What type of bcl3 ? polar or nonpolar?

Answers

Answer 1

The chemical boron trichloride (BCl3) is nonpolar. The molecule has a trigonal planar structure, with three chlorine atoms surrounding the central boron atom.

In BCl3, three chlorine atoms form covalent connections with the boron atom. While chlorine has seven valence electrons, boron's valence shell only has three. Boron thus forms three single covalent connections with three chlorine atoms by sharing its three valence electrons with them. The three B-Cl bonds are all polar because chlorine has a stronger electronegativity than boron. The three chlorine atoms are, however, symmetrically positioned around the primary boron atom because the molecule has a trigonal planar geometry and is symmetrical. This configuration causes the three B-Cl bonds' dipole moments to cancel out, resulting in a net dipole moment of zero. As a result of its lack of polar bonds, BCl3 is regarded as a nonpolar molecule.

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Related Questions

When 1-chlorobutane is treated with sodium hydroxide, two products are formed. what are these products?

Answers

The two products formed when 1-chlorobutane is treated with sodium hydroxide are 1-butene and 1-butanol.

The common name of 1-chlorobutane is Butyl chloride. The reaction of  1 -chlorobutane with sodium hydroxide is catalyzed by sodium iodide to give 1 -butanol.

1-Butene is the compound with the formula CH₃CH₂CH=CH₂. This is a colorless gas which easily condensed to give a colorless liquid. 1-butene is classified as a linear alpha-olefin. It is the organic compound with the formula CH3CH2CH=CH2.

1-Butanol is known as butan-1-ol or n-butanol. It is a primary alcohol with the chemical formula C₄H₉OH. It is of linear structure. The Isomers of 1-butanol are butan-2-ol and tert-butanol. It refers to the straight chain isomer.

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what is label of periodic table?

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The label of the periodic table is that the Groups are labeled at the top of the each column and the horizontal rows are called as the periods.

The elements are arranged in the seven horizontal rows, that are called as the periods or the series, and there are the 18 vertical columns that are  called as the groups. The Groups are labeled at the top of the each column. The labelled parts of the element in the periodic table will tells the atomic number and the atomic mass of the element.

The upper labelled part is  the atomic number of the element and The lower part is the atomic mass of the element in the periodic table.

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which pair of elements is likely to produce a highly polar covalent bond

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Oxygen and Nitrogen elements are likely to produce a highly polar covalent bond.

The likelihood of a covalent bond forming between an element with low ionization potential and an element with strong electron affinity is quite high.

The atom that will bind with carbon to form a polar covalent bond is oxygen. This is because oxygen is the most prevalent chemical element that may join with carbon to create a polar covalent bond.

When atoms with various electronegativities share electrons in a covalent link, the result is a polar covalent bond. Think about the molecule of hydrogen chloride (HCl). In order to generate an inert gas electron configuration, each atom of HCl needs an additional electron.

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Select the term that correctly describes a chemical reaction that strongly favors the formation of one stereoisomer over another.

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As a result of the inherent reaction specificity, stereoselectivity describes the preferential formation of one merchandise stereoisomer (enantiomer or diastereomer) compared to another during a chemical reaction.

Provide an example of a stereoisomer?

Stereoisomers, by definition, are isomers having a same composition (i.e., same parts), but distinct spatial orientations. Stereoisomers come in two main varieties: enantiomers and diastereomers.

What are some examples of stereoisomers?

Several sets of molecules attached to a central core have varied relative orientations, which leads to the formation of stereoisomers. Stereoisomers include drugs like R- and S-thalidomide.

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what is molar mass of ethanol?

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The molar mass of the ethanol is 46 g/mol. The ethanol is the covalent compound.

The chemical formula for the organic compound ethanol is C₂H₅OH.

