what volume of a 0.50 m solution of hcl would just neutralize 290 ml of a solution containing 4.7 g of ba(oh)2 ? express your answer in milliliters to two significant figures.

Answers

Answer 1

140 mL of 0.50 m solution of hcl would just neutralize 290 ml of a solution containing 4.7 g of ba(oh)2.

To solve this problem, we can use the balanced chemical equation for the reaction between hydrochloric acid (HCl) and barium hydroxide (Ba(OH)2):

2HCl + Ba(OH)2 → BaCl2 + 2H2O

From the equation, we can see that two moles of HCl are required to react with one mole of Ba(OH)2.

First, we need to calculate the number of moles of Ba(OH)2 in the given volume of solution:

molar mass of Ba(OH)2 = 137.33 g/mol

number of moles of Ba(OH)2 = mass / molar mass = 4.7 g / 137.33 g/mol = 0.0342 mol

Next, we can use the stoichiometry of the balanced equation to determine the number of moles of HCl required:

2 moles of HCl react with 1 mole of Ba(OH)2

number of moles of HCl = 2 x 0.0342 mol = 0.0684 mol

Finally, we can use the definition of molarity to calculate the volume of the 0.50 M HCl solution required to provide 0.0684 moles of HCl:

molarity = moles of solute / volume of solution

volume of solution = moles of solute / molarity = 0.0684 mol / 0.50 mol/L = 0.137 L

Since the volume of the HCl solution is expressed in liters, we need to convert to milliliters:

0.137 L x 1000 mL/L = 137 mL

Therefore, 137 mL of the 0.50 M HCl solution would be required to neutralize 290 mL of the Ba(OH)2 solution. Rounded to two significant figures, the answer is 140 mL.

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Related Questions

Calculate the volume of oxygen that will be spent on burning 300 liters of ethane containing 5.8% non-combustible impurities

Answers

Answer:

To calculate the volume of oxygen that will be required to burn 300 liters of ethane containing 5.8% non-combustible impurities, we need to determine the amount of pure ethane present.

Since the ethane contains 5.8% non-combustible impurities, 100 - 5.8 = 94.2% of the 300 liters of ethane is pure and can be burned.

The amount of pure ethane is 94.2% * 300 liters = 282.6 liters.

The stoichiometric equation for the complete combustion of ethane is:

C2H6 + 7O2 -> 4H2O + 6CO2

This equation tells us that for every molecule of ethane that is burned, 7 molecules of oxygen are required.

The volume of oxygen required for burning 282.6 liters of ethane is 282.6 liters * 7 = 1989.2 liters.

So, the volume of oxygen that will be required to burn 300 liters of ethane containing 5.8% non-combustible impurities is 1989.2 liters.

Assuming that the non-combustible impurities have no effect on the combustion of ethane, we can calculate the volume of oxygen required to burn 300 liters of ethane as follows:

Write the balanced chemical equation for the combustion of ethane:

C2H6 + 3.5 O2 -> 2 CO2 + 3 H2O

Determine the stoichiometry of the reaction, which tells us the molar ratio of ethane to oxygen required for complete combustion. From the balanced equation, we see that 1 mole of ethane reacts with 3.5 moles of oxygen.

Convert the volume of ethane from liters to moles, using the ideal gas law:

PV = nRT

where P is the pressure of the gas, V is the volume of the gas, n is the number of moles of gas, R is the gas constant, and T is the temperature of the gas. Assuming standard temperature and pressure (STP), which is 1 atm and 0°C, we have:

n = PV/RT = (1 atm * 300 L)/(0.08206 Latm/molK * 273 K) = 12.5 moles of ethane

Calculate the amount of oxygen required for combustion, using the stoichiometry of the reaction:

3.5 moles of O2 are required for 1 mole of ethane, so for 12.5 moles of ethane, we need:

12.5 moles of ethane * 3.5 moles of O2/mole of ethane = 43.75 moles of O2

Convert the moles of oxygen to volume, again using the ideal gas law:

V = nRT/P = (43.75 mol * 0.08206 Latm/molK * 273 K)/1 atm = 994.8 L of O2

Therefore, approximately 994.8 liters of oxygen will be spent on burning 300 liters of ethane containing 5.8% non-combustible impurities.

what product of an acid base reaction is an iconic compound

Answers

Answer: NaCl

Explanation: salt

The product of an acid-base reaction in an iconic compound is Salt and water.

