrons we would subtract the 6 from 12 and get number of neutrons.

12- 6 = 6 neutrons

Which reacts with metals to form H2 gas

Answers

Answer: acid react with metals to form H2.

Explanation: metals which are more electropositve than hydrogen will always displaced hydrogen from acids. The equation below show how hydrogen is displaced from acid

Zn + 2HCl -—> ZnCl2 + H2

Some kinds of matter are attracted to a magnet. Is this a physical or chemical property of matter?

Answers

Answer:

Physical Property

Explanation:

Magnetism is temporary untill you seperate the objects. There is no chemical change involved before, after, or during.

The attraction of certain materials to a magnet is a physical property of matter because it doesn't involve a change in the chemical composition of the material but rather relates to the arrangement and behavior of its electrons.

The attraction of certain types of matter to a magnet is a physical property of matter. Physical properties are characteristics of a substance that can be observed or measured without altering the substance's chemical composition. Magnetism is one such property that describes a material's ability to be attracted to or repelled by a magnet.

The phenomenon of magnetism arises from the alignment and behavior of the electrons in the atoms or molecules of a material. Materials that exhibit magnetic properties have domains where the magnetic moments of the individual atoms or molecules align in a particular direction. When exposed to an external magnetic field, these domains can align with the field, causing the material to be attracted to the magnet.

Importantly, this attraction is reversible and does not involve a change in the material's fundamental chemical composition. When the magnetic field is removed, the material returns to its original state. Common magnetic materials, such as iron, nickel, and cobalt, have unpaired electrons in their electron configurations, which allows them to exhibit strong magnetic properties.

In contrast, chemical properties of matter involve changes in the chemical composition of substances, such as reactions that form new compounds or alter the arrangement of atoms within molecules.

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5. How can you describe the specific heat of olive oil if it takes approximately 420 J of heat to raise the
temperature of 7 g of olive oil by 30°C?
Not enough information is given.
greater than the specific heat of water
c. less than the specific heat of water
equal to the specific heat of water

Answers

Answer:

Lower than the specific heat capacity of water

Explanation:

Specific heat capacity of a material is defined as the amount of heat needed to raise 1 g of that substance by [tex]1^oC[/tex]. Specific heat capacity is typically used in the equation which relates heat transfered to the product of specific heat capacity, mass and change in temperature, given by:

[tex]Q = cm\Delta T[/tex]

In this problem:

[tex]Q = 420 J[/tex]

[tex]m = 7 g[/tex]

[tex]\Delta T = 30^oC[/tex]

We may simply rearrange this equation for specific heat, c, in order to solve for its value:

[tex]c = \frac{Q}{m\Delta T} = \frac{420 J}{7 g\cdot 30^oC} = 2 \frac{J}{g^oC}[/tex]

We know that the specific heat capacity of water is:

[tex]c_w = 4.184 \frac{J}{g^oC}[/tex]

The value we obtained is lower than the specific heat capacity of olive oil.

Final answer:

The specific heat of olive oil is approximately 2 J/g °C, which is less than the specific heat of water.

Explanation:

The specific heat of olive oil can be calculated by using the formula: q = mcΔT, where q is the heat energy absorbed, m is the mass of the substance, c is the specific heat, and ΔT is the change in temperature. In this case, we are given the heat (q) as 420 J, the mass (m) as 7 g, and the change in temperature (ΔT) as 30 °C. Plugging these values into the formula, we get 420 J = c * 7 g * 30 °C. Solving for c, we find that the specific heat of olive oil is approximately 2 J/g °C.

Comparing this specific heat value to the specific heat of water, which is 4.184 J/g °C, we can conclude that the specific heat of olive oil is less than the specific heat of water.

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Which of the following is an example of parasitism: Question 3 options: Two males lions fighting for dominance of a pride. A goby fish warning a shrimp about danger so that they both retreat to the burrow the shrimp maintains. A roundworm living inside a dog and producing eggs which then get distributed to the environment through the dog's feces. A fox hunting and eating a rabbit for food

Answers

Answer:

Around worm because it gets bebefits such as food and habitat without killing its host..

Answer:

A roundworm living inside a dog and producing eggs which then get distributed to the environment through the dog's feces.

Explanation:

Parasitism is said to be an interaction between two organism whereby one organism benefit from the relationship and the other organism suffers. Most times the organism that suffers do not die instantly.

