Can you someone do my chem homework. I will pay $$$. I attached a question

Can You Someone Do My Chem Homework. I Will Pay $$$. I Attached A Question

Answers

Answer 1

Answer:

Acid-Base

Combustion

Combination

Decomposition

Explanation:

(1)  KOH is acid and HBrO is a base which reacts to form water , thus it is an example of acid-base reaction.

(2) In the reactants Oxygen gas is used , whenever Oxygen comes in a reaction it is an example of Combustion reaction as the other reactant starts burning.

(3) Here two reactant combines to produce a single product , thus it is an example of Combustion Reaction.

(4) Here A single reactant decomposes to form two products in this reaction , thus it is an example of Decomposition Reaction.


Related Questions

Determine the number of ions produced in the dissociation of the compound listed. CaCl2

Answers

Answer:

See the explanation below, please.

Explanation:

Then the dissociation of the compound CaCl2 (Calcium chloride):

CaCl2 ---> Ca 2+ + 2Cl -

The compound dissociates into Ca2 + and Chloride (Cl-)

(two ions are generated in dissociation)

Answer:

The answer is 2 ions

Explanation:

A hurricane warning has been issued in a location in Florida. What would people in the location most likely do? (2 points) Question 20 options: 1) turn on all major appliances in the house 2) remove fuel from their cars and generators 3) check and replenish emergency supplies 4) sit on the floor beside windows and doors

Answers

Answer:3 check and replenish emergency supplies

Explanation: This one is the only one that is not counter intuitive.

Noble gases rarely ever react with other elements. Which rule below explains why?
Octet Rule
Hund's Rule
Aufbau Principle
Pauli Exclusion Principle

Answers

Answer:

A.Octet Rule

Explanation:

Because its orbital surface containes eight electrons

Answer:

Octet Rule

Explanation:

The octet rule talks about the tendency of atom to attain 8 electron in it outer shell. When an atom have fewer outer electrons than 8 they tend to easily react to form stable compounds. The atom that has it outer shell fully filled up are usually very stable and hardly go into a reaction. The octet rule is mostly involved with the s and p orbitals.

Noble gases like Neon and Argon have fully filled outer shell. The valency electron is 8. This fully filled valency shell is responsible for the stable nature of these noble gases. These noble gases find it hard to react with other elements. Example includes Neon and Argon which have atomic numbers of 10 and 18 respectively. The electronic configuration can be represented as follows:

Neon →  2 8

Argon → 2 8 8

Help please!
Pretend you have a job building tricycles. If you had 200 handle bars, 150 wheels,
250 pedals, and 75 seats. What is the limiting reactant?

Answers

Answer:

Correct answer - wheels

Explanation:

Limiting reactant:

The reactant that is used up first in the chemical reaction.i.e. the reactant that restricts the amount of product that can be produced.The unused product left in the reaction.

For example,

[tex]2H_{2}+O_{2}\rightarrow 2H_{2}O[/tex]

The ratio of creating [tex]H_{2}O[/tex] is

[tex]2molH_{2}:1molO_{2}:2molH_{2}O[/tex]

If you had 8 moles of hydrogen and only 3 moles of oxygen ;you would have enough oxygen to produce 6 moles of water with 2 moles of hydrogen leftover.

From the given,

200 handle bars, 150 wheels,  250 pedals, and 75 seats.

For tricycle making, each one required one seat, handle,two pedals and three wheels.

Hence, wheels are first consumed.

Therefore,  wheels are limiting reactant.

Which gas has properties that are most similar to those of an ideal gas

Answers

Answer:

H2

Explanation:

The gas which is considered to be ideal is helium as it has a single atom. Among the options for this question, H2 is the gas which has properties similar to ideal gas.

The characteristics of an ideal gas are:

They have a small structureThey do not tend to form electrical bonds with other neighbouring molecules.

Molecules of H2 exhibit both these properties hence H2 is the correct option.

What will be kept the same (control) in the test?

Answers

The control variable is the one that is kept same in the test an throughout the test

Explanation:

The scientific constant that is kept constant throughout the experiment is not changed and the value remains constant throughout the experiment and they have strong influence in the results

To test the relationship between the dependent and the independent variables determination of the control variable is necessary and the resulting value changes if the control variables are not kept constant throughout the experiment

This will also bring about the co relationship between dependent variable and the independent variable

What types of energy are involved in a chemical reaction?
is the energy required for a chemical reaction to take place, and
is the energy associated with
every substance.