A neutralization reaction is a reaction in which an acid and a base react in an aqueous solution to produce salt and water.

When a strong acid and a strong base are mixed, they react according to the following net-ionic equation:

H₃O⁺(aq) + OH⁻(aq) → 2H₂O(l).

An acid-base reaction is a type of reaction that is also known as a neutralization reaction. The reaction between NaOH and HCL to form salt and water is represented by the chemical equation:

HCL(aq) + NaOH(aq)  → NaCl(aq) + H2O(I)

HCl is the acid that reacts with NaOH which is the base. The product formed from an acid-base reaction is known as salt. The salt formed from the sample reaction is NaCl.

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a sample of trifluoroacetic acid, c2hf3o2, contains 88.9 88.9 g of oxygen. calculate the mass of the trifluoroacetic acid sample.

Answers

a sample of trifluoroacetic acid, c2hf3o2, contains 88.9 88.9 g of oxygen, the mass of the trifluoroacetic acid sample is: 316.484 grams

What is molar mass?

The mass in grams of one mole of a chemical is its molar mass. A mole is the measurement of the number of things, such as atoms, molecules, and ions, that are present in a material. It provides you with the amount of grams per mole of a substance, to put it another way. The molar mass of a material is a bulk attribute rather than a molecular one. The fundamental units of matter are called atoms, and by joining atoms together, molecules are created. Chemists use the term "mole" because atoms, molecules, and other particles are all very tiny and require a large amount to even weigh them.

As we know,

1 mole of C₂HF₃O₂ contains 2 moles of oxygen

molar mass of C₂HF₃O₂ = 114.0 gm

atomic mass of 2 Oxygen = 32 gm

(114 / 32) = 3.56

grams of C₂HF₃O₂ = 88.9 x 3.56 = 316.484 grams

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Which symbol is the correct notation for the element silicon?

Responses

Si

Si

SI

SI

S

S

Sil

Answers

The correct notation for the element silicon is "Si".
Silicon is a chemical element with the symbol Si and atomic number 14.

It is a metalloid, meaning that it has properties of both metals and nonmetals. Silicon is the second most abundant element on Earth, after oxygen, and it is a major component of rocks, sand, and minerals. It is also a crucial element in many technological applications, particularly in the electronics industry, where it is used to make semiconductors, computer chips, and solar cells.

Silicon has a crystalline structure and is a hard, brittle, and blue-grey material. It is not found in its pure form in nature, but is instead obtained from the purification of silicon dioxide, which is commonly found in sand and quartz. Silicon is also found in various minerals, such as mica, feldspar, and talc.
Silicon has many unique properties that make it useful in various applications. For example, it is a semiconductor, meaning that its electrical conductivity can be controlled by adding impurities to it in a process called doping. This property is essential for the production of electronic components, such as transistors and diodes.

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what mass (in grams) of carbon will have the same number of atoms as 195.4 grams of ca. report the final answer using the correct number of significant figures. do not put units and do not write your answer in scientific notation.

Answers

The mass of carbon that has the same number of atoms as 195.4 grams of calcium is 68.6 grams. The final answer should be reported as 68.6, with three significant figures.

The mass of carbon that has the same number of atoms as 195.4 grams of calcium is 68.6 grams. This is because the atomic mass of calcium is 40.08 and the atomic mass of carbon is 12.011. The number of atoms in 195.4 grams of calcium is 4.87 x 10^24, and the number of atoms in 68.6 grams of carbon is also 4.87 x 10^24. The final answer should be reported as 68.6, with three significant figures. This is because the atomic mass of calcium and carbon are given to three significant figures, so the final answer should also be reported to three significant figures.

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what is total change in entropy equal to?

