calculate the molarity of a 10.0% CaCl2 solution. the density of the solution is 1.0835 g/cm³.

Answers

Answer 1

The molarity of the 10.0% CaCl2 solution is 0.9007 M

What is the molarity of the solution?

To calculate the molarity of the CaCl2 solution, we need to first determine the mass of CaCl2 present in one liter (1000 mL) of the solution.

A 10.0% CaCl2 solution means that 10.0 g of CaCl2 is present in 100 g of the solution. We can use this information to calculate the mass of CaCl2 in one liter of the solution as follows:

Mass of CaCl2 in 1 L = (10.0 g CaCl2 / 100 g solution) x (1000 g solution / 1 L solution)

Mass of CaCl2 in 1 L = 100 g CaCl2 / 1 L solution

Now that we know the mass of CaCl2 in one liter of the solution, we can use the molarity formula to calculate the molarity of the solution:

Molarity = moles of solute / volume of solution (in liters)

To find the moles of CaCl2 present in one liter of the solution, we need to divide the mass of CaCl2 by its molar mass. The molar mass of CaCl2 is 110.98 g/mol

moles of CaCl2 in 1 L = 100 g CaCl2 / 110.98 g/mol = 0.9007 mol

Finally, we can use the formula for molarity to calculate the molarity of the solution:

Molarity = moles of solute / volume of solution

Molarity = 0.9007 mol / 1 L = 0.9007 M

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Related Questions

How are incomplete and complete metamorphoses the same?

Insects that go through these cycles form a cocoon.
Insects that go through these cycles start as an egg.
The infant insects that go through these cycles look different from the adult.
The insects that go through these cycles reproduce by laying unfertilized eggs.

Answers

Incomplete and complete metamorphoses are similar in that they both start as an egg and the infant insects that go through these cycles look different from the adult. Options 2 and 3.

Complete and incomplete metamorphosis

In both types of metamorphoses, the insect starts as an egg and hatches into a larva or nymph. The larva or nymph of both types of metamorphoses looks different from the adult, and they both go through multiple developmental stages before reaching adulthood.

However, incomplete and complete metamorphoses differ in several ways:

insects that go through incomplete metamorphosis do not form a cocoon, and the developmental changes between the larval stage and the adult are gradual, with the immature stages resembling the adult.insects that undergo complete metamorphosis form a cocoon or pupa, and the developmental changes between the immature and adult stages are more drastic, with the immature stages looking very different from the adult.insects that go through incomplete metamorphosis lay fertilized eggs, while those that go through complete metamorphosis reproduce by laying unfertilized eggs.

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the most important gaseous element to accumulate in earth's atmosphere, which had to await the evolution of photosynthesis in order to exceed its loss to space, is ______. multiple choice question.

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The most important gaseous element to accumulate in the earth's atmosphere, which had to await the evolution of the photosynthesis in order to exceed its loss to the space, is oxygen. The correct option is 2.

The oxygen is the chemical element with an atomic number of 8 and oxygen atom has the eight protons and eight electrons in its nucleus. The Oxygen forms the chemical compound with formula of O₂ of two atoms which is the colorless gas at the normal temperatures and the pressures.

Thus, the oxygen the most important gaseous element to accumulate in earth's atmosphere. IT had to await evolution of the photosynthesis in order to the exceed its loss to the space.

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This question is incomplete , the complete question is :

The most important gaseous element to accumulate in Earth's atmosphere, which had to await the evolution of photosynthesis in order to exceed its loss to space, is ______. multiple choice question.

1)  oceans

2) oxygen

3)  longitude

4)  minor

Which substance is most likely
to be corroded by a base?
An iron nail
A zinc statue
A leather saddle
A steel beam

Answers

Answer:

an iron nail

Explanation:

iron metal can be corroded in a basic medium,

so iron nail can be corroded by a base

Answer: A leather saddle

Explanation:

What can be used to measure molecular polarity?
a. x-rays
b. electron microscope
c. electric field
d. infrared light

Answers

Infrared light can be used to measure molecular polarity. Therefore, the correct option is option D.