The molar mass of the ethanol that is C₂H₅OH  is as follows :

The molar mass of the ethanol, C₂H₅OH  = 2(12) + 1 (6) + 1 (16)

The molar mass of the ethanol, C₂H₅OH  = 46 g/mol

The ethanol is the covalent compound. The covalent bond is formed in between the atoms or the molecules by the mutual sharing of the electrons. The compound formed by the covalent bond is called as the covalent compound.

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question 1 a spreadsheet cell contains the coldest temperature ever recorded in new zealand: -22 °celsius. what function will display that temperature in fahrenheit?

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When the temperature conversion function =CONVERT(-22, "C", "F") is applied, a reading of -22 °C in Fahrenheit is displayed. On a variety of scales, including the Fahrenheit and Celsius systems, temperature is a unit that is used to denote hotness or coolness.

Heat energy will logically go from a hotter (body with a higher temperature) to a colder (body with a lower temperature) according to temperature (one at a lower temperature).

A temperature is a measurement used to express how hot or cold something is. It demonstrates how heat energy naturally flows from a hotter body to a cooler body and can be expressed in terms of any number of arbitrary scales (one at a lower temperature).

A match is burning at a far greater temperature than an iceberg, yet an iceberg has a significantly higher total heat energy than a match. Temperature is not the same as the energy of a thermodynamic system.

The temperature, along with pressure, density, and other similar properties, is referred to as an intense property as opposed to extensive characteristics like mass or volume—one that is independent of the quantity of stuff being addressed.

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how much citric acid in red bull

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The amount of the citric acid in the red bull is the 0.43 %.

The Citric acid is the organic compound with the chemical formula of the HOC(CH₂CO₂H)₂. The citric acid is the colorless weak organic acid. It will occurs naturally in the citrus fruits. In the biochemistry, the citric acid is the intermediate in the citric acid cycle, that will occurs in the metabolism of all the aerobic organisms.

The Citric acid will gives the Red Bull and its slightly sour kick and it is also acts as the preservative, while the magnesium carbonate helps to neutralize some of  the acidity.

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Whitch statement describe an ideal gas select all correct answers
-The average energy of the particles change as collisions occur
-The particles are in constant motion
-particles both attract and repel each other
-the average energy of the particles depends on the temperature
-volume of the particles doesn’t affect the behavior of the gas

Answers

The following statements describe an ideal gas:

The particles are in constant motion.
The average energy of the particles depends on the temperature.
Volume of the particles doesn’t affect the behavior of the gas.
Therefore, the correct answers are:

The particles are in constant motion.
The average energy of the particles depends on the temperature.
Volume of the particles doesn’t affect the behavior of the gas.



Please brainliest

1. The particles are in constant motion.

2. The average energy of the particles depends on the temperature.

3. Volume of the particles doesn't affect the behavior of the gas.

Using your graduated cylinder, you calibrate the pipet you will be using and the values you collect are as follow. What is the average number of drops per mL of benzene.21 drops20 drops17 dropsa. After calibration, you use the oleic acid/benzene solution to form a monolayer. It takes 8 drops , 9 drops and 8 drops before the layer on the water solution starts to make a bubble tha does not go into solution. What is the average number of drops for your monolayer?b. Since we have the number of drops it takes to make a monolayer and we have the number of drops it takes to make one mL of benzene, we can determine the mL of oleic acid/benzene it takes to form a monolayer.c. Next we need to determine the mass of oleic acid in the monolayer. The concentration of the oleic acid/benzene solution is 0.02g/L. Calculate how many grams of oleic acid is in one drop.d. With this information, we now need to calculate the volume in milliliters. We need to know how many mLs a drop of oleic acid occupies using the density of 0.895 g/mL and the number of drops of oleic acid solution used.

Answers

Part A) The average number of drops per mL of benzene is 19.33 drops/mL

Part B) The average number of drops for the monolayer is 8.33 drops.

Part C)  0.43 mL of oleic acid/benzene is required to make a monolayer.

Part D)  each drop of solution contains 0.00002 g of oleic acid.

Part E) one drop of oleic acid takes up roughly 0.000022 mL.