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The total change in entropy is equal to the sum of heat transfer (in Joules) divided by the absolute temperature (in Kelvin) of the system. In equation form, the total change in entropy (ΔS) is equal to the sum of heat transfer (Q) divided by the absolute temperature (T):  ΔS = Q/T.

Entropy is the measure of randomness in a macroscopic system. It is equal with the ratio of heat absorbed in Joules (Q) and the temperature at which the heat is absorbed in Kelvin (T). If one wants the entropy to decrease, they must transfer the energy from outside the system.

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list Two examples of seeds that are dispersal by water​

Answers

Answer:

okay

Explanation:

Coconut, palm, mangroves, water lily, water mint, are a few examples of plants whose seed are dispersed by the water.

why can lactose intolerant individuals digest sucrose without any problems?

Answers

Lactose intolerant individuals digest sucrose without any problems because it produces digestive enzymes from sucrose.

Generally, lactose-intolerant individuals only lack the lactase enzyme but may still produce the enzyme for digesting sucrose. For example, a milk allergy is the result of an immune reaction to one or more of the components of milk, such as the protein casein.

Lactose intolerance in our body when body can't break down or digest lactose. Lactose is a type of sugar that is found in milk and milk products. Basically, lactose intolerance happens when your small intestine does not make enough of a digestive enzyme called lactase. Lactase helps in breaking down the lactose in food so our body can absorb it.

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In the ionic compounds LiF, NaCl, KBr, and RbI, the measured cation–anion distances are 2.01 Å (Li–F), 2.82 Å (Na-Cl), 3.30 Å (K–Br), and 3.67 Å (Rb–I), respectively.

1. Predict the cation–anion distance using the values of ionic radii given in Figure 7.7, on page 257 in the textbook.

2. Calculate the difference between the experimentally measured ion–ion distances and the ones predicted from Figure 7.7. Assuming we have an accuracy of 0.04 Å in the measurement, would you say that the two sets of ion–ion distances are the same or not? Why, or why not?

3. What estimates of the cation–anion distance would you obtain for these four compounds using bonding atomic radii? Are these estimates as accurate as the estimates using ionic radii? Explain your answer.

Please explain the part on the 4% accuracy.

Answers

The predicated cation anion distance for LiF, NaCL, KBr, RbI is 2.09Å, 2.83 Å, 3.34 Å, 3.72 Å respectively. The difference between the experimentally measured ion–ion distances and the ones predicted are 0.08 Å, 0.01 Å, 0.04 Å, 0.05 Å

The cation anion distance using the values of iconic radii are as follows:

i) LiF

the ionic radii of cation, Li⁺ = 0.90 Å

the ionic radii of anion, F⁻ = 1.19 Å

the predicated cation anion distance = 0.90Å + 1.19Å = 2.09Å,

ii) NaCl

the ionic radii of cation, Na⁺ = 1.16 Å

the ionic radii of anion, Cl⁻ = 1.67Å

the predicated cation anion distance = 1.16 Å + 1.67 Å = 2.83 Å,

iii) KBr

the ionic radii of cation, K⁺ = 1.52 Å

the ionic radii of anion, Br⁻ = 1.82 Å

the predicated cation anion distance = 1.52 Å + 1.82 Å = 3.34 Å,

iv) RbI

the ionic radii of cation, Rb⁺ = 1.66 Å

the ionic radii of anion, I⁻ = 2.06 Å

the predicated cation anion distance = 1.66 Å + 2.06 Å = 3.72 Å,

i)LiF:

Experimentally measured cation-anion distance = 2.01 Å,

predicted cation anion (LiF) distance = 2.09 Å

the difference = 2.09 Å - 2.01 Å = 0.08 Å

ii)NaCl

Experimentally measured cation-anion distance = 2.82 Å,

predicted cation anion (NaCL) distance = 2.83 Å

the difference = 2.83 Å - 2.82 Å = 0.01 Å

iii)KBr

Experimentally measured cation-anion distance = 3.30 Å,

predicted cation anion (KBr) distance = 3.34 Å

the difference = 3.34 Å - 3.30 Å = 0.04 Å

iv) RbI

Experimentally measured cation-anion distance = 3.67 Å,

predicted cation anion (RbI) distance = 3.72 Å

the difference = 3.72 Å - 3.67 Å = 0.05 Å

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A reaction is said to be ___________________ when the addition of free energy from the environment is required for the reaction to proceed.