A molecule or its chemical groups have an electric dipole moment with a negatively charged end and a positively charged end when they are polar, which in chemistry is the separation of electric charge. Because the bonded atoms' electronegativity differs, polar compounds must have one or more polar bonds. If the bond dipoles cancel one other out via symmetry, molecules with polar bonds are not polar. Infrared light can be used to measure molecular polarity. Dipole-dipole intermolecular forces and hydrogen bonding are how polar molecules communicate with one another. Many physical characteristics, including as surface tension, solubility, and melting and boiling points, are based on polarity.

Therefore, the correct option is option D.

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You have an aqueous solution with a pH of 6.0. What would you add to make the solution more basic?
A. sodium chloride (NaCl)
B. sodium hydroxide (NaOH)
C. hydrogen chloride (HCI)
D. deionized water (H2O)

Answers

B. You have an aqueous solution with a pH of 6.0. sodium hydroxide (NaOH) add to make the solution more basic.

The pH of water will drastically alter if a strong acid or strong base is added. For instance, the process HCl + [tex]H_{2}O[/tex] → [tex]H_{3}O^{+}[/tex]+  occurs when a strong acid like HCl is added to water. In other words, the acid's proton ([tex]H^{+}[/tex]) binds to the neutral water molecules to create [tex]H_{3}O^{+}[/tex], which increases the[tex]H^{+}[/tex] concentration. The resultant high quantity of ([tex]H^{+}[/tex]) increases the acidity of the solution and causes a sharp decrease in pH.

[tex]Na^{+}[/tex] and [tex]OH^{-}[/tex]ions are arranged in a crystalline grid to form solid NaOH. The ions separate when this solid is introduced to water, which causes the water to contain more [tex]OH^{-}[/tex] ions than usual: NaOH [tex]OH^{-}[/tex] + [tex]Na^{+}[/tex]. The solution becomes more basic as a consequence of the high concentration of [tex]OH^{-}[/tex], which also causes a sharp rise in pH. (Remember that as the concentration of[tex]OH^{-}[/tex] ions increases, the concentration of [tex]H^{+}[/tex]ions decreases because the product of concentrations, [[tex]OH^{-}[/tex]][[tex]H^{+}[/tex]], stays fixed at Kw=10-14.)

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The charged particle that forms when an atom or small group of atoms, loses or gains one or more _____ is called an ion. An ion with a positive charge is called a (n) _____ while an ion with a negative charge is a(n) _____.

Answers

The charged particle that forms when an atom or small group of atoms loses or gains one or more electrons is called an ion.

An ion with a positive charge is called a cation, while an ion with a negative charge is called an anion.

A positive or negative electric charge is present in an atom or group of atoms due to the loss or gain of one or more electrons (such as a free electron). Having a net electrical charge makes an atom or molecule an ion. By convention, the charge of an electron is thought to be negative, and this charge is equal to and the opposite of the charge of a proton, which is thought to be positive.

A positively charged ion is a cation (atoms or groups of atoms that have more protons than electrons due to having lost one or more electrons). Negatively charged ions are known as anions (meaning they have more electrons than protons due to having gained one or more electrons).

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True or False: colligative properties depend only on solute concentration; the identity of the solute is not important.

Answers

The colligative properties depend only on solute concentration; the identity of the solute is not important. It is true.

The colligative properties of a solution depend on the number of molecules or ions in the solute, not on the identity of solute. Osmotic pressure, boiling point elevation, freezing point depression, and vapor pressure depression are examples of ligand-like properties.

The total number of solute particles in a solution affects the colligative property of the solution. The chemical composition of the components has no effect on these properties. Therefore, the type of solvent has no effect on colligative power.

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f the reactants of a chemical reaction contain three total carbon atoms, what must be true of the products?

Answers

If the reactants of a chemical reaction contain three total carbon atoms the products of the chemical equation will have 3 carbon atoms.

Since matter cannot be created or destroyed, the rule of conservation of mass states that no matter is synthesized or degraded during a chemical reaction. It is only transformable.

As a result, atoms are preserved in chemical reactions. This means that the elements that are forming a compound in a specific ratio will reorganize to create new compounds with the same number and kind of atoms as the reactants.

