Calculate the percentage composition of barium nitrate (ba(no3)2). choose the correct percentages for ba, n, and o.

Answers

Answer 1

The molar masses of each element are:

Ba =137.3 g/mol 
N = 14 g/mol 
O = 16 g/mol

Calculating the total mass by multiplying with number of moles:

Ba = 137.3 g/mol * 1 mol = 137.3 g

N = 14 g/mol * 2 mol = 28 g

O = 16 g/mol * 6 mol = 96 g

Total 261.3g 

Ba: 137.3/261.3 = 52.55% 
N: 96/261.3 = 36.73% 
O: 24/261.3 = 10.72% 

Answer:

52.55% Ba, 10.72% N, 36.73% O

Answer 2

The correct percentage composition for barium nitrate (Ba(NO3)2) is 56.54% Ba, 12.54% N, and 30.92% O, as calculated based on the molar masses of each element in the compound. This matches option e.

To calculate the percentage composition of each element in barium nitrate (Ba(NO3)2), we need to find the molar masses of each element and then use them to determine the percentage of each element in the compound.

1. **Calculate the molar mass of Ba(NO3)2:**

  \[ \text{Molar mass of Ba(NO3)2} = \text{Molar mass of Ba} + 2 \times \text{Molar mass of N} + 6 \times \text{Molar mass of O} \]

2. **Calculate the percentage composition of each element:**

  \[ \text{Percentage of Ba} = \left( \frac{\text{Molar mass of Ba}}{\text{Molar mass of Ba(NO3)2}} \right) \times 100 \]

  \[ \text{Percentage of N} = \left( \frac{2 \times \text{Molar mass of N}}{\text{Molar mass of Ba(NO3)2}} \right) \times 100 \]

  \[ \text{Percentage of O} = \left( \frac{6 \times \text{Molar mass of O}}{\text{Molar mass of Ba(NO3)2}} \right) \times 100 \]

Now, compare the calculated percentages with the options:

a. 52.55% Ba, 10.72% N, 36.73% O (Not correct)

b. 11.11% Ba, 22.22% N, 66.67% O (Not correct)

c. 10.72% Ba, 52.55% N, 36.73% O (Not correct)

d. 50.00% Ba, 10.00% N, 40.00% O (Not correct)

e. 56.54% Ba, 12.54% N, 30.92% O (Correct)

So, the correct answer is option e.

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The probable question may be:

Calculate the percentage composition of each element in barium nitrate, Ba(NO3)2. choose the correct percentages for ba, n, and o.

a. 52.55% Ba, 10.72% N, 36.73% O

b. 11.11% Ba, 22.22% N, 66.67% O

c. 10.72% Ba, 52.55% N, 36.73% O

d. 50.00% Ba, 10.00% N, 40.00% O

e. 56.54% Ba, 12.54% N, 30.92% O


Related Questions

Why does the phosphorus cycle occur more slowly than both the carbon cycle and the nitrogen cycle?

Answers

The phosphorus cycle occurs more slowly than both the carbon cycle and the nitrogen cycle because of the reason phosphorus rarely occurs as a gas. Both nitrogen cycle and carbon cycle are found in the air as a gas and will always be ready to absorb by the body while phosphorus cycle is not in the air as a gas but rather moves slowly from deposits on land to living organism.

Answer:

Explanation:

The phosphorous cycle is slower than carbon cycle and nitrogen cycle because phosphorous is found mainly in very small dust particles.

It moves very slowly from the deposits on land and in sediments and then it is transferred to the organism and from organism it is moved more slowly to the soil.

Then from the soil it is transferred again to the sediments. The whole process is very slow and the amount of phosphorus is also very less as compared to carbon and nitrogen cycle.  

Describe the steps involved in the Mole method

Answers

Identify the given and convert it to moles. Identify the desired, and multiply the given number of moles by the mole ratio or equation factor, to produce moles of desired substance. Convert moles of desired substance to the units asked for in the question.

Explanation:

The mole method means that the stoichiometry configuration in a chemical equation is represented as number of moles of each substance.

The following steps are involved in the Mole method:

1) Write the balanced chemical equation.

2) Convert the units of given substance(X) into moles.