Part A)  To find the average number of drops per mL of benzene, add the drops from each experiment and divide by the number of trials:

 (21 drops + 20 drops + 17 drops) / 3  = (19.33 drops/mL)

Part B) We sum the values and divide by the number of values to determine the average number of drops for the monolayer:

 (8 drops + 9 drops + 8 drops) / 3 = 8.33 drops

Part C) To calculate the mL of oleic acid/benzene required to produce a monolayer, multiply the average number of drops required for the monolayer by the mL per drop of benzene determined in Part A:

8.33 drops x (1 mL / 19.33 drops) = 0.43 mL

Part D) Using the concentration of the solution, we can determine how many grams of oleic acid are in one drop of the solution:

0.02 g/L = 0.00002 g/mL

Because the density of the solution is not specified, we presume it is the same as that of benzene, which is 0.879 g/mL. As a result, the mass of one mL of solution is:

0.879 g/mL x 1 mL = 0.879 g

The mass of oleic acid in one drop of the solution may now be calculated:

0.00002 g/mL / 1 mL x 1 drop = 0.00002 g/drop

Part E) We need to utilise the density of oleic acid, which is 0.895 g/mL, to calculate the volume in mL that one drop of oleic acid occupies:

0.00002 g / 0.895 g/mL = 0.000022 mL

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The probable question may be:

Part A) Using a graduated cylinder, you calibrate the pipet you will be using and the values you collect are as follows. What is the average number of drops per mL of benzene.

21 drops

20 drops

17 drops

part B) After calibration, you use the oleic acid/benzene solution to form a monolayer. It takes 8 drops , 9 drops and 8 drops before the layer on the water solution starts to make a bubble that does not go into solution. What is the average number of drops for your monolayer?

part C) Since we have the number of drops it takes to make a monolayer and we have the number of drops it takes to make one mL of benzene, we can determine the mL of oleic acid/benzene it takes to form a monolayer.

part D) Next we need to determine the mass of oleic acid in the monolayer. The concentration of the oleic acid/benzene solution is 0.02g/L. Calculate how many grams of oleic acid is in one drop.

part E) With this information, we now need to calculate the volume in mL the drop of oleic acid occupy using the density of 0.895 g/mL and the number of drops of oleic acid solution used.

how do the properties of water differ from those of most other substances? chemistry

Answers

Water is a unique substance in many ways. Here are some of the ways in which the properties of water differ from those of most other substances:High specific heat capacity ,High heat of vaporization,High surface tension,Expansion upon freezing,Universal solvent.

Water can absorb a lot of heat energy thanks to its high specific heat capacity, which prevents temperature rise. Because of this, water is a great coolant and aids in regulating the temperature of living things.

Due to its high heat of vaporisation, turning water from a liquid to a gas requires a significant amount of energy.

It has a high surface tension, which causes it to cluster and condense into droplets. The capillary action depends on this characteristic.

One of the few materials that expands when it freezes is this one. Since it enables aquatic species to float on top of the ice in extremely cold temperatures, this characteristic is crucial for their survival.

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At a particular temperature and pressure helium effuses at a rate of 16.0 mol/s. At what rate will carbon monoxide effuse under the same conditions?

Answers

Therefore, the rate of effusion of carbon monoxide under the same conditions is approximately 6.05 mol/s.

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 effusion rate of a gas is inversely proportional to the square root of its molar mass. This means that if we know the ratio of the molar masses of two gases and the effusion rate of one gas, we can use that information to determine the effusion rate of the other gas.