In conclusion, if a molecular equation's reactants contain 3 carbon atoms, 6 oxygen atoms, and 4 hydrogen atoms, its products will also contain 3 carbon atoms, 6 oxygen atoms, and 4 hydrogen atoms.

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The complete question is:

If the reactants of a chemical equation have 3 carbon atoms, 6 oxygen atoms, and 4 hydrogen atoms. In order to follow the conservation of matter, the products of the chemical equation will have

Draw the lewis structure.
Label the molecule with - and + if applicable.
Draw the molecule 2 more times so that the molecules are correctly oriented based on the partial charges (if applicable). You should have 3 total molecules.
With a dashed line (----) show how this molecule would interact. (connect partial positive to partial negative)
Identify the type/s of intramolecular forces.
For SI2 & NH3

Answers

Answer:

any picture?

Explanation:

Calcium bromide is the product of calcium and bromide ions. what is the formula for calcium bromide?
a. cacl2
b. CaBr2
c. CaO
d. Ca(OH)2

Answers

The combination of calcium with bromide ions results in calcium bromide. The chemical formula with calcium bromide is CaO.

What is produced when calcium bromide is used?

Bromine and calcium oxide are created when calcium bromide is heated vigorously in air. 2 CaO + 2 Br from 2 CaBr2 + O2. The bromide is converted to bromine in this process by the oxygen.

Which calcium ion corresponds to the bromine ion?

What about the substance created when calcium and bromine combine? Calcium loses two electrons in order to really be isoelectronic with argon, becoming the 2+ ion Ca2+. The 1-ion, Br-, is formed by bromine. Calcium bromide has the chemical formula CaBr2.

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a 183 g 183 g sample of bleach contains 14.0 g naocl 14.0 g naocl . calculate the mass percent of naocl naocl in the bleach.

Answers

A 183 g sample of bleach contains 14.0 g NaOCl. 7.65% is the mass percent of NaOCl in the bleach.

What is mass percent?

Mass percent is the means to indicate a concentration. Moreover, it defines the element in a certain composition. A mass percentage can be used to understand the solution's composition.

It displays the amount of solute in a certain amount of solution. The solute's concentration is specified in terms of mass or moles. It's possible to represent a degree using the mass percent. Also, it describes the element during a certain mixing.

mass percent = (solute mass / mass of solution)×100

mass percent = (14.0 / 183)×100 = 7.65%

Therefore, 7.65% is the mass percent of NaOCl in the bleach.

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what is chlorine periodic table?

Answers

Chlorine is an atomic number 17 chemical element with the symbol Cl. It belongs to the halogen group and is found in the periodic table's third row, or period, and second column.

or group 17. (also known as the "halogen group" or "halogens"). Other elements in the halogen group include fluorine, bromine, iodine, and astatine, which have comparable chemical features such as strong electronegativity and reactivity. At room temperature, chlorine is a yellow-green gas that is a powerful oxidizing agent that may react with a wide range of other elements and compounds. It is frequently used in water treatment, disinfection, and the manufacturing of chemicals like as solvents, insecticides, and polymers.

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the attraction of a metallic cation for delocalized electrons is called?

Answers

Answer: A metallic bond

identify how many electrons will go into the K. L. and M shells.
1. Magnesium (12)
2. Carbon (6)
3. Oxygen (8)
4. Helium (2)
5. Neon (10)
6. Aluminum (13)
7. Chlorine (17)
8. Phosphorus (15)
9. Argon (18)
10. Beryllium (4)

Answers

The number of electrons that go into the K, L, and M shells for the given elements are:

Magnesium (12): 2 in K shell, 8 in L shell, 2 in M shellCarbon (6): 2 in K shell, 4 in L shellOxygen (8): 2 in K shell, 6 in L shellHelium (2): 2 in K shellNeon (10): 2 in K shell, 8 in L shellAluminum (13): 2 in K shell, 8 in L shell, 3 in M shellChlorine (17): 2 in K shell, 8 in L shell, 7 in M shellPhosphorus (15): 2 in K shell, 8 in L shell, 5 in M shellArgon (18): 2 in K shell, 8 in L shell, 8 in M shellBeryllium (4): 2 in K shell, 2 in L shell

What are electrons?