3) Using the mole ratio to calculate the moles of wanted substance(Y).

4) Convert moles of wanted substance to the desired units.

For example:

Calculate the mass of MgO?

Mass of MgO = Moles of MgO*molar mass of MgO.

Calculate the moles of Mg = Mass of Mg/Molar mass of Mg.

Moles of Mg = m/24.31.

How many atoms of carbon are present in 1.0 g of c6h12o6?

Answers

0.0055 number of atoms of carbon are present in 1.0 g of C₆H₁₂O₆ .

What do you mean by the number of atoms or mole ?

The mole concept is a convenient method of expressing the amount of a substance.

Mole is the amount of substance that contains as many elementary entities as there are atoms in exactly 12 grams of the carbon−12 isotope.

1 mole=6.022×1023 particles of matter of any chemical substance.

To calculate number of atoms of carbon present in 1.0 g of C₆H₁₂O₆ .

Given ,

mass of carbon =1.0 gm

molar mass =180.01 gm

mole(n)=?

Mole= mass/molar mass

Mole=1/180

Mole=0.0055

Hence, 0.0055 number of atoms are present in  1.0 g of C₆H₁₂O₆ .

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Diamond is made of carbon atoms attached rigidly to each other in three directions making diamond very strong. graphite, as found in a pencil, is easily broken under pressure. since graphite is also made of carbon atoms, why might it have such a different property?

Answers

In diamond, The arrangement of carbon atoms follows a tetrahedral shape. Each carbon  is attached to four other carbon atoms, forming strong covalent bonds.This  arrangement of the diamond is very durable and rigidity, that's why is necessary so many energy to break it.
On the other hand, graphite, has a different geometric arrangement. the carbon atoms are arranged in 2D sheets and each carbon is linked to three other carbon atoms, forming hexagonal rings that are easily broken.

Final answer:

The different properties of diamond and graphite can be attributed to the different arrangement of carbon atoms in each structure. Diamond has a three-dimensional network of carbon atoms, resulting in strong bonds and hardness. Graphite has a two-dimensional sheet structure, with weak bonds between the layers, making it soft and brittle.

Explanation:

The different properties of diamond and graphite can be attributed to the different arrangement of carbon atoms in each structure. In diamond, each carbon atom is bonded to four other carbon atoms in a three-dimensional network, resulting in strong bonds that make diamond extremely hard and rigid. On the other hand, graphite consists of layers of carbon atoms arranged in a two-dimensional sheet structure, with weak bonds between the layers. These weak bonds allow the layers to slide over each other easily, making graphite soft and brittle.

What type of bomb was used in Oklahoma City bombing of 1995

Answers

Actually, it wasn't really a specific type of bomb, but in fact, it was a mixture of very powerful ingredients. 
It was a mixture of ammonium nitrate, fertilizer, nitromethane, and diesel fuel. In fact, it was 4,800 pounds of this mixture jam-packed into a truck and detonated right in front of the Alfred P. Murrah Federal Building, which was 9 stories tall. 

Final answer:

The Oklahoma City bombing on April 19, 1995, utilized a truck bomb made from ammonium nitrate fertilizer mixed with fuel oil. The terrorists hoped to incite a revolution against government control. The attack killed 168 people, injured over 600, and resulted in widespread destruction.

Explanation:

The type of bomb used in the Oklahoma City bombing of April 19, 1995, was a truck bomb. Timothy McVeigh and Terry Nichols constructed the explosive using agricultural grade ammonium nitrate fertilizer mixed with fuel oil, packing the mixture into a rented Ryder truck. This deadly attack led to the loss of 168 lives, including nineteen children, and left over 600 individuals injured. The bombing severely damaged the Alfred P. Murrah Federal Building, along with more than three hundred nearby buildings. The motivations of McVeigh were associated with a desire to start a revolution against government authority, partly in retaliation for the Waco siege that occurred exactly two years prior.

The aftermath of the bombing united Americans across the country, bringing forth an outpouring of generosity and support for the victims and their families. President Bill Clinton's speech helped galvanize the nation towards unity and reconciliation. In response to this tragedy, there was bipartisan government action which included support for the affected and enhanced funding for antiterrorism efforts, aiding in the prevention of future attacks of a similar nature.

