why licl is a solid at room temperature but ncl3 is a liquid with a relatively low boiling point in terms of attractive forces between particles

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Answer 1

Answer:

Explanation:

The difference in the physical state of LiCl and NCl3 at room temperature is due to the difference in their intermolecular attractive forces.

LiCl has strong ionic bonds, which are strong attractive forces between positive and negative ions. These strong attractive forces result in a high melting and boiling point, making LiCl a solid at room temperature.

NCl3, on the other hand, has weaker covalent bonds, which are attractive forces between atoms in a molecule. These weaker attractive forces result in a lower melting and boiling point, making NCl3 a liquid with a relatively low boiling point at room temperature.

The strength of intermolecular forces is determined by the type of bond and the molecular structure. Ionic bonds are stronger than covalent bonds, and the stronger the bond, the higher the melting and boiling points of a substance.


Related Questions

A carbon skeleton is covalently bonded to both an amino_________.

Answers

A carbon skeleton is covalently bonded to both an amino groups and carboxyl group.

How are covalent bonds made?

A covalent bond occurs when two atoms interchange one or more pairs of electrons. The two atomic nuclei are mutually attracting these electrons to them. When the difference between the electronegativities of two atoms is too tiny for an electron transfer to actually happen to produce ions, a covalent bond is created.

What distinguishes an amino acid from a carboxyl acid?

The carboxyl group is generally deprotonated and has a negative charge, meanwhile the amino group typically has a positive charge and is protonated. The R group, a secondary atom or group of atoms connected to the central atom in every amino acid, that's what gives the amino acid its identity.

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if you were to complete a mass balance on a coffee roaster, which of these would not be a material stream exiting out of the roaster? (A). Spent Coffee Grounds, (B) Chaff, (C) Roasted Coffee Beans, (D) Water Vapor, Carbon Dioxide and other VOCs

Answers

Due to the fact that used coffee grounds are a waste product and a remnant of the roasting process, they are not a material stream leaving the roaster.

What chemical processes take place when roasting coffee?

Maillard Response The Maillard reaction is crucial for the emergence of roasted coffee's flavour and colour. Carbonyl groups (from sugars) and amino groups in proteins interact at temperatures between 150 and 200 °C to create fragrance and flavour chemicals.

What steps are involved in roasting coffee?

The steps involved in roasting coffee are cleaning, roasting, cooling, grinding, and packing. A process flow diagram for a typical coffee roasting operation. Green coffee bean bags are opened by hand or mechanically, put into a hopper, and screened to remove the foreign object

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for a liquid to be used in the determination of the volume of a solid by the displacement method, which criteria does not have to be met?

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A liquid to be used in the determination of the volume of a solid by the displacement method, the criteria must be met are that the the liquid is less dense then the volume and the liquid cannot dissolve in water can't react with a solid.

1. Kinetic energy should be completely eliminated from the sample.

2. The temperature of the sample should ideally reach the corresponding freezing point.

3. The particles in the sample must be absolutely deprived of certain energy. This is done so that the attraction of the molecules in the sample for one another exceeds the force that usually separates them.

Process of Freezing:

All the particles are in clusters.  This process is referred to as freezing.

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when all the electrons in an atom occupy the lowest possible energy states, the atom is said to be in its:

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when all the electrons in an atom occupy the lowest possible energy states, the atom is said to be in its Ground state.

A quantum mechanical system's ground state is its stationary, lowest energy state; this energy is often referred to as the system's zero-point energy. Any state that has more energy than the ground state is said to be excited. The ground state is frequently referred to as the vacuum state or the vacuum in quantum field theory.

They are referred to as degenerate if they have more than one ground state. There are degenerate ground states in many systems. Degeneracy arises whenever a unitary operator exists that interacts nontrivially with a ground state and commutes with the system's Hamiltonian.

