Read the temperature in the image:
Is it 18.7?

Read The Temperature In The Image: Is It 18.7?

Answers

Answer 1

Answer:

yes it is 18.7


Related Questions

What are the steps involved in enzymatic reaction?

Answers

Enzyme-catalyzed reactions happen in two steps.

1. Enzyme molecules and substrate molecules collide.

2. The formed enzyme-substrate molecule will catalyze and form a product and enzyme

In step one, the enzyme molecule (E) and substrate molecule(s) will collide, and they react, forming the intermediate compound, which is called "the enzyme-substrate" (E-S) complex. (The step is reversible since the complex breaks apart into the original substrate(s) and free enzyme).

In step two, after E-S complex forms, the enzyme will catalyze forming a product (P) and later be released from the enzyme's surface.

S + E → E–S

E–S → P + E

Hydrogen bonding and other electrostatic interactions will hold the substrate and enzyme together in a complex. The functional groups or structural features in the enzyme that participate in the interactions will be located in the pocket or cleft on the enzyme's surface. The pocket where enzymes combine with a substrate and transform it into a product is called the enzyme's active site. It has a unique conformation, complementary to the substrate structure, for the substrate and enzyme molecules to fit together similarly as the key in tumbler locks.

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Two ways to create a negative ion

Answers

The direct capture of a free electron by a neutral atom is the easiest technique to create negative ions.

How is an ion made to be negatively charged?

Positive ions made by a positive ion source can be double-charged-exchanged to create negative ions,

or negative ions can be directly extracted from a negative ion source.

creation of negative ions.

Negative ions and other energy levels below the vacuum level can be inhabited by adding an electron to an atom or molecule.

The atom has a net negative charge of e despite not being stable.

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FILL IN THE BLANK. the density of ammonia gas in a 4.32 l container at 837 torr and 45.0 °c is ________ g/l.

Answers

The density of ammonia gas in a 4.32 l container at 837 torr and 45.0 °c is 0.717 g/L.

Ammonia is a colorless gas that has a strong suffocating odour. It easily dissolves in water, forming an ammonium hydroxide solution that can cause irritation and burns. Approximately 80% of the ammonia produced by industry is used as fertiliser in agriculture. Ammonia is also used as a refrigerant gas, to purify water, and to make plastics, explosives, textiles, pesticides, dyes, and other chemicals.

Molar mass: 17.031 g/mol

The boiling point is -33.34 °C.

The density is 0.73 kg/m3.

Given,

V = 4.32 L

P = 837 torr = 1.101 atm

R = 0.082 atm.L / mol.K

T = 45 + 273.15 = 318.15 K

Formula:

PV = nRT

Moles of NH3 = n = PV/RT

⇒                      = 1.101 x 4.32 / (0.082 x 318.15)

⇒                          = 0.182 mol

Molar mass of NH3 = 17 g/mol

Mass = molar mass x moles

⇒                   = 17 x 0.182

   ⇒                    = 3.10 g

Density = mass / volume

⇒              = 3.10 / 4.32

⇒                  = 0.717 g/L

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f the two electrodes were completely inert and did not participate in the reaction, what potential would have to be exerted on the cell to produce molten al at 1000 oc? the oxygen produced is at 1 bar.

Answers

Anode in a bath of molten cryolite heated to between 950 and 1000 °C is part of an electrolytic reduction cell for the manufacture of metal.

How much voltage does electrolysis happen at?

The Faraday constant F represents the charge of a mole of electrons (96485 C/mol), and since each mole of water requires two moles of electrons, the minimum voltage required for electrolysis is roughly 1.23 V. This voltage decreases when electrolysis is performed at a high temperature.

Does raising voltage increase electrolysis?

Therefore, during electrolysis, the rate of the reaction increases as voltage is raised. The nature and material of the electrode, the presence of oxidizing and reducing chemicals in the electrolyte, and electrode potential are the parameters that affect the electrolysis process.