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When additional free energy from the surrounding environment is needed for a reaction to continue, it is said to be endergonic.

A chemical reaction or process is referred to as endergonic if free energy must be added for it to proceed. In an endergonic reaction, the reactants and products have different energy levels, and the reaction needs an external energy source to break through the activation energy barrier. This energy intake may originate from heat, light, or chemical energy sources. Endergonic reactions can't happen on their own; they need an ongoing supply of energy to function. A few endergonic processes are protein synthesis, photosynthesis, and the dissociation of ATP into ADP and phosphate. In living things, energonic processes play a significant role in metabolism and energy transfer.

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What is formula of ethane and it's electron dot structure

Answers

The formula would be C2H6 and look like
H-C-C-H

write the balanced net ionic equation for the reaction when aqueous calcium chloride and aqueous lead(ii) nitrate are mixed in solution to form aqueous calcium nitrate and solid lead(ii) chloride. be sure to include the proper phases for all species within the reaction.

Answers

The reaction between aqueous calcium chloride and aqueous lead(II) nitrate, which results in the formation of aqueous calcium nitrate and solid lead(II) chloride, has the following balanced net ionic equation: PbCl2(s) + Ca(NO3)2 Pb(NO3)2(aq) + CaCl2(aq) (aq).

A chemical equation known as a balanced net ionic equation only displays the species and ions that are actively participating in a reaction, leaving out any spectator ions. The spectator ions that appear on both the reactant and product sides of the chemical equation are cancelled out to produce the net ionic equation. To highlight the primary chemical process taking place and to make the equation simpler to understand and evaluate, a balanced net ionic equation is used. This can be very helpful when figuring out how a response works and forecasting how it will turn out.

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If you save $200 a month, how many months until you can purchase the car?

Answers

It will take 50 months to save enough money to buy the car. Always remember that the actual time may be longer if other factors such as taxes, fees, interest rates, and etc. are considered.

The time it takes to save enough money to buy a car can be determined by the cost of the car and the amount that saved each month for the car . If you the cost of car that you decided to buy , you can divide it by the amount saved each month to calculate the number of months required to save enough money.

For example, if a car costs $10,000 and you decide to save $200 per month, you would need to save for:

time = cost ÷ savings per month

time = $10,000 ÷ $200 per month

time = 50 months

As a result, it will take 50 months to save enough money to buy the car. However, always remember that the actual time may be longer if other factors such as taxes, fees, interest rates, and etc. are considered.

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What is a hydrogen bond?
What is a Metallic bond?
What is a Covalent bond?
What is an Electrovalent or Ionic bond?

WILL GIVE BRAINLIEST!!!

Answers

A hydrogen bond is a type of intermolecular bond that occurs between a hydrogen atom and an electronegative atom, such as oxygen, nitrogen, or fluorine.A metallic bond is a type of chemical bond that occurs between metal atoms in a solid. In a metallic bond, the valence electrons of the metal atoms are delocalized, meaning they are not associated with any particular atom but instead move freely throughout the entire solid.A covalent bond is a type of chemical bond that occurs when two or more atoms share electrons in order to achieve a more stable electron configuration.What is an Electrovalent or Ionic bond?

An electrovalent or ionic bond is a type of chemical bond that occurs between two atoms when one or more electrons are transferred from one atom to another. This results in the formation of two ions with opposite charges that are attracted to each other by electrostatic forces, forming an ionic bond.

Typically, an ionic bond occurs between a metal and a nonmetal. The metal atom loses one or more electrons to become a positively charged ion or cation, while the nonmetal atom gains one or more electrons to become a negatively charged ion or anion. For example, in the formation of sodium chloride (NaCl), sodium donates an electron to chlorine, forming Na+ and Cl- ions that are attracted to each other to form an ionic bond.

