What minimum volume of 0.200 m potassium iodide solution is required to completely precipitate all of the lead in 155.0 ml of a 0.112 m lead (ii) nitrate solution?

Answers

Answer 1
First, we write the balanced equation for this reaction:

2KI + Pb(NO₃)₂ → 2KNO₃ + PbI₂

From this equation, we see that there are 2 moles of potassium iodide required for each mole of lead (II) nitrate. Moreover, we may use the formula:

Moles = volume (in L) * molarity

We find the molar relation ship for KI : Pb(NO₃)₂ to be 2 : 1. So:

M₁V₁ = 2M₂V₂

V₁ = 2M₂V₂/M₁
V₁ = 2 * 0.112 * 0.155 / 0.2
V₁ = 0.1736 L


The volume required is 173.6 mL
Answer 2
Final answer:

The minimum volume of 0.200 M potassium iodide required to completely react with 155.0 mL of 0.112 M lead nitrate is 173.6 mL. The larger volume is needed due to the 2:1 stoichiometry in their reaction equation, resulting in a yellow precipitate of lead iodide.

Explanation:

This question is about a precipitation reaction between potassium iodide and lead (II) nitrate. The reactant in a solution will react until it is entirely consumed, forming a solid precipitate called lead iodide. As given by the balanced chemical equation, 2KI(aq) + Pb(NO3)2(aq) → PbI2(s) + 2KNO3(aq), one molecule of lead nitrate reacts with two molecules of potassium iodide. Because all the reagents are in solution, we calculate amounts in moles using their molarities (M) and volumes (L).

Let's denote the required volume of potassium iodide solution as 'V'. Therefore, the number of moles in the required potassium iodide solution would be (0.200 M * V). Similarly, the number of moles in the given volume of lead nitrate solution is (0.112 M * 155.0 mL = 0.01736 moles). Since the reaction ratio is 2:1, we need twice the amount of potassium iodide for each mole of lead nitrate. Consequently, 2 * 0.01736 moles of potassium iodide are required. Solving the equation 0.200 M * V = 2 * 0.01736,  gives the minimum volume 'V' required as 0.1736 L or 173.6 mL.

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Related Questions

If we know that 10.0 cm3 of ice has a mass of 9.19 g what is the density of ice

Answers

The density of a substance is defined as mass divided by volume, that is,
 P = Mass/Volume
In the question given above, 
mass = 9.19 g
volume = 10.0 cm
P = 9.19/10 = 0.919
Therefore, the density of the ice is 0.919 g/cm3.

Which types of substances dissolve better in water: hydrophobic or hydrophilic substances? why do you think so?

Answers

Hydrophilic substances will dissolve better in water than hydrophobic substances. A substance that is hydrophilic is water loving or easily dissolved in water. Molecules of these substances form ionic bonds with the water molecules. Hydrophilic substances include alcohols. Hydrophobic substances repel water and do not mix. 

What is the pressure of a gas at stp

Answers

Standard temperature is equal to 0 °C, which is 273.15 K. Standard Pressure is 1 Atm, 101.3kPa or 760 mmHg or torr. STP is often used for measuring gas density and volume. At STP 1 mole of any gas occupies 22.4L.

Final answer:

The pressure of a gas at standard temperature and pressure (STP) is typically stated as 1 atm (101.325 kPa), although the IUPAC defines it as 100 kPa. STP is used to consistently compare properties of gases and the standard molar volume of an ideal gas at these conditions is about 22.4 L.

Explanation:

The pressure of a gas at standard temperature and pressure (STP) is defined as 1 atmosphere (atm). However, it's important to note that there are different definitions of STP. The most commonly used definition for STP is a temperature of 0°C (273.15 K) and a pressure of 1 atm (101.325 kPa).

But, according to the International Union of Pure and Applied Chemistry (IUPAC), STP is defined as a temperature of 0°C (273.15 K) and a pressure of 100 kPa (0.986 atm).

For simplicity and to stay consistent with older conventions, 1 atm is often still used as the standard pressure when discussing STP in many contexts.

STP conditions for comparisons include the pressure of 1 atm and temperature of 0°C (273.15 K).Scientists use STP as a reference to compare gas properties.The molar volume of an ideal gas at STP is approximately 22.4 liters.

