Can a 1.5 M solution be made from a 0.98 M solution? Explain your answer.

Answers

Answer 1

No, a 1.5 M solution cannot be made from a 0.98 M solution.

Explain molarity

Probably the most frequently used unit of measurement for solution concentration is molarity, abbreviated as (M). The ratio of the number of liters of solution to the number of moles of solvent is known as molarity.

Knowing the molarity (M) of the solution of a specific volume will allow you to calculate the number of moles (n) of a chemical dissolved in a solution (V). The quantity of solvent moles per kilogram is known as molality, which is a property of solutions. Since molality solely depends on the masses of the solute and solvent, which are unaffected by changes in temperature and pressure, it is a particularly advantageous way to estimate concentration.

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Related Questions

the value of the equilibrium constant k is a measure of how far the reaction proceeds toward the products at a given temperature. a small value of k indicates that the reaction favors the , whereas a large value of k indicates that the will be present in a higher proportion. multiple choice question.

Answers

The fill in the blanks is as follows :

a) Reactants

b) Products

The value of the equilibrium constant k is the measure of how far will the reaction proceeds toward produce the products at a temperature.

a) A small value of k indicates that the reaction will favors the reactants.

b) Whereas a large value of k indicates that the "product" will be present in the higher proportion.

The equilibrium reaction is the state of the reaction where the rate of the forward reaction is equals to the rate of the backward reaction. The rate of the forward reaction is equals to the rate of the backward reaction.

This question is incomplete , the complete question is :

The value of the equilibrium constant k is a measure of how far the reaction proceeds toward the products at a given temperature. a small value of k indicates that the reaction favors the , whereas a large value of k indicates that the will be present in a higher proportion. multiple choice question.

a) Reactant

b) Product

c) Both reactant and product

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Charlotte is driving at 69.8 mi/h and receives a text message. She looks down at her phone and takes her eyes off the road for 3.27 s. How far has Charlotte traveled in feet during this time?

Answers

Charlotte is driving at 69.8 mi/h and receives a text message. She looks down at her phone and takes her eyes off the road for 3.27 s.  102.02 m  far has Charlotte traveled in feet during this time.

What is speed ?

The term speed is defined as the rate of change of position of an object in any direction.

Given:

The speed at which charlotte is driving = 69.8 mi/h

The time which she took of her eyes from the road = 3.27 s

During the entire journey, the time at which she took her eyes off the road, she is probably not driving.

We will have to convert the 69.8 mi/h to m/s

Since 1 mi/hr = 0.44704 m/s

69.8 mi/h will be:

= (69.8 mi/hr × 0.44704 m/s) ÷ 1 mi/hr

= 31.20 m/s

Now, using the relation:

Speed = distance/ time

31.20 m/s = (distance)  / 3.27s

By Cross multiplying

Distance = 31.20 m/s  × 3.27s

Distance = 102.02 m

Thus, Charlotte traveled by feet for 102.02 m during this time.

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Why is the mass of Lithium listed on the periodic table 6.941 and not 6 or 7?

Answers

Maybe around 78, to be 3 or around that. 0.09 is always that one

How many grams of hydrogen gas is needed to produce 84.2 grams of ammonia, given the following balances equation chemical reaction

N ₂ + 3H ₂ —-> 2NH ₃

Answers

Taking into account the reaction stoichiometry, a mass of 14.86 grams of H₂ is needed to produce 84.2 grams of ammonia.

Reaction stoichiometry

The balanced reaction is:

N₂ + 3 H₂ → 2 NH₃

By reaction stoichiometry, the following amounts of moles of each compound participate in the reaction:

N₂: 1 moleH₂: 3 molesNH₃: 2 moles

The molar mass of the compounds is:

N₂: 28 g/moleH₂: 2 g/moleNH₃: 17 g/mole

By reaction stoichiometry, the following mass quantities of each compound participate in the reaction:

N₂: 1 mole ×28 g/mole= 28 gramsH₂: 3 moles ×2 g/mole= 6 gramsNH₃: 2 moles ×17 g/mole= 34 grams

Mass of O₂ required

The following rule of three can be applied: If by reaction stoichiometry 34 grams of NH₃ are produced by 6 grams of H₂, 84.2 grams of NH₃ are produced by how much mass of H₂?

mass of H₂= (84.2 grams of NH₃× 6 grams of H₂)÷ 34 grams of NH₃

mass of H₂= 14.86 grams

Finally, 14.86 grams of H₂ are needed.