The third law of thermodynamics states that a system is in its ground state at absolute zero degrees Celsius, and that ground state's degeneracy determines the system's entropy. At absolute zero, many systems, including a flawless crystal lattice, have a singular ground state and so have zero entropy. In systems that display negative temperature, it is also conceivable for the most excited state to have absolute zero temperature.

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when 0.551 g of sodium metal is added to an excess of hydrochloric acid, 5730 j of heat are produced. what is the enthalpy of the reaction as written?

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The enthalpy of the reaction is 249.13 KJ when 0.551 g of sodium metal is added to an excess of hydrochloric acid and 5730 J of heat is produced.

According to the given question,

Weight of sodium metal = 0.551 g

We need to calculate the number of moles,

Using the formula of moles

Moles = given mass/molar mass

Moles = 0.551/23

Moles = 0.023

We need to calculate the energy in 1 mole

In 0.023 moles of sodium metal = 5730 J

In 1 mole of sodium metal = 5730/0.023

The energy in 1 mole of sodium is 249130.43 J

Hence, the enthalpy of the reaction is 249.13 KJ

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how many 1h nmr signals does following dimethylcyclopropane isomer show? enter your answer in the provided box.

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There are three NMR signals present in the given isomer of dimethylcyclopropane.

The number of NMR signals is defined as the number of different types of protons in a molecule. NMR signal is the example we used in the introduction to NMR spectroscopy. The spectrum has five signals which basically indicates five types of different protons.

The given compound is shown in Fig(i).

The name of the compound is (1R, 2R)-1,2- dimethylcyclopropane.

The above molecule has plane of symmetry which is shown in Fig(ii).

So, the given molecule has three types of protons. The denotation of three types of protons are shown in Fig (iii).

Hence, the number signals is three.

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beta-sheets are a type of secondary structure and are found in every protein. T/F

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False. Beta-sheets are not present in every protein as a part of secondary structure.

Why are beta sheets used?

One of the most popular ways to create oligopeptide-based materials acting as model stem cell habitats is by sheet assembly. When hydrophobic and hydrophilic peptides side chains get positioned on different sides of such a peptide backbone, strands are formed.

What does a protein's beta sheet do?

Protein secondary structures include beta-pleated sheets of protein. It is made up of a number of different beta strands that are joined together by hydrogen bonds. A beta-strand polypeptide is made of three to 10 amino acids.

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was the gradual color change observed when the sodium thiosulfate (na2s2o3) crystal was added to the aqueous solution of ki/i2 in station c evidence of a chemical or physical change?

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Based on the data and Florence's observations, Florence has observed a chemical change. 2Na2S2O3 + I2 ----> Na2S4O6 + 2NaI.

What changes chemically?

A chemical reactions is the transformation of one substance into another, the emergence of new compounds with distinct properties, or any combination of these.It happens when two substances mix to create a new material.

In science, what exactly is a chemical change?

A carrot being chopped up or ice dissolving into water are two examples of physical changes.Chemical transformations occur when two or more components are mixed to create a brand-new compound.You have such a new material after a chemical transformation.A chemical change might occur when burning paper or when baking a cake.

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calculate the number of grams of nan3 that must be used to generate the amount of n2 necessary to properly inflate the air bag

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92.3g NaN3 number of grams of nan3 that must be used to generate the amount of n2 necessary to properly inflate the airbag

The reactant utilized to create the N2 (nitrogen) gas that inflates the airbag is NaN3. This process's (reaction's) relationship is based on a balanced equation. Additionally, the moles of the initial reactant, NaN3, determine the amount of N2 gas produced mathematically. As a result, start by writing the balancing equation.

2. Based on the mole ratio in the balanced equation, perform a dimensional analysis (mathematical conversion) from grams of NaN3 to grams of N2. The reactant (NaN3, 65.01 g/mol) and product (N2, 28.00 g/mol) molar masses (MW) will be involved.
the balanced equation is -> 2 NaN3 --> 3 N2 + 2 N

59.6g x (1mol N2 / 28.00g N2) x (2mol NaN3 / 3mol N2) x (65.01g NaN3 / 1mol NaN3) = 92.3g NaN3

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at standard conditions, the equilibrium lies toward products for a given biochemical reaction. what is known about the change in free energy?

