Explain the "Law of Conservation of Mass". Provide an example to support your explanation

Answers

Answer 1
the law of conservation of mass states that matter is neither created nor destroyed in chemical reactions. in any chemical reaction, the total mass of the products always equals the total mass of the reactants.
Answer 2

Answer:

The law of  conservation of mass states that mass is  neither created nor destroyed by  chemical reactions the law of  conservation of mass was created in 1789  by a French chemist who discovered that  matter cannot be created or destroyed in  a chemical reaction according to the law  conservation of mass the mass of the  products in a chemical reaction must  equal the mass of the reactants.113 grams when you mix baking soda and  vinegar you get a chemical reaction and  gas is produced after the reaction the  mass of the products is still 113 grams  the same as the mass of the reactants  the mass of the array Acton's was not  created or destroyed it was merely  rearranged the balanced equation for  this reaction.

PLZ BRAINLIEST


Related Questions

When writing equations the mass on the left of the arrow must
equal the mass on the right of the arrow.

Answers

Answer:

When writing equation the mass on left side of equation must be equal to the mass on right side. True

Explanation:

The chemical reactions always follow the law of conservation of mass.

Law of conservation of mass:

According to the law of conservation mass, mass can neither be created nor destroyed in a chemical equation.

Explanation:

This law was given by french chemist  Antoine Lavoisier in 1789. According to this law mass of reactant and mass of product must be equal, because masses are not created or destroyed in a chemical reaction.

For example:

In photosynthesis reaction:

6CO₂ + 6H₂O + energy → C₆H₁₂O₆ + 6O₂

there are six carbon atoms, eighteen oxygen atoms and twelve hydrogen atoms on the both side of equation so this reaction followed the law of conservation of mass because total mass is equal on both side of equation.

Which element is a non reactive gas?
Lead (82)
Argon (18)
Gold (79)

Answers

82 because that’s my answer

Which electrons determine the reactivity of the atom?

Answers

The number of electrons in the outermost shell determine the reactivity.

What is a chemical that organisms use for primarily energy
A-protein
B-carbohydrate
C-lipid
D- water

Answers

In my opinion A- Proteins are among the most diverse and essential organic compound found in all living organisms. If not A then D, water.

A student performed an investigation at sea level. First she placed 400 mL of water in four different containers. Then she placed the containers on hot plates with four different temperature settings, as shown in the table.

Answers

Answer:

  C. The boiling point of water

Explanation:

We assume your question is the one attached.

Obviously, the shape of the (liquid) water is a function of the container it is in, as it is for any liquid or gas.

The rate of evaporation will depend on the temperature and on the surface area. The different containers are different in both ways, so evaporation is not a constant.

The boiling point is a physical property of the water, so will be the same across all containers.

The amount of steam released is related to the rate of evaporation. It will not be a constant across the different containers.

__

The appropriate choice is ...

  The boiling point of water

what are some habits of the woodhouse's toads​

Answers

Answer:

Behavior

Explanation:

Near human habitaciones these toads may congregate underneath outsider lights to feed one the insects the attract.

One of the isotopes of sulfur is represented as sulfur-35 or S-35. What does the number 35 signify? A. number of protons B. number of neutrons C. atomic number D. mass number

Answers

Answer:

D. Mass number

Explanation:

atomic number is constant since the number of protons and electrons is equal

number of protons is always the same as the number of electrons

the number of neutrons vary from the number of protons therefore causing the difference in mass numbers

Answer:

D. mass number

Explanation:

If you have a glass capillary tube that is 0.275 mm in radius, and you push it into water then the water will rise, but if you push the capillary into mercury in will create a meniscus below the surface of the fluid. If air is the gas phase, then the surface tension of water at 140oF is 66.2 mN/m and the surface tension of mercury is 470 mN/m. If the contact angle of water on glass is 10oand mercury on glass is 130o, then calculate BOTH height changes.