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What is the answer/solution to this problem SiI4 + Mg

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SiI4 + 2Mg → Si + 2MgI2  is the the answer/solution to this problem SiI4 + Mg which expresses its balanced equation.

What is Silicon?

Silicon is described as a chemical element with the symbol Si and atomic number 14. It is a hard, brittle crystalline solid with a blue-grey metallic luster, and is a tetravalent metalloid and semiconductor.

There are four rules to balance a chemical equation and it is shown below:

Check that all the formulae in the equation are correct.Deal with only one element at a time.Balancing is adding BIG numbers. You cannot change any of the small numbers in a chemical formula. Check each element again and repeat step 3 again if needed.

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consider a sample containing 1 mol of an ideal gas in a flexible, closed container. what of the changes will cause the volume to decrease?

Answers

A sample containing 1 mol of an ideal gas in a flexible, closed container. The changes will cause the volume to decrease is :

1) To decrease the temperature and the increase in pressure.

2) Temp decreases and pressure remains constant.

The ideal gas equation is as follows :

P V = n R T

Number of moles = 1 mol

n = 1

V = R T / P

The temperature is directly proportional to the volume and the pressure is inversely proportional to the volume.

So, the conditions that will decreases the volume are :

1) To decrease the temperature and the increase in pressure.

2) Temp decreases and pressure remains constant.

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TRUE OR FALSE the number of transporters directly corresponds to the rate at which solutes may diffuse, the more transporters present, the faster the rate of diffusion.

Answers

False. The number of transporters present in a cell membrane does not directly correspond to the rate at which solutes may diffuse.

Transporters are proteins that span the cell membrane and actively transport specific molecules across the membrane, against their concentration gradient, using energy from ATP. They do not increase the rate of diffusion of solutes which is passive movement of solutes from high concentration to low concentration areas.

Diffusion rate is determined by several factors, including the concentration gradient of the solute, the permeability of the membrane to the solute, and the temperature. The presence of transporters may affect the overall rate of solute transport across the membrane, but this is not the same as the rate of diffusion.

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Define displacement reaction with an activity

Answers

Answer :a chemical reaction in which a more reactive element displaces a less reactive element from its compound

Explanation:

Displacement reaction is a chemical reaction in which a more reactive element displaces a less reactive element from its compound. Both metals and non-metals take part in displacement reactions. Example : Reaction of iron nails with copper sulphate solution.

Answer:

Chemical reactions known as displacement reactions occur when a more reactive element removes a less reactive element from a molecule.

Explain why the name shown below is incorrect for the compound MgCl,?
Name: Magnesium Dichloride

Answers

MgCl is not Magnesium Dichloride because of the word “Dichloride.” The prefix “Di” represents “2.” And “Tri” represents “3,” and so on. Since Cl (chloride) is only 1 in this formula, the name is “Magnesium Chloride.”

If the formula was MgCl2, then yes, it would be Magnesium Dichloride.

If an asteroid created enough dust to block out the Sun, what would be the effect on green plants, as well as other life on Earth? Why?

Answers

If an asteroid created enough dust to block out the Sun, it would likely have a severe and devastating effect on life on Earth.

Green plants, which rely on sunlight for photosynthesis, would not be able to produce the energy they need to survive, leading to mass die-offs of vegetation. This would in turn have a cascading effect on the entire ecosystem, as animals that depend on plants for food would also struggle to survive. The lack of sunlight would also cause a decrease in temperature, which can have a negative impact on many organisms.