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a solution is prepared with 3.85 grams of a non ionic unkwon compound in 100.0g cyclohexane. the solution had a freezing point of 4.18c. what is the molar mass

Answers

3.85 grammes of a non-ionic unidentified substance are dissolved in 100.0 grammes of cyclohexane to create a solution. The solution's freezing point was 4.18 c. The molar mass is 186.

Kf of cyclohexane = 20.2 C0/m

ΔTf   =i* kf * m

   i= 1 for non-electrolyte

4.18  = 1*20.2*m

 m  = 4.18/20.2  = 0.207m

molality  = W*1000/G.M.Wt* weight of solvent

0.207   =  3.85*1000/G.M.Wt*100

G.M.Wt  = 3.85*1000/0.207*100  = 186g/mole

the molar mass of the unknown compound is 186

A substance's molar mass is its mass in grammes per mole of the chemical. A mole is 6.022 1023 molecules of any given chemical. A mole is a unit used to quantitatively quantify the size of the tiniest entities, much like how we use a standard number to compute many things, such as how a dozen equals twelve objects.

Everybody is interested in learning how many molecules are there in a given substance. In terms of size and mass, molecules and atoms are incredibly small. The weight of one sample mole is known as the molar mass. The molar mass is determined by adding the atomic masses (atomic weights) of each atom in the molecule.

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A student runs the reaction represented by the equation below. What mass of H2 gas would be produced if the student begins with 9.68 grams of each reactant? Round to the nearest 0.01 and remember to include both units and substance in your answer!!!

Zn + HCl --> ZnCl2 + H2

Answers

Answer:

The balanced equation for the reaction is:

Zn + 2HCl -> ZnCl2 + H2

Since the student starts with 9.68 grams of each reactant, we have 9.68 grams of Zn and 9.68 grams of HCl.

From the balanced equation, we know that 2 moles of HCl are needed to produce 1 mole of H2. Thus, if we have 9.68 grams of HCl, we have:

9.68 g / (36.5 g/mol) = 0.265 moles of HCl

Therefore, we can calculate the number of moles of H2 that would be produced:

0.265 moles H2 = 0.265 moles HCl x (1 mole H2 / 2 moles HCl) = 0.132 moles of H2

Next, we can convert the number of moles of H2 to mass:

0.132 moles H2 x (2.02 g/mol) = 0.267 g of H2

Therefore, 9.68 grams of each reactant would produce approximately 0.267 g of H2.

So the answer is 0.267 g of H2.

Stoichiometry
2. Balance the equation
Name:
1. Given this equation: N₂ +_______ H₂ →NH,, balance it and write the following molar ratios:
a)
N₂/H₂
b)
Ng/NH,
c) Hạ / NH,
a) Li,N/H,O
b)

Answers

N₂ + 3H₂ →2NH[tex]_3[/tex] is the balanced equation. A balanced equation is indeed a chemical reaction equation.

What is balanced equation?

A balanced equation is indeed a chemical reaction equation in which the overall charge and the amount of atoms for every element inside the reaction are the same for both the products and reactants.

In plenty of other terms, the mass as well as charge across both endpoints of the reaction are balanced.

N₂ + H₂ →NH[tex]_3[/tex]

Number of atom of nitrogen on reactant side is 2 while on product side it is 1.

N₂ + H₂ →2NH[tex]_3[/tex]

Number of atom of hydrogen on reactant side is 2 while on product side it is 6.

N₂ + 3H₂ →2NH[tex]_3[/tex]

Therefore, N₂ + 3H₂ →2NH[tex]_3[/tex] is the balanced equation.

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after drinking multiple energy drinks in one sitting, your stomach begins to produce excess acid to compensate. this lowers your stomach ph from 2.0 to 1.8. aspirin has a pka of 3.0 and is only absorbed in its protonated form. what percent of aspirin will be absorbed given a stomach ph of 1.8?

Answers

Lowers your stomach ph from 2.0 to 1.8. aspirin only absorbs in its protonated state and has a pka of 3.0,very small percentage of the aspirin will be absorbed  given a stomach ph of 1.8.