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Which of the following conditions must be satisfied for a collision between reactants to be effective?

a. A high concentration of reactants
b. Enough energy to overcome E,
c. Appropriate molecular orientation

Answers

The right molecular orientation and sufficient energy to overcome Ea are necessary for one collision amongst reaction to be successful.

How many collision phases are there?

The vehicular accident, human crash, and internal collision are the three steps that every collision goes through, which you may not have known.

What is the purpose of collision?

Regardless of who was at fault, coverage provides compensation to fix or replace your automobile if it is damaged or damaged in a collision with another vehicle. That's not the same as liability insurance, which assists in covering damage to that other user's vehicle as a result of a collision you caused.

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Two kg of aturated aqueou olution of a highly oluble component A at 50 °C i cooled of A are (0. 5 kg 4)/(kgwater) at 50 °C and to 30 °C. The olubility of A (0. 3 kg 4)/(kgwater) at 30 °C. The amount in kg of the crytal formed i-----?
a) 1. 47 kg
b) 0. 57 kg
c) 0. 68 kg
d) 0. 07 kg

Answers

The answer to the Two kg of aturated aqueous olution of a highly oluble component A at 50 °C i cooled of A are (0. 5 kg 4)/(kgwater) at 50 °C and to 30 °C. for the crystal are 0.07.

The salt crystals that lose their water of crystallization on heating are referred to as anhydrous crystals.

Here we have the

2 kg of solution * (0, 5 kgA)/(4kg of water =0.15 kgofA

1 kg of solution * (0, 5 kgA)/(4kg of water =0.075 kgofA

Thus, the quantity of anhydrous crystal

are popping out of the answer that is cooled from eighty deg * C to 30 deg * C are: 0.15 - kg of A - 0.075kg of A = 0.07 kg of crystal.

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C14 is another radioactive substance with a half-life of 5730 years. If a mammoth died with
2000 grams of C14 and then its fossilized bones were found to have just over 250 grams of
C14, how old is the fossil?
a) 5730 years
c) 17,190 years
d) impossible to tell
b) 11,460 years

Answers

B. 5730 years !!!!!!!!!!!!!!

What are the properties of an ionic compound?

Answers

Ionic compounds are defined as the compounds that are made up of ions that form charged particles when an atom (or group of atoms) gains or loses electrons. Some important properties of ionic compounds are discussed below.

Ionic compounds are basically formed between elements that are metals and elements that are nonmetals. For example, let's take the metal calcium (Ca) and the nonmetal chlorine (Cl) form the ionic compound calcium chloride (CaCl₂). In this ionic compound, two negative chloride ions (anions) are present for each positive calcium ion (cations).

Properties of ionic compounds are given as:

Ionic compounds generally have high melting as well as boiling points.Ionic compounds are brittle and hard in nature.Ionic compounds are good insulators.Ionic compounds conduct electricity when dissolved in water.

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FILL IN THE BLANK. [ne]3s23p3 is the electron configuration of a(n) ________ atom.

Answers

[Ne]3s2, 3p3 is the electron configuration of a Phosphorus atom.

What is the freezing point of a solution that contains 10.0 g of glucose in 100g of H2O?

Answers

The proposed solution, which has 10.0 grams of glucose in 100 gram of water, has a freezing point of 1.034 C.

The freezing point is what?

The degree of heat in which a liquid becomes solid. precisely the temperatures at which a material's solid and liquid states are balanced at atmospheric pressure.

How significant is freezing point?

If a substance is kept below its freezing point, it may either become more or less dangerous. The freezing point additionally offers an essential safety standard for evaluating the impacts of occupational exposure to cold conditions.

Briefing:

m = molality

i = van 'toff factor,

molality = n/w*t of solvent

n = w*t of Glucose/M* w t

= 10/180*1/0.1

=0.555 w* t

= 1.86*0.555*1

= 1.034

T (solvent) - d= 0-1.034

freezing point = -1.034C

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How do you calculate Mg from MgO?