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The correct option is C. ΔG°is less than 0 is known about the change in free energy.

Gibb's unfastened power is known as unfastened power due to the fact Gibb's energy is effortlessly available every time. If required the reaction can get this electricity without having to paint for it. The trade-in Gibb's unfastened power is the sum of enthalpy and the made of temperature and entropy of the gadget.

Gibbs's unfastened strength is denoted via the symbol 'G'. Its price is usually expressed in Joules or Kilojoules. Gibbs's loose energy can be defined because of the most quantity of work that can be extracted from a closed system. In line with the legal guidelines of thermodynamics, unfastened power is the energy it truly is available to be used at a given time. The legal guidelines of physics, consequently, imply that it's impossible for the quantity of to be had the energy to be countless.

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Complete Question:

At standard conditions, the equilibrium lies toward products for a given biochemical reaction. what is known about the change in free energy?

Choose one:

A.ΔG°equals 0.

B.ΔG°is greater than 0.

C.ΔG°is less than 0.

D.ΔG°is are unknown.

what is a magnetic domain? group of answer choices clusters of atoms where every atom has an opposing magnetic field clusters of atoms with only north poles clusters of atoms with their magnetic fields aligned clusters of atoms with their magnetic fields not aligned

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A magnetic domain is a cluster of atoms with their magnetic fields aligned.

What is alignment of magnetic fields?

The atoms all have the same magnetic orientation, and the overall field of the domain is greater than the individual fields of the atoms. This alignment of the magnetic fields is caused by the exchange of electrons between the atoms in the domain. The magnetic domains are important for the storage of information in magnetic recording media, as the magnetic domains can be manipulated to encode data.

Clusters of atoms with only north poles, or clusters of atoms with their magnetic fields not aligned, are not valid magnetic domains. This is because all atoms must have an opposing magnetic field in order to create an overall field that is greater than the individual fields of the atoms.

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ow much heat (in joules) must you add to the ice in order for you to melt all of it (the final situation will be all water at 0oc)?

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167 J of heat we must add to the ice in order for us to melt all of the ice in it. Hence, the final situation results in water.

To calculate the amount of heat needed to melt all the ice, you first need to calculate the total amount of energy (in joules) required to melt the ice and convert it to water at 0°C. The formula for this is:

= Q

= m x ΔHf

where m is the mass of the ice (in kilograms) and

ΔHf is the heat of fusion of water (334 J/g).

Therefore, the total amount of energy (in joules) required to melt the ice and convert it to water at 0°C is:

= Q

= m x ΔHf

= m x 334 J/g

For example, if you have 0.5 kg of ice, the amount of energy required to melt it and convert it to water at 0°C is:

= Q

= 0.5 kg x 334 J/g

= 167 J

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what are the intermolecular force(s) present in salt water that makes it a good idea for using it for extracting water from an organic solvent? group of answer choices

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Intermolecular interaction between being an ion and the terminal of such a polar molecule with the opposite charge known as an ion-dipole force. like sodium chloride(NaCl) in water. 3.

NaCl—is it salt?

Most people use the term "salt" to refer to sodium chloride, or table salt. Ionic bonds between sodium ions & chloride ions result in the formation of sodium chloride. The chemical formula for sodium chloride is NaCl because there is 1 sodium cation (Na+) per each chloride anion (Cl-).

NaCl is a sort of salt, right?

Sodium(1+) is the counterion in sodium chloride, an inorganic chloride salt.c. It is a salt of inorganic sodium and chloride.

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a 25.0-ml sample of 0.10 m c2h5nh2 (ethylamine) is titrated with 0.15 m hcl. what is the ph of the solution after 9.00 ml of acid have been added to the amine? [kb(c2h5nh2)

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Titration with 0.15 m hcl is performed on a 25.0-ml sample of 0.10 m c2h5nh2 (ethylamine). After adding 9.00 ml of acid to the amine, the solution's pH is 10.88.