Answers

Answer:

Explanation:

From the given information, the rise in a capillary tube h = [tex]\dfrac{2T cos \theta }{r \rho g}[/tex]

where:

For the height of water:

Surface Tension T = 66.2 mN/m = 66.2 N/m

θ = 10⁰

Cos θ = cos 10 = 0.985

radius r = 0,257 mm = 0.275 × 10⁻³   m

density of water [tex]\rho[/tex] = 1000 kg/m³

g = 9.8 m/s²

replacing our values:

h = [tex]\dfrac{2T cos \theta }{r \rho g}[/tex]

h = [tex]\dfrac{2\times 66.2 \times 10^{-3} \times 0.985}{0.275 \times 10^{-3} \times 1000\times 9.8}[/tex]

h = 0.0484 meteres

h = 48.3 mm

Since the height h = [tex]\dfrac{2T cos \theta }{r \rho g}[/tex]

r = 0.275 mm = 0.275 × 10⁻³   m

the density of mecury now [tex]\rho_H{g}}[/tex]

= 13593 kg/m³

the surface tension of the mercury [tex]T_{Hg} =470 \times 10^{-3} \ N/m[/tex]

θ = 130⁰

Cos θ = cos 130 = -0.6428

Using the same above equation:

h = [tex]\dfrac{2\times 470 \times 10^{-3} \times (-0.6428) }{0.275 \times 10^{-3} \times 13593 \times 9.8}[/tex]

h = -0.016494 m

h = 16.49 mm

Undigested food leaves the body through the...


A small intestine
B rectum
C Oliver
D pancreas

Answers

Answer:

That is B. Rectum

Explanation:

The answer is the rectum because the small intestine takes the nutrients and delivers toxins to the kidneys, and the pancreas is an organ that helps digest hormones that help regulate the way your body processes sugar.

Answer:

B

Explanation:

Rectum.

It's definitly right. I had this on a quiz.

How many cm is equal to 1450 nm?
a
1.45 x 10-8.cm
b 1.45 x 1010 cm
С
1.45 x 1014 cm
d
1.45 x 10-4 cm

Answers

Answer:

The answer is D; 1.45 x 10^-4

Where can you find the number of electrons of an
element?

Answers

Answer:

Subtract the charge from the atomic number. When an ion has a positive charge, the atom has lost electrons. To calculate the remaining number of electrons, you subtract the amount of extra charge from the atomic number. In the case of a positive ion, there are more protons than electrons.

Explanation:

Answer:

Explanation:

electrons is same as the amount of protons. and protons are also same as the atomic #.  

It is falseIt is ______ that when chloroform, C H C l 3 , is dissolved in water, a conducting solution results. This is because chloroform, C H C l 3 is a _____ that ______ support the movement of charge. that when chloroform, CHCl3 , is dissolved in water, a conducting solution results. This is because chloroform, CHCl3 is a nonelectrolyteIt is ______ that when chloroform, C H C l 3 , is dissolved in water, a conducting solution results. This is because chloroform, C H C l 3 is a ______ that _______ support the movement of charge. that does notIt is ______ that when chloroform, C H C l 3 , is dissolved in water, a conducting solution results. This is because chloroform, C H C l 3 is a ______ that ______ support the movement of charge. support the movement of charge.

Answers

Answer:

This question seems unclear as some fragments were repeated. However, the comprehensive question, in addition to the explained answers to fill the gap can be found in the explanation section. The answers are typed in BOLD.

Explanation:

It is _FALSE_ that when chloroform, CHCl3, is dissolved in water, a conducting solution results. This is because chloroform, CHCl3 is a _NON-ELECTROLYTE_ that _DOES NOT_ support the movement of charge.

In contrast to an electrolyte, a NON-ELECTROLYTE is a substance that does not ionize or dissociate into ions (charged atoms) when dissolved in water. Since they do not ionize, they also do not conduct electricity. An example is the Chloroform (CHCl3) described in this question.

Match each set of quantum numbers to the correct subshell description by typing in the correct number.