The first step is to determine the ratio of protonated to deprotonated aspirin in the acidic environment of the stomach. This can be done using the Henderson-Hasselbalch equation, which relates the pH, pKa, and the ratio of protonated to deprotonated forms of a weak acid:

pH = pKa + log([A-]/[HA])

[HA]/[A-] = 10^(pH - pKa) = 10^(1.8 - 3.0) = 0.014

Therefore, only a very small percentage of the aspirin will be absorbed in its protonated form, and the majority will remain in the deprotonated form and be excreted from the body. This may decrease the effectiveness of the aspirin as a pain reliever or anti-inflammatory agent.

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a red blood cell is placed into each of the following solutions. indicate whether crenation, hemolysis, or neither will occur. solution a: 4.19 % (m/v) nacl solution b: 1.78 % (m/v) glucose solution c: distilled h2o solution d: 7.6 % (m/v) glucose solution e: 5.0 % (m/v) glucose and 0.9 % (m/v) nacl

Answers

Following are the the effect of each solution on the red blood cells as per the given information :

a) crenation

b) neither

c) hemolysis

d) crenation

e) neither

The behavior of red blood cells (RBCs) in different solutions can be determined by comparing the tonicity of the solution to the tonicity of the RBC.

A hypertonic solution has a higher solute concentration than the cell and will cause water to move out of the cell, leading to crenation (shrinking) of the RBC.

A hypotonic solution has a lower solute concentration than the cell and will cause water to move into the cell, leading to hemolysis (bursting) of the RBC.

An isotonic solution has the same solute concentration as the cell and will not cause any net movement of water.

Using this given information, we can determine the effect of each solution on the RBCs:

a) 4.19% (m/v) NaCl solution is hypertonic to the RBC, so water will move out of the cell and cause crenation.

b) 1.78% (m/v) glucose solution is isotonic to the RBC, so it will not cause any crenation or hemolysis.

c) Distilled H2O is hypotonic to the RBC, so water will move into the cell and cause hemolysis.

d) 7.6% (m/v) glucose solution is hypertonic to the RBC, so water will move out of the cell and cause crenation.

e) 5.0% (m/v) glucose and 0.9% (m/v) NaCl solution is isotonic to the RBC, so it will not cause any crenation or hemolysis.

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(the question is in the picture!) - please walk me trough the steps on how to get the answers w the answer please and thank you.

Answers

The number of times a mole of Chromebooks will encircle the moon is  1.59 x 10¹⁶ times.

What is the number of times a mole of Chromebook will encircle the moon?

The number of times a mole of Chromebook will encircle the earth is determined by the length of a Chromebook.

The length of a standard-size school Chromebook is 11.6 inches.

One mole of Chromebook is 11.6 inches long or 0.2946 meters.

Avogadro's number is 6.022 x 10^23.

A mole of Chromebook will have a length =   0.2946 *  6.022 x 10^23.

So, the total length of a mole of Chromebook lined up end to end = 1.75 x 10^24 meters

The circumference of the moon is approximately 10,917 kilometers, which is equal to 10,917,000 meters.

The number of times a mole of Chromebooks will encircle the moon = 1.75 x 10^24/ 10,917,000

The number of times a mole of Chromebooks will encircle the moon =  1.59 x 10¹⁶ times.

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What’s the answers to this quiz?

Answers

Antimony is an element having atomic number 51 and mass number 121.76 u. It has 51 number of proton and electrons.

Phosphorus is an element having the atomic number 15. It has 15 protons, electrons, and 16 neutrons.

The symbol of magnesium is Mg whereas the symbol of cobalt in Co.

The two subatomic particles present in the nucleus are the proton and neutron. They are collectively called nucleons. The proton has a positive charge, the electron has a negative charge whereas the neutron has no charge.

Where are protons neutrons and electrons?

Protons and neutrons are accordingly called nucleons since they are in the nucleus of the atom. electrons are a type of subatomic speck with a negative charge. Protons are a type of subatomic particle with a positive charge.

Neutrons, further with protons, are subatomic particles found inside the nucleus of every atom. Neutrons have an impartial electric charge (neither negative nor positive) and have rather more mass than positively charged protons.