In the case of roundworm living inside a dog and producing eggs , the dog provides the necessary environment for the roundworm to strife. The roundworm enjoys the ingested foods from the dog and also comfortable environment devoid of predators. Even when the roundworm lay eggs the dog assist in the growth of the next generation by releasing it to the environment through feces. other animals later ingest the developed egg and the cycle continues.    

An airplane attempting to fly higher than 300,000 feet will

Answers

Answer:

Begin to succumb to the power of gravity because of the decrease in lift

Explanation:

Final answer:

An airplane climbing to altitudes higher than 300,000 ft would struggle with decreased lift due to lower air density and would not necessarily require an extra engine. Engines produce less power with increased altitude, so the airplane must efficiently use its existing engines to maintain climb without compromising lift. So the correct option is D.

Explanation:

When an airplane attempts to fly higher than 300,000 ft, it would not typically need an extra engine but will begin to succumb to the power of gravity because of the decrease in lift, that is, option D. At such altitudes, the air density is much lower, meaning there is less air to generate lift. Indeed, for straight and level flight, an aircraft must maintain a balance where the thrust equals the drag. As the airplane ascends, the air becomes thinner (density altitude increases), and to maintain the same lift, the aircraft would need to travel at higher speeds or have a greater angle of attack. However, the engines' efficiency also decreases with altitude, as they are designed to operate optimally within certain atmospheric conditions.

Furthermore, jet engines, like turbojets, produce less power at higher altitudes due to the reduced air density. Thrust from engines does not counteract drag by increasing the number of engines but by optimizing performance of existing engines. To climb and maintain velocity, aircraft need to produce enough excess power to convert that energy into increased potential energy without compromising the energy needed for maintaining lift.

The student needs to understand that the trade-off between kinetic and potential energy in an aircraft is similar to a car climbing a hill. To increase altitude without losing speed, additional power is required to offset the energy directed towards increasing altitude. Thus, the aircraft must be capable of generating the additional power needed to climb, which becomes more challenging as altitude increases.

Which happens when a reversible reaction reaches a state of chemical equilibrium?

Answers

Explanation:

Reversible reactions that happen in a closed system eventually reach equilibrium. At equilibrium, the concentrations of reactants and products do not change. But the forward and reverse reactions have not stopped - they are still going on, and at the same rate as each other.

Every reaction strives to reach a state of chemical equilibrium, which is the point where both the forward and backward processes are occurring at the same pace. The concentrations of the reactants and products are constant at equilibrium because the forward and reverse speeds are equal.

What is chemical equilibrium ?

Chemical equilibrium is the state of a chemical process where both the reactants and products are present in concentrations that have no further tendency to change over time, preventing any discernible change in the system's properties.

When a chemical reaction is reversible, equilibrium is reached when the rate at which the forward reaction is moving equals the rate at which the reverse reaction is moving.

Even though the two reactions proceed at equal but opposite rates, there are no additional changes in the reactant and product concentrations. At some point, the forward and reverse reaction rates are identical; the rate at which reactants transform into products is the same as the rate at which products transform into reactants.

Thus, Every reaction strives to reach a state of chemical equilibrium, which is the point where both the forward and backward processes are occurring at the same pace.

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if your body need alot of immediate energy, what carbon compound would you eat​

Answers

You would eat something that is dense in carbohydrates. These are the fast-acting molecules that can readily provide energy. Hope this helps!

Answer:

Carbohydrates

Explanation:

You would eat carbohydrates as they supply your body with lots of short-term energy that can be burned at a fast rate.

What measures are used to calculate the percent by volume of a solution?

Answers

Answer:s the solution expressed in the unit %. ... Solvent is a liquid which dissolves the solute.

Explanation:

Volume/volume percentage (v/v percent) is a measure of the concentration of a substance in a solution. It is expressed as the ratio of the volume of the solute to the total volume of the solution multiplied by 100. Examples: Wine has a typical alcohol content (v/v percent) of 12 percent.

Answer:

See the answer below, please.

Explanation:

The volume / volume percentage relates the volume of solute / solution volume and this is multiplied by 100.

In the case of weight / volume percentage, relate grams of solutes to milliliters of solution, then this is multiplied by 100.