A jewelry company has announced that they have created gold from reacting copper and carbon in a chemical process. according to dalton's atomic theory, is this possible?

Answers

No John Dalton made a fairly fundamental description of an atomic theory that still holds today for chemistry. In his theory, there are 4 things to consider 1. All matter is made of atoms, and atoms are indivisible and indestructible. * This right there makes the process described in the question impossible since the described process would require the destruction of copper and carbon, which is in violation of the first element of Dalton's theory. 2. All atoms of a given element are identical in mass and properties. 3. Compounds are formed by a combination of two or more different kinds of atoms. 4. A chemical reaction is a rearrangement of atoms. * This also is in conflict with the process described in the question. Since the process is described as chemical, that eliminates nuclear methods just as fission, or fusion. Now the spirit of the theory remains true, but modern knowledge does make the details different. For instance, we know of isotopes, so #2 isn't strictly true any longer. We also know of nuclear reactions so #1 isn't completely true either. But in general, his theory is as useful today as it was two hundred years ago.

Nitromethane (ch3no2) burns in air to produce significant amounts of heat. 2ch3no2(l)+3/2o2(g)→2co2(g)+3h2o(l)+n2(g) δhorxn = -1418 kj how much heat is produced by the complete reaction of 3.87 kg of nitromethane?

Answers

Answer: Delta H = products - reactants For 1 mole of CH3NO2 you need to adjust the coefficients in the chemical equation. Divde all by 2 since CH3NO2 has a coefficient of 2. CH3NO2(l) + 1/2O2(g) ----> CO2(g) + 1/2N2(g) + 3/2H2O(g) Delta H = the sum of the heat of formations of the products - the sum of the heat of formations for the reactants. Remember to multiply by the coefficients in each case. Delta H = -393.5 + 0 + (3/2)(-241.8) - [(112.0) + 0)] Delta H = -756.2 - 112 Delta H = -868.2 kJ/mol This is an exothermic reaction. Obviously because it is combustion and the delta H is a negative quantity. For part C you have to determine the number of moles in 18.02 g H2O and then change the coefficients in the equation again. 18.02 g H2O x (1 mole H2O/18.02 g H2O) = 1 mole Divide through the chemical equation by three since in the balanced equation of the reaction there are three moles of H2O. 2/3CH3NO2 (l) + 1/3O2(g) ---> 2/3CO2(g) + H2O(l) Delta H = products - reactants Delta H = 2/3(-393.5) + 0 + (-241.8) - [(2/3)(112) + 0] Delta H = -262.33 - 241.8 - 74.67 Delta H = -95.2 kJ/mol

The combustion of methane gas (ch4) forms co2(g)+ h2o(ℓ). calculate the heat produced by burning 2 mol of the methane gas. use these ∆h0 f data to help: ch4(g)= -74.9 kj/mol co2(g)= -393.5kj/mol h2o(ℓ)= -285.8kj/mol. answer in units of kj.

Answers

Hess's Law is as follows. Note: Google Hess's law for the actual formula (i.e. with the Greek characters). ΔH(reaction) = Sum of ΔH(formation of products) - Sum of ΔH(formation of reactants) Now determine you're formula/reaction. In this case it's as follows: CH4 + 2 O2 -----> CO2 + 2 H2O The ΔH(formation) can be found in standardized tables, either online, in books, or provided to you. The ΔH you need for this is as follows in kJ/mol: CH4 (g) -75 O2 (g) 0 CO2 (g) -394 H2O (l) -286 When you plug the info into the formula you get the following: ΔH(reaction) = [(2*-238) + -394)] - [-75 + (2*0)] ΔH(reaction) = -891 kJ/mol Now you're looking for the amount of kJ for 1.65 mol. Your standard formula is as follows: E = ΔH(reaction) * mol where E is energy measured in kJ. So when you plug in your relevant values you get: E = -891 * 1.65 E = -1470.15 kJ

Final answer:

To find the heat produced by the combustion of 2 mol of methane gas, you use the standard enthalpies of formation. The calculated heat produced is -1630.6 kJ.