1: n = 2, l = 0 2p:

2: n = 3, l = 2 3d:

3: n = 1, l = 0 2s:

4: n = 2, l = 1 4f:

5: n = 4, l = 3 1s:

Answers

2p: 4

3d: 2

2s: 1

4f: 5

1s: 3

Explanation: got it all right

Answer:

1: n = 2, l = 0   2p: 4

2: n = 3, l = 2  3d: 2

3: n = 1, l = 0   2s: 1

4: n = 2, l = 1   4f: 5

5: n = 4, l = 3   1s:  3

Stereoisomers that are not mirror images of each are ____________ . The chemical and physical properties of two ____________ are different. Isomers that differ only in the way atoms are oriented in space are ____________ . Achiral compounds that contain tetrahedral stereogenic centers are ____________ . Isomers that differ in the way the atoms are connected to each other are ____________ . Stereoisomers that are nonsuperimposable mirror images of each other are ____________ . The chemical and physical properties of two ____________ are identical except in their interaction with chiral substances.

Answers

Answer:

Stereoisomers that are not mirror images of each are diasteroisomer . The chemical and physical properties of two diasteroisomers are different. Isomers that differ only in the way atoms are oriented in space are Stereoisomers . Achiral compounds that contain tetrahedral stereogenic centers are meso isomers . Isomers that differ in the way the atoms are connected to each other are structural isomer . Stereoisomers that are nonsuperimposable mirror images of each other are enantiomers . The chemical and physical properties of two enantiomers are identical except in their interaction with chiral substances.

Explanation:

Diasteroisomers are differentiated by the spatial arrangement of atoms, but they are not specular images so they are not enantiomers. In order for two molecules to be diastereoisomers, they must have at least two chiral centers. In one of the centers the substituents are arranged equally in both molecules and in the other they must change.

Enantiomers are specular images but are not superimposable. They have the ability to rotate the polarized light plane

The stereoisomers present the same molecular formula but different spatial rearrangement between their atoms, we can mention the cis and trans isomers where the cis isomers are on the same side of the plane and the trans isomers on opposite sides. They are also known as geometric isomers.

Meso compounds always have more than one asymmetric center and are aquiral. They are distinguished because they present a plane of symmetry.

Structural isomers are those that have different connectivity between their atoms. We can differentiate, for example, metoximethane from ethanol. They will always have the same molecular formula.

You weighed your empty insulated cup and found that the mass of the cup was 3.2 g. You add some hot water and find that the total mass increases to 28.1 g. You got some ice from the bus tub, and found that it was wet. After drying it carefully, you take the temperature of the hot water in the cup and find that its temperature is 60.7 °C and then add the ice. The temperature of the water dropped, and came to equilibrium at 35.1 °C. At the end of the experiment you re-weigh the cup and find that the mass has increased to 33.0 g.What was the initial temperature of the ice?What is your experimental value for the heat of fusion?

Answers

Answer:

Initial temperature of ice for this experiment = 0⁰c

heat of fusion = 95 cal

Explanation:

mass of empty cup = 3.2 g

mass of cup filled with hot water = 28.1 g

hence : mass of hot water = 28.1 - 3.2 = 24.9 g

mass of hot water + ice + empty cup = 33.0 g

hence : mass of ice = 33.0 - 24.9 - 3.2 = 4.9 g

temperature of hot water = 60.7⁰c

when ice was added ( temperature of mixture ) = 35.1⁰c

A) Initial temperature of the ice

initial temperature of ice is  0⁰c

B) experimental value for heat of fusion

we have the apply the law of energy conservation

= heat lost(hot water ) = heat gain by ice      s = specific heat of water = 1 cal

= M*s*ΔT = Mice * Hf + Mice *s *T

= 24.9 * 1 * ( 60.7 - 35.1 ) = 4.9 * Hf + 4.9 * 1 * 35.1

= 24.9 ( 25.6 ) = 4.9 hf + 171.99

Hf ( heat of fusion ) = 465.45 / 4.9 = 94.99 ≈ 95 cal

The Initial temperature of ice for this experiment is 0⁰c

The experimental heat of fusion of ice is 95.1 cal/g

Temperature of wet ice

Wet ice means ice with water on top of it or ice that is melting.

