What would happen to the temperature if the pressure of a gas is increased and the volume is constant?

a.) Decrease

b.) Remain the same

c.) Increase

d.) Halved

Answers

Answer 1

Answer: Increase

Explanation:

According to Gay-Lussac's Law, the temperature of the gas would increase with increase in pressure on it while keeping the volume constant as the law states that the pressure of a given mass of gas varies directly with the absolute temperature of the gas, when the volume is kept constant.

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Answer 2

Final answer:

If the pressure of a gas is increased while keeping the volume constant, the temperature of the gas will increase. This is a direct consequence of Gay-Lussac's Law, where pressure and temperature are directly proportional to each other in these conditions.

Explanation:

When the pressure of a gas is increased and the volume is kept constant, according to Gay-Lussac's Law, the temperature of the gas must increase. This is because pressure and temperature are directly proportional in a contained gas when the volume is constant. So, if you increase the pressure, the temperature will also increase as the particles will collide more frequently and with greater energy against the walls of the container, which relates to an increase in temperature.

Now let's address the other scenarios briefly:

If the volume of a gas is increased while temperature and pressure remain constant, the gas will cool down due to the decreased particle collisions.If the volume of a gas decreases, with all other conditions being constant, the pressure increases, as per Boyle's Law, which states that volume and pressure are inversely related for a given amount of gas at constant temperature.When the temperature of a gas is decreased, assuming constant pressure, its volume decreases, following Charles's Law, which states that volume is directly proportional to temperature at constant pressure.

Related Questions

What happens when a mechanical wave travels through a medium?


A ) Energy is transferred.


B ) Energy is lost.


C ) Energy is gained.


D ) Energy fluctuates.

Answers

Your answer would be Option A. Energy is transferred.

I just took this quiz, and can 100% confirm this is the answer.

Hope this helps! :)  

Final answer:

When a mechanical wave travels through a medium, it transfers energy from one particle to another causing them to vibrate. The particles do not travel with the wave but rather vibrate about a central point.

Explanation:

When a mechanical wave travels through a medium such as air, water, or a solid material, the primary process is the transfer of energy. The mechanical wave causes particles in the medium to vibrate back and forth, thereby transferring energy from one particle to the next. However, it's important to note that while energy is transferred, the particles themselves don't travel with the wave but rather vibrate about a central point. This is different from losing, gaining or fluctuation of energy, but rather it's a consistent transfer of energy from one place to another.

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what causes matter to exist in three different states​

Answers

NOT 100% SURE

Thermal Energy..?

When I think of three states of matter I think of water as an example:

• Adding extreme heat to the liquid form of water can turn it into gas.

• Adding heat to ice can turn it into the liquid form of water.

• Freezing the liquid form of water can turn it into ice.

I would say temperature (thermal energy) has an effect of the different states of matter.

Could anyone possible help me?

Answers

#3 question D is Acid Rain

General formula for double replacement reaction​

Answers

The general formula for “Double Replacement” would beAB+CD —> AD+CB.

I really hope this helps you.

Jeffery has a 1.0-gram sample of baking soda and a 5.0-gram sample of vinegar. He combines the two samples in a sealed plastic bag. The baking soda and vinegar react, releasing bubbles and heat.

After the reaction is complete, Jeffery measures the mass of the bag's contents. The bag's contents should measure ______.

Answers

Answer:

6.0 grams because just because it mixes and you cant see the baking soda the 1.0 sample is still mixied with the 5.0 so it adds up to 6.0 grams

Explanation:

Final answer:

Based on the law of conservation of mass, the mass of the bag's contents after the reaction should measure 6.0 grams, which is the initial total mass of the baking soda and the vinegar.

Explanation:

The subject of this question is based on the law of conservation of mass, which states that matter can neither be created nor destroyed. Thus, in a sealed system like the plastic bag Jeffery is using, the total mass before the chemical reaction (the mass of the baking soda plus the vinegar) should be the same as the total mass after the reaction. Jeffery started with a 1.0-gram sample of baking soda and a 5.0-gram sample of vinegar, so the total mass was 6.0 grams. Therefore, the mass of the bag's contents after the reaction should also measure 6.0 grams.