Answers

Answer:

Enthaply

Explanation:

The Energy involved in a chemical reaction is the difference in the amounts of stored chemical energy between the products and the reactants. This stored chemical energy, or heat content, of the system is known as its enthalpy.

Answer:

The types of energy in chemical reactions are as follows: internal energy, enthalpy

Explanation:

The internal energy is the sum of all the energies, it is due to the positions and movements of the subatomic particles, atoms and molecules that constitute it, as well as to the unions between the atoms. In chemical reactions there is a variation in the internal energy of substances, classified as exothermic if they release energy in the form of heat, endothermic if they absorb energy in the form of heat.

On the other hand, the enthalpy of reaction is the heat absorbed or released in a chemical reaction at a constant pressure. It is defined as the subtraction between the sum of the enthalpies of the products and the sum of the enthalpies of the reagents.

Find the simple interest on a $22,000 principal, deposited for 4 years at a rate of 4.25%

Answers

The simple interest is equal to $3740 on a principal of $ 22,000, deposited for 4 years at a rate of 4.25 %.

What is simple interest?

Simple interest can be based on the principal of a loan. Simple interest does not compound, a creditor only pays interest on the principal amount and a borrower never has to pay more interest on the previous interest.

Simple Interest (S.I.) can be described as the method of determining the interest amount for a principal of money at the rate of interest.

To determine simple interest, multiply the principal by the interest rate and the time.

Simple Interest = Principal ×Rate × Time

Given, the principal amount, P =$ 22000

The rate, R = 4.25%

Time, T = 4 years

The simple interest can be calculated as:

[tex]\displaystyle S.I. =\frac{P\times R\times T}{100}[/tex]

[tex]\displaystyle S.I. =\frac{22000\times 4.25\times 4}{100}[/tex]

Simple interest = $ 3740

Therefore, the simple interest is equal to $ 3740.

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Which statement best describes the pH of pure water?
It is neutral because the concentration of hydronium ions equals that of hydroxide ions.
It is neutral because the pure liquid contains neither hydronium ions nor hydroxide ions.
It is acidic because it has a hydronium ion concentration of 1.0 x 10-7 M-
It is basic because it has a hydroxide ion concentration of 1.0 x 10-7M.
Mark this and return
I
Next
Submit

Answers

The pH of pure water is neutral because the concentration of hydronium ions equals that of hydroxide ions.

Answer: Option A

Explanation:

Water is one of the most important constituents of living being. It is said that there is no life without water. So that water need to neutral in nature to save life. Pure water is composed of hydronium [tex]H^{+}[/tex] and hydroxide [tex]\left(O H^{-}\right)[/tex] ions. It is known that hydronium ions are acidic in nature with concentration of [tex]1 \times 10^{-7} \mathrm{M} / \mathrm{L}[/tex].

Similarly, the hydroxide ions which are basic in nature will be in same concentration as that of hydronium ions. So, as the concentration of basic and acidic elements are equal with the same strength of pH, the combination of these ions lead to formation of pure water with the pH being neutral.

A client is undergoing therapy in a whirlpool unit that has been plugged into an extension cord. What is this an example of?

Answers

Using extension or flexible cords improperly

Explanation:

A client undergoing therapy in a whirlpool unit plugged into an extension cord demonstrates a wrong and improper use of extensions and flexible cords. This is not a safe way to connect an electrical circuit.

Unless a Ground Fault Circuit Interrupter is used, the client is at a risk of suffering from electrocution. The Ground Fault Circuit Interrupter is able to detect leakages in the circuit and breaks it off.

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Using an extension cord with a whirlpool unit for therapy is an example of poor safety practices due to potential voltage drop and compromised earthing, which could result in the appliance not operating properly and raise electrical safety concerns.