Why is it not possible to just consume only pure ATP and thus eliminate some steps in
metabolism?

Answers

Our digestive has the steps of digestion and absorption associated with it. So all the compounds taken in as food are first broken down into simpler components before absorption.

Explanation:

ATP or Adenosine Triphosphate is a compound containing a molecule of adenine as nitrogen base, a ribose sugar and three molecules of phosphate attached with the adenine in a chain. Its unable to get absorbed into the system as ATP itself. In intestine, it will be broken down into Adenine, ribose, and phosphates and then absorbed individually into blood.

Thus even if we consume raw ATP, we can't bypass the process of ATP formation. So, there's no significance. And secondly, ATP is very expensive and not suitable for consumption itself.

Hi:) anyone able to explain the last column? Thanks !!

Answers

I'll try to explain this in the simplest way I've learned it.

What the last column basically meant was that if the second word of the compound has a negative ion charge

and contains oxygen it will give the the compound a name ending with -ate

Consider the following reaction:

2HCl(g) + 185 kJ → H2(g) + Cl2(g)
Describe the change in energy according to the Law of Conservation of Energy.
A) There is a net gain of 185 kJ of energy when decomposing HCl.
B) It takes more energy to break the bonds of HCl than form H2(g) + Cl2(g).
C) The energy required to decompose HCl and produce H2(g) + Cl2(g) are equal.
D) It takes less energy to break the bonds of HCl than form the bonds of H2(g) + Cl2(g.)

Answers

For the given reaction, according to the Law of Conservation of Energy, the energy required to decompose Hcl and produce [tex]H_{2}+c l_{2}[/tex] are equal.

Answer: Option C

Explanation:

According to law of conservation's of energy, energy can only be transferred from reactants to product side. So in this process, it is stated that 185 kJ of energy will be needed to decompose it. So that 185 kJ of energy will be getting transferred to produce the creation of hydrogen and chloride in the product side.

So if we see from the reactants side, the energy of 185 kJ is required for decomposition of hydrogen chloride. Similarly, if we see from the product side, the 185 kJ utilized for decomposition is transferred as energy required to create hydrogen and chlorine atoms. This statement will be in accordance with the law of conservation's of energy.

Answer:

the answer is b ^ that person is wrong

Explanation:

What is the mathematical formula expressing Newton's Second Law of Motion?

p=mv
F=ma
A=v2-v1/t
Speed=distance/time

Answers

Answer:

The mathematical formula expressing Newton's Second Law of Motion is :

F = ma

Explanation:

Second Law of Motion : It states that external unbalanced force is directly proportional to rate of change of momentum.

Its formula becomes : F = ma

[tex]F = \frac{m(v-u)}{t}[/tex]

Put,

[tex]\frac{(v-u)}{t} = a[/tex]

F = ma

Answer:

F = ma

Explanation:

If solid NaCl is added to a saturated water solution of PbCl2 at 20o C, a precipitate is formed. How would this affect the value of the Ksp for [Pb2+][Cl-] in solution? The Ksp increases. The Ksp decreases. The Ksp remains the same. none of the above.

Answers

Answer:

The [tex]K_{sp}[/tex] remains the same

Explanation:

Let's look at what actually happens in this scenario. Before we dive into the explanation, remember the principle of Le Chatelier: for a system at equilibrium, a specific disturbance in molarity/volume/pressure of any species in equilibrium would cause the equilibrium to shift towards the side that minimizes such a disturbance.

To begin with, we have a saturated water solution of lead(II) chloride. A saturated solution means that at the given temperature we have a maximum amount of lead(II) chloride that could dissolve in the given volume of water.

Since lead(II) chloride is not highly soluble, we have an equilibrium between the precipitate and the dissociated ions:

[tex]PbCl_2(s)[/tex]⇄[tex]Pb^{2+}(aq)+2Cl^-(aq)[/tex]

Now we're adding NaCl to this solution. Sodium chloride is a sparingly soluble salt which readily dissociates into sodium and chloride ions:

[tex]NaCl(aq)\rightarrow Na^+ (aq)+Cl^- (aq)[/tex]

Notice that sodium chloride increases the concentration of chloride ions in the solution, so the equilibrium between the precipitate and its ions is disturbed.