Let's assume that the effusion rates of helium and carbon monoxide are related by the following equation:

Rate of Helium / Rate of Carbon Monoxide = sqrt(Molar Mass of Carbon Monoxide / Molar Mass of Helium)

We are given that the rate of effusion of helium is 16.0 mol/s, so we can use this value and the molar masses of helium (4.00 g/mol) and carbon monoxide (28.0 g/mol) to solve for the rate of effusion of carbon monoxide:

Rate of Helium / Rate of Carbon Monoxide = √(Molar Mass of Carbon Monoxide / Molar Mass of Helium)

16.0 mol/s / Rate of Carbon Monoxide = √(28.0 g/mol / 4.00 g/mol)

Simplifying the right-hand side, we get:

16.0 mol/s / Rate of Carbon Monoxide = √(7)

Squaring both sides, we get:

256 mol²/s² = 7 Rate of Carbon Monoxide²

Dividing both sides by 7, we get:

Rate of Carbon Monoxide² = 36.57 mol²/s²

Taking the square root of both sides, we get:

Rate of Carbon Monoxide = 6.05 mol/s

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To cause cancer, proto-oncogenes require 1 (or) 2 allele(s) to be mutated and are therefore considered dominant (or) recessive.

Answers

To cause cancer, proto-oncogenes require 1 allele to be mutated and are therefore considered dominant.

What is cancer?

Cancer is a group of diseases involving abnormal cell growth with the potential to invade or spread to other parts of the body. These contrast with benign tumors, which do not spread. Possible signs and symptoms include a lump, abnormal bleeding, prolonged cough, unexplained weight loss, and a change in bowel movements.While these symptoms may indicate cancer, they can also have other causes.Over 100 types of cancers affect humans.

Tobacco use is the cause of about 22% of cancer deaths. Another 10% are due to obesity, poor diet, lack of physical activity or excessive drinking of alcohol. Other factors include certain infections, exposure to ionizing radiation, and environmental pollutants.

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Which response identifies a possible ψ for the last-filled electron in a magnesium ION?1. ψ3,3,02. ψ2,1,13. ψ2,0,−14. ψ2,0,05. ψ3,0,16. ψ3,1,1

Answers

The possible ψ for the last-filled electron in a magnesium ion is ψ 2,0,−1. Hence, the correct choice is C.

Generally, the electrons present in an atom are located in a system of atomic orbitals around the nucleus. The position of each electron is often controlled by a set of four quantum numbers. The electron configuration usually describes the distribution of all electrons present in the atom via shells and subshells. Shells are defined as the principal energy levels and subshells are the orbital types located at each shell, some of which may appear multiple times. Basically the electron configuration of a neutral atom is often derived from its element's position in the periodic table, which can then be modified to derive the electron configuration of a simple cation/anion.

The electronic configuration for magnesium ion is,

Mg²⁺ = 1s² 2s² 2p⁶

The last electron goes to "2p" subshell, which has the following quantum numbers,

n = 2, L = 0, m₁ = -1

Hence, the correct option is C.

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How can you differentiate pressure, cryogenic, liquid, and solids containers from a distance, and what types of hazardous materials are each likely to contain

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Differentiating pressure, cryogenic, liquid, and solid containers from a distance can be challenging, as their visual appearance may be similar. However, some general guidelines can help identify the type of container and the likely contents:

Pressure containers are typically cylindrical and have pressure relief valves, gauges, and safety fittings. They are designed to store gases under high pressure and are likely to contain compressed gases such as hydrogen, oxygen, or nitrogen.

Cryogenic containers are heavily insulated and designed to store liquefied gases at very low temperatures. They often have a distinctive shape, with a wide base and a narrow neck. Cryogenic containers may contain liquefied gases such as nitrogen, helium, or argon.

Liquid containers may be similar in appearance to cryogenic containers but do not require heavy insulation. They are designed to store liquids such as chemicals, fuels, or solvents.

Solid containers are typically smaller and may be made of plastic or metal. They are used to store solid hazardous materials such as explosives, flammable solids, or oxidizing agents.

It's important to note that hazardous materials can be stored in any type of container, and that the container itself may not always be a reliable indicator of the contents. Proper labeling, placarding, and handling procedures should always be followed to ensure the safe transport and storage of hazardous materials.

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Describe three ways in which compounds and mixtures differ.