A client undergoing therapy in a whirlpool unit that has been connected to an extension cord may be an example of poor safety practices in a health care setting. The use of an extension cord for a high-powered appliance such as a whirlpool may result in a reduced power output, leading to the appliance not operating correctly. This is because the voltage drop across the extension cord can be large, which decreases the voltage at the appliance, therefore reducing its effectiveness. Moreover, earthing or grounding may be compromised, which is essential for the safety of electrical appliances to prevent electric shocks.

The situation of a client being in a whirlpool unit connected to an extension cord can raise concerns about adherence to safety protocols. It is important for health care providers to ensure that all electrical safety requirements are met, including proper installation and usage of all therapeutic equipment. Electrical appliances should be properly earthed, and any form of makeshift extension cord usage should be carefully evaluated and generally avoided.

14. Several days after a snowfall, the roofs of some homes on your street have almost no snow on them, while the roofs on other homes are still snow covered. Assuming they have all received the same amount of sunlight, give one reason for this observation related to thermal energy and insulation.

Answers

Final answer:

The variance in snow coverage on roofs can be attributed to differences in insulation quality and roof material albedo, with well-insulated and darker roofs more likely to have less snow. Highly efficient insulation in some Northern European homes ensures warmth even when unoccupied.

Explanation:

The observation that some roofs still have snow on them while others do not, despite receiving the same amount of sunlight, can be explained by differences in thermal energy and insulation. Roofs with better insulation retain heat within the home more efficiently, preventing the snow from melting as quickly. On the other hand, roofs with poor insulation allow more heat to escape, which contributes to the snow melting faster. Additionally, the albedo of the roof material could impact snow retention, with darker materials absorbing more heat and potentially melting snow quicker than lighter materials that reflect more sunlight.

In the case of Northern European homes that remain warm without heating systems, the explanation lies in highly efficient insulation that minimizes heat loss. This robust insulation keeps the internal temperature stable, even in the absence of residents to produce body heat. Thus, when the homes are unoccupied, they can still maintain warmth due to the lack of heat exchange with the colder outside environment.

Na + MgF^2 = NaF+ Mg

Answers

Answer:

2Na + MgF2 → 2NaF + Mg

Explanation:

which alkali is used in Barium Sulfate ?

Answers

Answer:

Explanation:

Barium sulfate (or sulphate) is the inorganic compound with the chemical formula BaSO4. It is a white crystalline solid that is odorless and insoluble in water. It occurs as the mineral barite, which is the main commercial source of barium and materials prepared from it.

Answer:

The barium

Explanation:

Barium is an alkaline earth metal that has toxic properties. It is the alkaline used in the composition of barium sulfate which is used as a contrast in stomach and intestine radiographs. This procedure presents no danger, as this sulfide is insoluble, that is, it will not be absorbed by the stomach.

Barium is a toxic chemical element, silvery in appearance, with a high melting point, which can be found in the mineral barite, not being found free in nature, due to its high reactivity.

The expression of 5522 km in scientific notation is​

Answers

Answer:

5.522 * 10^3.

Explanation:

5522 = 5.522 * 10^3 .

In an experiment, 9 g of aluminum react with 8 g of sulfur to form aluminum sulfide. Calculate the grams of aluminum sulfide formed. Al + S → Al2S3

Answers

Answer:

The grams of aluminum sulfide formed are ; 12.51 g

Explanation:

Using Formula,

[tex]mole = \frac{given\ mass}{Molar\ mass}[/tex]

Calculate the moles of Al and S :

Given  mass of Al = 9 g

Molar mass of Al = 27 g/ mole

[tex]mole = \frac{9}{27}[/tex]

Mole of Al = 0.33

Given  mass of S =  8 g

Molar mass of S = 32 g/mole

[tex]mole = \frac{8}{32}[/tex]

Mole of S  = 0.25

The balanced chemical equation for the reaction between aluminium and sulfur is :

[tex]2Al(s) + 3S(s)\rightarrow Al_{2}S_{3}(s)[/tex]

Here ,

2 mole of Al needs 3 moles of S

1 mole  of Al needs 3/2(= 1.5) moles of S

hence  ,

0.33 mole of Al should require

[tex]\frac{3}{2}\times 0.33[/tex] moles of S

Sulfur needed = 0.495 mole

Available S = 0.25 mole

So there is less sulfur than required , S is the limiting reagent

Amount of S decide the Amount of Al2S3 formed

3 mole of S produce 1 mole of Al2S3

1 mole of S produce 1/3 mole of Al2S3

0.25 mole will produce :

