How many grams of PbBr2 will precipitate when excess CrBr; solution is added to 60.0 mL of 0.551 M Pb(NO3)2 solution?
3Pb(NO3)2(aq) + 2CrBr3(aq) –>3PbBrz(s) + 2Cr(NO3)(aq)​

Answers

Answer 1

Answer:

5.48 g

Explanation:

M:                                                     367.01

    3Pb(NO3)2(aq) + 2CrBr3(aq) → 3PbBr2(s) + 2Cr(NO3)3(aq)

1. Moles of Pb(NO3)2

n = 30.0 mL × (0.551 mmol/1 mL) = 16.53 mmol Pb(NO3)2

2. Moles of PbBr2

n = 16.53 mmol Pb(NO3)2 × (3 mmol PbBr/3 mol Pb(NO3)2)

= 16.53 mmol PbBr2

(3) Mass of PbBr2 formed

m = 16.53 mmol × (367.01 mg/1 mol) = 6067 mg

(4) Mass of PbBr2 in solution

PbBr2 is slightly soluble, so a significant amount will remain in solution.

Its solubility is 973 mg/100 mL.

Mass of dissolved PbBr2 = 60.0 mL × 973 mg/100 mL = 584 mg

(5) Mass of precipitate

Mass of precipitate = mass of PbBr2 formed - mass of PbBr2 in solution

                            m = 6067 mg - 584 mg = 5480 mg = 5.48 g

The mass of precipitate is 5.48 g.

Answer 2

The mass of PbBr2 precipitate produced is 12.1 g.

The equation of the reaction is;

3Pb(NO3)2(aq) + 2CrBr3(aq) –>3PbBr2(s) + 2Cr(NO3)3(aq)​

Number of moles of Pb(NO3)2 =  60.0/1000 L ×  0.551 M = 0.0331 moles

From the information in the question, we already know that  Pb(NO3)2 is the limiting reactant and  CrBr3 is the reactant in excess.

From the equation of the reaction;

3 moles of Pb(NO3) yields 3 moles of PbBr2

0.0331 moles of Pb(NO3) yields 0.0331 moles ×  3 moles/3 moles

=  0.0331 moles of PbBr2

Mass of PbBr2 = number of moles × molar mass

Mass of PbBr2 =  0.0331 moles × 367 g/mol= 12.1 g

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Related Questions

Based on the law of conservation of energy, which state meant is false

Answers

The question is incomplete, so it is necessary to write it in its complete form, which you can find in internet.

Question:

Based on the law of conservation of energy, which statement is false?

a. Energy is lost when machines don’t work right.

b. We can’t add more energy to the universe.

c. We can’t destroy energy that exists in the universe.

d. Energy changes from one form to another.

Answer:

option a. Energy is lost when machines don't work right.

Explanation:

The law of conservation of energy, which is the principle stated by the first law of thermodynamics, states that the energy of the universe is conserved. The energy can be transformed or exchanged between a system and its surrounnding, but the total energy will remain constant.

Then, it is true that we cannot add more energy to the universe (option b.), because, the total energy of the universe remains constant; we can’t destroy energy that exists in the universe (option c.), because, again, as said, the total energy of the universe remains constant; and, also true, energy changes from one form to another, e.g. work to heat, heat to kinetic energy, kinetic energy to potential energy, and so on.

So, options b, c, and d are true.

On the other hand, the statement a. is false: it is not true that energy is lost when machines don't work right; what do happen is that the efficiency of the machine is low and much of the energy, instead of being transformed into useful work, is transformed into heat that is released to the surroundings.

nickel metal is put into lead (iv) acetate solution and produces nickel (ii) acetate and solid lead. if 275 g of lead (iv) acetate reacts with excess nickle. how many moles of nickle (ii) acetate will be produced

Answers

Answer:

1.24 mol.