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Compounds have fixed composition, properties and are chemically bonded while mixtures have variable composition, properties and are physically mixed.

Mixtures and combinations are two distinct sorts of substances. Compounds are unadulterated substances made out of at least two components synthetically reinforced together in a decent proportion, while blends are blends of at least two substances that are truly blended yet not artificially consolidated. Three manners by which mixtures and combinations vary are:

Piece: Mixtures have a proper creation and a particular proportion of molecules or particles, while blends have a variable synthesis with no particular proportion.

Properties: Mixtures have unmistakable properties, like a particular dissolving point, edge of boiling over, and compound reactivity, while blends have a scope of properties that rely upon the substances in the combination.

Detachment: Mixtures must be isolated by substance implies, like through a compound response, while blends can be isolated by actual means, like filtration, refining, or chromatography.

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According to kinetic molecular theory, how do the gas particles in this container behave?

Question 3 options:

Gas particles are elastic and do not attract each other.


The kinetic energy of gas is dependent on temperature.


Energy is not lost when gas particles collide with each other or with the walls of the container.


All of the above.

Answers

Answer:

All of the above. According to the Kinetic Molecular Theory, the gas particles in this container behave in an elastic manner, meaning that they will bounce off each other and the walls of the container without losing energy. The kinetic energy of the gas particles is also dependent on temperature, meaning that the higher the temperature, the faster the particles will move. Finally, energy is not lost when gas particles collide with each other or the walls of the container.

Energy is not lost when gas particles collide with each other or with the walls of the container. Therefore, all of the above are correct.

What is kinetic molecular theory?

The gas laws mentioned in earlier modules of this chapter are adequately explained by the kinetic molecular theory (KMT), a straightforward microscopic model. The five postulates listed below form the foundation of this theory.

Although certain gases, like the noble gases, are made up of atomic species, the term "molecule" is going to be employed to refer to the specific chemical species that make up the gas. Gas particles are elastic and do not attract each other. The kinetic energy of gas is dependent on temperature. Energy is not lost when gas particles collide with each other or with the walls of the container.

Therefore, all of the above are correct

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hand tools are powered instruments, which can be very hazardous when improperly used due to their power source.

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False. From the Stone Age, when stones were employed for hammering and cutting, humans have utilized hand tools. Casting copper and tin alloys allowed for the production of implements throughout the Bronze Period.

Tools made of bronze were more durable and sharp than those made of stone. In the Iron Age, iron took the place of bronze, and tools grew stronger and more resilient. During this time, the Romans created tools that are still being made today.

With the industrial revolution, factory production replaced handcrafting as the primary method of producing tools. Any tool used by craftspeople for manual work is referred to as a hand tool.

Simple tools that you use with your hands and are typically not powered are called hand tools. Any tool that is used manually rather than by a motor is referred to as a hand Examples include drills, vises, clamps, snips, saws, cutters, and files. Hammered or struck instruments also include screwdrivers.

Hand tools come in many varieties and can be used for any task. Certain tools are especially employed for a job, while others are not. Daily tasks need the use of hand tools. Throughout the beginning of time, people have utilized them to carry out a variety of beneficial tasks. It is crucial to understand how Hand tools are made and how to use them properly if you want the finest outcomes for your work. Injuries and errors could result from ignorance.

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hand tools are powered instruments, which can be very hazardous when improperly used due to their power source. True/false.

Why is pure water considered a neutral substance?
A) ions are all positively charged
B) anions and cations are present
C) positive and negative alkali cancel each other out
D) positive and negative ions balance each other out

Answers

The pure water is considered as the neutral substance as the positive and negative ions balance each other out. The correct option is D)

The H₃O⁺ is called the hydronium ion, and it will makes the acidic in nature. The OH⁻ ion  is called as the hydroxyl ion and it will makes the basic in nature. In the water, there is thein  balance between the hydroniums and the hydroxyls so they will cancel out each others' charges. Therefore the Pure water is neither the acidic in nature or the basic.