The lack of sunlight would also have a severe impact on the climate and weather patterns, leading to a "nuclear winter" scenario, where the temperature drops significantly, leading to the extinction of many species, including the human species, who rely on the food chain.

The free-energy change, ΔG, for the chemical reaction A → B is 0 kcal/mole at 37°C when the concentrations of A and B are 10 M and 0.1 M, respectively. What is the free-energy change for the reaction when the concentrations of A and B are 0.01 M and 1 M, respectively?

Answers

The free energy change for the same reaction when the concentrations of A and B are 0.01 M and 1 M, respectively, is -2.501 kJ/mol.

The free energy change, ΔG, for the chemical reaction A → B is determined by the equation ΔG = -RT ln(K), where R is the gas constant, T is the temperature, and K is the equilibrium constant.

Because the temperature of the reaction is held constant, the ΔG will remain the same no matter what the concentrations of A and B are.

To calculate the free energy change for the reaction when the concentrations of A and B are 0.01 M and 1 M, respectively, we need to calculate the new equilibrium constant, K.

K is equal to the product of the concentrations divided by the reactants. For this reaction, K = (1 M)(0.01 M)/(10 M) = 0.001.

Plugging this value of K into the equation for ΔG,we get

ΔG = -RT ln(K) = -(8.314 J/K mol)(310 K) ln(0.001) = -2.501 kJ/mol.

This is the free energy change for the reaction when the concentrations of A and B are 0.01 M and 1 M, respectively.

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heating use copper tubing Hot water runs through and heats the copper tubing , which in heats aluminum finsis actually the aluminum fins that heat the air rising through the How much energy would it take to heat a section of the copper tubing that weighs about 555.0 gfrom 1.89 deg * C to 27.75 deg * C Copper has a specific heat of 0.3850(J/g)*^ C. Express your answer to four significant figures .m

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A total of 1397 j of heat are required, a substance's specific heat is the amount of energy required to increase its temperature by one degree Celsius (°C) for one gram of that substance.

Describe precise heat in your own words?

A substance's specific heat is the amount of energy required to increase its temperature by one degree Celsius (°C) for one gram of that substance.

In comparison to other substances, water has a high specific heat, which means that raising its temperature requires more energy.

Explanation:

Data provided

Copper tubing weighs 595.0 g in total.

15.18 °C when temperature is initial

Finished temperature was 21.28 °C.

Copper's particular heat is equal to 0.3850 j/g°C.

Heat needed in terms of =?

Solution:

Thermodynamic shift

ΔT = T2 - T1

ΔT = 21.28 - 15.18 = 6.1 °C

Formula:

Q = m. c. ΔT

Q is the heat flux

m Equals mass

c is the specific heat

T is the temperature change.

The values will now be entered into the formula.

Q = m. c. ΔT

Q = 595 g. 0.3850 j/g°C . 6.1 °C

Q = 1397.36 j

A total of 1397 j of heat are required.              

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g dan koshland suggested the induced-fit mechanism for enzymes. which of the following cartoons illustrates the induced-fit hypothesis of enzyme-substrate interaction?

Answers

The induced-fit hypothesis of enzyme-substrate interaction illustrates that there is a conformational change in the active site of the enzyme when a substrate binds to it.

According to the induced-fit model, a substrate attaches to an active site, and the two of them slightly alter their shapes to form the perfect fit for catalysis. By bringing substrates together in the best possible orientation, enzymes encourage chemical reactions by establishing the perfect chemistry for the reaction to take place. According to the induced fit hypothesis, an enzyme's active site is not architecturally ideal for substrate binding while it is in the unbound state, or when it is not binding to a substrate. Refer to the image attached for the cartoon illustration.

This induced fit theory extends the lock-and-key idea proposed 100 years ago. In addition to explaining regulatory and cooperative effects, the new theory put out by D. E. Koshland, Jr. in 1958 also provides some new specificity notions. This theory states that an enzyme's unbound active region is not structurally suitable for substrate binding (i.e., not bound to the substrate).

