PRACTICE PROBLEMS
c
SOLVE Use the density formula to solve the following problems.
A sample of a substance has a volume of 60.5 mL and a density of
1.20 g/mL. What is the mass of the sample?
09

Answers

Answer 1
72.6g
The density formula is density equal mass divided by volume (d=m/v) to solve this you must get the mass by itself. You do this by multiply volume on both sides which then gets you density times volume equal mass. Then you can plug in the numbers which is 1.20g/mL x 60.5 mL the mL cancels out which leaves you with grams and thus you have 72.6g.

Related Questions

is mass an intensive phsical property because it is dependent on the size of the sample

Answers

Mass is an intensive physical property because it is dependent on the size of the sample.

Gold atoms form small clusters containing a fixed number of atoms. What is the mass (in grams) of oneAu31 cluster

Answers

Answer:

[tex]m_{Au_{31}}=6106.07 g[/tex]

Explanation:

Hello,

In this case, since one gold atom has a mass of 196.97 g, for the given gold cluster that has 31 gold atoms, the mass will be:

[tex]m_{Au_{31}}=31*196.97g\\\\m_{Au_{31}}=6106.07 g[/tex]

Whereas we consider the mass of all the 31 gold atoms to compute the overall mass.

Best regards.

Answer:

The mass (in grams) of one Au31cluster = [tex]1.014*10^{-20}grams[/tex]

Explanation:

Atomic mass of Au = 197u

So, mass of 1 Au31 cluster (in u)

[tex]= 197 * 31\\\\= 6107u[/tex]

So, mass of 1 Au31 cluster (in gram)

[tex]= 6107 * 1.66*10^{-24}\\\\= 1.014*10^{-20}grams[/tex]

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The combustion of 0.295 kg of propane produces 712 g of carbon dioxide. What is the percent yield of carbon dioxide? ( Make sure to balance equation) C3H8 (g)+ 029) à co2 g H200 0
a. 124%
b. 41 .4%
c. 80.5%
d. 0.805 %

Answers

Answer:

Option C. 80.5%

Explanation:

We'll begin by writing the balanced equation for the reaction. This is illustrated below:

C3H8 + 5O2 —> 3CO2 + 4H2O

Next, we shall determine the mass of C3H8 that reacted and the mass of CO2 produced from the balanced equation.

This is illustrated below:

Molar mass of C3H8 = (3x12) + (8x1) = 36 + 8 = 44 g/mol

Mass of C3H8 from the balanced equation = 1 x 44 = 44 g

Molar mass of CO2 = 12 + (2x16) = 12 + 32 = 44 g/mol

Mass of CO2 from the balanced equation = 3 x 44 = 132 g

From the balanced equation above,

44 g of C3H8 reacted to produce 132 g of CO2.

Next, we shall determine the theoretical yield of CO2.

This can be obtained as shown below:

From the balanced equation above,

44 g of C3H8 reacted to produce 132 g of CO2.

Therefore, 0.295 kg (i.e 295 g) will react to produce = (295 x 132)/44 = 885 g of CO2.

Therefore, the theoretical yield of CO2 is 885 g.

Finally, we shall determine the percentage yield of CO2 as follow:

Actual yield of CO2 = 712 g

Theoretical yield of CO2 = 885 g

Percentage yield of CO2 =..?

Percentage yield = Actual yield /Theoretical yield x 100

Percentage yield of CO2 = 712/885 x 100

Percentage yield = 80.5%

Therefore, the percentage yield of CO2 is 80.5%.

According to naming rules, the types of compound that use prefixes in their names are ________.

Answers

Answer:

Covalent compounds.

Explanation:

Hello,

In this case, when forming chemical bonds in order to form compounds, we say that if electrons are shared, covalent compounds are to be formed and they usually have subscripts that need prefixes to be named, for instance phosphorous pentachloride (PCl5), dichlorine heptoxide (Cl2O7), carbon tetrachloride (CCl4) and many others.

Regards.