So we can conclude that Unlike protons and neutrons, which are detected inside the nucleus at the center of the atom, electrons are initiated outside the nucleus.

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a water molecule stays in a living organism for about how long?

Answers

A water molecule typically stays in a living organism for a relatively short amount of time, typically a few minutes.

This is because water molecules are constantly being exchanged between different parts of the organism and the environment. Inside the organism, water molecules move in and out of cells, tissues and organs, and are also exchanged with the atmosphere. The process of exchanging water molecules between the organism and its environment is known as the water cycle. This cycle involves water molecules evaporating into the atmosphere, condensing, and then falling back down to Earth as rain or snow, where it is taken up by plants and animals, and then released back into the atmosphere. Water molecules are also exchanged between living organisms and their environment through diffusion, which is the movement of molecules from an area of higher concentration to an area of lower concentration. Therefore, even though a water molecule may stay in a living organism for a few minutes, it is constantly cycling through the organism and its environment.

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Which of the following conditions indicate an acidic solution at 25 °C? Select all that apply.
pOH = 9.66
pH = 4.25
[H+] > 1.0 x 10-7 M
[H+] > [OH-]
[OH-] > [H+]

Answers

Answer:

The conditions that indicate an acidic solution at 25 °C are:

pH = 4.25

[H+] > 1.0 x 10^-7 M

[H+] > [OH-]

Explanation:

a sample of an unknown compound gas contains 34g of that gas occupies 6.7l at 2 atm and has a temp of 182.5k what is the molecular weight and what gas do you believe it to be?

Answers

The molecular weight of the sample of unknown gas that occupies 6.7L at 2 atm and has a temperature of 182.5K is 38.02g/mol.

How to calculate molecular weight?

The molecular weight or mass of a substance can be calculated from the number of moles in the substance. However, the number of moles of the substance can be calculated using Avogadro's equation as follows:

PV = nRT

Where;

P = pressureV = volume n = number of molesT = temperatureR = gas law constant

2 × 6.7 = n × 0.0821 × 182.5

13.4 = 14.98n

n = 0.894 moles

molecular weight = 34g ÷ 0.894mol = 38.02g/mol

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An aqueous NaCl solution is made using 112 grams of NaCl diluted to a total solution volume of 1 L. Calculate the molarity, Molality, and mass percent of solution

Answers

Molarity of solution is 1.91moles/L ,molaity of solution is 1.91mole/Kg and mass percent of solution is  99.8%

Molality is a proportion of the quantity of moles of solute in an answer comparing to 1 kg or 1000 g of dissolvable. This differentiations with the meaning of molarity which depends on a predetermined volume of arrangement.An ordinarily involved unit for molality in science is mol/kg. An answer of fixation 1 mol/kg is likewise once in a while signified as 1 molal. The unit mol/kg expects that molar mass be communicated in kg/mol, rather than the standard g/mol or kg/kmol.

We know that molarity=number of moles of solute/volume of solution in liters.

Now,number of moles of NaCl=112/molecular mass of NaCl.

Molecular mass of NaCl is 58.5g

So,number of moles of NaCl=112/58.5g=1.91moles

Now,molarity=number of moles of NaCl/volume of solution in liters

=>molarity=1.91/1=1.91moles/liters.

Now,molality=number of moles of NaCl/ amount of solvent in grams

Here,solvent is water so,amount of solvent in 1000gm

So,molality =1.91/1000g=1.91/1kg=1.91moles/Kg

Now,mass percent of solution =(mass of solute/total mass of solution) ×100

Mass of solute is 112g and total mass of solution is 112+1000+10g=1122g

Therefore,mass percent of solution =(112/1122)×100=99.98%

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Iron has a density of 7. 86 g/cm3 (1 cm3=1 mL). Calculate the volume (in dL) of a piece of iron having a mass of 4. 18 kg. Note that the density is provided in different units of volume and mass than the desired units of volume (dL) and the given units of mass (kg). You will need to express the density in kg/dL (1 cm3 = 1 mL) before calculating the volume for the piece of iron

Answers

510.17 centimetres cube is the volume of iron has a density of 7.86 gram per centimetres cube ( 1 centimetre cube = 1ml) and has a mass of 4.01 kg.