According to the principle of Le Chatelier, due to an increase in chloride ions, the equilibrium would be disturbed and the system would tend to decrease it in order to restore the equilibrium. Hence, the equilibrium shifts towards the precipitate forming more of the precipitate and decreasing the amount of lead(II) cation, as well as the excess of chloride ions. This is also called the common ion effect: the common ion decreases the solubility of a salt.

However, it only decreases the solubility of the salt but not the solubility product constant defined as:

[tex]K_{sp}=[Pb^{2+}][Cl^-]^2[/tex]

A decrease in lead(II) concentration is compensated by the excess of chloride. The solubility product is only temperature-dependent, just as any other equilibrium constant, so it doesn't depend on the molarity of chloride or lead(II) ions.

Solubility, on the other hand, is equal to:

[tex]S=[Pb^{2+}]=\frac{K_{sp}}{[Cl^-]^2}[/tex]

And, as you can see, it decreases, as K is kept constant and we have an increase in chloride.

Answer:

The answer is the Ksp remains the same.

Explanation:

I got this answer right on an assignment.

how many paired and unpaired electrons are in magnesium?

Answers

Answer:

Paired = 12

Unpaired = 0

Explanation:

Magnesium is alkaline earth metal.

It is present in second group.

Its atomic number is 12 and atomic mass 24 amu.

Electronic configuration:

Mg₁₂ = 1s² 2s² 2p⁶ 3s²

It can seen from electronic configuration that all electrons are paired because s subshell have one orbital and it can accomodate two electrons. Each s subshells in magnesium have two electrons so these are filled and have paired electrons. While p subshell have three orbitals and can accomodate six electrons two by each orbital with opposite spin thus 2p is also filled and have paired electrons.

Determine the mass number of an element that contains 26 protons, 22 electrons, and 30 neurons

Answers

Answer:

56 is the mass

Explanation:

You would add 26 and 30(the protons and neutrons). I didn't add the electrons because they are so small their mass is negligible in this situation.

Answer:

Mass = 56

Explanation:

How would adding the catalyst nitrogen monoxide (NO) affect this reaction? 2SO2(g) + O2(g) → 2SO3(g)

Answers

Answer:

NO decreases the activation energy and increases the rate of a reaction

Explanation:

To fully comprehend this problem, we wish to understand the role of a catalyst in a chemical reaction. Catalyst is a substance which is essentially consumed and then reproduced (that said, its mass remains the same and the net mass consumed is equal to 0) in a chemical reaction which:

decreases the activation energy barrier – that is, the minimum amount of energy required for a successful collision between molecules leading to a chemical reaction;increases the rate of a reaction: the reaction proceeds faster. This is achieved based on the fact that the activation energy is decreased.

Addition of a nitrogen monoxide catalyst would therefore decrease the activation energy and increase the rate of a reaction.

Now, in terms of equilibrium (if the reaction is at equilibrium, as just a right arrow is indicated), since nitrogen monoxide is a gas, there would be no shift in equilibrium towards the products or reactants, as addition of an inert gas to an equilibrium system would decrease the partial pressures of each component equally.

What does X represent for this transmutation?


49Be+24He→X+01n


513B


613C


25He


612C

Answers

Answer: 612C

Explanation: 49B + 24He —> 612C + 01n

A 0.20 mol sample of MgCl(s) and a 0.10 mol sample of KCl(s) are dissolved in water and diluted to 500 mL. What is the concentration of Cl- in the solution?

Answers

Answer:

0.6 Molar

Explanation:

According to the Question,

In 500 mL of water ,

0.2 mol sample of MgCl is present and 0.1 mol of KCl is present.

Thus ,

Concentration of Cl anion in the solution will be the sum of Cl anion concentration from MgCl and KCl.

From MgCl , 0.2 mol of Cl anion will come and 0.1 mol of KCl anion will come ,

Thus , 0.3 mol of Cl anion will come totally .

So, Cl anion concentration will be [tex]\frac{0.3}{0.5}[/tex] = 0.6 M

The concentration of Cl⁻ in the solution, after dissolving 0.20 mol MgCl₂ and 0.10 mol KCl and diluting to 500 mL, is 1.0 M.

To determine the concentration of Cl⁻ ions in the solution, we need to calculate the total moles of Cl⁻ ions from both MgCl₂ and KCl after dissolving them in water.