Write the ions present in solution of k2co3. express your answers as chemical formulas separated by a comma. identify all of the phases in your answers.

Answers

Answer : The ions present in the solution of [tex]K_2CO_3[/tex] are [tex]K^+[/tex] and [tex]CO^{2-}_3[/tex] in aqueous state.

Explanation :

When [tex]K_2CO_3[/tex] is in aqueous solution then they dissociates into their ions.

The reaction in aqueous medium is,

[tex]K_2CO_3(aq)\rightarrow 2K^+(aq)+CO^{2-}_3(aq)[/tex]

The charge on potassium ion is +1 and on carbonate ion is -2. To neutralize the charge on carbonate ion, two potassium ion must be used.

Therefore, the ions present in solution of [tex]K_2CO_3[/tex] are [tex]K^+[/tex] and [tex]CO^{2-}_3[tex] in aqueous state.

[tex]\boxed{{{\text{K}}^ + },\;{\text{CO}}_3^{2 - }}[/tex] are the ions present in the solution of [tex]{{\text{K}}_{\text{2}}}{\text{C}}{{\text{O}}_{\text{3}}}[/tex] . Both ions are in the aqueous phase.

Further Explanation:

Chemical bond:

The attraction between atoms, molecules or ions which results in the formation of chemical compounds is known as a chemical bond. It is formed either due to electrostatic forces or by the sharing of electrons. There are many strong bonds such as ionic bonds, covalent bonds, and metallic bonds while some weak bonds like dipole-dipole interactions, London dispersion forces, and hydrogen bonding.

Ionic compound:

Ionic compounds are the compounds that are formed from the ions of the respective species. Ions are the species that are formed either due to loss or gain of electrons. A neutral atom forms cation by the loss of electrons and anion by the gain of electrons.

Following are some of the properties of ionic compounds:

1. These are hard solids.

2. High melting and boiling points.

3. Good conductors of heat and electricity.

4. High enthalpy of fusion.

For example, [tex]{\text{MgC}}{{\text{l}}_2}[/tex] is an ionic compound formed from one [tex]{\text{M}}{{\text{g}}^{2 + }}[/tex] and two [tex]{\text{C}}{{\text{l}}^ - }[/tex] ions. Its dissociation occurs as follows:

[tex]{\text{MgC}}{{\text{l}}_2}\rightleftharpoons {\text{M}}{{\text{g}}^{2+}}+{\text{2C}}{{\text{l}}^ - }[/tex]

[tex]{{\mathbf{K}}_{\mathbf{2}}}{\mathbf{C}}{{\mathbf{O}}_{\mathbf{3}}}[/tex]  is an ionic compound that consists of two [tex]{{\mathbf{K}}^{\mathbf{ + }}}[/tex] ions and one [tex]{\mathbf{CO}}_{\mathbf{3}}^{{\mathbf{2 - }}}[/tex] ion. Therefore it dissociates to form two [tex]{{\text{K}}^ + }[/tex] ions and one  [tex]{\text{CO}}_3^{2 - }[/tex] ion. The reaction for dissociation of  [tex]{{\mathbf{K}}_{\mathbf{2}}}{\mathbf{C}}{{\mathbf{O}}_{\mathbf{3}}}[/tex] is,

[tex]{{\text{K}}_2}{\text{C}}{{\text{O}}_3}\left({aq}\right)\to2{{\text{K}}^ + }\left( {aq} \right)+{\text{CO}}_3^{2 - }\left({aq}\right)[/tex]

So the ions present in [tex]{{\text{K}}_2}{\text{C}}{{\text{O}}_3}[/tex] solution are two [tex]{{\text{K}}^ + }[/tex] and one [tex]{\text{CO}}_3^{2 - }[/tex] ions. Both the ions are present in the aqueous phase.

Learn more:

1. Identification of ionic bonding: https://brainly.com/question/1603987

2. Oxidation and reduction reaction: https://brainly.com/question/2973661

Answer details:

Grade: High School

Subject: Chemistry

Chapter: Ionic and covalent compounds

Keywords: K2CO3, K+, CO32-, ionic compound, ions, one, two, dissociation, reaction, ions, cation, anion, electrons, chemical bond, attraction, properties, aqueous phase.