Explanation:

Ni metal reacts with Pb(CH₃COO)₄ according to the balanced equation:

2Ni(s) + Pb(CH₃COO)₄ → 2Ni(CH₃COO)₂ + Pb(s),

It is clear that 2 mole of Ni metal reacts with 1 mole of Pb(CH₃COO)₄ to  produce 2 mole of Ni(CH₃COO)₂, and 1 mole of Pb.

Firstly, we need to calculate the no. of moles of 275.0 g of Pb(CH₃COO)₄:

no. of moles of Pb(CH₃COO)₂ = mass/molar mass = (275.0 g)/(443.38 g/mol) = 0.62 mol.

using cross multiplication:

1.0 mol of Pb(CH₃COO)₄ produces → 2 mol of Ni(CH₃COO)₂, from the stichiometry.

0.62 mol of Pb(CH₃COO)₄ produces → ??? mol of Ni(CH₃COO)₂.

∴ The no. of moles of Ni(CH₃COO)₂ are produced = (0.62 mol)(2.0 mol)/(1.0 mol) = 1.24 mol.

what kind of solid is crystalline boron

Answers

Answer:

It is a network solid, a lattice of many covalent bonds (like diamond, except that it is black rather than transparent).

Explanation:

Answer:

Network Solid

Explanation:

How much heat is added if .7892g of water is increased in temperature by .039 degrees C?

Answers

Answer:

=0.1293 J

Explanation:

The heat increase is the change in energy for the water ΔH.

ΔH=MC∅ where M is mass, C is the specific heat capacity for water and ∅ is the change in temperature.

M=0.7892g

C(for water) =4.2 J/g°C

∅=0.039 °C

ΔH=0.7892g×4.2 J/g°C×0.039°C

=0.1293 J

The amount of heat energy added to cause the 0.039°C temperature increase is 0.1293 Joules.

During the Calvin cycle:

(A) Glucose and water are produced.
(B) Water is split into hydrogen and oxygen.
(C) Light energy is absorbed by chloroplasts.
(D) All of the above.

Answers

Answer:

(B) Water is split into hydrogen and oxygen.

Explanation:

During the Calvin cycle, water is split into hydrogen and oxygen.

The Calvin cycle produces only glucose from carbon-di-oxide and thus all the options are false.

Explanation

The Calvin cycle is the second stage of the photosynthesis chemical reaction.

It occurs in the absence of sunlight and after light reaction stage.

So from the light reaction stage oxygen gas is released and in the Calvin cycle the carbon-di-oxide absorbed by the stomata will react with other chemicals leading to formation of glucose.

As the Calvin cycle occurs in the absence of sunlight, the light energy cannot be absorbed by chloroplast during Calvin cycle.

Also the splitting of water into hydrogen and oxygen was completed in light reaction stage and in Calvin cycle only glucose is produced without water molecules.

Thus none of the options given occur during Calvin cycle.

The Calvin cycle only produces glucose from carbon-di-oxide captured by the stomata in the absence of sunlight and water molecules.

Balance the equation KHCO3+ H3PO4 arrow K2HPO4+H20 C02.

Answers

Answer:

2KHCO3+ H3PO4 arrow  K2HPO4 + 2 H20 + 2C02

Explanation:

2KHCO3+ H3PO4 arrow  K2HPO4 + 2 H20 + 2C02

Start with the Ks. Don't start on the right. Just balance the Ks on the left. The reason is that the CO3 is going to break down as well.

2KHCO3+ H3PO4 arrow  K2HPO4 +  H20 + C02

Leave the PO4 alone. Now look at the Hs that are on the right. There are 5 on the left. Leave the K2HPO4 alone. If you put a 2 in front of tthe H2O then you have a total of 5 Hs on the right.

2KHCO3+ H3PO4 arrow  K2HPO4 + 2H20 + C02

There are 2 carbons on the left. You need 2 on the right.

2KHCO3+ H3PO4 arrow  K2HPO4 + 2H20 + 2C02

That should do it.

Let's make a table to show balance.