The following reaction proceeds at a rate such that 3 mole of A is consumed per minute. Given this, how many moles of C are produced per minute? 2A+2B→4C

Answers

Answer:

6 mol/min

Explanation:

2A+2B→4C

The relationship between the reactants and products of this equation is given by;

1/2 -d[A]/dt = 1/2 -d[B]/dt = 1/4 d[C]/dt

Our focus is on A and C

From the question;

d[A]/dt = 3mol/min

We have;

1/2 (3) = 1/4 d[C]/dt

d[C]/dt = 4/2 * 3 = 6 mol/min

Calculate the mass of MgCO3 (84.31 g/mol) precipitated by mixing 10.0 mL of a 0.300 M Na2CO3 solution with 6.00 mL of 0.0400 M Mg(NO3)2 solution.

Answers

Answer:

[tex]m_{MgCO_3}=0.0202molMgCO_3[/tex]

Explanation:

Hello,

In this case, for this purpose we first have to write the undergoing chemical reaction:

[tex]Na_2CO_3+Mg(NO_3)_2\rightarrow MgCO_3+2NaNO_3[/tex]

Thus, since the mole ratio between the reactants is 1:1, we next identify the limiting reactant by computing the available moles of sodium carbonate and those moles of the same reactant consumed by the magnesium nitrate considering the given solutions:

[tex]n_{Na_2CO_3}=0.010L*0.300\frac{molNa_2CO_3}{1L}=0.003molNa_2CO_3 \\\\n_{Na_2CO_3}^{consumed}=0.006L*0.0400\frac{molMg(NO_3)_2}{1L}*\frac{1molNa_2CO_3}{1molMg(NO_3)_2} =0.00024molNa_2CO_3[/tex]

In such a way, since less moles are consumed, we can say that the sodium carbonate is excess whereas the magnesium nitrate is the limiting one, therefore, the yielded mass of magnesium carbonate turns out:

[tex]m_{MgCO_3}=0.00024molMg(NO_3)_2*\frac{1molMgCO_3}{1molMg(NO_3)_2}*\frac{84.31gMgCO_3}{1molMgCO_3} \\\\m_{MgCO_3}=0.0202molMgCO_3[/tex]

Regards.

Four research teams measured the length of a rare whale, and what each team wrote in its team notebook is shown in the table below.
Suppose a later and more reliable measurement gives 45.0 m for the length of the same whale. Decide which of the earlier measurements was the most
accurate, and which was the most precise.
team
what was written
in the notebook
most accurate
measurement
most precise
measurement
?
A
"55.m"
B
*50.0m +0.5m
с
*44.0m + 6.0%
D
o
"between 30 m and 40 m

Answers

Answer:

Explanation:

Precision relates to instruments of measurement or scale . A scale measuring upto cm is less precise than an instrument measuring upto mm .

Here the first measurement appears to have been taken with an instrument measuring up to metre and the second measurement appears to have been taken with an instrument measuring up to decimeter . So second measurement is most precise .

Third measurement is closest to the actual measurement that is 45.0 m , so it is most accurate measurement .

g Consider the reaction when aqueous solutions of potassium hydroxide and ammonium bromide are combined. The net ionic equation for this reaction is:

Answers

Net ionic equation is calculated by the eliminating spectator ion. The net ionic products are potassium ion and bromine ion.

Net ionic equation:

It shows the ionic products of the products that has been precipitated by the dissociation of reactant in aquas solution.

Aqueous solutions of potassium hydroxide and ammonium bromide combined to form a precipitate KBr.

The dissociation reaction of  

[tex]\bold {KBr(aq) \rightarrow K^+(aq) + Br^-(aq)}[/tex]

Aquas potassium hydroxide dissociates into potassium ion and bromine ion.

Therefore, the net ionic products are potassium ion and bromine ion.

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A neutralization of a strong acid by a strong base give out 4590 J of heat energy. Determine the enthalpy change (in kJ) for the reaction. Give your answer to three significant figures.

Answers

Answer:

A neutralization of a strong acid by a strong base gave out 5590 J of heat energy.

Determine the enthalpy change (in kJ) for the reaction.

Explanation:

A strong acid being neutralized by a strong base releases 5590 J of heat energy.

What is neutralization?

A chemical reaction in which an acid and a base interact quantitatively is known as neutralization or neutralisation. By neutralizing a reaction in water, surplus hydrogen or hydroxide ions are removed from the solution.

Neutralization is a sort of chemical reaction in which an acid and a base combine to produce salt and water. For instance: Reaction of sodium hydroxide and hydrochloric acid (HCl) Sodium hydroxide reacts with hydrochloric acid to form their salt sodium chloride (NaCl) and water.