Mendeleev periodic table was a useful tool because it enables scientists to

Answers

Although mendeleev's periodic table wasn't approved, it was useful for the scientists since;

He left gaps. This gives us an idea that there are still other elements that are yet to be discovered.

He predicted the properties of those elements which were yet to be discovered and thus,helped in discovery of other elements later on.
The properties were similar to those predicted by mendeleev

The arrangement are classified into groups, it was very useful in studying and remembering the properties of large number of elements

Answer:

Mendeleev's periodic table was a useful tool because it enables scientists to predict properties of unknown elements.

Explanation:

Bacillus megaterium is a mesophile that forms endospores. considering endospores are resistant to high heat, at what temperature will bacillus megaterium survive for experiment 17a if endospores are present?

Answers

According to wikipedia, B. megaterium grows at temperatures from 3 °C to 45 °C, with the optimum around 30 °C. Also, endospores are able to survive at 100 °C for hours, although the longer the number of hours the fewer that will survive. If the temperature is below 45C, then the B. megaterium will survive without endospores. Between 45 and 100C, the B megaterium will survive if there are spores present. Above 100C, some spores may survive but not likely if it is for long periods of time.

Answer:

B

Explanation:

Check my answer?

Students observed that their teacher's desk plant looked wilted on Monday morning compared to how it looked at the end of the day on Friday. Some students hypothesized that a warmer room temperature over the weekend caused the plant to wilt. Other students hypothesized that the lack of light caused the plant to wilt. Both hypotheses are valuable because they
A.) are reasonable and testable ---- (My answer)
B.) compare independent variables
C.) compare light and temperature
D.) are the only possible explanations.

Answers

yes that is correct because hypotheses should be testable meaning it can be proven wrong and it has to be reasonable meaning it should make sense. 

Answer: A.) are reasonable and testable

A hypothesis can be defined as the supposition or assumption of scientific process that is based on limited scientific evidences and used as a starting point for further investigation. The hypothesis needs to be proved by following relevant scientific methodology.

In the given situation, both the hypothesis are correct because both warm temperature and sunlight are genuinely responsible for wilting of plant in nature. The effect of both sunlight and warm temperature can be tested separately on plant. This proves that the hypothesis are reasonable and testable.

O, li, c which electrons experience the greatest effective nuclear charge? express your answer as a chemical formula.

Answers

The effective nuclear charge of an atom = total electrons - inner electrons For O, ENC = 8 - 2 = 6 For Li, ENC = 3 - 2 = 1 For C, ENC = 6 - 2 = 4 The electrons in O experience the greatest effective nuclear charge and that is why O is smaller than C (which is smaller than Li).

How many grams of salt are in 1 kilogram of seawater with average salinity? quizzlet?

Answers

35 grams The average salinity of seawater is 35 parts per thousand, so multiply the mass of seawater provided by 0.035 and you'll get the amount of salt (mostly sodium chloride) dissolved in it. So 1000 g * 0.035 = 35 g Therefore in 1 kilogram of seawater with average salinity, there is 35 grams of salt.

All of the halogens __________. a. exhibit metallic character b. form salts with alkali metals with the formula mx c. exist under ambient conditions as diatomic gases d. tend to form negative ions of several different charges e. tend to form positive ions of several different charges

Answers

Let's examine the choices we have:
A is wrong since halogens are non-metals
B is correct as halogens reacts with metals to form salts. Example of this is the reaction of sodium with chlorine to form sodium chloride
C is not completely right since I2 is liquid under ambient conditions and not gaseous.
D is wrong as they form negative ions of only -1 charges
E is wrong since they non-metals so they tend to form negative ions.

Based on this:
The right choice is: b. form salts with alkali metals with the formula mx 

What type of combustion fuels produces the greenhouse gas carbon dioxide?

Answers

Fuels containing carbon when undergoes incomplete combustion produces carbon- di - oxide.

The addition of heat to a pond causes serious problems for the aquatic plants because the increase in water temperature _______.

Answers

Hi,

The answer to your question is "decreases the solubility of the oxygen in the water"

How many oxygen atoms are in 6.90 g of Al2(SO4)3? Express your answer using scientific notation with two decimal places.