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Oxygen decays to form nitrogen. 15 8 O → 15 7 N + 0 1 e This type of nuclear decay is called .

Answers

Hey yall its beta plus decay

Answer: [tex]\beta^+[/tex] decay

Explanation: General representation of an element is given as: [tex]_Z^A\textrm{X}[/tex] where,

Z represents Atomic number

A represents Mass number

X represents the symbol of an element

[tex]\beta^+[/tex]:  It is a type of decay process, in which a proton gets converted to neutron and an electron neutrino. This is also known as [tex]\beta ^+[/tex]-decay. In this the mass number remains same.

[tex]_A^Z\textrm{X}\rightarrow _{Z-1}^A\textrm{Y}+_{+1}^0e[/tex]

[tex]_8^{15}\textrm{O}\rightarrow _{7}^{15}\textrm{N}+_{+1}^0\beta[/tex]

Which description indicates that a question is non scientific?

A. The question has a narrow focus
B. The question leads to a testable hypotheses
C. The question addresses a gap in knowledge
D. The question relies on moral or social values

Answers

Answer : The correct option is (D)  "The question relies on moral or social values".

A non scientific question in biology relies on moral or social values, as these questions are subjective and cannot be empirically tested using scientific methods. A description that indicates a question is non scientific is D. The question relies on moral or social values.

A description that indicates a question is non scientific is D. The question relies on moral or social values. In the field of biology, and in science generally, scientific questions are answered using the scientific method. This involves making observations, formulating testable hypotheses, and conducting experiments. A non scientific question might involve elements such as morals, ethics, or personal opinions which cannot be tested or measured empirically. Questions about moral or social values do not fit within this framework because they are inherently subjective and are not universally observable or testable.

For acidic solutions, which element is added to balance half-reactions?

A.
hydrogen

B.
hydroxide

C.
oxygen

D.
nitrogen

Answers

Answer:

We add A Hydrogen

Explanation:

When we have a half-reaction in an acidic media usually we add (H+) hydrogen plus or protons to the reaction to balance in both sides of the reaction the amount of hydrogen.

After this step the next one is equilibrate the charges (e-) and finally we add the two half-reactions to write a short version

Answer:

hydrogen

Explanation:

Plato

A 25.5 ml aliquot of HCl of unknown concentration was titrared with .113 M NaOH. It took 51.2 ml of the base to reach the endpoint of the titration. The concentration (M) of the acid was ?

Answers

Answer;

0.227 M

Explanation;

Volume of HCl = 25.5 mL or 25.5 / 1000 => 0.0255 L

Molarity or concentration of NaOH  = 0.113 M

Volume of NaOH  = 51.2 mL / 1000 = 0.0512 L

Number of moles NaOH:

Moles = Molarity x Volume

            = 0.113 x  0.0512

            = 0.0057856 moles of NaOH

From the equation we can obtain the mole ratio:

HCl + NaOH = NaCl + H2O

1 mole HCl : 1 mole NaOH

Therefore;

Moles of  HCl : 0.0057856 moles NaOH

Hence; moles of HCl  =  0.0057856 x 1 / 1

                                    =  0.0057856 moles of HCl

Molarity of  HCl = moles of HCL / Volume of HCl

                         M =  0.0057856 / 0.0255

                              = 0.227 M

What feature is similar among all organisms?
A. They are composed of one or more cells that function to sustain life.
B. They are composed of multiple tissue types.
C. They can consume other organisms to create energy.
D. They can transform sunlight into food for sustenance.

Answers

The answer is A because all living things must contain a cell to be able to sustain life within

All organisms are composed of one or more cells that perform the basic functions of life.

Cells are the fundamental units of life.