[tex]0.25\times\frac{1}{3}[/tex]

= 0.0833 moles of Al2S3

[tex]Al_{2}S_{3}[/tex] = 0.083 mole

Molar mass of

[tex]Al_{2}S_{3}[/tex] = 150.16 g/mole

[tex]mole = \frac{given\ mass}{Molar\ mass}[/tex]

[tex]given\ mass = moles\times molar\ mass[/tex]

[tex]given\ mass = 0.083\times 150.16[/tex]

= 12.51 g

Which of these statements is true?


A. Chemical energy is a form of potential energy.

B. Chemical energy is a form of nuclear energy.

C. Chemical energy is associated with moving electrons.

D. Chemical energy is associated with molecular motion.

Answers

I am going to say b
I honestly don’t know

Phosphoric acid (H3PO4) and boric acid (H3BO3) each dissociate fully producing four ions in solution

A)True
B) False

Answers

B) False

Explanation:

Phosphoric acid (H₃PO₄) and boric acid (H₃BO₃) are weak acids, so they will not fully dissociate in solution.

Bellow you mai find the dissociation reactions of the acids:

H₃PO₄ + H₂O ⇄ H₂PO₄⁻ + H₃O⁺

H₂PO₄⁻ + H₂O ⇄ HPO₄²⁻ + H₃O⁺

HPO₄²⁻ + H₂O ⇄ PO₄³⁻ + H₃O⁺

Phosphoric acid (H₃PO₄) produces four ions in solution: H₂PO₄⁻, HPO₄²⁻, PO₄³⁻ and H₃O⁺.

H₃BO₃ + H₂O ⇄ H₂BO₃⁻ + H₃O⁺

H₂BO₃⁻ + H₂O ⇄ HBO₃²⁻ + H₃O⁺

HBO₃²⁻ +  H₂O ⇄ BO₃³⁻ + H₃O⁺

Boric acid (H₃BO₃) produces four ions in solution: H₂BO₃⁻, HBO₃²⁻, BO₃³⁻ and H₃O⁺.

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Suppose 17 grams of sucrose is dissolved into 183 grams of water. What is the concentration of sucrose in ppm?

Answers

Answer:

85 x 10³ ppm  

Explanation:

Data Given:

mass of sucrose = 17 g

mass of water = 183 g

Concentration in ppm = ?

Solution:

Formula Used

                   Concentration (ppm) = Solute / Solution x 10⁶ ............ (1)

**Note : 1 ppm = 1 mg / L

First we have to know about mass of solution

So

       Mass of solution = mass of solute + mass of solvent ................. (2)

Put values in equation 2

        Mass of solution = 17 g sucrose + 183 g water

        Mass of solution = 200 g

Now Put Values in equation 1

          Concentration (ppm) = Solute / Solution x 10⁶

          Concentration (ppm) = 17 g / 200g x 10⁶

          Concentration (ppm) = 0.085 x 10⁶

           Concentration (ppm) = 85 x 10³

Concentration  of sucrose = 85 x 10³ ppm      

         

Final answer:

The concentration of sucrose in the solution is 85,000 parts per million (ppm).

Explanation:

The concentration of sucrose in the given solution can be calculated using the formula:

Concentration (ppm) = mass of solute (g) / mass of solution (g) x 10^6

For this case, the mass of sucrose is 17 grams and the mass of the solution (sucrose + water) is 17 grams + 183 grams = 200 grams. Plugging in the values, we get:

Concentration (ppm) = 17 g / 200 g x 10*6 = 85,000 ppm

Therefore, the concentration of sucrose in the solution is 85,000 parts per million (ppm).

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13. Base your answer to the following question on the information below and you knowledge of chemistry,
A 100.-gram sample of liquid water is heated from 20.0°C to 50.0°C. Enough KCION(S) is dissolved
in the sample of water at 50.0°C to form a saturated solution.
Using the information on Table B, determine the amount of heat absorbed by the water
when the water is heated from 20.0°C to 50.0°C.​

Answers

Answer:

Heat absorbed by water is 12540 J

Explanation:

Given data:

Mass of water = 100 g

Temperature changes = 20.0°C to 50.0°C

Heat absorbed by water = ?