Answers

First, you need to know the molar mass of the compound. The compound Aluminum Sulfate has a molar mass of 342.15 g/mol. From the subscript of the compound, there are 4*3 = 12 moles of oxygen in 1 mole of the compound. The solution is as follows:

6.90 g Al₂(SO₄)₃*(1 mol/342.15 g)*(12 mol O/1 mol Al₂(SO₄)₃)*(6.022×10²³ atoms/mole) = 1.457×10²³ atoms of oxgyen

Answer:

There are 1.44 x 10^23 atoms of oxigen in 6.90 grs of Al2(SO4)3.

Explanation:

To solve this problem you have to find:

1) The molecular mass of Al2(SO4)3;

2) Estimates the percentage of oxigen and express it in terms of its moles.

3) Calculate the number of atoms using Avogadro´s Number.

1) Molecular mass Al2(SO4)3= 2x26,98 + 3x31.06 + 12x16 =339.14 grs/mol.

2) If in the molecular mass of the compound there are 192 grs/mol (12x16) of oxigen, in 6.90 g will be:

192 grs/mol Oxigen ------------- 339.14 grs/mol Al2(SO4)3

x= 3.90 grs/mol--------------------  6.90 grs/mol  Al2(SO4)3

Then if one mol of oxigen has a mass of 16 grs, 3.90 grs represents....

1 mol oxigen ------------- 16 grs of oxigen

x= 0.24 moles------------ 3.90 grs of oxigen

3) There are 6,022 x 10^23 (Avogrado´s number) atoms of oxigen in a mol of oxigen, so in 0.24 moles will be

1 mol oxigen ---------------- 6,022 x 10^23 atoms of oxigen

0.24 moles oxigen ------- x = 1.44 x 10^23 atoms of oxigen.

Summarizing there are 1.44 x 10^23 atoms of oxigen in 6.90 grs of Al2(SO4)3.

How is the atomic mass of an element calculated

Answers

The average atomic mass of an element is the sum of the masses of its isotopes, each multiplied by its natural abundance. 

The atomic mass of an element is calculated by taking the weighted average of the mass numbers of all its naturally occurring isotopes, calculated by the sum of the protons and neutrons in an atom.

The atomic mass of an element is primarily the total mass of its protons and neutrons. Electrons have a negligible mass and thus are not typically included in the atomic mass calculation. To calculate the atomic mass of an element, you first need to know its mass number, which is the sum of the number of protons and neutrons.

The number of protons is the element's atomic number, and it defines the type of element. For example, carbon (C) has an atomic number of 6, hence it has 6 protons. Carbon's most common isotope has 6 neutrons, therefore, its mass number is 12.

However, because elements can have multiple isotopes with different numbers of neutrons, the atomic mass listed on the periodic table is a weighted average of the mass numbers of all the naturally occurring isotopes of an element. For instance, chlorine (Cl) has an atomic mass of 35.45 because it mainly exists as isotopes with mass numbers of 35 (17 protons and 18 neutrons) and 37 (17 protons and 20 neutrons).

A segment of DNA shows bases in this order AGT CAC GCA, complete the corresponding DNA strand: TCA GTG?
A) ACG
B) CGT
C) GCA
D) TGC

Answers

There are four bases in a strand of DNA: Adenine, Guanine, Thymine, and Cytosine. Adenine will always pair with Thymine, and Guanine will always pair with Cytosine. We can use this to figure out the corresponding half of the given DNA Segment.

We are given the following segment: AGT CAC GCA. Using the above rule of which bases pair together, let's figure out the corresponding half of the segment.

AGT CAC GCA
TCA GTG CGT

The solution is B.
B is the correct answer. 

In 1912, chemist Fritz Haber developed a process that combined nitrogen from the air with hydrogen at high temperatures and pressures to make ammonia. Specifically, the process involved combining one molecule of nitrogen gas (N2) with three molecules of hydrogen gas (H2) to get two molecules of ammonia (NH3). If you write this process in a symbol format, it looks like this:
N2 + 3H2 → 2NH3

Explain whether this is a chemical or physical change, and why. Does it involve elements, compounds, mixtures, or pure substances? Also describe how many atoms are involved before and after. What do you notice about the number of atoms?

Answers

1. This is a chemical change because a chemical reaction has occurred. The material before the reaction is not anymore the same after the reaction. 