Species      K              H          C         PO4-         O  

Left             2              5           2          1                6 from CO3^(2-)  

Right           2              5           2          1                6 from H2O/CO2

Which subatomic particle has the least mass?

electron
proton
neutron
nucleus

Answers

the answer is electrons

Final answer:

The subatomic particle with the least mass is the electron, having a mass of about 0.00055 amu, which is significantly lighter than both the proton (1.0073 amu) and the neutron (1.0087 amu).

Explanation:

When comparing subatomic particles such as electrons, protons, and neutrons, the electron is the particle with the least mass. Despite all three being crucial components of an atom, an electron has an extremely small mass compared to protons or neutrons. Specifically, the mass of an electron is about 0.00055 amu (atomic mass units), whereas a proton has a mass of approximately 1.0073 amu, and a neutron has a mass of about 1.0087 amu.

Protons and neutrons, collectively known as nucleons, have masses that are nearly identical. However, the neutron is very slightly more massive. The vast difference in mass between electrons and nucleons (protons and neutrons) means that almost all the atomic mass is concentrated in the atom's nucleus, not in the electrons that orbit it.

What is a real world example of the colligative property boiling point?

Answers

Answer:

Antifreeze

Explanation:

That sounds like a contradiction, doesn't it?

Antifreeze lowers the freezing point of the water in your car's cooling system.

It also raises the boiling point and protects against boil overs.

A 50:50 mixture of ethylene glycol/water boils at 106 °C (223 °F). If the car radiator has a 100 kPa (15 psi) cap, the boiling point increases to  126 °C (258 °F).

Answer:

antifreeze

Explanation:

A 50:50 mixture of ethylene glycol/water boils at 106 °C (223 °F). If the car radiator has a 100 kPa (15 psi) cap, the boiling point increases to  126 °C (258 °F).

The electron configuration for chromium is 1s22s22p63s23p63d54s1 instead of 1s22s22p63s23p63d44s1. The configuration is an exception to the _____. Pauli exclusion principle Heisenberg uncertainty principle aufbau principle Schrödinger equation

Answers

Answer: The correct answer is Aufbau principle.

Explanation:

Pauli exclusion principle states that no two electrons with in an atom can have all four quantum numbers same.

Heisenberg principle states that it is impossible to measure with high precision the value of momentum and position of an electron.

Aufbau principle states that the electron will occupy the lowest energy level first before occupying the higher energy levels.

Schrodinger equation is used to find the allowed energy levels of quantum mechanical systems of an electron.

Chromium is the 24th element of the periodic table and its electronic configuration must be written as: [tex]1s^22s^22p^63s^23p^63d^44s^2[/tex]

But the actual configuration for this is [tex]1s^22s^22p^63s^23p^63d^54s^1[/tex]

This configuration is an exception to Aufbau's principle because half filled sub-levels is more stable than other configurations.

The actual configuration has half filled 'd' and 's' sub-levels but the expected configuration had fully filled 's' orbital and partially filled 'd' orbital.

Thus, actual configuration is accepted for chromium atom.

Hence, the correct answer is Aufbau's principle.

Answer:

Aufbau principle.

Explanation:

which is true according to the kinetic theory?
A. the particles that make up solids do not move.
B. all particles of matter are in constant motion.
C. all particles of matter move very quickly
D the particles that make up gases are densely packed​

Answers

Answer: C. all particles of matter move very quickly

Explanation:

Heat is how fast the molecules are moving in something. This means even  a solid's molecules are moving.

Answer:   C.

Explanation:

Joel's engine is unable to power his car the way it used to. The spark plug is
working, and the engine is compressing properly, so what could be the
problem?

Answers

Answer:

The air to fuel ratio is off

Explanation:

Cars need a certain amount of air mixed in with the fuel, if the amount of either air or fuel is off then it wont be able to be ignited by the spark plug.

Final answer:

The problem with Joel's engine could be premature combustion, caused by using gasoline with a low octane rating. Joel should try using gasoline with a higher octane rating to ensure proper combustion and power delivery in the engine.