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What nuclide, when bombarded by an α particle, will generate carbon-12 and a neutron?

Answers

Answer:

Be

Explanation:

[tex]^94Be + ^42He \rightarrow ^{12}6C + ^10x[/tex]

Therefore, the element symbols is Be, which when bombarded by an α particle, will generate carbon-12 and a neutron.

A 200.0 gram piece of silver (Ag) is initially at 25°C. It is then heated by addition of 3.6 kilojoules of energy. What is the final temperature of the silver? The specific heat of silver is 0.240 J/(g·°C).

Answers

Answer:

Final temperature = 100°C

Explanation:

The general equation of a coffee cup calorimeter is:

Q = m×C×ΔT

Where Q is the heat added to the system (3.6kJ = 3600J), m is the mass of the substance (200.0g), C is specific heat (0.240J /g°C) and ΔT is change in temperature).

Computing the values:

3600J = 200.0g×0.240J/(g°C)×ΔT

75°C = ΔT

ΔT is the difference in temperature between final and initial temperature. As intital temperature was 25°C:

75°C = Final T - 25°C

Final temperature = 100°C

If 20.6 grams of ice at zero degrees Celsius completely change into liquid water at zero degrees Celsius, the enthalpy of phase change will be positive. TRUE FALSE

Answers

Answer:

True

Explanation:

what cells form enamel?​

Answers

Answer:enamel is formed by differentiated dental epithelial cells known as ameloblasts.

Explanation:

Use the Debye-Huckel Equation to calculate the activity coefficient of Ce4+ at μ = 0.070 M.

Answers

english please so i can help

With all the complexity in the world or the universe , there are ____ . Kind of like leggos

Answers

Send a picture of the question

How many moles of urea (60. g/mol) must be dissolved in 66.6g of water to give a 2.4 m solution?
a. 1.4 × 102 mol
b. 2.4 mol
c. 0.0024 mol
d. 0.15 mol
e. 9.0 × 102 mol

Answers

Answer:

d. 0.15 mol

Explanation:

Step 1: Given data

Mass of water (solvent): 66.6 gMolality (m): 2.4 mMoles of urea (solute): ?

Step 2: Convert the mass of the solvent to kilograms

We will use the relationship 1 kg = 1,000 g.

66.6 g × (1 kg/1,000 g) = 0.0666 kg

Step 3: Calculate the moles of solute

The molality is equal to the moles of solute divided by the kilograms of solvent.

m = moles of solute / kilograms of solvent

moles of solute = m × kilograms of solvent

moles of solute = 2.4 mol/kg × 0.0666 kg

moles of solute = 0.15 mol

when bisecting an angle, one of the steps is to draw an arc centered on a point on a ray of the angle. in particular this angle is to be drawn on the interior of the angle, why must The Arc be drawn in the interior of the angle?

Answers

Answer:

the answer is c

Explanation:

choose the best answer. The 6.0 M HCl solution must be added to the crucible in the fume hood because

a) the wet hydrogen gas released can cause explosion.

b) the HCl used is very concentrated.

c) it is aafer to do the experiment in the fume hood rather on the bench.

d) the HCl can react quickly with the zinc solid in the fume hood.

Answers

Answer:

The answer is A

Explanation:

When nH2/nO2 =3/4 => it can cause explosion

What is the molarity of a solution in
which 6.9mol of potassium chloride
(KCI) is dissolved in water to a final
volume of 1.8L?

Answers

Answer:

3.83 mol/ L

Explanation:

Molarity is the amount of moles of a substance in a liter of solution.

1.8L ----- 6.9 mol of KCl

1L ----- 6.9 ÷1.8= 3.83 moles of KCl (3 s.f.)

Thus the molarity is 3.83 mol/L.

Answer: 3.8

Explanation:

Original answer is 3.83 but it needs significant figures so you need to round it to 2 significant figures

Propyne can be converted to
propene by using H2+Lindlar's
catalyst ?
True
or False​

Answers

Answer:

Propyne can be converted to

propene by using H2+Lindlar's

catalyst ?

True

or False

Propyne can be converted to

propene by using H2+Lindlar's

catalyst ?

True

or False

Propyne can be converted to

propene by using H2+Lindlar's

catalyst ?