Since the ice was wet or melting, it means that its temperature was 0⁰c

Initial temperature of ice for this experiment = 0⁰c

Experimental value of the heat of fusion of ice.Heat of fusion is the amount of heat energy required to melt a given amount of a solid at its melting point.

Using the law of conservation of heat

Heat lost by hot water = Heat gained by ice

initial temperature of ice is  0⁰c

mass of empty cup, m1 = 3.2 g

mass of cup filled with hot water, m2 = 28.1 g

mass of hot water, m3 = m2 - m1

mass of hot water = 28.1 - 3.2

mass of hot water = 24.9 g

mass of hot water + ice + empty cup, m4 = 33.0 g

mass of ice, m5 = m4 - m2

mass of ice = 33.0 - 28.1 = 4.9 g

temperature of hot water = 60.7⁰c

final temperature of ice + hot water mixture = 35.1⁰c

Initial temperature of the ice = y

Heat lost by hot water, H = mcΔT

where m = mass of hot water

c = specific heat of water = 1 cal

ΔT = temperature change

H = 24.9 × 1 × {35.1 - 60.7}

H = 637.44

Therefore, Heat gained by ice = 637.44

Heat gained by ice = Heat gained in changing from ice at 0°C to water at 0°C + Heat gained in changing from water at 0°C to water at 35.1°C

Heat gained in changing from ice at 0°C to water at 0°C = m×Hf

where m is mass of iceHf is heat of fusion of ice

Heat gained in changing from water at 0°C to water at 35.1°C = mcΔT

where m = mass of water at 0°C

c = specific heat of water = 1 cal

ΔT = temperature change

Heat gained by ice = 4.9 × Hf + 4.9 × 1 × {35 - 0}

Heat gained by ice = 4.9 × Hf + 171.5

637.44 - 171.5 = 4.9 × Hf

Hf = 465.94/4.9

Hf = 95.1 cal/g

Therefore, Heat of fusion of ice = 95.1 cal/g

Learn more about heat of fusion at: https://brainly.com/question/87248

100 POINTS & BRAINLIEST !!!! PLEASE HELP

Answers

Answer:

The more you get closer to a substance in the periodic table things that are included into the substance start to get bigger

Explanation:

Answer:The more you get closer to a substance in the periodic table things that are included into the substance start to get biggerplz mark me as brainiest

Astatine belongs to which element group: nonmetal, halogen, noble gas?

Answers

Answer:

halogen

Explanation:

It belongs to Group 17 on the periodic table, which is a halogen

Astatine is a periodic element that is represented as At and has the atomic number of 85. This element belongs to the halogen group of the periodic table. Thus, option b is correct.

What are halogens?

Halogens are the group or the families of the periodic table that are characterized by the six elements that are non-metallic in nature. The other halogens are iodine, chlorine, bromine, fluorine, and tennessine.

The astatine element of the halogen group (group 17) is the rarest naturally occurring and have an electronic configuration of [Xe] 4f¹⁴5d¹⁰6s²6p⁵, with atomic number 85.

The isotopes of astatine are not stable and are used to treat a disease like a thyroid in radiotherapy. Also, it is used to treat cancerous cells.

Therefore, option b. the astatine element is a halogen.

Learn more about halogens here:

https://brainly.com/question/4725757

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An object in motion has Energy
A: magnetic
B: kinetic
C: possible
D : chemical

Answers

If an object is moving, it is said to have kinetic energy (KE).

is burning of maganisums exothermic or endothermic reaction​

Answers

Answer:

Exothermic I think

Explanation:

What is the mass of 3.15 moles of calcium sulfate, CaSO4?

Answers

Answer:

3.15 * 136 (136 is the molar mass of calcium sulfate). = 428 g CaSO4.

Explanation:

A second calibration standard solution of an iron(III) salicylate complex was prepared in two steps. First, 30.8 mL of a 0.185 M stock solution was diluted with solvent to make 100.0 mL of the first calibration standard solution and, secondly, 78.5 mL of that first calibration solution was diluted to 100 mL to make the second calibration standard. What is the molar concentration of the second calibration standard solution

Answers

Answer:

0.0447 M.

Explanation:

We'll begin by calculating the molarity of the diluted solution of the first calibration standard solution. This can be obtained as follow:

Molarity of stock solution (M1) = 0.185 M

Volume of stock solution (V1) = 30.8 mL

Volume of diluted solution (V2) = 100 mL

Molarity of diluted solution (M2) =?