Explanation:

The question involves using the concept of enthalpy change (ΔH), specifically standard enthalpies of formation (ΔH°f), to calculate the heat produced during the combustion of methane gas (CH4).

Step-by-Step Calculation:

First, write down the balanced chemical equation for the combustion of methane:

CH4(g) + 2O2(g) → CO2(g) + 2H2O(№)

Next, apply Hess's Law using the provided ΔH°f values:

CH4(g): -74.9 kJ/mol

CO2(g): -393.5 kJ/mol

H2O(№): -285.8 kJ/mol

Calculate the total enthalpy change (ΔH) for the reaction:

ΔH = [1 mol(ΔH°f CO2) + 2 mol(ΔH°f H2O)] - [2 mol(ΔH°f CH4)]

ΔH = [1 mol(-393.5 kJ/mol) + 2 mol(-285.8 kJ/mol)] - [2 mol(-74.9 kJ/mol)]

ΔH = (-393.5 kJ - 2×285.8 kJ) - (-2×74.9 kJ)

ΔH = (-393.5 - 571.6 + 149.8) kJ

ΔH = -815.3 kJ

This is the enthalpy change for the combustion of 1 mol of methane. Since we are burning 2 mol of methane, multiply by 2:

Total ΔH = 2 × -815.3 kJ

Total ΔH = -1630.6 kJ

Therefore, the heat produced by burning 2 mol of methane gas is -1630.6 kJ.

Calculate the ph of 0.63 m nh3 (kb=1.8×10−5).

Answers

[OH-] = √1.8*10^-5 * 0.15
[OH-] = 1.64*10^-3M
pOH = -log(1.64*10^-3)
pOH = 2.79
pH = 14 - 2.79
pH = 11.21

a chemist wants to combine carbon and iron to form steel. what type of bond will this chemist create between these two elements

Answers

i think its a covalent bond because carbon is positively charged and iron is positively charged too which makes the bond covalent. hope it helps 

Final answer:

The chemist will create a covalent bond between carbon and iron to form steel.

Explanation:

The chemist will create a covalent bond between carbon and iron to form steel.

Covalent bonds form when electrons are shared between atoms. In this case, carbon and iron will share electrons to form a strong bond. Steel is a type of alloy made primarily of iron and carbon, with carbon content typically between 0.2% and 2.1%.

Examples of covalent bonds include the bonding in molecules such as water (H2O), carbon dioxide (CO2), and methane (CH4).

Write the complete balanced equation for the following reaction:

C7H6O + O2 yields CO2 + H2O

Answers

Explanation:

An equation that consists of same number of atoms on both reactant and product side is known as a balanced chemical equation.

For example, [tex]C_{7}H_{6}O + O_{2} \rightarrow CO_{2} + H_{2}O[/tex]

Number of atoms on reactant side are as follows.

C = 7

H = 6

O = 3

Number of atoms on product side are as follows.

C = 1

H = 2

O = 3

Therefore, to balance this chemical equation we multiply [tex]O_{2}[/tex] by 8 on reactant side. Whereas we multiply [tex]CO_{2}[/tex] by 7 and [tex]H_{2}O[/tex] by 3 on product side.

Therefore, the balanced chemical equation will be as follows.

          [tex]C_{7}H_{6}O + 8O_{2} \rightarrow 7CO_{2} + 3H_{2}O[/tex]

Topsoil occurs in this layer, which is composed of a combination of organic debris and mineral matter

Answers

It is commonly called as "A horizon" or simply horizon. It is the upper and outermost layer of soil in which most of the biological activity occurs as it comprises of high concentrations of organic debris and matter which are essential for life.

Which reactions are oxidation-reduction reactions?

1. FeS(s) + 2HCl(aq) → H2S(g) + FeCl2(g)

2. AgNO3(aq) + NaCl(aq) → AgCl(s) + NaNO3

3. 2C3H6(g) + 9O2(g) → 6CO2(g) + 6H2O(g)

4. Fe2O3(s) + 3CO(g) → 2Fe(l) + 3CO2(g)

Answers

3 and 4 are oxidation and reduction reactions.
for 3, the carbon in C3H6 lost hydrogen and gained oxygen which results in it being oxidised
in 4, Fe2O3 is reduced by CO to form Fe

Answer: The correct answer is Option 3 and Option 4.