Magnesium chloride (MgCl₂) provides two moles of Cl⁻ for every mole of MgCl₂. Hence, 0.20 moles of MgCl₂ will produce 0.20 x 2 = 0.40 moles of Cl⁻.

Potassium chloride (KCl) provides one mole of Cl⁻ for every mole of KCl. Therefore, 0.10 moles of KCl will give 0.10 moles of Cl⁻.

Adding the total moles of Cl⁻ from both salts gives us 0.40 moles + 0.10 moles = 0.50 moles.

To find the concentration of Cl⁻ in the final solution, divide the total moles of Cl⁻ by the volume of the solution in liters. Since the solution volume is 500 mL, which is equivalent to 0.500 L, we perform the following calculation:
Concentration of Cl⁻ = 0.50 moles / 0.500 L = 1.0 M.

Therefore, the correct answer is that the concentration of Cl⁻ in the solution is 1.0 M.

Gizmo Student exploration feel the heat

Answers

Answer:?

Explanation:?

Whatlis the maximum number of electrons the n =
4 shell can contain

Answers

Answer:

32

Explanation:

The maximum number of electrons can be calculated by using the expression 2n2

when n = 4

substitute n for 4

2(4)2

2(16) = 32

Answer:

32

Explanation:

VIOUS
Namella
Part 1: Molar Mass
Use the periodic table to find the molar masses of the following
HCI
K2CO₃
Ca(OH)2
Na3PO4

Answers

Answer:

Explanation:

Molar mass:

Molar mass of substance is sum of atomic weight of all the atoms of elements present in it.

HCl

Atomic weight of hydrogen = 1.008 amu

Atomic weight of chlorine = 35.5 amu

Atomic weight of HCl =  1.008+ 35.5 = 36.508 g/mol

K₂CO₃:

Atomic weight of potassium = 39.0893 × 2 = 78.1786 amu

Atomic weight of carbon = 12 amu

Atomic weight of oxygen = 16×3 = 48 amu

Atomic weight of K₂CO₃ =  48+12+ 78.1786 = 138.178 g/mol

Ca(OH)₂:

Atomic weight of calcium = 40 amu

Atomic weight of oxygen = 16× 2 amu = 32 amu

Atomic weight of hydrogen = 1.008× 2 = 2.016 amu

Atomic weight of Ca(OH)₂ = 74.016 g/mol

Na₃PO₄:

Atomic weight of sodium = 23×3= 69 amu

Atomic weight of phosphorus = 31 amu

Atomic weight of oxygen = 16 × 4 = 64 amu

Atomic weight of Na₃PO₄= 69+31+64 = 164 g/mol

WILL GIVE BRAINLYIST HELPPPPP PLEASE Which is the second stage of mitosis?

Anaphase
Interphase
Metaphase
Telophase

Answers

Metaphase is the answer

Answer: Metaphase

Explanation:

Metaphase is SECOND stage of mitosis, that follows prophase and comes before anaphase, during which condensed chromosomes become aligned before being separated.

During Metaphase, the chromosomes become visible due to the condensation, and the success of this stage determines whether anaphase will occur.

Therefore, metaphase is the second stage of mitosis.

What’s the answer to this science problem?

Answers

Answer:

The image is not accurate because

the heavier atoms are moving faster than the lighter ones

but the lighter ones must move faster than the heavier ones.

Explanation:

The image depicts the atoms of two different elements; atoms of lighter and heavier elements.

And the rate of diffusion (movement of atoms) of an element is inversely proportional to the square root of its molecular.

⇒ As the weight increases, the rate of diffusion (movement of atoms) decreases.

And as the weight decreases, the rate of diffusion (movement of atoms) increases.

so, heavier atoms move slowly compared to lighter atoms.

The image is not accurate because

the heavier atoms are moving faster than the lighter ones

but the lighter ones must move faster than the heavier ones.

Which element has the largest atomic radius?
As
N
P
Sb

Answers

Answer:

Sb

Explanation:

The given elements are present in group 5th A in Following order:

N

P

As

Sb

As we move down the group atomic radii increased with increase of atomic number. The addition of electron in next level cause the atomic radii to increased. The hold of nucleus on valance shell become weaker because of shielding of electrons thus size of atom increased.