M1V1 = M2V2

0.185 × 30.8 = M2 × 100

5.698 = M2 × 100

Divide both side by 100

M2 = 5.698 / 100

M2 = 0.05698 M

Therefore, the molarity of the diluted solution of the first calibration standard solution is 0.05698 M

Finally, we shall determine the molarity of the second calibration standard solution as follow:

Molarity of first calibration standard solution (M1) = 0.05698 M

Volume of first calibration standard solution (V1) = 78.5 mL

Volume of second calibration standard solution (V1) = 100 mL

Molarity of second calibration standard solution (M2) =?

M1V1 = M2V2

0.05698 × 78.5 = M2 × 100

4.47293 = M2 × 100

Divide both side by 100

M2 = 4.47293 / 100

M2 = 0.0447 M

Therefore, the molarity of the second calibration standard solution is 0.0447 M.

A marble has a density of 11 g/cm3 and when dropped in a graduated cylinder increases the water level from 2 mL to 4 mL of volume. What is the mass of the marble in grams?

Answers

Answer:

The answer is 22 g

Explanation:

The mass of a substance when given the density and volume can be found by using the formula

mass = Density × volume

From the question

density = 11 g/cm³

volume = final volume of water - initial volume of water

volume = 4 - 2 = 2 mL

But 1 mL = 1 cm³

2 mL = 2 cm³

volume = 2 cm³

The mass of the marble is

mass = 11 × 2

We have the final answer as

22 g

Hope this helps you

Read this excerpt from Immigrant Kids. The second doctor watched for contagious and infectious diseases. He looked especially for infections of the scalp and at the eyelids for symptoms of trachoma, a blinding disease. Since trachoma caused more than half of all medical detentions, this doctor was greatly feared. He stood directly in the immigrant's path. With a swift movement, he would grab the immigrant's eyelid, pull it up, and peer beneath it. If all was well, the immigrant was passed on. The purpose of this excerpt is to provide information about eye doctors and to explain how they traveled the immigrant’s path. to provide information about eye disease and to explain its medical treatment. to provide information about scalp infections and to explain how they can be prevented. to provide information about trachoma and to explain how it was diagnosed among immigrants.

Answers

Answer:

i think its B

Explanation:

Answer:

Its is D

Explanation:

I took the test

In terms of the atmosphere, which of the following best describes the oxygen that is present?

It is the solvent in a homogeneous gas mixture.

It is the solute in a heterogeneous gas-liquid mixture.

It is the solvent in a heterogeneous mixture.

It is the solute in a homogeneous gas mixture.

Answers

The atmosphere is considered homogeneous. It isn’t exactly on the smallest scales but that doesn’t matter. Homogenous means the composition will be the same in any sample taken from the substance. And clearly, the atmosphere is mostly gas. So the last answer is right

5. The Santa Ana winds, also known as "devil winds", are strong and dry high-pressure masses of air that begin in the Great Basin mountains and then affect coastal areas in Southern California. Assume that these winds consists of a mixture of nitrogen and oxygen gases that behave ideally and that they begin at a pressure and temperature of 0.705 atm of 22.0 0C, respectively, and that this mass of air is then adiabatically and reversibly compressed to a pressure of 1.00 atm when it descends to the coastal regions. Calculate the final temperature.