Explanation:

Redox reactions are termed as the reactions in which reduction and oxidation reactions occur simultaneously.

Reduction reactions are the ones where a substance gains electrons. The oxidation state of the substance gets reduced.

Oxidation reactions are the ones where a substance looses electrons. The oxidation state of the substance is increased.

Fro the given options:

Option 1: [tex]FeS(s)+2HCl(aq.)\rightarrow H_2S(g)+FeCl_2(g)[/tex]

This reaction is a type of double displacement reaction because exchange of ions takes place.

Option 2: [tex]AgNO_3(aq.)+NaCl(aq.)\rightarrow AgCl(s)+NaNO_3[/tex]

This reaction is a type of double displacement reaction because exchange of ions takes place.

Option 3: [tex]2C_3H_6(g)+9O_2(g)\rightarrow 6CO_2(g)+6H_2O(g)[/tex]

On reactant side:

Oxidation state of Carbon = +2

Oxidation state of Oxygen = 0

On product side:

Oxidation state of Carbon = +4

Oxidation state of Oxygen = -2

Here, oxidation state of carbon is increasing from +2 to +4. Thus, it is getting oxidized and oxidation state of oxygen is getting reduced from 0 to -2. Thus, it is getting reduced.

Option 4: [tex]Fe_2O_3(s)+3CO(g)\rightarrow 2Fe(l)+3CO_2(g)[/tex]

On reactant side:

Oxidation state of Iron = +3

Oxidation state of Carbon = +2

On product side:

Oxidation state of Iron = 0

Oxidation state of Carbon = +4

Here, oxidation state of carbon is increasing from +2 to +4. Thus, it is getting oxidized and oxidation state of iron is getting reduced from +3 to 0. Thus, it is getting reduced.

Hence, the correct answer is Option 3 and Option 4.

Annabeth has 7.2 cups of cookie batter, represented by this model. If each cookie uses 0.45 cup of batter, how many cookies can annabeth make?

Answers

Annabeth can make 16 cookies
The answer would be 16!

What is the name of the group of elements that are unreactive gases?

Actinides series
Halogen gases
Lanthanide series
Noble gases

Answers

Noble Gases are the unreactive gases

Answer: Option (d) is the correct answer.

Explanation:

Noble gases are the gases of group 18 which are helium, neon, argon, krypton, xenon and radon.

For example, electronic configuration of neon is [tex]1s^{2}2s^{2}2p^{6}[/tex]

These elements have completely filled shells so, they do not need to gain or lose an electron as they are stabilized.

As a result, noble gases become unreactive in nature.

Thus. we can conclude that noble gases is the name of the group of elements that are unreactive gases.

The mole fraction of carbon dioxide (xco2) in water is 0.25. determine the molarity of co2. (assume the density of the solution is 1.0 g/ml.)

Answers

Let us assume that there is 1 mole of the solution present. The mass becomes:

Mass = fraction of carbon dioxide * Mr of carbon dioxide + fraction of water * Mr of water

Mass = 0.25*44 + 0.75*18

Mass = 24.5 grams

Now, we determine the volume of the solution using:

Volume = mass / density

Volume = 24.5/1 = 24.5 mL

The molarity of a solution is:

Molarity = moles / liter
Molarity = 0.25 / 0.0245

Molarity = 10.2 M
Final answer:

The molarity of CO2 in a water solution with a mole fraction of 0.25, assuming the density of the solution is 1.0 g/mL, is calculated to be 0.04401 M.

Explanation:

To determine the molarity of carbon dioxide (CO2) in a solution with a mole fraction (xCO2) of 0.25, and a density of 1.0 g/mL, we need to use the definition of mole fraction alongside the known density of the solution. The mole fraction is the ratio of the moles of solute to the total moles in the solution. Assuming we have one liter of solution and know that the density is 1.0 g/mL, the total mass of the solution is 1000 g.

First, we calculate the total moles of the solution. Since the mole fraction of CO2 is 0.25, this means that 25% of the moles are CO2. To find the molarity of CO2, we need to find the mass of CO2 based on its mole fraction and then convert this to moles.