Solution:

Specific heat of water is 4.18 j/g.°C

Formula:

Q = m.c. ΔT

Q = amount of heat absorbed or released

m = mass of given substance

c = specific heat capacity of substance

ΔT = change in temperature

ΔT = 50.0°C - 20.0°C

ΔT = 30.0°C

Q = m.c. ΔT

Q = 100 g. 4.18 j/g.°C. 30.0°C

Q = 12540 J

Heat absorbed by water is 12540 J.

Final answer:

Using the formula for heat absorption (q=mcΔT), we can calculate that the water absorbed 12,552 joules of heat when it was heated from 20.0°C to 50.0°C.

Explanation:

In order to determine the amount of heat absorbed by the water when being heated from 20.0°C to 50.0°C, we can use the formula q = mcΔT.

Here, 'q' is the heat absorbed, 'm' is the mass, 'c' is the specific heat capacity of water, and 'ΔT' is the change in temperature. Given the mass (m) of the water is 100.0 grams, the specific heat capacity (c) of water is 4.184 J/g°C, and the change in temperature (ΔT) is 50.0°C - 20.0°C = 30.0°C.

Substituting these values into the equation gives q = (100.0g)(4.184 J/g°C)(30.0°C) = 12,552 joules. Therefore, the water absorbed 12,552 joules of heat when it was heated from 20.0°C to 50.0°C.

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what is the molarity of a 5.0 L solution that contains 0.5 moles of KNO3

Answers

The molarity of the KNO3 solution is 0.1 M.

To calculate the molarity of a KNO3 solution, we use the formula for molarity:

Molarity (M) = moles of solute / liters of solution

In this case:

Moles of KNO3 = 0.5 moles

Volume of solution = 5.0 L

Using the formula:

Molarity (M) = 0.5 moles / 5.0 L = 0.1 M

The molarity of the KNO3 solution is 0.1 M.

A plutonium atom undergoes nuclear fission. Identify the missing element in the nuclear equation.
230 pu

Answers

Answer:

[tex]_{92}^{226}U[/tex]

Explanation:

Let's firstly identify the atomic number (the number of protons) of Pu. This is done by referring to the periodic table and finding Pu. The atomic number of Pu is:

[tex]Z=94[/tex]

In order to identify the type of a nuclear decay, we need to find the N/Z ratio. This is the ratio between the number of neutrons and the atomic number of an isotope. The number of neutrons is found by subtracting the number of protons from the mass number:

[tex]N=M-Z[/tex]

That said, the N/Z ratio equation becomes:

[tex]N/Z=\frac{M-Z}{Z}=\frac{M}{Z}-1=\frac{230}{94}-1=1.45[/tex]

This is a relatively high number thinking about the belt of stability of isotopes. Ideally, stable isotopes with a low Z value have an N/Z ratio of 1. Heavier isotopes with Z > 50 would have a slightly higher N/Z ratio and would be stable around N/Z = 1.25. This means we wish to decrease the N/Z ratio as much as possible.

Among all the decays, alpha-decay is preferred to decrease the N/Z ratio significantly (1.45 is much higher than 1.25). That said, we'll release an alpha particle with some nucleotide X of mass M and atomic number Z:

[tex]_{94}^{230}Pu\rightarrow _Z^MX+_2^4\alpha[/tex]

According to the mass and charge conservation law:

[tex]230=M+4\therefore M=230 - 4 = 226[/tex]

[tex]94=Z+2\therefore Z = 94-2 = 92[/tex]

Identify an element with Z = 92 in the periodic table. This is uranium, U:

[tex]_{92}^{226}U[/tex]

13. When iron nad is put in to a beaker containing copper sulphate solution.
of the solution slowly change in to Green
a) Why does the colour of the solution change?
b) Write the equation involved in this process?
c) Is it a chemical or physical change?​

Answers

Answer:

A simple displacement reaction occurs when an iron nail is immersed to a beaker containing copper sulphate solution.

a)

Iron is more reactive than copper. As a result a displacement reaction will take place. The ferrous or Fe (II) irons will move to the solution. The copper ions (Cu II) will get deposited on the nail. This will cause the colour to change from blue to green.

b)

The equation can be written as:

Fe (s) + CuSO4 (aq) -> FeSO4 (aq) + Cu (s)

c)

A chemical change can be described as a change that causes a substance to change to another form. Hence, this reaction is a chemical change.