Explanation:

The problem with Joel's engine could be premature combustion, caused by using gasoline with an octane rating that is too low for the engine. When the fuel ignites prematurely, it can result in uneven burning and cause knocking and pinging in the engine.



Here's an example to help you understand: Imagine you have a small high-performance internal combustion engine with a compression ratio of 10:1. If the gasoline used has a low octane rating, it may ignite prematurely during the engine cycle, leading to poor performance and a decrease in power.



To diagnose and fix the problem, Joel should try using gasoline with a higher octane rating to ensure proper combustion and power delivery in the engine.

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How many molecules of O2 are required to react with 3.00 moles P4?
P4+5O2⟶2P2O5

Answers

Final answer:

The reaction requires 15 moles of O2, which equates to 9.03 * 10^24 molecules, to react with 3 moles of P4.

Explanation:

To calculate the number of O2 molecules required in this reaction, we refer to the stoichiometric coefficients in the balanced chemical equation. Looking at the equation, we can see that 1 mole of P4 reacts with 5 moles of O2 to produce 2 moles of P2O5. Therefore, 3 moles of P4 would require 3*5=15 moles of O2. To convert moles to molecules, we have to multiply by Avogadro's number (6.022 * 10^23) because there are that many molecules in one mole. Therefore, 15 moles of O2 would equate to 9.03 * 10^24 molecules of O2.

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Which process is an example of a chemical change?

a piece of wood shrinking as it dries out
steam rising from a boiling pot of soup
a metal railing rusting in damp weather
alcohol evaporating from a cotton swab

Answers

Answer:

(C) A metal rail rusting Is an example of chemical change.

Explanation:

When a chemical change takes a place a new substance is formed.

HOPE IT HELPS.....

A metal railing rusting in damp weather,is an example of a chemical change.

What is meant by chemical change?A chemical change happens when one chemical substance is transformed into one or more different substances, such as when iron becomes rust. Chemical changes occur through the process of chemical reactions, and the resulting substances have different properties because their atoms and molecules are arranged differently.

A metal railing rusting in damp weather,is an example of a chemical change.

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How many grams of Fe3O4 are required to react completely with 69.76 grams of H2?

Answers

Answer:

=2023.04 grams

Explanation:

Magnetite reacts with hydrogen to produce Iron metal and steam. Steam instead of water is produced as the reaction occurs at temperatures above the boiling point of water.

Fe₃O₄ + 4 H₂ → 3 Fe +4 H₂O

From the equation, 1 mole of Fe₃O₄ reacts with 4 moles of H₂.

69.76 grams of H₂ has the following number of moles.

Number of moles= mass/RAM

=69.76/2

=34.88 moles.

The reaction ratio of Fe₃O₄ to H₂ is 1:4

Thus number of moles of magnetite= (1×34.88)/4

=8.72 moles.

Mass= moles × RAM

=8.72 moles × (56×3+16×4)

=2023.04 grams

Find the enthalpy of neutralization of HCl and NaOH. 137 cm3 of 2.6 mol dm-3 hydrochloric acid was neutralized by 137 cm3 of 2.6 mol dm-3 NaOH. The temperature rose from 298 K to 325.8 K. The specific heat capacity is the same as water, 4.18 J/K g.

Answers

Answer:

Approximately [tex]\rm -89 \; kJ\cdot mol^{-1}[/tex].

Assumption: the density of the solution is equal to the density of pure water.

Explanation:

The enthalpy of neutralization is defined as the enthalpy change for each moles of water produced. (Clark, Physical & Theoretical Chemistry, Chemistry Libretexts.)

Each mole of [tex]\rm NaOH[/tex] formula units will neutralize one mole of [tex]\rm HCl[/tex] to produce one mole of water. [tex]\rm HCl[/tex] and [tex]\rm NaOH[/tex] are available at equal volume and concentration. In other words, there's an equal number of both reactants. All [tex]\rm HCl[/tex] and [tex]\rm NaOH[/tex] will react to form water.