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nacl solutions of equal volume and concentration were kept in flasks and held at different temperatures. the two solutions were combined in a larger flask. based on this information, which of the following predictions is correct?

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When equal volume and concentration of NaCl solutions, held at different temperatures, are combined in a larger flask, the final solution will have the following characteristics:

The final concentration of NaCl will be the same as the initial concentrations of the two solutions that were combined. This is because the volume and concentration of the solutions were equal, and therefore the number of moles of NaCl in each solution was also equal. When equal moles of a substance are combined, the concentration of that substance in the final solution will be the same as the initial concentrations.

The final temperature of the solution will be a function of the initial temperatures of the two solutions and the heat capacities of the solutions. The heat capacity of a solution is the amount of heat required to raise the temperature of a given amount of the solution by one degree. If the heat capacities of the solutions are equal, then the final temperature will be the average of the initial temperatures. If the heat capacities are not equal, then the final temperature will be closer to the solution with the larger heat capacity.

If the initial temperatures of the two solutions are very different, the mixing process may cause heat loss or gain to the surroundings, depending on whether the initial temperature of the solution is higher or lower than the surrounding temperature.

In summary, the combination of equal volume and concentration of NaCl solutions, held at different temperatures, in a larger flask will result in a solution with the same NaCl concentration but a temperature that is determined by the initial temperature and heat capacities of the solutions.

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The complete question is:

What will happen when equal volume and concentration of NaCl solutions, held at different temperatures, are combined in a larger flask?

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A bag of potato chips is sealed in a factory near seal level. The atmospheric pressure at the factory is 761.3 mm Hg. The pressure inside the bag is the same. What is the pressure inside the bag of potato chip in kPa? kPa (ROUND TO THE NEAREST WHOLE NUMBER WHEN TYPING YOUR ANSWER.)

50 points

Answers

To convert the pressure inside the bag from mm Hg to kPa, we can use the conversion factor:

1 kPa = 7.5 mm Hg

So, we can divide the pressure in mm Hg by 7.5:

761.3 mm Hg / 7.5 = 101.5 kPa

So, the pressure inside the bag of potato chips is approximately 101.5 kPa.

It is important to note that the conversion factor of 1 kPa = 7.5 mm Hg, is an approximation and it can vary depending on the temperature and altitude.

Therefore, the pressure inside the bag of potato chip in kPa is 101 kPa (rounded to the nearest whole number)

Drag and drop the following building materials from lowest to highest based on their
porosity.
Lowest
Concrete
Oak
2nd Lowest
Clay
2nd Highest
Slate
Highest

Answers

Due to their porous and permeable nature, gravel and sand are excellent aquifer materials. The most permeable material is gravel.

What is porosity of building materials?The porosity of a substance is determined by how much of its total volume is made up of such spaces as a proportion of its entire volume made up of solids and pores. Common building materials like plaster, concrete, and brick all have varying degrees of porosity, falling between 50% and 65% for plaster, 40% for concrete, and 55% for brick.Glass, polymers, metals, and varnished wood are a few materials that don't have pores.Microporous, mesoporous, and macroporous materials are the three sizes of porous materials, respectively.Due to their frequent formation at depth and interlocking crystal structure, igneous or metamorphic rocks have the lowest primary porosity.

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hemiacetals are the product of a reaction between oh oh an aldehyde and one equivalent of alcohol. h r3 similarly, hemiketals form by a reaction between a r or1 or1 r ketone and one equivalent of alcohol. the reaction hemiacetal hemiketal can be either inter- or intramolecular. the general structures are:

Answers

When an aldehyde or ketone combines with an alcohol in the presence of a potent acid catalyst, hemiacetals are the intermediate molecules that result.

What is hemiacetal?

Alcohol and ether are joined to the same carbon atom as hemiacetals. Hydrogen is positioned at the fourth bonding position. An aldehyde is the precursor of a hemiacetal.