Electrons are subatomic particles that carry a negative charge and orbit around the positively charged nucleus of an atom. They play a crucial role in determining the chemical and physical properties of an element, including its reactivity, bonding behavior, and electrical conductivity. The number and arrangement of electrons in an atom's shells are determined by its atomic number and electron configuration.

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Solid zinc oxide (ZnO) is added to hydrochloric acid (HCl) to form zinc chloride (ZnCl2) in water (H2O). How many moles of zinc chloride (ZnCl2) will be produced when 112 grams of zinc oxide (ZnO) is used?

Answers

The number of moles of zinc chloride produced will also be 1.376 mol when 112 grams of zinc oxide (ZnO) is used.

The balanced chemical equation for the reaction between zinc oxide and hydrochloric acid is:

ZnO + 2HCl → ZnCl₂ + H₂O

From the equation, we can see that 1 mole of zinc oxide reacts with 2 moles of hydrochloric acid to produce 1 mole of zinc chloride and 1 mole of water.

The molar mass of zinc oxide (ZnO) is 81.39 g/mol, so 112 grams of zinc oxide is equal to:

112 g / 81.39 g/mol = 1.376 mol ZnO

According to the balanced chemical equation, 1 mole of zinc oxide produces 1 mole of zinc chloride, so the number of moles of zinc chloride produced will be 1.376 mol.

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Calculate the pH change when of 1 mL of 0.2 M HCl is added to 50 mL of deionized water.

Answers

The pH change when of 1 mL of 0.2 M HCl is added to 50 mL of deionized water is -1.

Using the dilution formula which is,

M1V1=M2V2

(0.2)(50)=M2(1)

M2=10

pH formula: -log(H+)

= -log(10)

=-1

What is pH?

The pH of a solution indicates how acidic it is. The pH of pure water is 7.

The pH scale is used in chemistry to determine whether an aqueous solution is basic or acidic. The term pH originally meant "hydrogen potential". Acidic solutions often have lower pH values ​​than basic or alkaline solutions.

Water is neither acidic nor basic, it is neutral at pH 7. The scale ranges from 0 (very acidic) to 14 (very basic) (very basic). Water is often between 6.5 and 8.5 on the scale.

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When 50 mL of deionized water and 1 mL of 0.2 M HCl are combined, the pH changes to -1.

According to the given data:

Using the dilution formula which is,

M1V1=M2V2

(0.2)(50)=M2(1)

M2=10

pH formula: -log(H+)

= -log(10)

=-1

What is pH?

How acidic a solution is can be determined by its pH. Pure water has a pH of 7. In chemistry, the pH scale is used to identify how an aqueous solution is basic or acidic. "Hydrogen potential" was the original meaning of the term pH. The pH of acidic solutions is frequently lower than that of basic or alkaline solutions. At a pH of 7, water is neither acidic nor basic. From 0 (extremely acidic) to 14 (very basic), the scale runs (very basic). On the pH scale, water frequently ranges from 6.5 to 8.5.

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Which two elements would NOT be capable of forming an ionicbond?a phosphorus and chlorineb barium and nitrogenc iodine and sodiumd. calcium and oxyge​n// NOT C//

Answers

d. calcium and oxygen would not be capable of forming an ionic bond. Ionic bonds form between elements with significantly different electronegativity values, where one element loses an electron and the other gains it.

Elements with similar electronegativity values would not be capable of forming an ionic bond. Option A, phosphorus and chlorine, and option B, barium and nitrogen, have significantly different electronegativity values and are capable of forming ionic bonds. Option C, iodine and sodium, can form an ionic bond since sodium is a metal and iodine is a nonmetal. Option D, calcium and oxygen, cannot form an ionic bond since both elements have similar electronegativity values and prefer to form covalent bonds.

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Complete question:

Which two elements would NOT be capable of forming an ionic

bond?

a phosphorus and chlorine

b barium and nitrogen

c iodine and sodium

d. calcium and oxyge​n

describe how each type of fossil fuel forms.

Answers

Fossil fuels are created by the decomposed plants and animals which were altered to natural gas, heavy oils or crude oil due to being exposed to a extreme condition of heat and pressure under the earth's crust over millions of years.