Thus, the pure water is the neutral in nature and the value on the pH scale is 7.

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the aquatic plant elodea was placed in distilled water and a 10% sodium chloride solution. which caused the cells to swell? what keeps the cells from bursting?

Answers

When the aquatic plant elodea was placed in distilled water and a 10% sodium chloride solution the distilled water would cause the plant to swell and the cells wouldn't burst because of the framework cell wall.

When the aquatic plant elodea cells are placed in distilled water (100% water), the water moves inside the elodea cells by osmosis and starts the swelling of the cells. When the elodea cells are placed in a 10% sodium chloride solution, which is hypertonic, the vacuoles disappear and the protoplasm detaches from the cell wall and the organelles appear as clumped in the middle of the cell. The cytoplasm of a elodea cells shrink (Plasmolysis) in response to diffusion of water out of the elodea cells into the herpotnic, the10% sodium chloride solution. The rigid cell wall of elodea cells prevents them from bursting.

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galena's specific gravity is 7.5, that of quartz 2.65, and that of liquid mercury 13.6. given equal-sized samples (volumes) of galena and quartz, which will feel heavier? choose one: a. they will feel about the same. b. quartz c. galena

Answers

The specific gravity of quartz is 2.65, that of liquid is 13.6, and that of galena is 7.5. Which will feel heavier, provided with equal samples (volumes) of quartz and galena

Describe the liquid state.

Liquid state is an alternative title. In physics, liquid is one of the three fundamental states of matter and is a transitional state between a crystalline solid and a gas. The volume retention and conformity to the form of a liquid's container are two of its most noticeable physical characteristics.

What characteristics do liquids possess physically?

liquids' physical characteristics. In addition, whenever a liquid is moved from one container to another, it keeps its volume but loses its shape (as long that there is no vaporisation or temperature change). These characteristics make it simple to distinguish between the liquid state and the gaseous and solid states.

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what is the function of serous fluid?

Answers

Serous fluid is a clear, watery fluid produced by serous membranes. Serous membranes are thin and slippery membranes that also functions as line the cavities of the body and cover its organs.

Serous fluid actually helps to reduce the friction between organs and the surrounding structures. This allows them to move smoothly and the friction is reduced so no rubbing against each other.

The main component of serous fluid is water. It also contains small amounts of electrolytes, proteins, and other substances.

Serous fluid is produced by cells in the serous membranes. They continuously secrete the fluid into the cavity between the two layers of the membrane.

In the pleural cavity (the cavity which surrounds the lungs) there is serous fluid present and it allows the lungs to expand and contract smoothly during breathing, without rubbing against the chest wall or the diaphragm.

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Explain how potential energy and kinetic energy are the same .How are they different

Answers

The potential energy and kinetic energy are the same as they are interconvertible with each other. The potential energy  occurs when the body is at rest and the kinetic energy occurs when the body is in the motion.

The Potential and the kinetic energy are two forms of the energy that can be converted in to the each other. Potential energy is the stored energy in the object or the system by the virtue of its the position or the arrangement of parts. The kinetic energy is the energy of the object or the system's particles in the motion.

When an object is at the rest, the body is said to have the potential energy. In another case, if  the object is in the motion, then it is said to have the kinetic energy.

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If 89.5g of Ag were produced in the following reaction how many grams of Cu reacted?
Cu+2agNO3–>Cu(NO3)2+2Ag
Show your work

Answers


Given:

Mass of Ag produced = 89.5g

We can use the mole ratio of the reaction to calculate the mass of Cu that reacted:

Moles of Ag produced = 89.5g/107.87g/mol = 0.829 mol

Moles of Cu reacted = 0.829 mol/1 mol = 0.829 mol

Mass of Cu reacted = 0.829 mol x 63.55g/mol = 52.5g

Answer:

To solve this problem, we need to use the balanced chemical equation and the molar mass of Cu and Ag to determine the amount of Cu that reacted and the amount of Ag produced.