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The ions Mg2+ and O2- that are connected by an ionic bond make up magnesium oxide MgO . However, since each molecule contains one mass atom of magnesium and one atom of oxygen.

We may infer from the valency that the net charge in each molecule is zero and balanced. As a result, magnesium oxide has the chemical formula MgO. Mass of a substance Equals number of moles (n) a substance's molar mass. Magnesium is a chemical element, but magnesium oxide is an ionic molecule, which is the major distinction between magnesium and magnesium oxide. One kind of magnesium that is frequently consumed as a dietary supplement is magnesium oxide.

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What are the dangers of pewter casting?

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Casting pewter involves tremendous temperatures, which makes it potentially highly dangerous.  Wearing safety gear like the kind pictured below is required, and taking all reasonable safety precautions is crucial.

Does pewter produce odors?

Gases or scents that are toxic or offensive may be released during burning or thermal breakdown. Unusual Explosion and Fire Risks: When molten, water reacts violently with it.

Why is pewter a good material for casting?

Despite significant variations, 96% tin and 4% copper make up the majority of modern pewter. It is a soft metal, allowing for simple shaping with both hand and machine tools. A low melting point makes it suitable for casting (230 degrees, roughly).

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What term describes the relationship between the mass and volume of a substance?

Answers

Answer:

Density

Explanation:

Density is a physical property that describes the relationship between mass and volume. Density is the amount of matter in a given space, or volume.

Answer:

The relationship between the mass and volume of a substance is known as its density. Density is defined as the mass of a substance per unit volume. In other words, it is a measure of how much matter is packed into a given space. The density of a substance is determined by dividing its mass by its volume. For example, if a substance has a mass of 10 grams and a volume of 2 cubic centimeters, its density would be 10 grams / 2 cubic centimeters = 5 grams/cubic centimeter. Density is an important physical property of substances, as it can be used to identify and classify different materials and understand their behavior.

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Explanation:

The name of the compound PbCl4 is:Lead tetrachlorideLead(II) chlorideLead(IV) chlorideLead chlorideThis question has more then one answer thats why i keep missing it

Answers

The Answer is Lead tetrachloride, PbCl4 is the molecular formula for lead tetrachloride, also known as lead(IV) chloride. It is a yellow, oily liquid that is stable below 0 degrees Celsius and decomposes at 50 degrees Celsius.  

It is tetrahedral in structure, with lead as the central atom. The covalent bond length of Pb-Cl is 247 pm, and the bond energy is 243 kJmol. Lead tetrachloride can be synthesised by reacting lead(II) chloride PbCl2 with hydrochloric acid HCl in the presence of chlorine gas (Cl2), yielding chloroplumbic acid H2PbCl6. By adding ammonium chloride, it is converted to the ammonium salt (NH4)2PbCl6 (NH4Cl). Finally, concentrated sulfuric acid H2SO4 is added to the solution to separate out the lead tetrachloride.

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Solving applied mass concentration problems Measurements have shown that the concentration of salt in seawater is 35.5 8L Calculate the volume in liters of seawater that must be evaporated to recover 450. g of salt Round your answer to 3 significant digits. X ?

Answers

Answer: 12.7L

Explanation:

To solve this problem, we need to use the formula for concentration, which is C = m/V, where C is the concentration, m is the mass of the solute, and V is the volume of the solution. In this case, the concentration of salt in seawater is given, as well as the mass of salt that we want to recover, so we can solve for the volume of seawater by rearranging the formula to solve for V. The formula for V would be V = m/C.

Plugging in the given values, we get: V = 450 g / 35.5 g/L = 12.7 L

Rounding to three significant digits, the volume of seawater that must be evaporated to recover 450. g of salt is 12.7 L.

the volume of seawater that needs to be evaporated to recover 450 g of salt is approximately 12.7 L.