Generally, after millions of years underground, the compounds that make up plankton and plants turns into fossil fuels. Basically, plankton decomposes into natural gas and oil, whereas plants become coal. Now-a-days, humans extract these resources through coal mining and the drilling of oil and gas wells on land and offshore.

Fossil fuels are limited and are non-renewable sources. Now-a-days the use of fossil fuels are in alarming rate. We must use fossil fuels in a sustainable way for better future.

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what does °c mean? worth 5.000 points. a. degrees fahrenheit b. times, by c. and d. degrees celsius

Answers

°C is the symbol used for degrees Celsius, a unit of temperature in the metric system.  Thus, option D is the answer.

°C is the symbol used to represent degrees Celsius, which is a unit of temperature in the metric system. It is named after the Swedish astronomer Anders Celsius, who first proposed the Celsius temperature scale in 1742.

The Celsius scale is based on the freezing and boiling points of water, with 0 °C being the temperature at which water freezes and 100 °C being the temperature at which water boils at standard atmospheric pressure.

The Celsius scale is widely used in scientific and engineering applications, as well as in everyday life, particularly in countries that use the metric system. It is an important measurement in areas such as weather forecasting, medicine, and industrial manufacturing.

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Label the arterial vessels of the abdominal cavity. Celiac trunk Inferior mesenteric artery Left suprarenal artery Right common iliac artery Right ovarian/testicular artery Right renal artery Superior mesenteric artery Varicose veins are tunirah

Answers

Here's a list of the arterial vessels of the abdominal cavity you mentioned, along with a brief description of each. Check out the attached figure for a labelled diagram.

1. Celiac trunk: A short, wide artery that branches off the abdominal aorta and supplies blood to the stomach, liver, spleen, and other organs in the upper abdomen.

2. Superior mesenteric artery: An artery that arises from the abdominal aorta just below the celiac trunk and supplies blood to the small intestine, cecum, appendix, ascending colon, and transverse colon.

3. Inferior mesenteric artery: An artery that arises from the abdominal aorta just above the left common iliac artery and supplies blood to the descending colon, sigmoid colon, and rectum.

4. Right and left renal arteries: Arteries that branch off the abdominal aorta and supply blood to the right and left kidneys, respectively.

5. Right and left suprarenal arteries: Arteries that branch off the inferior phrenic arteries (which arise from the abdominal aorta) and supply blood to the right and left adrenal glands, respectively.

6. Right and left ovarian/testicular arteries: Arteries that arise from the abdominal aorta (males) or the internal iliac arteries (females) and supply blood to the right and left ovaries or testes, respectively.

7. Right and left common iliac arteries: Arteries that arise from the abdominal aorta and supply blood to the pelvic organs, gluteal region, and lower limbs.

Varicose veins, on the other hand, are dilated and twisted veins that often occur in the legs, although they can occur in other parts of the body as well. They are caused by weakened or damaged valves in the veins, which allow blood to pool and cause the veins to bulge. Varicose veins are not arteries, and they do not carry oxygenated blood from the heart.

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How does the number of groups help define the Electron geometry and the Molecular Geometry?

Answers

The Electron Pair Geometry and molecular geometry of a molecule is determined by the electron group by counting the total number of electron pairs around a central atom.

Electron Pair Geometry defined as the the spatial arrangement of a molecule's bonds and lone pairs. It is determined by the number of electron groups. Molecular geometry can be explained as the geometry which depends on not only on the number of electron groups but also on the number of lone pairs. When the electron groups are all bond pairs, they are named exactly like the electron pair geometry. The electron pairs are the bonded electrons, lone pairs and single unpaired electrons. It the total number of electron pairs is estimated the electron pair geometry of the molecule can be drawn.

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Looking at the picture, how is it possible to determine the direction of blood flow from blood spatter?

Answers

It is possible to determine the direction of blood flow from blood spatter B. By looking at the shape of the drip and tail to see the possible direction.

How to determine the direction of blood flow?

The shape of blood spatter can provide information about the direction and speed of blood flow, as well as the angle of impact, the type of weapon or force that caused the bloodshed, and other details about the crime scene.