True

or False

Propyne can be converted to

propene by using H2+Lindlar's

catalyst ?

True

or False

Propyne can be converted to

propene by using H2+Lindlar's

catalyst ?

True

or False

Propyne can be converted to

propene by using H2+Lindlar's

catalyst ?

True

or False

Propyne can be converted to

propene by using H2+Lindlar's

catalyst ?

True

or False

Propyne can be converted to

propene by using H2+Lindlar's

catalyst ?

True

or False

Explanation:

Propyne can be converted to

propene by using H2+Lindlar's

catalyst ?

True

or False

Propyne can be converted to

propene by using H2+Lindlar's

catalyst ?

True

or False

Propyne can be converted to

propene by using H2+Lindlar's

catalyst ?

True

or False

Propyne can be converted to

propene by using H2+Lindlar's

catalyst ?

True

or False

Propyne can be converted to

propene by using H2+Lindlar's

catalyst ?

True

or False

Propyne can be converted to

propene by using H2+Lindlar's

catalyst ?

True

or False

Propyne can be converted to

propene by using H2+Lindlar's

catalyst ?

True

or False

Propyne can be converted to

propene by using H2+Lindlar's

catalyst ?

True

or False

Propyne can be converted to

propene by using H2+Lindlar's

catalyst ?

True

or False

Propyne can be converted to

propene by using H2+Lindlar's

catalyst ?

True

or False

Propyne can be converted to

propene by using H2+Lindlar's

catalyst ?

True

or False

Propyne can be converted to

propene by using H2+Lindlar's

catalyst ?

True

or False

Propyne can be converted to

propene by using H2+Lindlar's

catalyst ?

True

or False

Propyne can be converted to

propene by using H2+Lindlar's

catalyst ?

True

or False

Propyne can be converted to

propene by using H2+Lindlar's

catalyst ?

True

or False

Propyne can be converted to

propene by using H2+Lindlar's

catalyst ?

True

or False


Propyne reacts with hydrogen (H₂) in presence of Pd and BaSO₄ at 25ºc temperature and produce propene(CH₃-CH=CH₂). False

Please use your periodic table of elements to assist you. How many protons does Flourine have? Question 3 options: 8 18 9 10

Answers

Answer:

9 protons

Explanation:

An element's atomic number is equal to the amount of protons in the nucleus - otherwise, the element's chemical identity would be different and it would be a completely different element.

Referencing any periodic table, we notice that fluorine has the atomic number of 9.

Because the atomic number is the same as the number of protons in the nucleus, fluorine has 9 protons.

What areas of the work force can science be applied to?
Select all that apply

Answers

Answer:

1. the study of the structure, properties, and interactions of materials and the changes they undergo

2. the study of matter and energy and how they interact

3. the systematic study and analysis of facts

4. a process to test a proposed solution to a problem

Click again to see term

Until the 1600s, people who investigated problems related to our understanding of the natural world were called _____.

Click ca

Explanation:

QUICK WILL MARK BRAINLIEST!!
Match each of the unknown ions to its appropriate description.

A− A) A nonmetal that gained one electron
B+ B) A metal that lost one electron
C2− C) A metal that lost two electrons
D2+ D) A nonmetal that gained two electrons

Answers

Answer:

c2-c

Explanation:

A mental that lost two electrons just joking I don't k ow but I think it ain't the first o e because of comment sense to the 5th power

Answer:

A and B

Explanation:

metal form ion by lossing elecron

non metal form ion by gaining electron

If the components of a solution are in different states, which one is a solvent?​

Answers

Answer:

The solvent is the substance which typically determines the physical state of the solution (solid, liquid or gas). The solute is the substance which is dissolved by the solvent.

We study science to be able to answer questions about the world around us. Write down at least three questions
that you think might be answered by studying Earth and space science.


Answers

Answer:

1) If life exists in other planets

2) What type of living organisms exists on other planets

3) Predominant atoms/mixture/compound that exists on other planets

Explanation:

Earth and space science is the study of the earth, the space and other planets within the universe.

The following questions can be answered by studying earth and space science

1) If life exists in other planets

Over the years, there has been several reports suggesting this but a deep inquiry into this with scientific data can assist in putting the matter to rest.

2) What type of living organisms exists on other planets

If there is/are lives on other planets, what type of life/living organisms exist there. Are they plants? Are they animals? Or do we have a new classification for them?