How much energy is equal to 1 kg of mass?

Answers

This implies, for instance, that 1 kilogram of matter is equivalent to an energy E = (1 kg)×(3×108 m/sec)2 = 9×1016 kg m2/sec2. An energy of 1 kg m2/sec2 is known as 1 joule, for short.

What is number “4” in SiCi4?

Answers

It is a subscript

Also do you mean Cl not Ci. I assume you do because then it means 4 chlorine in that compound.

In a neutralization reaction, ______
and hydroxide ions react to form
______.

Answers

Explanation:

A reaction in which a hydrogen ion and hydroxide ion reacts and results in the formation of water is known as a neutralization reaction.

Basically in a neutralization reaction, a salt is also formed when an acid and a base reacts together along with formation of water and pH of a neutralized reaction is equal to 7.

For example, [tex]H^{+} + OH^{-} \rightarrow H_{2}O[/tex]

Therefore, we can conclude that in a neutralization reaction, hydrogen and hydroxide ions react to form water.

Write an equation for the decomposition of Al(ClO3)3 , To produce aluminum Chloride and Oxygen?
Thank you :)

Answers

Answer:

2Al(ClO₃)₃ → 2AlCl₃ + 9O₂.

Explanation:

Aluminium chlorate is decomposed to produce aluminium chloride and oxygen according to the equation:

2Al(ClO₃)₃ → 2AlCl₃ + 9O₂.

That every 2.0 moles of aluminium chlorate is decomposed to produce 2.0 moles of aluminium chloride and 9.0 moles of oxygen.

The decomposition of aluminium chlorate ([tex]Al(ClO_3)_3[/tex]) to produce aluminium chloride ([tex]AlCl_3[/tex]) and oxygen gas ([tex]O_2[/tex]) can be represented by the following balanced chemical equation:

[tex]\[ 2 \text{Al(ClO}_3)_3 \rightarrow 2 \text{AlCl}_3 + 9 \text{O}_2 \][/tex]

To write the equation, we start with the reactants and products given in the question. Aluminium chlorate ([tex]Al(ClO_3)_3[/tex]) decomposes into aluminium chloride ([tex]AlCl_3[/tex]) and oxygen gas ([tex]O_2[/tex]). We need to ensure that the equation is balanced, meaning that the number of atoms of each element must be the same on both sides of the equation.

Starting with the aluminium atoms, we have one aluminium atom on both sides of the equation, so aluminium is balanced.

Next, we look at the chlorine atoms. There are three chlorine atoms in each [tex]Al(ClO_3)_3[/tex] molecule, for a total of six chlorine atoms in [tex]2Al(ClO_3)_3[/tex]. To balance the chlorine atoms on the product side, we need six chlorine atoms in the aluminium chloride, which gives us [tex]AlCl_3[/tex] for each aluminum atom, hence [tex]2AlCl_3[/tex].

Finally, we balance the oxygen atoms. There are nine oxygen atoms in each [tex]2Al(ClO_3)_3[/tex] (since there are three oxygen atoms in each [tex]ClO_3[/tex]group and we have six [tex]ClO_3[/tex] groups in total). To balance the oxygen atoms, we need nine oxygen atoms on the product side, which means we need 9/2 molecules of [tex]O_2[/tex], since each [tex]O_2[/tex] molecule contains two oxygen atoms. However, because we cannot have half a molecule, we multiply the entire equation by 2, resulting in 9 molecules of [tex]O_2[/tex].

This gives us the balanced equation:

[tex]\[ 2 \text{Al(ClO}_3)_3 \rightarrow 2 \text{AlCl}_3 + 9 \text{O}_2 \][/tex]

This equation correctly represents the conservation of mass, with an equal number of each type of atom on both sides of the reaction.

The number of grams of H2 in 1470 mL of H2 gas. ​

Answers

Final answer:

To find the number of grams of H2 in 1470 mL of H2 gas, convert the volume from mL to L, calculate the number of moles using the molar volume at STP, and then find the mass of H2 gas using stoichiometry and the molar mass of H2.