Density is the amount of mass of a substance present per volume of the cubic centimetre and it is the ratio of mass of a substance to the volume of the substance with a unit centimetre cube.

The iron has a density of 7.86 gram per centimetres cube and mass of 4.01 kg so,

mass in grams= [tex]\frac{4.01}{1000} = 0.0041g.\\Density= \frac{mass}{volume}[/tex]

Substituting the values in the equation, we get:-

volume= [tex]\frac{0.0041}{7.86} = 510.17 cm^{3} .[/tex]

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How is an unknown oxidation state of an element within a compound
determined?

Answers

By taking a sum of the oxidation numbers and equating it to zero, the oxidation number of the unknown element can be determined.

What is the oxidation number?

We know that the oxidation state of an unknown element can be found in a compound can be determined when we know that the sum of all the oxidation numbers of the elements in the compound is zero.

If we know the oxidation number of the other elements in the compound then we can call the unknown oxidation number x. By taking a sum of the oxidation numbers and equating it to zero, the oxidation number of the unknown element can be determined.

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Each of the following properties as being physical as being physical or chemical iron rusting gasoline burning solid sulfur shaltering and lye feeling slippery

Answers

Properties  of  Iron Rusting is Chemical;Gasoline Burning is Chemical;Solid Sulfur is Physical ;Shattering is Physical ;Lye Feeling Slippery is Physical.

Iron Rusting: Chemical - Iron rusting is a chemical reaction between iron, oxygen and water which results in the formation of hydrated iron oxide (Fe2O3).

Gasoline Burning: Chemical - Gasoline burning is a combustion reaction between gasoline and oxygen which results in the formation of carbon dioxide (CO2) and water (H2O).

Solid Sulfur: Physical - Solid sulfur is a physical property because it is a solid at room temperature and pressure.

Shattering: Physical - Shattering is a physical properties because it is a change in the physical structure of an object.

Lye Feeling Slippery: Physical - Lye feeling slippery is a physical property because it is a tactile sensation caused by the physical properties of lye.

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Complete question:Each of the following properties as being physical as being physical or chemical

iron rusting; gasoline burning ;solid sulfur ;shaltering and lye feeling slippery

what materials can easily diffuse through the lipid bilayer, and why?

Answers

Small nonpolar molecules, including O2 and CO2, are soluble withinside the lipid bilayer and consequently can effortlessly pass cellular membranes.

Small uncharged polar molecules, including H2O, can also diffuse via membranes, however large uncharged polar molecules, including glucose, cannot. Only the smallest molecules like water, carbon dioxide, and oxygen can freely diffuse throughout mobileular membranes. The shape of the lipid bilayer permits small, uncharged materials including oxygen and carbon dioxide, and hydrophobic molecules including lipids, to byskip via the mobileular membrane, down their awareness gradient, with the aid of using easy diffusion. The molecules that diffuse via the plasma membrane maximum quick are small, hydrophobic molecules including oxygen or carbon dioxide.

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Ozone is a secondary pollutant. a secondary pollutant is:________

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Ozone is a secondary pollutant, a secondary pollutant is a type of air pollutant that is produced as a result of chemical reactions between primary pollutants in the atmosphere.

Unlike primary pollutants, which are directly emitted into the atmosphere, secondary pollutants are formed through a series of chemical reactions between primary pollutants and other atmospheric compounds. Ozone is a secondary pollutant that is formed when primary pollutants such as nitrogen oxides (NOx) and volatile organic compounds (VOCs) react with each other in the presence of sunlight. Ozone is considered to be a secondary pollutant because it is not directly emitted into the atmosphere but instead is formed through chemical reactions involving primary pollutants. It's important to note that although secondary pollutants are not directly emitted into the atmosphere, they can still have significant impacts on the environment and human health. Ozone, for example, is a major component of smog and can cause respiratory problems, as well as damage crops and other vegetation.

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