The balanced chemical equation is:

Cu + 2AgNO3 → Cu(NO3)2 + 2Ag

From the equation, we can see that 1 mole of Cu reacts with 2 moles of Ag to produce 1 mole of Cu(NO3)2 and 2 moles of Ag. This means that the ratio of Cu to Ag in the reaction is 1:2.

To find the amount of Cu that reacted, we can use the ratio of Cu to Ag and the mass of Ag produced:

Molar mass of Cu = 63.55 g/mol

Molar mass of Ag = 107.87 g/mol

Mass of Ag produced = 89.5 g

Number of moles of Ag produced = mass / molar mass = 89.5 g / 107.87 g/mol = 0.829 mol

Since the ratio of Cu to Ag is 1:2, the number of moles of Cu that reacted is half the number of moles of Ag produced:

Number of moles of Cu = 0.829 mol / 2 = 0.4145 mol

To find the mass of Cu that reacted, we can use the number of moles of Cu and the molar mass of Cu:

Mass of Cu reacted = number of moles of Cu × molar mass of Cu = 0.4145 mol × 63.55 g/mol = 26.32 g

Therefore, 26.32 grams of Cu reacted in the reaction.

Explanation:

what is molar mass formula?

Answers

The molar mass formula is as follows :

The molar mass = mass / moles  = g/mol

The Molar mass of the  substance is the mass in the grams of the one mole of the compound.  The one mole of the any substance is 6.022 × 10²³ molecules. The standard unit for the molar mass is g/mol. The the SI unit is kg /mol. The formula to calculate the molar mass is as follows :'

The molar mass = mass / moles  = g/mol

The mass of the one atom of the carbon  -12 the atomic mass of the carbon-12 is exactly equals to the 12 atomic mass units. The mass of the one mole of the  carbon - 12 atoms is exactly equals to the 12 grams. the   molar mass is exactly equals to the 12 grams per mole.

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Bases holding two single strands of DNA together into a double strand of DNA interact through ___________ bonds. hydrogen covalent chemical carbon ionic

Answers

Option (A) is correct. Bases holding two single strands of DNA together into a double strand of DNA interact through Hydrogen bonds.

The bases holding two single strand of the DNA molecule is held together by hydrogen bonding. These bonding occurs between the nitrogenous bases in the two strands of DNA. The specific base pairings for DNA molecules are the Adenine-Thymine and the Cytosine-Guanine. The DNA double helix is held together by two types of bonds that is covalent bond and hydrogen bond. Covalent bonds occur within each linear strand and strongly bond the bases, sugars, and phosphate groups  that is both within each component and between components. Hydrogen bonds occur between the two strands and involve a base from one strand with a base from the second in complementary pairing in the DNA. These hydrogen bonds in the DNA are individually weak but collectively quite strong.

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The complete question is,

Bases holding two single strands of DNA together into a double strand of DNA interact through ___________ bonds.

A. hydrogen

B. covalent

C. chemical carbon

D. ionic

An isotope of cesium (cesium-137) has a half-life of 30 years. If 1.0 g of cesium-137 disintegrates over a period of 150 years, how many g of cesium-137 would remain

Answers

If 1.0 g of cesium-137 disintegrates over a period of 150 years, then g of cesium-137 that would remain is : 0.03125 g.

What is meant by half life?

Half-life is the time required for a quantity (of substance) to reduce to half of initial value and the term is used in nuclear physics to describe how quickly unstable atoms undergo radioactive decay .

90 years is 5 half lives because one half life is 30. So after 30 years, Fraction Remaining (FR) = 0.5^n,  n is the number of half lives that have elapsed.

In the current problem we want to find the FR, and we know n = 5 half lives elapsed (150 yr/30yr = 5)

FR = 0.5^n = 0.5⁵= 0.03125

As we started with 1.0 g, and we have 0.03125 left, that would be 1.0 g x 0.03125 = 0.03125 g.