2. In this reaction, it involves pure substances in the form of elements. These are the nitrogen and the hydrogen elements. The resulting product is also a pure substance in the form of a compound, which is ammonia.

3. Before the reaction, there are 2 atoms of nitrogen and 6 atoms of hydrogen involved. After the reaction, there are also 2 atoms of nitrogen and 6 atoms of hydrogen involved.

4. The number of atoms before and after the reaction did not change because of the Law of Conservation of Mass.

Answer:

Chemical change

Compounds

Number of atoms of hydrogen on both side=6

Number of atoms of nitrogen on both sides=2

Number of atoms of nitrogen and hydrogen on both  sides are equal.

Explanation:

We are given that a reaction

[tex]N_2+3H_2\rightarrow 2NH_3[/tex]

It is chemical change because there is chemical reaction occurring .In physical change, no chemical reaction takes place.

It involved compound because compound  consist of two or more than two  atoms of same or different  elements . In compound , the atoms are bonded together by chemical bond.

Nitrogen is a compound because two nitrogen atoms are bonded together to form a molecule of nitrogen.Similarly , in hydrogen molecules, two hydrogen  atom are bonded together to form one hydrogen molecule.

In ammonia, 3 hydrogen and 1 nitrogen atom are bonded together to form ammonia.

On LHS

Number of atoms of hydrogen=6

Number of nitrogen atoms=2

On RHS

Number of atoms of Hydrogen=6

Number of nitrogen atoms=2

Number of atoms of every element in reactants equals to number of atoms of every element in product.

A 4.236 g sample of a hydrocarbon is combusted to give 3.810 g of h2o and 13.96 g of co2. what is the empirical formula of the compound?

Answers

Given mass: 3.810 g of h2o and 13.96 g of co2. Mass of CO2 : 13.96 g moles of CO2 : 0.317 moles / 44.0098 moles of C : 0.317 moles Mass of water = 3.81 g moles of water = 0.212 moles / 18.015 moles of H = 0.423 moles X2 Hence the molar ratio C : H is 0.317 : 0.423 = 1.000 : 1.334 Multiplying by 3 on both ratios we get: 3.000 : 4.003 Therefore the empirical formula is C3H4

The compound ammonium sulfide is a strong electrolyte. write the reaction when ammonium sulfide is put into water:

Answers

(NH4)2S + H2O = (NH4)2O + H2S Heat is generated when ammonium sulfide compound is dissolved in water. Ammonium sulphide or (NH4)2S, otherwise called diammonium sulfide is an unstable salt. The solution in water is strongly alkaline. This is a hazardous solution producing dangerous gas.

Final answer:

When ammonium sulfide ((NH4)2S) dissolves in water, it dissociates fully into two ammonium ions (NH4+) and one sulfide ion (S2-), showcasing its behavior as a strong electrolyte.

Explanation:

The question relates to ammonium sulfide, a strong electrolyte, dissolving in water. When ammonium sulfide ((NH4)2S) is put into water, it dissociates into its ions because it is a strong electrolyte. Hence, the reaction is as follows:

(NH4)2S(s) + H2O(l) → 2NH4+(aq) + S2-(aq)

This reaction clearly shows ammonium ions (NH4+) and sulfide ions (S2-) being released into the solution. Two ammonium ions are needed to balance the charge on a single sulfide ion, reflecting the original stoichiometry of ammonium sulfide.

The existence of discrete (quantized) energy levels in an atom may be inferred from

Answers

It can be inferred from atomic line spectra. These are certain wavelengths of light that atoms give off when they become excited. The energy levels in an atom can be proven to exist from this phenomenon, and furthermore, they can be measured.

Final answer:

The existence of discrete energy levels in an atom can be inferred from the characteristic emission and absorption spectra unique to each element, which result from the quantized energy levels of electrons.

Explanation:

The existence of discrete (quantized) energy levels in an atom may be inferred from the emission and absorption spectra that have been known for over a century to be discrete or quantized. These spectra are unique to each element and are due to the quantized energy levels of electrons in atoms. When an electron jumps from one energy level to another, it must absorb or emit a photon with energy equal to the difference between these two energy levels; this creates specific lines in an atom's spectra. This phenomenon confirmed the idea that electrons occupy discrete orbits around the nucleus, a concept that is foundational for quantum mechanics and was part of what led to Bohr's Nobel Prize-winning work.