Answers

Answer:

Explanation:

Given that;

The initial pressure = 0.705 atm

The initial temperature = 22.0° C

The final pressure = 1.00 atm

The objective is to calculate the final temperature,

Since the change occurs adiabatically and reversibly, the final temperature can be calculated by using the thermodynamics equation:

[tex](\dfrac{T_2}{T_1})^r= (\dfrac{P_2}{P_1})^{r-1}[/tex]

where;

r = 7/5 = 1.4

[tex](\dfrac{T_2}{22.0^0})^{1.4}= (\dfrac{1.00}{0.705})^{1.4-1}[/tex]

[tex](\dfrac{T_2}{22.0^0})^{1.4}= (1.418)^{0.4}[/tex]

[tex]T_2 = 22 \times 1.418 ^{^{\frac{0.4}{1.4}}[/tex]

[tex]T_2 = 22 \times 1.418 ^{{0.286}[/tex]

[tex]T_2 =24.31^0 \ C[/tex]

Are sodium and chlorine reactants or products

Answers

Answer:

reactants

Explanation:

Although there are the same atoms present in both the reactants and the products, the atoms in the reactants were rearranged to create a new substance, sodium chloride. Sodium chloride was not present in the reactants.

5.If the same distance runner started with a blood sodium ion concentration of 142 mmol/L and drank water equivalent to the volume of sweat lost during the race, what is the runner’s ending sodium ion concentration in mmol/L? Average blood volume is 5.00 L. Report your answer to three significant figures. Hint: If the runner drank as much fluid as was lost, what is the runner’s total blood volume at the end of the race? How many moles of sodium ions were in the runner’s blood at the end of the race?

Answers

Here is the missing part of the question.

4. A distance runner is in a 4-hour race and sweats at a rate of 455 mL/hour. The sodium ion concentration in sweat is, on average, 920. mg/L. How many moles of sodium ions were lost during the race? Report your answer to three significant figures.

Answer:

Explanation:

Given that:

the time for the runner = 4 hours

the rate of sweating = 455 mL/hour

Therefore, the total sweating rate = 455 mL/hour × 4 hours

the total sweating rate = 1820 mL

The [tex]Na^+[/tex] conc. in sweat = 920 mg/L

Thus, the total number in grams of [tex]Na^+[/tex] sweat lost = [tex]\dfrac{920}{1000}\times 1820[/tex]

= 1674.4 mg

= 1.6744 grams

number of moles of  [tex]Na^+[/tex] sweat lost = mass of  [tex]Na^+[/tex] sweat lost/ molar mass of [tex]Na^+[/tex]

number of moles of  [tex]Na^+[/tex] sweat lost = 1.6744/ 23

number of moles of  [tex]Na^+[/tex] sweat lost = 0.0728  mole

5. concentration of the runner = 142 mmol/L

the average volume of blood = 5.00 L

the number of moles sodium  [tex]Na^+[/tex]  = concentration × volume

the number of moles sodium  [tex]Na^+[/tex]  = 142 mmol/L × 5.000 L

the number of moles sodium  [tex]Na^+[/tex]  = 710 mmol

the number of moles sodium  [tex]Na^+[/tex]  = 0.710 mol

recall that; the number of moles of  [tex]Na^+[/tex] sweat lost = 0.0728 mol

thus, the number of remaining [tex]Na^+[/tex]  = (0.71 - 0.0728) mol

the number of remaining [tex]Na^+[/tex]  = 0.6372 mol

The runner ending  [tex]Na^+[/tex] concentration =  0.6372 mol/ 5.00 L

The runner ending  [tex]Na^+[/tex] concentration =  127440 mmol/L

Anyone know about this ?

Answers

Answer:

i think its vinegar

Explanation:

Answer:

Vinegar

Explanation:

It is made with several ingredients, including sugar.


If a someone wanted to construct a telescope to observe infrared light in the galaxy who
would best be able to build it
physical engineer
thermal engineer
optical engineer
chemical engineer
Question 13
ipts

Answers

Answer:

optical engineer

Explanation:

Answer:optical engineer

Explanation: HOPE IT HELPS YOU .PLEASE GIVE BRAINLIEST THANKS . .

Which of the following answer choices represents a typical anion

Answers

Answer:

This question is incomplete

Explanation:

This question is incomplete but generally, anions are ions that are made up of an atom or group of atoms (polyatomic) that are negatively charged. The first thing one should look out for when trying to identify an anion is the negative charge. Examples of anions include Cl⁻, O²⁻, N³⁻, NO₃⁻, SO₄²⁻, PO₄³⁻and AsO₄³⁻.

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