In addition to being a solvent extractor and a dye intermediate, ethylamine is also useful for chemical synthesis, rubber and detergent stabilization, petroleum refining, and solvent extraction. Ethylamine | PubChem | C2H5NH2. It turns into a liquid that is miscible with almost all solvents when it condenses just below room temperature. Like other amines, it is a nucleophilic base. The chemical industry and organic synthesis frequently use ethylamine.

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The first people to attempt to explain why chemical changes occur were: A. metallurgists. B. the Greeks C. alchemists. D. physicists. E. physicians.

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The Greeks made the first attempts to provide an explanation for why chemical changes take place.

Who made the initial effort to explain chemical changes?

French chemist Joseph Proust was the first to suggest that substances have specific chemical formulas in the late 1700s. Proust conducted numerous tests and discovered that, regardless of how he got different elements to interact with oxygen, they always did so in specific ratios.

Who created chemical transformation?

French chemist Antoine Lavoisier's work between 1772 and 1794 led to the first major advancement in the understanding of chemical processes. Mass was discovered to be conserved in chemical reactions by Lavoisier.

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True or False? aldehydes have a central carbon bound to two other carbons

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False. No central carbon is bonded to two additional carbons in aldehydes.

Describe aldehydes.

The carbon atom in every member of the category of organic compounds called as an aldehyde has three single bonds, one with hydrogen, another with oxygen, and the one with another atom as well as a group of atoms (marked "R" in standard chemical formulae & structure diagrams).

What distinguishes an aldehyde from a ketone?

A carbonyl group is joined to the carbon atom there at end of the carbon chain to form an organic molecule known as an aldehyde. An organic molecule known as a ketone is one in which a carbonyl group is joined to the carbon atom with in carbon chain.

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When using the tare function on a balance, start by _____________ then, ______________ to cancel out that mass. finally, _____________ and record the mass of your sample.

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When utilizing a balance's tare function, place the glassware on it first, then press the tare/zero button to remove that mass. Add your sample to the glassware, then measure the mass.

What does a balance's tare function do?

The tare feature's operation. The display of the balance is reset to zero by pressing tare. You shouldn't factor the weight of the container into a compound measurement. Place the container on the scale, wait for a steady reading, and then push the tare key to reset the display to zero to tare the container.

When should the balance be tare?

Use the Tare features if you need to subtract the weight of an item after you have placed it on the scale. Use the Tare function, for instance, if you're weighing ingredients and you need to subtract the weight of the bowl.

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water is added to 200 ml of a 2.0 m solution of cacl2 to increase the volume of the solution to 400 ml. what is the new concentration? select one: a. 4.0 m b. 3.0 m c. 1.0 m d. 2.0 m

Answers

The new concentration of the solution would be 1.0 m (C)

A solution's concentration can be lowered through a process known as dilution, which involves adding more solvent to the solution. This procedure maintains the solute concentration while increasing the overall volume of the solution, lowering the ultimate concentration. A solution having a higher concentration can be diluted by combining it with a solution with a lower concentration. Mathematical calculations can be used to determine how much solvent is required to create a new, diluted solution at the desired concentration. The following formula describes the connection:

                                                  M₁V₁ = M₂V₂

Where:

M₁ = the concentration of the original solution

V₁ = the volume of the original solution

M₂ = the concentration of the diluted solution

V₂ = the volume of the diluted solution

Thus, the new concentration would be

2.0 m × 200 mL = M₂ × 400 mL

M2 = (2.0 m x 200 mL) ÷ 400 mL

M2 = 1.0 m

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what are the products when an ester undergoes acid hydrolysis?

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When an ester is subjected to acid hydrolysis, water is added to help break it down into its individual carboxylic acid and alcohol components.

What is ester?

A carbonyl group (C=O) is attached to an alkoxy (-O-R) group, where R is an alkyl or aryl group, to form an ester, a particular type of organic chemical.