3) Predominant atom/mixture/compound that exists on other planets

What is the most popular substance in each of these planets? The role of this substance in the survival of the planet or it's inhabitants also needs to be studied

In preparing quantitative solutions used in titration, one must use freshly boiled deionized water. Explain why.

Answers

Answer:

to prevent the chemical from reacting with ions present in water

Explanation:

water contains dissolved ions such as calcium from minerals and soluble rocks

3. Calculate the amount of C2H5OH in moles present in 5.0 g of ethanol. Calculate the number of C atoms present in the same amount of glucose. g

Answers

Answer:

- [tex]n_{etOH}=0.11mol\ et OH[/tex]

- [tex]atoms_C=1.0x10^{23} atoms\ C[/tex]

Explanation:

Hello,

In this case, since ethanol has a molar mass of 46 g/mol, the moles in 5.0 g are:

[tex]n_{etOH}=5.0g\ etOH*\frac{1mol\ etOH}{46 g\ etOH} =0.11mol\ et OH[/tex]

Moreover, since the formula of glucose is C₆H₁₂O₆, its molar mass is 180 g/mol and six moles of carbon are in one mole of glucose (based on carbon's subscript), the atoms are computed by using the 6:1 mole ratio and the Avogadro's number as shown below:

[tex]atoms_C=5.0gC_6H_{12}O_6*\frac{1molC_6H_{12}O_6}{180gC_6H_{12}O_6}*\frac{6molC}{1molC_6H_{12}O_6} *\frac{6.022x10^{23}atoms\ C}{1molC} \\\\atoms_C=1.0x10^{23} atoms\ C[/tex]

Regards.

how does heat flow in air and ocean currents

Answers

Answer:

the transfer of heat energy within the atmosphere, hydrosphere, and the earth's surface and interior occurs as a result of radiation, convection, and conduction. ocean currents play a significant role in transferring this heat toward the poles.

The transfer of heat energy within the atmosphere, hydrosphere, and the Earth's surface and interior occurs as a result of radiation, convection, and conduction. Ocean currents play a significant role in transferring this heat toward the poles.

Which statement explains why spontaneous generation is a mistaken idea? A. Living things do not need to reproduce. B. Living things are produced only by living things. C. Not all living things can maintain homeostasis. D.All living things exhibit binomial nomenclature.

Answers

D.all living things exhibit binomial nomenclature

Separate this redox reaction into its balanced component half‑reactions. Use the symbol e− for an electron. Cl2+2Li⟶2LiCl

Answers

Answer:

Cl₂ ⟶ 2Cl⁻ + 2e⁻ Oxidation

2Li + 2e⁻ ⟶ 2Li⁺ Reduction

Explanation:

The question requests to split the equation below into half equations;

Cl2+2Li⟶2LiCl

In redox chemistry, splitting into half equations simply means highlighting the reduction and oxidation reactions of the reaction.

Before proceeding, we hav to split the ionic compound; LiCl into it's component ions. So we have;

Cl₂ + 2Li ⟶ 2Li⁺Cl⁻

This leaves us with;

Cl₂ ⟶ 2Cl⁻ ............................... i

2Li ⟶ 2Li⁺  .............................. ii

Oxidation reactions can be identified by the increase in oxidation number and decrease in the case of reduction.

in reaction i, there is a decrease in oxidation number from 0 to -1. This is the reduction half equation,

in reaction ii, there is an increase in oxidation number from 0 to +1. This is the oxidation half equation

In terms of electrons, we have to even the charge;

Oxidation = Loss of electrons

Reduction = Gain of electrons

The half equations are given as;

Cl₂ ⟶ 2Cl⁻ + 2e⁻ Oxidation

2Li + 2e⁻ ⟶ 2Li⁺ Reduction

Separation of the redox reaction into its balanced component half-reactions is as follows;

Oxidation half-reaction;

2Li ⟶ Li²+ + 2e-

Reduction half-reaction;

Cl2 + 2e- ⟶ 2Cl-

By definition;

Oxidation is simply characterized by an increase in oxidation number of a reacting entity.

Reduction is simply characterized by a decrease in oxidation number of a reacting entity.

A reaction in which oxidation and reduction occur simultaneously is termed a Redox reaction as in the given reaction.

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