Explanation:

To determine the number of grams of H2 in 1470 mL of H2 gas, we need to use the concept of molar mass and stoichiometry. The molar mass of H2 is 2 g/mol, which means that one mole of H2 gas weighs 2 grams. We can use the molar volume of gases at STP (standard temperature and pressure), which is approximately 22.4 L/mol, to convert the volume of the gas into moles. From there, we can use stoichiometry to determine the mass of H2 gas in grams.

First, convert the volume of the gas from milliliters to liters by dividing by 1000. 1470 mL is equal to 1.47 L. Using the molar volume of gases at STP, we can find the number of moles: 1.47 L / 22.4 L/mol = 0.0656 mol.

Since each mole of H2 gas weighs 2 grams, the mass of H2 gas in grams is: 0.0656 mol * 2 g/mol = 0.1312 g.

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The number of grams of H₂ in 1470 mL of H₂ gas is calculated to be 0.1312 grams.

To find the number of grams of H₂ in 1470 mL of H₂ gas, we need to use the ideal gas law, which is:

PV = nRT

Where:

P is the pressure (in atm)V is the volume (in liters)n is the number of molesR is the ideal gas constant (0.0821 L·atm/(mol·K))T is the temperature (in Kelvin)

For this calculation, we assume the gas is at standard temperature and pressure (STP; 0°C and 1 atm), where 1 mole of an ideal gas occupies 22.4 L.
First, convert the volume from mL to L:

1470 mL = 1.470 L

At STP, 1 mole of H₂ gas occupies 22.4 L. Thus, the number of moles of H₂ gas is:

n = V / 22.4 L = 1.470 L / 22.4 L/mol = 0.0656 mol

Next, we find the mass using the molar mass of H₂ (2 g/mol):

Mass = n × molar mass = 0.0656 mol × 2 g/mol = 0.1312 g

Therefore, the number of grams of H₂ in 1470 mL of H₂ gas is 0.1312 grams.

Which term describes a trace, print, or remain of an organism preserved over time in a rock?

A. skeleton

B. fossil

C. mineral

D. sedimentary rock

Answers

B. Fossil

Why? Well skeleton seems like another answer BUT the definition of a fossil is an imprint of an organism on rock.

Example: A dinosaur presses it’s foot in dirt and it leaves a footprint or ‘fossil’ behind

The term describes a trace, print, or remain of an organism preserved over time in a rock is fossil. Therefore, option B is correct.

What are fossils ?

Any surviving remains, impression, or evidence of a once-living thing from a previous geological epoch is referred to as a fossil. Examples include exoskeletons, bones, shells, animal or microbe imprints in stone, items preserved in amber, hair, petrified wood, and DNA traces. The fossil record is the collection of all fossils.

The majority of fossils are created when a living thing (such as an animal or plant) dies and is swiftly buried by sediment (such as mud, sand or volcanic ash).

The preserved remnants of plants and animals that were submerged in sediments like sand and mud beneath ancient seas, lakes, and rivers are known as fossils. Any preserved sign of life that is typically more than 10,000 years old is considered a fossil.

Thus, option B is correct.

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what is the mass of 50 carbon atoms? What is the mass of 50 hydrogen atoms?​

Answers

I’m not sure, but I would think it is 50x12 for each. So 600 amu for each

The mass of 50 carbon atoms is   [tex]\bold{99.07\;\times\;10^{-23}}[/tex] amu, and the mass of 50 hydrogen atoms is [tex]\bold{8.30\;\times\;10^{-23}}[/tex] amu.

Computation for the mass of carbon and hydrogen atom

The mass of an atom can be given by the Avogadro law.

According to the Avogadro law, 1 mole of an element is composed of [tex]\rm 6.023\;\times\;10^{23}[/tex] atoms. The molar mass of an element is the mass of a mole of substance.