[tex]V(\mathrm{HCl}) = \rm 137\; cm^{3} = 0.137\;dm^{3}[/tex].

[tex]V(\mathrm{NaOH}) = \rm 137\; cm^{3} = 0.137\;dm^{3}[/tex].

[tex]n = c\cdot V = \rm 0.137\;dm^{3} \times 2.6\;mol\cdot dm^{-3} = 0.3652\; mol[/tex].

In other words, there are [tex]\rm 0.3652\; mol[/tex] of [tex]\rm HCl[/tex] and [tex]\rm NaOH[/tex] each. The two will react to produce [tex]\rm 0.3652\; mol[/tex] of water.

How much heat is released?

Assume that the volume of the liquid is equal to the volume of the [tex]\rm HCl[/tex] solution plus the volume of the [tex]\rm NaOH[/tex] solution. That's [tex]\rm 0.274\;dm^{3}[/tex]. Assume that the density of the solution is equal to that of water under room temperature. [tex]\rho(\text{water}) = \rm 1.000\; kg\cdot dm^{-3}[/tex]. The mass of the liquid will be [tex]m = \rho \cdot V = \rm 0.274\; dm^{3} \times 1.000\; kg\cdot dm^{-3} = 0.274\; kg = 274\;g[/tex].

Change in temperature:

[tex]\Delta T = \rm 325.8 - 298 = 27.8\; K[/tex].

Heat that the solution absorbed:

[tex]Q = c\cdot m \cdot \Delta T = \rm 4.18\;J\cdot K^{-1}\cdot g^{-1} \times 274\; g\times 27.8\;K = 36410.216\; J = 36.410216\; kJ[/tex].

That will also be the amount of heat released from the reaction if there's no energy loss.

[tex]\displaystyle \Delta H(\text{Neutralization}) = \frac{-Q}{n(\text{water produced})} = \rm \frac{36.410216\; kJ}{0.3652\; mol} \approx 89\; kJ\cdot mol^{-1}[/tex].

Draw a diagram of water molecules, labeling the hydrogen bond and covalent bond

Answers

Answer:

Here you go!

Explanation:

The covalent bonds are the bonds that connect the parts of the water molecule together and the hydrogen bonds connect the individual molecules together.

The diagram of water molecules, labeling the hydrogen bond and covalent bond is attached below.

Each hydrogen atom shares one of its electrons with the oxygen atom, forming a covalent bond. The oxygen atom also has two lone pairs of electrons that are not involved in bonding. This arrangement gives water a bent or V-shaped molecular geometry.

The hydrogen bond is a weak intermolecular force that occurs between the positively charged hydrogen atom of one water molecule and the negatively charged oxygen atom of another water molecule. It is an attraction between the partially positive hydrogen atom and the partially negative oxygen atom. The hydrogen bond is represented by a dotted line between the molecules.

This diagram illustrates the unique properties of water, such as its high boiling point, surface tension, and ability to dissolve many substances. The covalent bonds within the water molecule give it stability, while the hydrogen bonds between water molecules contribute to its cohesive and adhesive properties.

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why do all atoms of an element have the same atomic number, although they may have
different mass numbers?

Answers

Answer:

Here’s what I get.

Explanation:

The atomic number is the number of protons in the nucleus of an atom. The number of protons determines the number of electrons. The number of electrons determines the chemical properties of the element,

Thus, the atomic number determines the identity of the element.

The atomic mass does not affect the chemical properties, so different isotopes of an element behave alike.

Which of the following is an example of chemical energy changing into radiant energy?

A)A fireplaces glowing when lighted

B)A plant using sunlight to make food

C)A child on a swing slowing down as she swings upwards

D)A coil of a toaster glowing when the toaster is switched on

Answers

Answer:

D)A coil of a toaster glowing when the toaster is switched on

Explanation:

A coil of a toaster glowing when the toaster is switched on  is an example of chemical energy changing into radiant energy.

The toaster is turning into radiant energy because it is getting warmer and cooking.