A hemiacetal's basic structure is R1-C(OH)-R2-whereas a hemiketal's basic structure is R1-C(OR2)-R3-. Intermolecular reactions can occur depending on the starting components and environmental factors. The removal of the alcohol readily transforms hemiacetals and hemiketals into the equivalent aldehyde or ketone, indicating that in general, these molecules are relatively unstable.

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I need help on 9, 10, 11, and 12

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The limiting reactant and excess reactant can be determined by a concept known as the Law of Conservation of Mass.

The limiting reactant and excess reactantLimiting Reactant: H2O, Excess Reactant: O2Limiting Reactant: Mg(OH)2, Excess Reactant: HCILimiting Reactant: Fe2O3, Excess Reactant: ZnLimiting Reactant: CuSO4, Excess Reactant: AgNO3This law states that matter can neither be created nor destroyed. Therefore, the amount of each reactant must be equal to the amount of each product. By looking at the chemical equation and the amount of each reactant, the limiting reactant is the one that is used up first and therefore determines the amount of products that can be made. The excess reactant is the one that is left over once the limiting reactant has been exhausted. For example, in problem 9, the equation is 2H2O + O2 →→ 2H2O2 and the amounts are 5 mol H2O and 15 mol O2. Since oxygen is used up first, it is the limiting reactant and hydrogen is the excess reactant. In problem 10, the equation is Mg(OH)2 + 2HCI→→ MgCl2 + 2H2O and the amounts are 6 mol Mg(OH)2 and 20 mol HCI.Since magnesium is used up first, it is the limiting reactant and hydrochloric acid is the excess reactant. In problem 11, the equation is 3Zn + Fe2O3→ 3ZnO + 2Fe and the amounts are 4 mol Zn and 2 mol Fe2O3. Since zinc is used up first, it is the limiting reactant and iron oxide is the excess reactant. In problem 12, the equation is CuSO4 + 2AgNO3 → Cu(NO3)2 + Ag₂SO4 and the amounts are 13 mol CuSO4 and 22 mol AgNO3. Since copper sulfate is used up first, it is the limiting reactant and silver nitrate is the excess reactant.

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A gas sample consisting of 2.0 moles of hydrogen and 1.0 mole of oxygen is collected over water at 29ºC and 75 kPa. What is the partial pressure of the hydrogen in this sample.

Please provide an explanation.

Answers

A gas sample consisting of 2.0 moles of hydrogen and 1.0 mole of oxygen is collected over water at 29ºC and 75 kPa. 48 kPa is the partial pressure of the hydrogen in this sample. Therefore, option B is correct.

What do you mean by partial pressure ?

The term partial pressure is defined as the pressure that a gas, in a mixture of gases, would exert if it alone occupied the whole volume occupied by the mixture.

Total number of mole = 2 + 1

= 3 moles

Temperature = 29ºC

Total pressure = 75 kPa

partial pressure = mole fraction x total pressure

P V = n R T

= 48 kPa

The partial pressure of the hydrogen is 48 kPa

Thus, option B is correct.

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Your question is incomplete, most probably your question was

A gas sample consisting of 2.0 moles of hydrogen and 1.0 mole of oxygen is collected over water at 29ºC and 75 kPa. What is the partial pressure of the hydrogen in the sample?

A) 24 kPa

B) 48 kPa

C) 72 kPa

D) 75 kPa

Enter your answer in the provided box. Hydrogen sulfide decomposes according to the following reaction, for which Kc 9.30x10 S at 700 C: 2 H2 S(g) 2 H2(g)+S2(g) If 0.49 mol of H2 (g) at 700 C? S is placed in a 3.0-L. container, what is the equillbrium concentration of H

Answers

When the Hydrogen sulfide decomposes according , the equilibrium concentration of H₂ is 0.0019 mol/L.