An atom has 2 protons in its nucleus. Which of the following must be true for this atom to have no net electrical charge?
Question 2 options:

A.The atom has 2 negatively charged electrons outside the nucleus.

B.The atom also has 2 positively charged neutrons in the nucleus.

C.The atom has 2 negatively charged electrons in the nucleus.

D.The 2 positive protons have no influence on the overall charge of the atom.

Answers

The 2 correct options I guess are A and D

Answer:the atom has 2 negatively charged electrons outside the nucleus

Explanation:

What is the density of a substance with a mass of 45.00 g and a volume of 26.5ml?

Answers

Final answer:

The density of the substance is 1.70 g/mL.

Explanation:

The density of a substance can be calculated using the formula:

Density = Mass/Volume

In this case, the mass is given as 45.00 g and the volume is given as 26.5 mL. We can use these values to calculate the density:

Density = 45.00 g / 26.5 mL

Density = 1.70 g/mL

Therefore, the density of the substance is 1.70 g/mL.

What would you need to do to calculate the molality of 10 mol of nacl in 200 mol of water?

Answers

The conversion of 200 mol of water to kilograms of water is needed to calculate the molality of 10 mol of NaCl in 200 mol of water. Thus, the correct option is A.

What is Molality?

Molality is the measure of concentration of a solution. It is the number of moles of solute which are present in a solution that is corresponding to about 1 kg or 1000 g of solvent solution. This amount contrasts with the definition of molarity which is based on the volume of solution. A commonly used unit for molality in chemistry is mol/kg of the solvent molecule.

The formula for calculation of Molality is:

m = mol/ kg

where, m = molality of solution,

mol = number of moles of solute,

kg = kilogram of solvent

The conversion of 200 mol of water to kilograms of water is necessary for the calculation of molality of the solution.

Here, Solute (mol) = 10 mol NaCl

Solvent (Kg) = 200 mol water (Convert to kilograms of water).

Therefore, the correct option is A.

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Your question is incomplete, most probably the complete question is:

What would you need to do to calculate the molality of 10 mol of NaCl in 200

mol of water?

A. Convert the 200 mol of water to kilograms of water.

B. Convert the 200 mol of water to liters of water.

C. Convert the 10 mol of NaCl to grams of NaCl.

D. Convert the 10 mol of NaCl to kilograms of NaCl.

If 83.0 ml of 0.150 m hcl(aq) is needed to neutralize all the nh3(g) from a 2.25-g sample of organic material, calculate the mass percentage of nitrogen in the sample.

Answers

7.75% nitrogen in the sample. The balanced reaction of HCl and NH3 is HCl + NH3 = NH4Cl Which means that 1 mole of HCl will neutralize 1 mole of HN3. Since we used 83.0 ml of 0.150 m HCl, that means that we used 0.083 l * 0.150 mol/l = 0.01245 mol So we had 0.01245 mol of NH3 which means that we had 0.01245 mol of N Looking up the atomic weight of nitrogen, we get 14.0067. So 0.01245 * 14.0067 = 0.174383415 g We now know that the sample had 0.17438 g of nitrogen. Divide by the original mass of the sample, getting 0.17438 / 2.25 = 0.077502222 = 7.7502222% Rounding the result to 3 significant figures, gives us a mass percentage of 7.75% nitrogen in the original sample.

What is the primary difference between a hypothesis and a theory?
A theory is supported by more data and observations than a hypothesis is.
A hypothesis is falsifiable, but a theory has been proven to be correct.
A theory is a prediction, but a hypothesis is an explanation.
A hypothesis is more reliable than a theory.

Answers

The answer to this question would be: A theory is supported by more data and observations than a hypothesis is.

Theories and hypothesis are both an explanation, but the theory explanation is more in-depth. Theory will be more reliable than hypothesis since it supported by more data. But both the theory and hypothesis are should be falsifiable. 
A hypothesis is just an explanation that someone suggests based on his/her observation of a certain phenomenon. It needs further experiments and testings and based on the results of these experiments, the hypothesis can either be verified and further turned into a theory or rejected.