The acid protonates the carbonyl carbon of the ester during the reaction, making it a suitable leaving group. The resultant intermediate subsequently reacts with water, and the hydroxide ion then attacks the carbonyl carbon as a nucleophile. The protonated ester acts as the leaving group, which is then ejected from the reaction via an SN2 mechanism, resulting in the production of the carboxylic acid and alcohol components. The nature of the original ester and the acid catalyst in use determine the precise products of an ester's acid hydrolysis.

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what is meant by the statement “fibers have a high length to width ration”?

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"Fibers have a high length to width ratio," which implies that fibers are substantially longer than they are wide. Fibers, in other words, are long, thin elongated structures.

What is meant by the statement “fibers have a high length to width ration”?

The phrase "fibers have a high length to width ratio" suggests that fibers are much longer than they are wide. Fibers, in other terms, are elongated structures having a long, thin form. Fibers have qualities that make them valuable in a variety of applications, such as the fabrication of textiles, paper, and composites, due to their high length to width ratio. Fibers having a high length to width ratio, for example, can be woven or twisted together to make strong, durable textiles.

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2. Sodium atom transfers an electron to chlorine atom to form a sodium chloride molecule.
How do these atoms combine?​

Answers

Both the sodium cation and the chloride anion that are created when a particle donates a particle to a nucleophile have full valence shells and are thus more stable energetically.

What occurs when you consume too much sodium?

And when your body begins to dilute more sodium with water, it increases the volume of your blood and makes you retain fluid. Consequently, the excessive thirst, bloating, and increased blood pressure. Additionally, this process puts stress on your heart, blood vessels, and kidneys if you routinely consume too much salt.

What does food sodium mean?

Many foods include the mineral sodium. Your body requires salt to maintain healthy neuron and muscle function. The equilibrium of bodily fluids is also maintained. Almost all table salt

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a cylinder contains 18 moles of a monatomic ideal gas at a constant pressure of 160 kpa. (a) how much work does the gas do as it expands 3200 cm3, from 5400 cm3 to 8600 cm3? (b) if the gas expands by 3200 cm3 again, this time from 2200 cm3 to 5400 cm3, is the work done greater than, less than, or equal to the work found in part (a)? (c) calculate the work done as the gas expands from 2200 cm3 to 5400 cm3.

Answers

(a) The work done the gas do as it expands 3200 cm³, from 5400 cm³ to 8600 cm³ is

(b) The work done is same as the change in the volume is same.

(c) The work done as the gas expands from 2200 cm³ to 5400 cm³ is 5120 J

(a) The pressure of the ideal gas,  P = 160 kpa = 160 × 10³ pa

The expansion of the volume of gas, ΔV  = 3200  cm³ = 3200 × 10⁻⁶ m³

The work done is as follows :

W = PΔV

W = 160 × 10³ ×  3200 × 10⁻⁶

W = 5120 J

(b) The work done is same as the change in the volume is same.

(c) The work done is given as :

W = 160 × 10³ × 3200 × 10⁻⁶

W = 5120 J

Therefore the work is same.

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how many moles of oxygen gas are in a balloon containing 20.0 grams of pure oxygen gas?

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According to the question we have, a balloon carrying 20.0 grams of pure oxygen gas has 1.25 moles of oxygen gas.

Why O2 is the name given to oxygen O is not?

All of the drug molecule are displayed in chemical equations thanks to the way they are written. Each oxygen molecule consists of two oxygen atoms, which is why it is represented by the symbol [2]. Note: Diatomic molecules, which contain just two oxygen atoms, are what we breathe.

You may determine a substance's moles using this formula: moles = mass / molar massThe oxygen gas has a molar mass of 16.00 g/mol.

Therefore, moles equals 20.0 g / 16.00 g/mol, or 1.25 moles, in a balloon filled with 20.0 grams of oxygen gas.

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carbon-14 has a half life of 5730 years. how many years have passed when 1/4th of the original amount of carbon-14 remains?