Since we are given the mole fraction and we know the density of the solution, we can calculate the mass of CO2 in one liter of solution. Let's assume a total of 4 moles of substance are present (as 0.25 is one-fourth). Hence, one mole of CO2 is present because the mole fraction of CO2 is 0.25. Knowing that the molar mass of CO2 is 44.01 g/mol, we find that the mass of 1 mole of CO2 is 44.01 grams. The molarity is found by dividing the moles of CO2 by the volume of the solution in liters, which gives a molarity of 0.04401 M.

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Identify the reaction type for each generic chemical equation

Answers

A + B → AB:  ✔ synthesis

AB → A + B: ✔ decomposition

Hydrocarbon + O2 → CO2 + H2O:  ✔ combustion

AB + CD → AD + CB:  ✔ replacement

Generic chemical equation for combination, decomposition, displacement and double displacement reactions are given as A+B=AB, AB=A+B,AB+C=AC+B and AB+CD=AC+BD  respectively.

What is chemical equation?

Chemical equation is a symbolic representation of a chemical reaction which is written in the form of symbols and chemical formulas.The reactants are present on the left hand side while the products are present on the right hand side.

A plus sign is present between reactants and products if they are more than one in any case and an arrow is present pointing towards the product side which indicates the direction of the reaction .There are coefficients present next to the chemical symbols and formulas .

The first chemical equation was put forth by Jean Beguin in 1615.By making use of chemical equations the direction of reaction ,state of reactants and products can be stated. In the chemical equations even the temperature to be maintained and catalyst can be mentioned.

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The tendency of an element to react chemically is closely related to

Answers

The tendency of an element to react chemically is closely related to the number of valence electrons in the atom. I hope this answered your inquiry, and if you require any further assistance feel free to ask.

Answer:

The correct answer is: the number of valence electrons

Explanation:

Valence electrons are the electrons present in the outermost electron shell of an atom, also known as the valence shell. If the valence shell is not completely filled, then it is known as an open shell.

The number of valence electrons governs the reactivity and bonding of an element, as they are involved in the chemical bond formation. Therefore, chemical elements having an open shell are reactive in nature.

Therefore, the reactivity of a chemical element is closely related to the number of valence electrons.

A cell is isotonic to its 4% dextrose solution. when moved to a 6% dextrose solution, that cell will ________.

Answers

im just answering this for the points

Answer: will shrink.

Explanation:

The solutions having same osmotic pressure and hence same molar concentration are termed as isotonic. If a solution is of lower osmotic pressure it is called as hypotonic with respect to the concentrate solution. The more concentrated solution is said to be hypertonic with respect to the dilute solution.

When cell is placed in 6% dextrose solution,which is hypertonic to the contents in cell, the water will move from lower osmotic pressure in cell to higher osmotic pressure in 6% dextrose solution through semipermeable membrane and thus the cell will shrink.

Why is making a peanut pretzel and cereal mixture a physical change?

Answers

well because you are changing the shape of the 'mixture' and not the chemical properties.
because you are changing the shape of the 'mixture' and not the chemical properties.

You are investigating an organic compound you discover that it is an aromatic compound often used as flavoring what type of compound is it likely to be
A. Carboxylic acid
B. Anode
C. Aldegyde
D. Ketone

Answers

The answer is C. Aldegyde. 

Answer:

C. Aldehyde

Explanation:

answer for Plato users

If you begin with 2.7 g Al and 4.05 g Cl2, what mass of AlCl3 can be produced?

Answers

atomic weights: Al = 26.98, Cl = 35.45 In this reaction; 2Al = 53.96 and 3Cl2 = 212.7 Ratio of Al:Cl = 53.96/212.7 = 0.2537 that is approximately four times the mass Cl is needed. Step 2: (a) Ratio of Al:Cl = 2.70/4.05 = 0.6667 since the ratio is greater than 0.2537 the divisor which is Cl is not big enough to give a smaller ratio equal to 0.2537. so Cl is limiting (b)since Cl is the limiting reactant 4.05g will be used to determine the mass of AlCl3 that can be produced. From Step 1: 212.7g of Cl will produce 266.66g AlCl3 212.7g = 266.66g 4.05g = x x = 5.08g of AlCl3 can be produced (c) Al:Cl = 0.2537 Al:Cl = Al:4.05 = 0.2537 mass of Al used in reaction = 4.05 x 0.2537 = 1.027g Excess reactant = 2.70 - 1.027 = 1.67g King Leo · 9 years ago

Professor Whitney has a sample of lead and a sample of iron. The samples have equal mass. When Whitney heats the samples, the lead reaches a higher temperature than the iron, even though both samples absorbed the same amount of thermal energy. What can Whitney conclude from this experiment?