Answer:

Explanation:

The reaction you are looking for is

hydrocarbon + O2 ====> nCO2 + mH20

in the simplest form.

You have a piece of wood. You burn it. There is going to be a chemical change.

Both heat and light are produced. (radiant energy)

The second best answer is D because you do get radiant energy.

Which of the following statements is NOT true about saturated fats?

A) They contain many carbon-carbon double bonds
B) They are usually solid at room temperature
C) They are usually obtained from animal sources
D) They contain more energy per gram than do unsaturated fats
E) They are not desirable as part of a low cholesterol diet

Answers

Answer:

A. They contain many carbon-carbon double bonds.

Explanation:

Saturated fats do not contain double bonds between the carbons. The carbons attached only by single bonds all saturated with hydrogen atoms or in other words, they have many hydrogen atoms clinging to the main skeletal carbon chain, and thus the word saturated.

Saturated fats are the type of fats that are not healthy.  

Final answer:

The statement that is NOT true about saturated fats is that they contain many carbon-carbon double bonds.

Explanation:

The correct answer is A) They contain many carbon-carbon double bonds. Saturated fats are characterized by having single carbon-carbon bonds in their fatty acid chains, making them saturated with hydrogen atoms. This structure allows them to be solid at room temperature. Saturated fats are commonly found in animal sources, such as meat and dairy products. They also contain more energy per gram compared to unsaturated fats. However, they are not desirable as part of a low-cholesterol diet due to their potential to raise blood cholesterol levels.

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What is true of a covalent bond? (03.03)

It is the electrostatic attraction between oppositely charged particle

It is the sharing of electrons by overlapping orbitals

It involves the exchange of electrons from one atom to another

It involves the sharing of neutrons between two nuclei

Answers

Answer:

I think B..

Explanation:

It is the sharing of electrons from one atom to another .

Answer:

The answer is b: It is the sharing of electrons by overlapping orbitals

Explanation:

The ionic bong involves the exchange of electrons from one atom to another to keep eight particles in their outermost orbit. In this way the atoms become stable.  This happens between a metal, which losing electrons becomes a cation that now has a positive charge, and a non-metal, which accepting electrons becomes an anion that now has a negative charge. So the ionic bond is the electrostatic attraction between oppositely charged particle (cation and anion).

No chemical bond involves sharing neutrons between two nuclei. Chemical bonds occur between the electrons of atoms, which are found in the outer layer around the nuclei.

So, the correct answer is b: It is the sharing of electrons by overlapping orbitals.  This happens between two non-metallic elements.

A school board is concerned that student test scores are being affected by
the fact that students do not get enough sleep at night. Which of the
following is a testable hypothesis to use for finding whether or not this is
true?

A. Children need at least two more hours of deep sleep at night than
adults need
B. Children who eat breakfast and lunch achieve higher test scores
than children who skip either meal.

C. Children who get more sleep at night eat healthier meals and
struggle less with obesity.

D. Children who get a minimum of nine hours of sleep per night
achieve higher test scores than children who get fewer than nine
hours of sleep.

Answers

Answer: D. Children who get a minimum of nine hours of sleep per night

achieve higher test scores than children who get fewer than nine

hours of sleep.

Children who get a minimum of nine hours of sleep per night achieve higher test scores than children who get fewer than nine hours of sleep. Hence, option D is correct.

What is a testable hypothesis?

A hypothesis is testable if there is a possibility of deciding whether it is true or false based on experimentation by anyone.

A direct way that sleep and school performance are connected is through effects on mental function.

Some known problems associated with lack of sleep include Decreased attention.

The ability to concentrate is vital to learning and academic achievement, but insufficient sleep reduces attention and focus.

According to the testable hypothesis, we can say that children who get a minimum of nine hours of sleep per night achieve higher test scores than children who get fewer than nine hours of sleep.

Hence, option D is correct.

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Which of the following is not a characteristic of electromagnetic light waves?

Answers

they can travel at various speeds through any one material.