One way to determine the direction of blood flow from a blood spatter pattern is to examine the shape of the spatter. Blood drops that are elongated or have a tail shape may indicate the direction of travel of the blood, since they tend to be stretched in the direction of motion.

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Synthesis and Decomposition
Synthesis:
Write the product formed from each reaction and then balance the equation if
necessary.

1. Sr + O2 ➡️

2. Na + O2 ➡️

3. K + Cl2 ➡️

4. Ca + F2 ➡️

5. Mg + O2➡️

Answers

Below are the equations and those that have been balanced

Sr + O2 ➡️ SrO

Na + O2 ➡️ Na2O

2K + Cl2 ➡️ 2KCl

Ca + F2 ➡️ CaF2

2Mg + O2 ➡️ 2MgO

What is a balanced chemical equation?

A balanced chemical equation means that the number of atoms of each element is the same on both sides of the equation. In other words, the mass and charge are conserved in the reaction, and no atoms are created or destroyed. Balancing the equation involves adjusting the coefficients to ensure that the number of atoms of each element is equal on both sides.

From the question given,

Sr + O2 ➡️ SrO

The balanced equation will be:

2Sr + O2 ➡️ 2SrO

Na + O2 ➡️ Na2O

The balanced equation will be:

4Na + O2 ➡️ 2Na2O

2K + Cl2 ➡️ 2KCl

The balanced equation will be:

2K + Cl2 ➡️ 2KCl

Ca + F2 ➡️ CaF2

The balanced equation will be:

Ca + F2 ➡️ CaF2

2Mg + O2 ➡️ 2MgO

The balanced equation will be:

2Mg + O2 ➡️ 2MgO

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What type of structure is a fatty acid?

Answers

Fatty acids are organic molecules that consist of a long hydrocarbon chain and a carboxyl group (-COOH) at one end. They can exist in different forms, but their most common structure is a linear, unbranched chain of carbon atoms with hydrogen atoms attached to most of the carbons.

The carboxyl group at the end of the chain is polar and hydrophilic (water-loving), while the hydrocarbon chain is nonpolar and hydrophobic (water-fearing). This makes fatty acids amphipathic, meaning they have both hydrophilic and hydrophobic properties.

Fatty acids are the building blocks of many lipids, including fats, oils, and phospholipids. They play important roles in energy storage, membrane structure, and cellular signaling.

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A mixture of 4.00 g of oxygen, 17.0 g of argon, and 35.0 g of carbon dioxide exert a pressure of 3.78 atm. What is the partial pressure of the argon in the mixture?

Answers

Therefore, the partial pressure of argon in the mixture is 1.195 atm.

What is pressure?

Pressure is defined as the amount of force per unit area. It is a measure of how much force is distributed over a given surface area. Pressure can be represented by the symbol P and is typically measured in units such as Pascals (Pa), pounds per square inch (psi), or atmospheres (atm). Pressure is a fundamental concept in physics and is involved in a wide range of phenomena, from the behavior of fluids to the operation of mechanical devices. For example, when a force is applied to a gas, the gas molecules collide with the walls of the container and exert a pressure on the walls. This pressure is proportional to the number of gas molecules, the temperature of the gas, and the volume of the container.

Here,

The partial pressure of a gas in a mixture is the pressure that the gas would exert if it were the only gas present in the same volume and at the same temperature as the mixture. We can use the mole fraction of the gas to calculate its partial pressure in the mixture.

To calculate the mole fraction of argon, we need to find the total number of moles of gas in the mixture. We can do this by dividing the mass of each gas by its molar mass and then adding the results together:

moles of oxygen = 4.00 g / 32.00 g/mol = 0.125 mol

moles of argon = 17.0 g / 39.95 g/mol = 0.425 mol

moles of carbon dioxide = 35.0 g / 44.01 g/mol = 0.795 mol

total moles of gas = 0.125 mol + 0.425 mol + 0.795 mol = 1.345 mol

Next, we can calculate the mole fraction of argon:

mole fraction of argon = moles of argon / total moles of gas

mole fraction of argon = 0.425 mol / 1.345 mol = 0.316

The partial pressure of argon can now be calculated using the ideal gas law, where the partial pressure of argon (PAr) is the mole fraction of argon multiplied by the total pressure of the mixture (Ptotal):

PAr = XAr × Ptotal

where XAr is the mole fraction of argon.