We need to use the given information and the concept of mass concentration to find the volume of seawater that needs to be evaporated.

The mass concentration of salt in seawater is given as 35.5 g/L. This means that in every liter of seawater, there are 35.5 grams of salt.

We want to recover 450 g of salt, so we can set up a proportion using the mass concentration:

35.5 g salt / 1 L seawater = 450 g salt / X L seawater

Solving for X (the volume of seawater), we can rearrange the equation:

X L seawater = (450 g salt) / (35.5 g salt / 1 L seawater)

X L seawater = 450 g salt × (1 L seawater / 35.5 g salt)

X L seawater = 12.676 L seawater

Rounding the answer to 3 significant digits, the volume of seawater that needs to be evaporated to recover 450 g of salt is approximately 12.7 L.

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the formation of a dipeptide from two amino acids involves

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Look below. When two amino acids are joined together, or when two amino acids condense, a dipeptide is created. Condensation occurs between the amine group of one amino acid and the acid group of another.

What is the photosynthesis chemical formula?

The carboxyl group on one amino acid and the amino group on the other combine to create a link, which results in the creation of a water molecule. What do you name a dipeptide that has been split into two amino acids?

The dipeptide is broken down into two ionised amino acids in the hydrolysis reaction depicted here with the addition of a water molecule. One amino acid receives a negative charge and an oxygen atom, whereas the second amino acid receives two hydrogen atoms.

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How many atoms are there in a 1.00 mole sample of water?

Answers

Each molecule of water contains 2 H and 1 O atom = 3 atoms, so there are approximately [tex]1.8 * 10^{24}[/tex] atoms in a mole of water.

In the International System of Units, the mole (symbol mol) is the unit of substance amount (SI). The amount of substance is a measurement of how many elementary entities of a given substance are present in an object or sample.

An elementary entity can be an atom, a molecule, an ion, an ion pair, or a subatomic particle such as an electron, depending on the substance. For example, despite having different volumes and masses, 10 moles of water (a chemical compound) and 10 moles of mercury (a chemical element) contain equal amounts of substance, and the mercury contains exactly one atom for each molecule of water.

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The normal boiling point of methanol (CH3OH) is 64.6°C. Given that the vapor pressure of methanol is 75.0 torr at 15.2°C, calculate the molar enthalpy of vaporization of methanol.

Answers

The molar enthalpy of vaporization is 374.9 J/mol.

What is the  molar heat of vaporization?

We know that at the boiling point of a substances, the vapor pressure of the substance would become equal to the atmospheric pressure of the substance.

We know that;

ln(P2/P1) = -ΔHvap/R(1/T2 - 1/T1)

P2 = final pressure

P1 = initial pressure

ΔHvap = molar enthalpy of vaporization

T2 = Final temperature

T1 = initial temperature

ln(75/760) = -ΔHvap/8.314(1/15.2 - 1/64.6)

-2.3 =  -ΔHvap/8.314(0.066 - 0.015)

-2.3 =  -0.051ΔHvap/8.314

ΔHvap = -2.3  * 8.314/ -0.051

ΔHvap = 374.9 J/mol

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What will be depression in freezing point when 6g of urea is dissolved in 1000 g of water?

Answers

The freezing point depression of the solution will be ΔTf = 1.86°C/m × 0.1 mol/kg = 0.186°C.

What is dissolved?

Dissolved is a term used when a solid is broken down into small particles and dispersed in a liquid. When a solid is dissolved in a liquid, the solid particles no longer exist as separate entities. Instead, the solid particles are distributed evenly throughout the liquid. Dissolution is a common process in chemistry and is used in many everyday applications, such as drinking soda or adding sugar to coffee.