The motion of particles in an object the faster the particles move the warmer the object will feel

Answers

Answer:

This is true.

Explanation:

Speed of the particles in terms of energy is described by kinetic energy. Kinetic energy is directly proportional to the square of velocity. Essentially, the greater the speed of the particles, the greater the kinetic energy.

Now, let's say our particles are in some specific container. When particles move fast, they possess high kinetic energy. The greater the kinetic energy the more of it can be transferred to the walls of a container when particles collide with them. This is transferred as another energy form, heat. Particles lose a fraction of their kinetic energy by transferring it to the container and heating it up.

If 84 grams of sodium chloride reacts with an excess amount of magnesium oxide, how many grams of sodium oxide will be produced

Answers

Answer:

56.0g (3 s.f.)

Explanation:

Please see attached picture for full solution.

Which of the following will NOT break down due to a chemical change?
1.H2O
2.Ne
3.N2O
4.HF

Answers

Answer:

2. Ne  

Explanation:

Neon is an element. You cannot break down an element by chemical means.

1, 3, and 4 are wrong. They are all compounds, and compounds can be broken down by chemical means.

Neon will not break down due to a chemical change, therefore option (a) is correct .

What do you mean by the chemical change ?

A chemical change is the change of one material into another, resulting in new materials with different properties .

Properties of chemical change -:

Chemical changes are irreversible., it means that they can't be reversed .Products, are produced when two or more reactants react in a chemical reaction.

During a chemical reaction, either energy is absorbed or released.

Some examples of chemical change are-

The formation of curd from milk through fermentation .Rusting of iron is a form of corrosion .

Neon will not break down due to a chemical change, hence option (a) is correct .

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if 20.0 g of magnesium react with excess Hydro chloric acid how many grams of magnesium chloride will be produced

Answers

Answer:

78.9g

Explanation:

Final answer:

To find the mass of magnesium chloride produced, convert 20.0 g of magnesium to moles, use the reaction's stoichiometry to get the moles of magnesium chloride, and then convert back to grams. The balanced chemical equation for the reaction is Mg(s) + 2 HCl(aq) → MgCl₂(aq) + H₂(g), and the result is 78.33 grams of magnesium chloride.

Explanation:

To find out how many grams of magnesium chloride will be produced when 20.0 g of magnesium react with excess hydrochloric acid, we first need to consider the balanced chemical equation for the reaction:

Mg(s) + 2 HCl(aq) → MgCl₂(aq) + H₂(g)

From the balanced equation, we see that one mole of magnesium (Mg) reacts with two moles of hydrochloric acid (HCl) to produce one mole of magnesium chloride (MgCl₂) and one mole of hydrogen gas (H₂). To determine the mass of magnesium chloride produced, use the molar mass of magnesium (24.31 g/mol) to convert the mass of magnesium into moles, then use the stoichiometry of the reaction to find the corresponding moles of magnesium chloride produced.

The molar mass of magnesium chloride (MgCl₂) is 95.21 g/mol. After calculating the moles of Mg, that amount will be directly equal to the moles of MgCl₂ formed, since the ratio is 1:1. Finally, convert the moles of magnesium chloride to grams using its molar mass.

The calculation steps are as follows:

Determine moles of Mg: 20.0 g Mg × (1 mol Mg / 24.31 g Mg) = 0.8225 mol MgAccording to the reaction stoichiometry, moles of MgCl₂ produced = moles of Mg reacted = 0.8225 mol MgCl₂Determine the mass of MgCl₂: 0.8225 mol MgCl₂ × (95.21 g MgCl₂ / 1 mol MgCl₂) = 78.33 g MgCl₂

Therefore, 78.33 grams of magnesium chloride will be produced when 20.0 g of magnesium reacts with excess hydrochloric acid.