Plugging in the given values, we get:

PAr = 0.316 × 3.78 atm = 1.195 atm

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58. What is the approximate molecular weight of active Dnmt3a?
A. 35 kDa
B. 70 kDa
C. 105 kDa
D. 140 kDa

Answers

Option B, A catalytic domain of 35 kDa and a SET domain of 35 kDa make up the approximately 70 kDa molecular weight of active Dnmt3a.

The molecular mass of active Dnmt3a is around 70 kDa. The addition of methyl groups to DNA molecules is carried out by the DNA methyltransferase enzyme Dnmt3a. The inhibition of transposable elements is another potential role for it.

A catalytic domain and a SET domain make up Dnmt3a's two separate domains. A molecular weight of approximately 35 kDa distinguishes the SET domain from the catalytic domain. This results in an overall molecular weight for active Dnmt3a of 70 kDa.

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does ionic dissolve in water

Answers

Yes, ionic bonds dissolves in water.

As we know water is a polar solvent and it has two poles one negative and another positive. The two poles of water usually have strong forces of attraction towards other charged ions, due to this water breaks the ionic bond by hydrogen bond formation. Hence, ionic bonds dissolve in water.

But, not all ionic compounds are able to be soluble in water. We usually use the solubility rules to predict whether an ionic compound dissolves in water or not.

On the other hand, generally covalent compounds are insoluble in water. This is due to water being a highly polar solvent don't dissolves covalent compounds in water due to presence of hydrogen bonding.

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the hydrogen peroxide solution you will use in this experiment is a 3% mass/volume solution. what is the molarity of this solution?

Answers

3% mass by volume solution contain 3 g of the solute per 1 L of the solution. 3 g of hydrogen peroxide contains 0.088 number moles. Then molarity of the solution is 0.088 M.

What is molarity ?

Molarity of a solution is a common term used to express the concentration of a solution. It is the ratio of number of moles of solute to the volume of the solution in liters.

Mass by volume percent is another term for concentration indicating how many grams of the salt is present in one liter of the solution.

Given mass/ volume of hydrogen peroxide = 3%

that is 3 g in 1 L

molar mass of H₂O₂ = 34g/mol

then no.of moles in 3 g = 3 g /34 g/mol = 0.088 moles.

Then molarity of 0.088 moles in 1 L solution is 0.088 M.

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Question 5


The atomic number of an element tells you the number of ______

o Electrons & neutrons
O Electrons & Proton
O Protons & Neutrons

Answers

The atomic number of an element tells you the number of  Electrons & Proton

What is a proton?

A stable subatomic particle with the symbol P, H+, or 1H+, a proton has an electric charge of +1 e. Its mass is 1,836 times greater than that of an electron and only slightly less than that of a neutron. Nucleons are the collective name for protons and neutrons, which have masses of roughly one atomic mass unit apiece.

The positively charged particles called protons are found in the atom's nucleus. The strong force, which is stronger at short distances, pulls the protons together while the electromagnetic force pushes them apart.

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Give the approximate bond angle for a molecule with a tetrahedral shape.A) 109.5°B) 180°C) 120°D) 105°E) 90°

Answers

The bond angle for a molecule with a tetrahedral shape is given as 109.5° C. Hence, the correct option is A.

Generally, bond angle is defined as the angle which is present between the two bonds i.e. angle between the two orbitals containing bonding electron pairs around the central atom in a complex molecule or ion. It is usually measured in the terms of degrees and is calculated using spectroscopic method.

Generally, the valence shell electron pair repulsion (VSEPR) theory is defined as a model used to predict 3-D molecular geometry based on the number of valence shell electron bond pairs among the atoms in a molecule or ion. This model usually assumes that the electron pairs will often arrange themselves in order to minimize the repulsion effects from one another.

Therefore, according to VSEPR Theory, the bond angle of a tetrahedral molecule is 109.5°. Hence, the correct option is A.

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