As the size of atom increases the ionization energy from top to bottom also  decreases because it becomes easier to remove the electron because of less nuclear attraction and as more electrons are added the outer electrons becomes more shielded and away from nucleus.

Thus antimony have largest atomic radius.

Out of the four options, Sb has the highest atomic radius.

What can you tell by tracking oxidation numbers?

Answers

Answer:

By tracking oxidation numbers we can identify the number electron in the atom

Explanation:

Tracking of electrons helps us to know when and how many electrons get transferred from one atom to other atom . Oxidation  referred as the “loss of one or more electrons” by an atom. When the oxidation number of an element increases, there is a loss of electrons and that element is being oxidized. Oxidation numbers are usually written with the sign (+plus or −minus) followed by the magnitude, which is the opposite of charges on ions. In their elemental stage oxidation number of an atom is zero.  

Final answer:

Oxidation numbers are used to track electrons in atoms. By assigning oxidation numbers based on certain rules, we can determine what is being oxidized and what is being reduced in a redox reaction.

Explanation:

Oxidation numbers are used to keep track of electrons in atoms. They are assigned to atoms based on four rules. Oxidation is an increase in oxidation number (loss of electrons), while reduction is a decrease in oxidation number (gain of electrons). By tracking oxidation numbers, we can determine what is being oxidized and what is being reduced in a redox reaction. For example, in the reaction where carbon reacts with oxygen to form carbon dioxide, the oxidation number of carbon changes from zero in the reactants to +4 in the product, indicating that carbon is being oxidized. On the other hand, the oxidation number of oxygen changes from zero to -2, indicating that oxygen is being reduced.

balancing the reaction by oxidation number method k2cr2o7+sncl2+hcl​

Answers

Answer:

[tex]K_2Cr_2O_7 (aq) + 14 HCl (aq) + 3 SnCl_2 (aq)\rightarrow 2 CrCl_3 (aq) + 7 H_2O (l) + 3 SnCl_4 (aq) + 2 KCl (aq)[/tex]

Explanation:

The products of this reaction are given by:

[tex]K_2Cr_2O_7 (aq) + SnCl_2 (aq) + HCl (aq)\rightarrow KCl (aq) + SnCl_4 (aq) + CrCl_3 (aq) + H_2O (l)[/tex]

Firstly, dichromate anion becomes chromium(III) cation, let's write this change:

[tex]Cr_2O_7^{2-} (aq)\rightarrow Cr^{3+} (aq)[/tex]

The following steps should be taken:

balance the main element, chromium: multiply the right side by 2 to get 2 chromium species on both side:

[tex]Cr_2O_7^{2-} (aq)\rightarrow 2 Cr^{3+} (aq)[/tex]

balance oxygen atoms by adding 7 water molecules on the right:

[tex]Cr_2O_7^{2-} (aq)\rightarrow 2 Cr^{3+} (aq) + 7 H_2O (l)[/tex]

balance the hydrogen atoms by adding 14 protons on the left:

[tex]Cr_2O_7^{2-} (aq) + 14 H^+ (aq)\rightarrow 2 Cr^{3+} (aq) + 7 H_2O (l)[/tex]

balance the charge (the total net charge on the left is 12+, on the right we have 6+, so 6 electrons are needed on the left):

[tex]Cr_2O_7^{2-} (aq) + 14 H^+ (aq) + 6e^-\rightarrow 2 Cr^{3+} (aq) + 7 H_2O (l)[/tex]

Similarly, tin(II) cation becomes tin(IV) cation:

[tex]Sn^{2+} (aq)\rightarrow Sn^{4+} (aq) + 2e^-[/tex]

Now that we have the two half-equations, multiply the second one by 3, so that it also has 6 electrons that will be cancelled out upon addition of the two half-equations:

[tex]Cr_2O_7^{2-} (aq) + 14 H^+ (aq) + 6e^-\rightarrow 2 Cr^{3+} (aq) + 7 H_2O (l)[/tex]

[tex]3 Sn^{2+} (aq)\rightarrow 3 Sn^{4+} (aq) + 6e^-[/tex]

Add them together:

[tex]Cr_2O_7^{2-} (aq) + 14 H^+ (aq) + 3 Sn^{2+} (aq)\rightarrow 2 Cr^{3+} (aq) + 7 H_2O (l) + 3 Sn^{4+} (aq)[/tex]

Adding the ions spectators:

[tex]K_2Cr_2O_7 (aq) + 14 HCl (aq) + 3 SnCl_2 (aq)\rightarrow 2 CrCl_3 (aq) + 7 H_2O (l) + 3 SnCl_4 (aq) + 2 KCl (aq)[/tex]

for the reaction: magnesium atom + oxygen atom --> magnesium oxide. draw the Lewis electron dot diagram for each substance and use arrows to illustrate electron movement.​

Answers

Answer:

Explanation:

Magnesium is present in second group of periodic table. It has two valance electrons. Oxygen us present in group sixteen it has six valance electrons.