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What is the name for S4P2?
A) disulfur tetraphosphide
B) tetrasulfur diphosphide
C) tetrasulfur diphorphorus
D) sulfur diphosphide

Answers

The correct name for the given compound S4P2 is- option B( tetrasulfur diphosphide).    

When two or  further  rudiments chemically combine in a fixed  rate by mass, the  attained product is known as a  emulsion. Composites can be defined as substances  conforming of 2 or  further different types of  rudiments in a fixed  rate of their  tittles. When the  rudiments combine, some individual property of the  rudiments is lost and the  recently formed  emulsion has new  parcels. composites are represented by their chemical formula. A chemical formula is a emblematic  representation of the proportions of  tittles that constitute a particular chemical  emulsion.  The prefix" tetra-" indicates that there are four sulfur  tittles, and the suffix" ide" indicates that the  emulsion contains two phosphorus  tittles.

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what is the end result of glycolysis? why is this step important?A) CH3CH2OHB) CH3CI.COOHC) CH3HCOH -- COOHD) CH3CH2COOH

Answers

The end result of glycolysis is the production of two molecules of pyruvate or pyruvic acid i.e CH₃COCOOH, two molecules of ATP, and two molecules of NADH. Option B is correct.  

Pyruvate is a three-carbon molecule that can be further metabolized through the Krebs cycle and oxidative phosphorylation to produce more ATP.

Glycolysis is important because it is the first step in the breakdown of glucose to extract energy for cellular metabolism. Glucose is a major source of energy for most living organisms, and glycolysis provides the initial breakdown of glucose to produce ATP.

This process can occur in the absence of oxygen, which is essential for cells that cannot access oxygen. In addition, the two ATP molecules produced in glycolysis provide immediate energy for cellular processes, and the NADH molecules produced can be used to generate more ATP through the subsequent steps of cellular respiration.

Hence, B. CH₃CO.COOH is the correct option.

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--The given question is incorrect, the correct question is

"what is the end result of glycolysis? why is this step important? A) CH₃CH₂OH B) CH₃CO.COOH C) CH₃HCOH -- COOH D) CH₃CH₂COOH"--

The amount of pollution that is economically most desirable is determined by plotting two curves. The point where the two curves meet is termed the from an economic viewpoint

Answers

The point where the two curves meet is termed the "optimal level of pollution" from an economic viewpoint.

The two curves that are plotted are the marginal cost of pollution abatement and the marginal cost of pollution damage. The marginal cost of pollution abatement represents the cost of reducing pollution, while the marginal cost of pollution damage represents the cost of the harm caused by pollution.

At low levels of pollution, the marginal cost of pollution abatement is low because only small reductions in pollution are needed. At the same time, the marginal cost of pollution damage is also low because the harm caused by pollution is minimal. As pollution levels increase, the marginal cost of pollution abatement increases because greater effort and cost is required to reduce pollution. Similarly, the marginal cost of pollution damage also increases because the harm caused by pollution becomes more severe.

The optimal level of pollution is the point where the marginal cost of pollution abatement intersects with the marginal cost of pollution damage. This point represents the level of pollution where the cost of reducing pollution is equal to the cost of the harm caused by pollution. Any deviation from this optimal level would result in either too much pollution or too much abatement, which would lead to economic inefficiencies.

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how many moles are contained in 15.6 g of nh4cl?

Answers

The number of the moles are contained in the 15.6 g of the NH₄Cl is the 0.29 mol.

The mass of the NH₄Cl = 15.6 g

The molar mass of the = 53.49 g/mol

The number moles of the  NH₄Cl is as follows :

The number of the moles = mass / molar mass

Where

The mass = 15.6 g

The molar mass = 53.49 g/mol

The number of the moles = 15.6 / 53.49

The number of the moles = 0.29 mol

Thus, the number of the moles of the NH₄Cl is 0.29 mol with the mass of the 15.6 g.

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