The freezing point depression of a solution containing 6 g of urea dissolved in 1000 g of water can be calculated using the formula ΔTf = iKf m, where ΔTf is the freezing point depression, Kf is the cryoscopic constant for water (1.86°C/m), and m is the molality of the solution. The molality of the solution can be calculated as m = (6 g/60 g/mol)/(1000 g/1000 mL) = 0.1 mol/kg. Therefore, the freezing point depression of the solution will be ΔTf = 1.86°C/m × 0.1 mol/kg = 0.186°C.

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Is d orbital present in carbon?

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Since carbon only has 6 atoms, their is no d orbital present since it does not even have a full second shell.

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What is atomic models?

Answers

Answer:

Atomic theory

Explanation:

The atomic model is a representation of the atom.

hoped this helped:)

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Identify the products of the following acid-base reaction: -4 4-3 H-50 Li and and H = Li and _O, and I © Li and

Answers

The product of the -4 4-3 H-50 Li And And H = Li And _O, And I © Li is the diagram in option B.

What are acid-base reactions?

One or more hydrogen ions, H+, are exchanged between species that may be neutral (molecules, such as water, H2O), or electrically charged (ions, such as ammonium, NH4+, hydroxide, OH, or carbonate, CO32), in an acid-base process.

The hydroxide of acid and metal for acid and metal neutralization. Oxide of metal and acid. A neutralizing reaction occurs when an acid and a base interact. This reaction yields a salt and water as byproducts.

Therefore, the correct option is B.

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The question is incomplete. Your most probably complete question is given below: the image of the options is added.

What happens when pyruvate is reduced?

Answers

Reduction of pyruvate through a reduction reaction results in the formation of lactate.

When sufficient quantity of oxygen is not available for the cell, then pyruvate undergoes a reduction reaction that results in the production of Lactate. This process is called as anaerobic metabolism.

Conversion of pyruvate into lactate during the process of redox reaction oxidizes NADH to NAD+ . This happens because every glucose molecule that will be converted into pyruvate, two NADH molecules are produced and there is need for the NADH molecules to be oxidized back to NAD+ so that to ensure the continuity and maintenance of the glycolysis.

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What is the empirical formula for a compound that contains 17. 34% hydrogen and 82. 66% carbon?.

Answers

Answer: [tex]C_2H_5[/tex]

The vapor pressure of nitrogen at several different temperatures is shown below. Use the data to determine the heat of vaporization of nitrogen. Determine the normal boiling point of nitrogen.

Answers

The heat of vaporization of nitrogen is 6,028.25 J/mol. The normal boiling point of nitrogen is 77.58 K.

The table for the question is in the attachment. Using the Clausius-Clapeyron Equation to estimate the heat of vaporization.

ln (P₁/P₂) = ΔH/R × (1/T₂ - 1/T₁)

where

P = the pressure
P₁ = 130.5 torr
P₂ = 289.5 torrΔH = the heat of vaporization R = constant gas = 8.314 J/mol KT = the temperature (K)
T₁ = 65 K
T₂ = 70 K

ln (130,5/289,5) = ΔH/R × (1/70 - 1/65)

ln 0.45078 × 8.314 = ΔH × ((65 - 70)/4550)

- 0.79678 × 8.314 = ΔH × (- 5/4550)

- 6.6244 = ΔH × - 1/910

ΔH = - 6.6244 × - 910

ΔH = 6,028.2 J/mol

The normal boiling point reaches when pressure is 1 atm or 760 torr.

P₁ = 760 torr
P₂ = 1,718 torrT₁ = T K
T₂ = 85 K

ln (760/1,718) = (6,028.2/8.314) × (1/85 - 1/T)

ln 0.4424 = 725.0662 × ((T - 85)/85T)

-0.81554 ÷ 725.0662 = ((T - 85)/85T)

- 0.001125 × 85T = T - 85

- 0.0956T = T - 85

- 0.0956T - T = 85

- 1.0956T = - 85

T = - 85 ÷ - 1.0956

T = 77.58 K

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2 Sanitizing Methods

Answers

Answer: Washing your hands with soap, and hand sanitizer.