Magnesium need to lose two valance electrons to complete the octet while oxygen needed two electrons to complete the octet.

When magnesium loses it two electrons it form magnesium cation Mg²⁺ and its two electrons transfer to the oxygen thus oxygen becomes anion O²⁻.

Both negative and positive charges attract each others and form magnesium oxide. MgO.

Chemical equation with electron dot illustration:

Reaction is given in attached file.


5. Express the composition of each atom in shorthand form.
a. zinc-64
b. chlorine-37
c. hydrogen-3
d. calcium-40​

Answers

Answer:

Explanation:

Zinc-64  = 30 proton, 30 electron and 34 neutron

chlorine-37 = 17 proton, 17 electron and 20 neutron

hydrogen-3 = 1 proton, 1 electron and 2 neutron

calcium-40 = 20 proton, 20 electron and 20 neutron

The numbers in front are the mass number, the number of proton equal number of electron in a neutral atom and these atoms do carry charge which means they are neutral. To calculate the number of neutron simply subtract the number of proton from the mass number

Final answer:

The shorthand composition of atoms is represented as Element-Mass number. Examples include Zinc-64 as ^64Zn, Chlorine-37 as ^37Cl, Hydrogen-3 as ^3H, and Calcium-40 as ^40Ca.

Explanation:

The composition of each atom can be expressed using shorthand notation based on the atomic number and mass number. This format is usually represented as Element-Mass number.

Zinc-64 is expressed as ^64Zn, where 64 is the mass number and Zn is the atomic symbol for Zinc.Chlorine-37 is expressed as ^37Cl, where 37 is the mass number and Cl is the atomic symbol for Chlorine.Similarly, Hydrogen-3 is represented as ^3H, where 3 is the mass number and H is the atomic symbol for Hydrogen.Calcium-40 is denoted as ^40Ca, where 40 is the mass number and Ca is the atomic symbol for Calcium.

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Answers

Nitrogen is 1.25 g/L

Sulfur dioxide is 2.86 g/L

Methane is 0.714 g/L

Hope I helped :)

Explanation:

The formula used :

[tex]PM=dRT[/tex]

Where:

P = pressure of the gas

M = Molar mass of the gas

d = Density of the gas

T = temperature of the gas

R = Universal gas constant = 0.0821 atm L/mol K

A.

The density of the gas at STP, d = 1.25 g/L

Pressure of the gas = 1 atm

Temperature of the gas = T = 273 K

[tex]M=\frac{dRT}{P}=\frac{1.25 g/L\times 0.0821 atm l/mol k\times 273 K}{1 atm}[/tex]

M = 28.01 g/mol

Molar mass of nitrogen gas =28 g/mol ≈ 28.01 g/mol

The density of nitrogen gas at STP is 1.25 g/L.

B.

The density of the gas at STP, d = 2.86 g/L

Pressure of the gas = 1 atm

Temperature of the gas = T = 273 K

[tex]M=\frac{dRT}{P}=\frac{2.86g/L\times 0.0821 atm l/mol k\times 273 K}{1 atm}[/tex]

M = 64.10 g/mol

Molar mass of sulfur dioxide gas = 64g/mol ≈ 64.10 g/mol

The density of sulfur dioxide gas at STP is 2.86 g/L.

C.

The density of the gas at STP, d = 0.714 g/L

Pressure of the gas = 1 atm

Temperature of the gas = T = 273 K

[tex]M=\frac{dRT}{P}=\frac{0.714 g/L\times 0.0821 atm l/mol k\times 273 K}{1 atm}[/tex]

M = 16.00 g/mol

Molar mass of methane gas = 16 g/mol

The density of methane gas at STP is 0.714 g/L.

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