Thus, the mass of atoms can be given by:

[tex]\rm 6.023\;\times\;10^2^3\;atoms=molar\;mass[/tex]

Mass of 50 carbon atoms can be given as:

Molar mass of carbon is 12 amu.

[tex]\rm 6.023\;\times\;10^2^3\;Carbon\;atoms=12.01\;amu\\\\50\;Carbon\;atoms=\dfrac{12.01}{6.023\;\times\;10^2^3}\;\times\;50\;amu\\\\50\;Carbon\;atoms=99.70\;\times\;10^{-23}\;amu[/tex]

The mass of 50 carbon atoms is [tex]99.70\;\times\;10^{-23}[/tex] amu.

The mass of 50 hydrogen atoms is given by:

Molar mass of hydrogen is 1 amu.

[tex]\rm 6.023\;\times\;10^2^3\;Hydrogen\;atoms=1\;amu\\\\50\;Hydrogen\;atoms=\dfrac{1}{6.023\;\times\;10^2^3}\;\times\;50\;amu\\\\50\;Hydrogen\;atoms=8.30\;\times\;10^{-23}\;amu[/tex]

The mass of 50 hydrogen atoms is [tex]8.30\;\times\;10^{-23}[/tex] amu.

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Calculate the theoretical yield of hydrogen gas (in L) at 295 K for a reaction of 1.50 g magnesium with excess hydrochloric acid. If 1.205 L of gas is produced, what is the percent yield of the reaction?

Answers

Answer:

80.33 %.

Explanation:

For the reaction:

Mg(s) + 2HCl(aq) → MgCl₂ + H₂.

Every 1.0 mole of Mg is dissolved in 2.0 moles of HCl and produce 1.0 mole of MgCl₂ and 1.0 mol H₂.To get the theoretical yield of hydrogen gas (in L):We want to calculate the no. of moles of Mg in 1.50 g:

n = mass/atomic mass = (1.50 g)/(24.3 g/mol) = 0.062 mol.

Using cross multiplication:

1.0 mol of Mg produces → 1.0 mol of hydrogen gas.

0.062 mol of Mg produces → 0.062 mol of hydrogen gas.

∵ PV = nRT.

∴ V of hydrogen (the theoretical yield) = nRT/P = (0.062 mol)(0.082 L.atm/mol.K)(295.0 K)/(1.0 atm) = 1.50 L.

The actual yield of the reaction = 1.205 L.

∴ The percent yield of the reaction = (actual yield)/(theoretical yield) x 100 = (1.205 L)/(1.50 L) x 100 = 80.33 %.

Final answer:

The theoretical yield of hydrogen gas at 295 K from reacting 1.50 g of magnesium with excess hydrochloric acid is 1.484 L. The percent yield, with an actual yield of 1.205 L of gas, is 81.19%.

Explanation:

Calculating Theoretical and Percent Yield

The student has asked to calculate the theoretical yield of hydrogen gas (in L) at 295 K for a reaction of 1.50 g magnesium with excess hydrochloric acid and then to determine the percent yield of the reaction given that 1.205 L of gas is produced.

To solve this, we first need to find the number of moles of magnesium (Mg) that will react. The molar mass of Mg is 24.305 g/mol, so:

Number of moles of Mg = Mass of Mg / Molar mass of Mg

= 1.50 g / 24.305 g/mol

= 0.0617 mol

According to the balanced chemical reaction, Mg(s) + 2 HCl(aq) → MgCl₂(aq) + H₂(g), 1 mole of Mg produces 1 mole of H₂. Therefore, the number of moles of H₂ will also be 0.0617 mol.