Given that :

Numbers of moles of H₂S = 0.49 moles

The Volume = 3.0 L

The Equilibrium constant = 9.30 × 10⁻⁸

The reaction is given as :

2H₂S    ⇄   2H₂(g)  +  S₂(g)

Initial concentration = 0.49 / 3

                                  = 0.16 mol

                     2H₂S    ⇄             2H₂(g)  +         S₂(g)

Initial         0.9166                           0                           0

Change       -2 x                               +2 x                      + x

Equilibrium   (0.16 - 2x)                   2x                         x

kc  = [H₂]²[S₂]² / [H₂S]²

9.30 × 10⁻⁸ = (2x)²(x²) / ( 0.16 - 2x)²

x = 9.5 × 10⁻⁴

The equilibrium concentration for H₂ = 2x

                                                              = 2 ×  9.5 × 10⁻⁴

                                                              = 0.0019 mol/L

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in a 52 weeks high and low, if the numbers show difference between each other, there is less risk of loss - but there is also less opportunity for gain, either.

Answers

Smaller numbers mean less risk of losing, but  less chance of gain, Volatility.

What is gain?In electronics, gain is a measure of the ability of a two-terminal circuit (often an amplifier) ​​to increase the power or amplitude of a signal from its input. Adjusting the gain control sets the amount of distortion in the sound no matter how loud the final volume is set. This means  that the gain setting determines how clean or dirty the sound is, regardless of the master volume setting.Gain is simply the amplification factor, i.e. the parts of the output power to input power. Wins are often expressed in percentages, especially for small wins. Example 3% of ratio signifies to a power gain of 1.03.

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The colors in this image show topography. The warm colors-red, pink, and yellow- represent landforms above sea level. The greens and blues indicate changes in topography below sea level. Deep in the Atlantic Ocean is an enormous mountain range, longer than any on land, shown here as a linear feature green. What is this underwater mountain range, and why is it almost exactly in the middle of the ocean? With your partner, discuss why you think there is a mountain range deep under the ocean's surface. What do you make of this feature? Record your thoughts below.

Answers

The underwater mountain range that is shown in the image is the Mid-Atlantic Ridge. This range runs down the center of the Atlantic Ocean, and is a part of the global mid-ocean ridge system.

The Mid-Atlantic Ridge is a divergent plate boundary, which means that it is an area where two tectonic plates are moving away from each other. As the plates move apart, magma from the Earth's mantle rises to the surface and cools, forming new crust. This process of seafloor spreading is what creates the underwater mountain range.

What is the Mid-Atlantic Ridge about?

One possible explanation for the location of the Mid-Atlantic Ridge in the middle of the ocean is that it is a response to the convective motion of the Earth's mantle. The mantle is made up of hot, dense rock that is constantly moving around.

Another possible explanation is that the Mid-Atlantic Ridge is the result of past tectonic activity. The Atlantic Ocean was formed by the separation of the supercontinent Pangea into two parts, Laurasia and Gondwana. The ridge is a remnant of the rift that separated these two supercontinents.

In all, the Mid-Atlantic Ridge is a fascinating feature that provides important information about the Earth's geology and tectonic activity. Its location in the middle of the ocean is a reminder of the dynamic nature of our planet, and the ongoing process of seafloor spreading that is constantly shaping the Earth's surface.

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the fictional exploits of excited the imagination of an emerging generation of forensic scientists and criminal investigators.

Answers

Forensic science is described as the application of science to law. 2. The fictitious adventures of Sherlock Holmes piqued the interest of a younger group of forensic scientists as well as criminal detectives.

Forensic science was an important component of the criminal justice system. Forensic scientists study and analyze evidence collected from crime scenes as well as other locations to produce objective results that can aid in the investigation as well as prosecution of criminal criminals or clear an innocent person of such suspicion.

DNA testing as well as analysis is now regarded as the most reliable of any and all forensic tools. Unlike lot of people of the others assembled to address the requirements of law enforcement, it was subjected to rigorous scientific experimentation as well as validation before being used in forensic science.

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Consider the composition. information from the SDS. What is a possible name of this compound?

A. Glycine
B. Glycogen
C. Glycerol​

Answers

The compound that we have in the SDS is glycerol.

What is the SDS?

We know that the SDS is the acronym that stands for the safety data sheet. This is the kind of sheet that tells us about the properties of a substance and any other safety information that we might need.