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the oldest and farthest celestial bodies of the universe

Answers

Answer:

GN-z11 is the oldest

Explanation:

GN-z11 has a spectroscopic redshift of z = 11.09, which corresponds to a proper distance of approximately 32 billion light-years

Globular clusters are some of the oldest structures in the Milky Way, with ages suggesting the age of the universe to be at least around 11 to 13 billion years old. The Boomerang Nebula is among the youngest and coldest objects known. The study of distant galaxies and ancient globular clusters helps astronomers understand the early universe.

The oldest and farthest celestial bodies in the universe provide insight into the universe's early history. Globular clusters are among the oldest structures in our Galaxy, with the youngest being about 11 billion years old, setting a lower limit for the age of the universe. Our Milky Way, containing such ancient globular clusters, suggests it was born at least 13 billion years ago. One famous globular cluster, M13, is roughly 26,000 light-years away from us and has an estimated mass of around a million times that of the Sun. In contrast to these ancient objects, the Boomerang Nebula is a much younger planetary nebula and is currently the coldest known object in the Universe.

In order to understand the early universe, astronomers study not only globular clusters but also very distant galaxies, as they provide a view of the universe when it was very young. Observations of stars in the halo of the Milky Way, red giant stars, suggest distances of almost 1 million light-years, indicating the immense scale and diversity of structures within our galaxy.

why are metals conductive?

Answers

Answer:

High density, metallic bonds

Explanation:

We may look at this question from the structural properties of the metals:

metals in their solid states are the most dense phases of all the standard phases we know (solids, liquids and gases). This means the particles within a metal lattice are very closely packed. Both heat and electricity is conducted when particles interact and touch one another, so that either energy or electric current might travel from one particle to the other easily. High density means low distances between the atoms, so they can interact easily;the main reason, however, is the fact that metals form metallic bonds, also known as 'sea of electrons'. We have metal cations floating in a sea of their valence electrons. This forms a medium in which both heat and electricity can travel easily.

How many convalent bonds are there in one molecule of carbon dioxide, CO2?
(A) 0 covalent bonds
(B) 2 covalent bonds
(C) 4 covalent bonds
(D) 6 covalent bonds

Answers

Answer:

C 4 convalents bonds

Explanation:

I don't no the explanation

The one molecule of carbon dioxide, CO₂ contain 2 covalent bond. Therefore, option B is correct.

What is covalent bond ?

An electron exchange that results in the formation of electron pairs between atoms is known as a covalent bond. Bonding pairs or sharing pairs are the names given to these electron pairs. The equilibrium between the forces that attract and repel atoms.

An atom can establish bonds with other atoms in two main ways: covalent and ionic. The sharing of electrons between two or more atoms forms a covalent connection.

Each oxygen atom in carbon dioxide forms two covalent bonds with the carbon atom, known as a double bond and represented here as two lines. However, in symmetrical molecules, the attraction of the atoms on the electrons is equal, and the charge distribution is uniform. Nonpolar molecules are those with symmetry.

Thus, option B is correct.

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which of the following is a property of metals that is due to the delocalized electrons
A.transparency
B.dull Appearance
C.brittle
D.good conductor​

Answers

Answer:

Good conductor

Explanation:

Metals form metallic bonds. They are also sometimes called 'a sea of electrons'. Basically, metal cations are surrounded by a sea of closely packed valence electrons. This close packing lets the particles of a metal interact much more efficiently and transfer heat or electric current efficiently. The valence electrons and metals ions are also moving to some extent, so besides being packed efficiently, they can also interact and collide to transfer electricity and heat.

This makes metals good heat and electric conductors.

The property of metals that is due to the delocalized electrons is good conductor. The correct option is D.

What property of metals is due to the delocalized electrons?

Metals possess the property of being good conductors of electricity and heat, which is primarily due to the presence of delocalized electrons. Delocalized electrons are loosely bound and can move freely throughout the metal lattice. When a potential difference is applied, these mobile electrons can easily flow, carrying electric current with minimal resistance.

This property makes metals invaluable in electrical applications, such as wiring and electronic components. Additionally, the delocalized electrons are responsible for metals' high thermal conductivity, allowing them to efficiently transfer heat. However, this delocalization of electrons also leads to metals having a lustrous appearance (not dull), and they are generally malleable and ductile rather than brittle. Therefore, the correct answer is D. good conductor.

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