Explanation:

How many grams of table sugar can be dissolved in 100 grams of water at 20 degree C?

Answers

465 grams of sugar If so, 300 grams of water ought to be able to tell you 3*155 grams of sugar. In 300 grams of water, there are 465 grams of sugar (3 x 155).

What goals does it serve to dissolve?

Traditionally, the dissolve editing method is used to segue between images that link two scenes together. Instead of a direct cut from one shot to the next, a dissolve gradually transitions from one image to the next.

What does water dissolve in?

Salt, sugar, and coffee are among the things that can dissolve in water. These objects disintegrate. Usually, they dissolve more easily and fast in warm or hot water. In hot water, but not at room temperature, sand and pepper are soluble.

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Given the volumes of a solvent and solute and their density, what temperature do they freeze at? It would really help if someone helped explain how to do this, I’m kind of stuck thanks

Answers

Answer:

Explanation:

To determine the freezing temperature of a solvent and solute mixture, you will need to use the freezing point depression equation. This equation allows you to calculate the change in freezing point of a solvent caused by the addition of a solute.

The freezing point depression equation is:

ΔTf = Kf x molality

where:

ΔTf is the change in freezing point of the solvent in degrees Celsius

Kf is the freezing point depression constant for the solvent, which is a specific value for each solvent and is usually provided in a table or chart

molality is the concentration of the solute in the solvent, expressed in mol/kg

To use this equation, you will need to know the volume and density of the solvent and solute, as well as the molecular weight of the solute. You can then use these values to calculate the molality of the solute in the solvent.

For example, let's say you have a mixture of 100 mL of water (solvent) and 10 g of salt (solute). The density of water is 1 g/mL and the molecular weight of salt is 58.44 g/mol.

To calculate the molality of the salt in the water, you can use the following steps:

Calculate the mass of the solvent: 100 mL x 1 g/mL = 100 g

Calculate the molality of the solute: 10 g / 58.44 g/mol = 0.171 mol

Calculate the molality of the solvent: 0.171 mol / 100 g = 0.00171 mol/g

Once you have calculated the molality of the solute in the solvent, you can use the freezing point depression equation to calculate the change in freezing point of the solvent caused by the addition of the solute.

For water, the freezing point depression constant (Kf) is 1.86 °C/m. Therefore, the change in freezing point caused by the addition of the salt to the water would be:

ΔTf = 1.86 °C/m x 0.00171 m = 0.00316 °C

This means that the freezing temperature of the solvent and solute mixture would be 0.00316 °C lower than the freezing temperature of pure water, which is 0 °C. Therefore, the freezing temperature of the mixture would be -0.00316 °C.

I hope this helps! Let me know if you have any questions or need further clarification.

What’s the first change that occurs in your cookie dough after you put the pan in the oven?answer choicesWater boilsbutter meltsProtein unfoldsCaramelization occurs

Answers

Answer: butter melts

Explanation:

When 100g of sugar is dissolved in 200 mL of water there is no increase in volume what characteristic of matter is illustrated by this observation?

Answers

This characteristic of matter is important in many areas of science and technology, including medicine, chemistry and engineering.

What is illustration?

Illustration is a form of visual art that uses lines, shapes, and color to create a representation of an idea or message. It is often used by artists, designers, and illustrators to communicate ideas and stories, to create visual representations of a concept, to capture a moment in time, or to provide decoration.
This observation illustrates the characteristic of matter known as volume invariance, which states that when a substance is dissolved in a solvent, there is no change in the total volume of the mixture. This is due to the fact that the particles of the dissolved substance are distributed throughout the solvent, but remain the same size and shape as before. Therefore, the overall volume remains constant. For example, when 100g of sugar is dissolved in 200 mL of water, the total volume of the mixture is still 200 mL, as the sugar molecules are spread throughout the water. This characteristic of matter is important in many areas of science and technology, including medicine, chemistry and engineering.
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