From the information, we can see that compound is not flammable and that it does not vaporize quite easily thus it is quite safe and this would correspond to glycerol. This corresponds to the safety data sheet that we have.

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fill in the blank. complete the energy maximum electron capacity for each energy level. energy level 1 maximum electron capacity is choose___ . energy level 2 maximum electron capacity is choose___. energy level 3 maximum electron capacity is choose___. energy level 4 maximum electron capacity is choose___.

Answers

The maximum electron capacity at energy level 1 is 2. The maximum electron capacity at energy level 2 is 8. Maximum electron capacity at energy level 3 is 18. The maximum number of electrons at energy level 4 is 32.

What is electron?

Having a negative electric charge, an electron is a subatomic particle. Together with protons and neutrons, it is one of the basic building blocks of atoms.

The chemical characteristics of elements are determined by electrons, which are found in the valence shell, the outermost shell of an atom. In addition, they have a role in the production of magnetism, electrical conduction, and chemical processes. Additionally, as in an electron beam, electrons can also exist freely and independently.

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A block of aluminum occupies a volume of 10mL and has a mass of 40 g.
What is its density? (D = M/V)

Answers

Density of a block of aluminum occupies a volume of 10mL and has a mass of 40 g is 4g/ml.

Define density.

A material's density is determined by how closely it is packed. As the mass per unit volume, it has that definition. The relationship between density and volume and mass is inverse.

The density rises if the volume remains constant while the amount of matter increases. Density drops when volume grows without accompanying increases in mass. When a substance is heated, the molecules move faster and slightly farther apart, taking up more space and causing the density to drop. When something is cooled, the molecules slow down and get a little closer together, taking up less space and becoming denser.

D = M/V

Mass, M is 40 g.

Volume, V of 10mL

Density, D will be 40/10 i.e. 4g/ml.

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Which of the following is not one of the four most common elements found in living organisms? (a) Hydrogen
(b) Carbon
(c) Sulphur
(d) Nitrogen

Answers

A element that does not belong to the four elements that are most frequently found in living things is sulfur.

What do you mean by element?

A fundamental object that is difficult to divide into smaller bits is known as an element. An element is a chemical that cannot be broken by non-nuclear reactions in chemistry or physics. A discrete component of a bigger structure or collection is referred to as an element in computers and mathematics.

What constitutes an element?

Each element is made up of atoms which are composed of neutrons, electrons, and neutrons. Two distinct atom types can be combined to form a compound. Although a molecule cannot be distinguished from the larger material, it shares many characteristics with it.

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What amount of heat (in kJ) is required to convert 13.7 g of an unknown liquid (MM = 83.21 g/mol) at 19.2 °C to a gas at 93.5 °C? (specific heat capacity of liquid = 1.58 J/g・ °C; specific heat capacity of gas = 0.932 J/g・ °C; ∆Hvap = 22.5 kJ/mol; normal boiling point, Tb = 57.3 °C)

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The first amount of heat required to convert 13.7 into 19.9

you analyze a sample of carbon and determine that 6% of the carbon atoms in your sample have a mass number (atomic mass) greater than 12, (12 is the normal atomic mass of carbon). based on these results, which of the following can you reasonably conclude?

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If you analyze a carbon sample and discover that 6% of the carbon atoms have an atomic number greater than 12, you may safely assume that 6% of the sample is made up of carbon isotopes.

Carbon-12 (12 C), which has six neutrons in addition to its six protons, is by far the most common isotope of carbon. The following-heaviest isotope of carbon, carbon-13 (13 C), has seven neutrons. They are both referred to as stable isotopes since neither 12 C nor 13 C experience radioactive decay over time. The nuclear charge number (sign Z) of an atomic nucleus is the chemical element's atomic number. The proton number in regular nuclei is equivalent to this (np).

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important of science

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Answer:Science is important because science

is the the way to know about other things that we didn't know about our planet and many other things.

Explanation:thank you hope it

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