Hypothesis is based on suggestion or prediction, while a theory is based on evidence, repeated testing and verification.

Both of them are falsifiable. As the phenomenon can further develop and change are the results of all the experiments done.

Based on this:
The answer is: A theory is supported by more data and observations than a hypothesis is.

How do the number of electrons in an atom's highest energy level affect its reactivity?

Answers

An atom's highest energy level contains what are known as "valence electrons." With some exceptions, two or more atoms will bond to either transfer or share their valence electrons so that there is a total of eight.
For example, Sodium has one valence electron, and chlorine has seven. When these two atoms join, they will have an ionic bond, and all eight valence electrons will be present in this bond.

What are the standard conditions under which reduction potentials are measured? 1°C and 1 M reactants 25°C and 1 M reactants 25°C and 2.5 M reactants 1°C and 25 M reactants

Answers

 It relates the measured cell potential to the reaction quotient and allows the ... Substituting these expressions into Equation 20.6.1, we obtain ... the standard cell potential (E° cell), and the reactant and product concentrations at ... 0.013 M, [Ce3+] = 0.60 M, [Cl−] = 0.0030 M, PCl2 = 1.0 atm, and T = 25°C.

Answer:

25°C and 1 M reactants

Explanation:

The standard conditions to measure the reduction potential as standard electrode potential is 298.15 K temperature (25°C) and 1 mol / L concentration of each reactant.

The pressure should be 1 atm for gaseous reactants (like in case of Standard hydrogen electrode where pressure of hydrogen gas is taken to be 1 atm).

Combustion analysis of toluene, a common organic solvent, gives 8.20 mg of co2 and 1.92 mg of h2o. if the compound contains only carbon and hydrogen, what is its empirical formula?

Answers

For the purpose of proper representation in this item, we let the number of moles of carbon in the compound be x, that of H is y. The equation of toluene now becomes,
                   CxHy
The combustion reaction is,
        CxHy + O2 --> CO2 + H2O

The equation presented above may not be balanced yet. Then, we determine the number of mmols of C, H, and O in the product using the given masses.
    
(1) 8.20 mg CO2
             (8.2 mg CO2)(1 mmol CO2/44 mg CO2) = 0.186 mmol CO2
     which means,
                     0.186 mmol C
                     0.373 mmol O

(2) 1.92 mg H2O
            (1.92 mg H2O)(1 mmol H2O/18 mg H2O) = 0.107 mmol H2O
    which means
                    0.2133 mmol H
                    0.107 mmol O

Thus, the equation for toluene is,
               C(0.186)H(0.2133)

Dividing the numbers by the lesser value,
               CH(8/7)
To eliminate the fraction, we multiply by the denominator. Thus, the final answer would be,
              C7H8

What is most plastic made of? (more than one)
inorganic compounds
organic compounds
petroleum or coal materials
carbon containing compounds
synthetic materials

Answers

i think its carbon containing compounds

Answer:

Plastics are synthetic organic compounds

Explanation:

10,300 milliliters is the same as: cm3 and L

Answers

I am pretty sure your asking for a conversion of 10,300milliliters to cm3 and L.
If so then this should be the answer 10,300cm3 and 10.3L. Hope this helps.
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For this case what you should do is keep in mind the following conversions:

[tex] 1 milliliter = 1 cm ^ 3 [/tex]

[tex] 1000 milliliters = 1 L [/tex]

Therefore, by applying the conversions we have:

For cubic centimeters:

[tex] (10,300mL) (1\frac{cm^3}{mL}) = 10,300cm ^ 3 [/tex]

For liters:

[tex] (10,300mL) (\frac{1}{1000}\frac{L}{mL}) = 10.3 L [/tex]

Answer:

10,300 milliliters is the same as:

[tex]10,300cm ^ 3[/tex]

[tex]10.3 L[/tex]

What phrase from the Preamble justifies a law like the Affordable Care Act?

Answers

The Affordable Care Act which was instated during Barack Obama´s presidency and is sometimes known as Obamacare is justified by the phrase ¨for the general welfare¨ in the Preamble. This concept can be defined as holding the US government responsable for providing care for all people, not just a few elites. Therefore the Affordable Care Act, which aims to increase access to healthcare to all Americans is adhering to this phrase.
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