Answers

Iron radiates energy faster than lead. Iron has higher heat conductivity than lead.





When snow melts does its volume decrease or increase?

Answers

The volume of the snow decreases. This had happened because the snow is made up or comprised of water (H2O) and oxygen (O). When the snow starts melting, the air inside the snow discharges into the atmosphere and the water turn out to be a puddle on the ground. 

The theoretical yield of a reaction is 75.0 grams of product and the actual yield is 42.0g. what is the percent yield? 75.0 56.0 31.5 178 none of these

Answers

I believe the percent yield is 56% if going by the formula of mass of actual yield/theoretical yield x 100%/

Which of the following are not grouped according to similar chemical properties?

A. Cobalt, iron, nickel.
B. Iron, copper, ruthenium.
C. Ruthenium, iridium, palladium.
D. Gold, silver, copper.

Answers

B. iron, copper, ruthenium



Answer: The correct answer is Option D.

Explanation:

Elements which belong to same group show similar chemical properties because they have same number of valence electrons.

From the given options:

Option A: Cobalt belongs to Group 9, Iron belongs to Group 8 and Nickel belongs to Group 10. Hence, they will not show similar chemical properties.

Option B: Iron belongs to Group 8, Copper belongs to Group 11 and Ruthenium belongs to Group 8. Hence, they will not show similar chemical properties.

Option C: Ruthenium belongs to Group 8, Iridium belongs to Group 9 and Palladium belongs to Group 10. Hence, they will not show similar chemical properties.

Option D: Gold, Silver and Copper belongs to the same group which is Group 11. Hence, they all will show similar chemical properties.

Thus, the correct answer is Option D.

If the smallest markings on a ruler are one tenth (1/10) of a centimeter, which of the following measurements could be recorded using that ruler?
A. 2.5 cm
B. 2.52 cm
C. 2.520 cm
D. 2.5200 cm

Answers

I think it should be A 

Answer:

The correct answer is the option: A. 2.5 cm

Explanation:

Hello! Let's solve this!

In a rule we see that it is divided into centimeters, they can be 15 centimeters, 20 centimeters, etc.

It is very easy to see the two centimeters, which are the largest lines. To see after two, we count the smallest stripes and we can reach 2.5 centimeters. But no more than that.

We conclude that the correct answer is the option: A. 2.5 cm

Min : sec helium and nickel are classified as _____, which are pure substances that make up all kinds of matter

Answers

Helium which has a chemical formula of He is considered as a noble gas while Nickel which has a chemical formula of Ni is considered as metallic. Although both have different phases but they are both classified under the general category of “Elements”.

 

answer:

elements

Final answer:

Helium and nickel are elements, which are pure substances that can't be chemically broken down into simpler forms.

Explanation:

Helium and nickel are classified as elements, which are pure substances that make up all kinds of matter. These substances cannot be broken down into simpler substances through chemical changes. Some familiar examples of elements include iron, silver, and gold. There are more than 100 known elements, of which about 90 occur naturally on Earth with the remainder having been created in laboratories.

Which element will attract electrons more strongly—fluorine or carbon? explain your answer?

Answers

The property which can help us in this case is the electronegativity of atoms. Electronegativity is a measure of how strong an electron will be attracted to that atom. Well, Fluorine is the most electronegative element in the periodic table. Hence the answer is Fluorine.

Which element on the periodic table has the lowest atomic radius?

Answers

Answer:

Helium

Explanation:

The atomic radius for Helium is 31x10⁻¹²

The atomic size decrease in the periodic table from left to right

and increases down a group (or line)

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