Explanation:

This is the best answer for your question

Electromagnetic waves are a form of traverse wave in which the medium travels perpendicular to the direction of the wave. "They can travel at various speeds through any one material" is not a characteristic of Electromagnetic light waves.

Properties of light waves include reflection, refraction, diffraction and interference.

They can propagate and travel through a vacuum at the same speed.

Electromagnetic light waves propagate and travel at the speed of light.

Therefore, they do not travel at various speed through any one material.

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Word equation needed

Answers

Answer: 1. Al(0H)3

2. Ca2O

Explanation: During bonding, there will be exchange of ions

1. Al will give OH its 3 valence and OH will give Al its 1 to form Al(0H)3

2. Ca will give O its 1 valence and O will give Ca its 2 to form Ca2O

Consider the reaction below.
HI + H20 → H30* +1
Which is an acid-conjugate base pair?
HI and H20
H2O and H307
H30+ and I
CHI and I

Answers

Answer:

HI and I- represent an acid/conjugate base pair

1. Which metal is the most reactive? How do you know this?​

Answers

Answer:

cesium

Explanation:

The most reactive metal on the periodic table is francium. However, francium is a man-made element and only minute quantities have been produced, so for all practical purposes, the most reactive metal is cesium. Cesium reacts explosively with water, though it is predicted francium would react even more vigorously.

Which contains elements with similar properties in the periodic table?

Answers

Sodium, lithium, iron, and copper react with water

The answer is a column.

A hot air balloon contains 5.30 kL of helium gas when the temperature is 12°C. At what temperature will the balloon's volume have increased to 6.00 kL? (Remember to convert to Kelvin and then back to Celcius.)

(A) 50 °C
(B) -21 °C

Answers

Answer:

(A) 50 °C

Explanation:

Ideal gas law:

PV = nRT

If pressure is held constant, then:

V₁ / T₁ = V₂ / T₂

Substituting values:

(5.30 kL) / (12 + 273 K) = (6.00 kL) / T

T = 323 K

T = 50 °C

Answer:

Option (A) 50 °C

Explanation:

Thinking process:

Let the volume of the hot air be [tex]V_{1}[/tex] 5.30 k l = 5 300 l = 5.3 m³

The initial temperature will be 12 ° (12 + 273.15) = 285.15 K

The later volume, [tex]V_{2}[/tex] = 6 Kl = 6 000 l = 6 m³

The equation will be:

[tex]\frac{P_{1}V_{1} }{T_{1} } = \frac{P_{2}V_{2} }{T_{2} }[/tex]

If the pressure is the same, then:

[tex]\frac{5.3}{285.15} = \frac{6}{T_{2} }[/tex]

Solving for [tex]T_{2}[/tex] gives:

T₂ = 322.8

   = 49.66

   = 50°

As matter changes, what happens to the energy?

Answers

Energy, Temperature, and Changes of State

Matter either loses or absorbs energy when it changes from one state to another. For example, when matter changes from a liquid to a solid, it loses energy. The opposite happens when matter changes from a solid to a liquid.

convert 132,000,000,000,000,000 into number of moles

Answers

Answer:

0.15365144685714319697163388678739

Explanation:

1 mole is equal to 6.022^23 somethings (anything) since a mole is a way of representing the amount of somethings. Using avogadro's number rounded to the thousandth's place (you can look up a more specific version) you divide 132... by 6.022^23 to get the amount of moles.

how many cups are in 4 liters? 1 L=4.2cups

Answers

Answer:

16.8 cups

Explanation:

We are given that there are 4.2 cups in in 1 liter of a liquid and we are to find out the number of cups that there will be in 4 liters.

To find this out, we will use the ratio method.

We know that:

1 L = 4.2 cups

So we can write it as:

[tex]\frac{1L}{4 L} =\frac{4.2 cups}{x}[/tex]

[tex] x = 4 .2 \times 4[/tex]

[tex] x = 1 6 . 8 [/tex]

Therefore, there are 16.8 cups in 4 liters.

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