Answers

Carbon-14 has a half life of 5730 years. So, approximately 5530 years have passed when 1/4th of the original amount of carbon-14 remains.

The number of years that have passed when 1/4 of the original amount of carbon-14 remains can be determined by using the equation for radioactive decay:

N = N0 * [tex](1/2)^{(t/T)}[/tex]

where,

N = the amount of radioactive isotope at time t,

N0 = the initial amount of radioactive isotope,

t = the time that has passed,

T = the half-life of the isotope.

Setting N equal to N0 / 4 and solving for t:

t = T * ln(2) * ln(N0/N)

Plugging in the known values:

T = 5730 years, N0 = N0, N = N0 / 4

t = 5730 * ln(2) * ln(N0/N0 / 4)

t = 5730 * ln(2) * ln(4)

t = 5730 * 0.693 * 1.386

t = 5730 * 0.961

t ≈ 5530 years

So, approximately 5530 years have passed when 1/4th of the original amount of carbon-14 remains.

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determine the molality of a solution prepared by dissolving 4.11 g of potassium chloride in 64.3 g of water.

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The molality of the solution is 0.064 mol/kg. Molality is defined as the number of moles of solute per kilogram of solvent.

To calculate molality, we need to first find the number of moles of solute (potassium chloride) and then divide it by the mass of solvent (water) in kilograms.

The number of moles of solute can be calculated using the formula: moles = mass/molar mass, where the molar mass of potassium chloride is 74.55 g/mol.

So, the number of moles of potassium chloride in the solution is: 4.11 g / 74.55 g/mol = 0.055 mol

The mass of water in kilograms can be calculated using the formula: mass in kg = mass in g / 1000 g/kg, where the mass of water in the solution is 64.3 g.

So, the mass of water in the solution is: 64.3 g / 1000 g/kg = 0.064 kg

Finally, the molality of the solution can be calculated using the formula: molality = moles of solute/mass of solvent in kg

So, the molality of the solution is: 0.055 mol / 0.064 kg = 0.064 mol/kg

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The Earth orbits the Sun at a speed of approximately 29.8 km/s.How far does the Earth travel in one day?​

Answers

Answer:

When orbiting at a speed of approximately 30 km/s, our earth travels 2.6 million km (1.6 million miles) in a day.

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Explanation:

nitrogen and hydrogen are fed at 1:3 molar ratio to an ammonia synthesis reactor operating at 1440 r and 100 atm, where the following take place. 25% of the n2 fed is converted to ammonia and the reaction produces 1000 lbmol/h nh3. calculate thevolemtricgas feed rate to the reactor (ft^3/h) at the reactior temp and pressure

Answers

The volumetric gas feed rate to the reactor at a temperature of 600C and a reactor pressure of 100 atm is 202.52 ft³/h.

According to the stoichiometry of the given reaction,

     N₂ + 3H₂ → 2NH₃

2 moles of ammonia are produced from one mole of nitrogen.

Given that the reactor produces 1000 1bmol/h of ammonia.

So, moles of nitrogen getting converted to the product = 1000/2 =500

Which is just 25 percent of the number of moles of  N₂ fed into the reactor.

Thus, moles of nitrogen feed to the reactor per hour = x

25/100 x = 500

           x =2000

Thus, 2000 moles of nitrogen are fed per hour to the reactor.

Moles of hydrogen added per hour to the reactor = 3 x 2000 = 6000 mol

Thus, the total number of moles of gases fed into the reactor per hour = (2000+6000) = 8000 mol per hour

Thus, the volumetric flow rate of the gas into the reactor can be calculated by using the ideal gas equation as

PV = nRT

 V = nRT/P

 V = (8000 mol/h)(0.0821 Latm/molK)(600 + 273)K/100 atm

 V = 5733.864 L/h

1 m = 3.281 ft

Thus, 1m³= (3.281)³ At³ = 35.32 At³

Thus, 1 L = 35.32 x10⁻³ ft³

Thus, the volumetric flow rate in ft /h can be calculated as:

5733.864 L/h = 35.32 x 10⁻³ x 5733.864 ft³ /h

                      = 202.52 ft³/h

Your question is incomplete but most probably your full question was:

Nitrogen and Hydrogen are fed at a 1:3 molar ratio to an ammonia synthesis reactor operating at T = 600 C and P = 100 atm, where the following reaction takes place:

N2 + 3H2 -----> 2NH3

25% of the N2 fed is converted to ammonia and the reactor produces 1000 lbmol/hour of NH3. The reactor operates at steady state. Calculate the volumetric gas feed rate to the reactor(ft^3/hour), at the reactor temperature and pressure.

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From the following items, which is closest in size to one mole of gas at STP? A) A car. B) An elephant. C) A microwave. D) A marble.

Answers

In the given query, none of the options presented are the same size as one mole of gas at STP. At STP, one mole of petrol has a volume of 22.4 L, which is larger than a marble but smaller than a car or an elephant.

At STP (standard temperature and pressure), the temperature is 273 K and the pressure is 1 atm. One mole of an ideal gas at STP occupies a volume of 22.4 L.

To determine which of the items is closest in size to one mole of gas at STP, we need to use the ideal gas law, which relates the pressure, volume, temperature, and number of moles of gas.

A) A car is much larger than one mole of gas at STP, so it is not the correct option.

B) An elephant is also much larger than one mole of gas at STP, so it is not the correct choice.

C) A microwave is much smaller than one mole of gas at STP, so it is not the correct option.

D) A marble is much smaller than one mole of gas at STP, so it is not the correct choice.

Therefore, none of the options provided is closest in size to one mole of gas at STP. One mole of gas at STP occupies a volume of 22.4 L, which is much larger than a marble and much smaller than a car or an elephant.

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after a precipitation reaction with 0.64m h2so4 was completed, you centrifuge the sample, dry and weigh it. the ppt is found to weigh 0.109 grams. based on this mass, what was the original concentration of the unknown pb(no3)2 solution in mol/l? answer to 3 sf.

Answers

The original concentration of the Pb(NO₃)₂ solution in mol/L would be 0.00036 moles / 0.64 L = 0.0000056 mol/L = 0.056 mM (rounded to 3 significant figures).

To determine the original concentration of the unknown Pb(NO₃)₂ solution, we need to perform a mass-to-moles conversion. The equation for the precipitation reaction between Pb(NO₃)₂ and H₂SO₄ is as follows:

Pb(NO₃)₂ + H₂SO₄ -> PbSO₄ + 2HNO₃

The molar mass of PbSO₄ is 303.2 g/mol. So, 0.109 g of PbSO₄ is equal to 0.109 g / 303.2 g/mol = 0.00036 moles of PbSO₄. Since the stoichiometry of the reaction is 1:1 between Pb(NO₃)₂ and PbSO₄, we can assume that the same number of moles of Pb(NO₃)₂ were present in the original solution. Therefore, the original concentration of the Pb(NO₃)₂ solution in mol/L would be 0.00036 moles / 0.64 L = 0.0000056 mol/L = 0.056 mM (rounded to 3 significant figures).

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Label the plate boundaries and name a geologic feature that occurs at each plate
boundary

Answers

Note that the three types of plate boundaries are:

TransformConvergent and Divergent plate boundaries.

What geological features can be found in each type of boundary?

The geological features that can occur in each type of boundary are given as follows:

1) Divergent plate boundaries occur when plates move apart and magma rises to the surface to form new crust. A geologic feature that occurs at a divergent plate boundary is a mid-ocean ridge.

2) Note that convergent plate boundaries occur when plates collide and one plate is forced beneath the other, into the mantle. A subduction zone is a geologic feature at a convergent plate boundary.

3) In the case of transform plate boundaries, it occurs when plates slide past each other along a transform fault. A geologic feature that occurs at a transform plate boundary is a strike-slip fault.

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