Now, using the ideal gas law, PV = nRT, where P (pressure) = 1 atm (standard pressure), V is the volume, n is the number of moles of gas, R is the ideal gas constant (0.0821 L·atm/K·mol), and T is the temperature in Kelvin:
= 0.0617 mol × 0.0821 L·atm/K·mol × 295 K / 1 atm

= 1.484 L

This is the theoretical yield. The percent yield is calculated as:

Percent yield = (Actual yield / Theoretical yield) × 100%

= (1.205 L / 1.484 L) × 100%

= 81.19%

A measurement of how often something occurs in a given time period is _____.
A.) Amplitude
B.) Frequency
C.) Wavelength
D.) Sonic Boom

Answers

frequency

hope this helps :)

How many atoms are in mercury (ii) biocarbonate?

Answers

Alias: Mercuric Hydrogen Carbonate; Mercury(II) Bicarbonate

Formula: Hg(HCO3)2

Molar Mass: 322.6237

Which phrase best describes humidity?

Answers

Heat describes humidity

How do I balance chemical equations?

Answers

Count the atoms of each element in the reactants and the products. Use coefficients; place them in front of the compounds as needed.

Final answer:

To balance a chemical equation, follow these steps: Determine the correct formulas, count the number of atoms, balance the elements one at a time, check the balance, and reduce coefficients if needed.

Explanation:

In order to balance a chemical equation, you can follow the steps below:

Step 1: Plan the problem. Determine the correct chemical formulas for each reactant and product, and write the skeleton equation.Step 2: Count the number of atoms. Count the number of atoms of each element that appears as a reactant and as a product.Step 3: Balance the elements one at a time. Place coefficients in front of the formulas. Start by balancing elements that only appear in one chemical formula on each side of the equation.Step 4: Check the balance. Ensure that all atoms or polyatomic ions are equal on both sides of the equation.Step 5: Reduce coefficients (if needed). Make sure that all coefficients are in the lowest possible ratio.

Which of the term best describe the developing country? Select the three

Answers

The three correct responses are A. Low consumption rate, D.  Advanced methods of sanitation, and E. Lack of access to vaccines.

A. This option is correct because developing countries often have lower levels of consumption compared to developed countries due to factors such as lower income levels and limited access to resources and technology.

D. This option is correct because developing countries typically have less advanced sanitation infrastructure compared to developed countries, which can lead to issues such as inadequate sewage treatment and poor hygiene practices.

E. This option is correct because developing countries often struggle to provide widespread access to vaccines due to factors such as limited healthcare infrastructure, financial constraints, and logistical challenges.

Why other options are incorrect

Option B (Wastewater treatment systems) could also be relevant, but it's not as universally characteristic of developing countries as the other options. While some developing countries may lack adequate wastewater treatment systems, others may have made significant progress in this area.

Option C (Education about healthy lifestyles) is less indicative of a developing country because education about healthy lifestyles can exist in both developed and developing countries, although the extent and effectiveness of such education may vary.

The complete question is

Which of these terms best describes a developing country select the three correct responses?

A. Low consumption rate

B. Wastewater treatment systems

C. Education about healthy lifestyles

D. Advanced methods of sanitation

E. Lack of access to vaccines

1. Which elements are known as d-block elements?
transition metals
alkali earth metals
halogens
alkali metals

Answers

The d-block elements are found in groups 3, 4, 5, 6, 7, 8, 9, 10, 11, and 12 of the periodic table.

So your answer is A) Transition metals

Answer:

The answer is Transition metals they are the d-block elements.

Explanation:

The transition metals are called d-block due to these elements have electrons in the outer orbital d.

Orbitals in atoms: The atoms have electrons that are negative charged particles moving around the nucleus. The electrons are distributed in orbitals, each orbital has an energy value and representations with letters the lowest energy orbital is s, then p, d and f.

The d-orbital due to its energetic value can hold up to 10 electrons and these elements are important due to they are required for many organic, inorganic, biological and technological process.

For example: a d-block element is the Iron Fe who has magnetic properties and it is required for the human body to form hemoglobin ( protein needed for oxygen transport in cells.

What is the relationship between reaction rate and reaction time

Answers

Final answer:

Reaction rate and reaction time have an inverse relationship.

Explanation:

The reaction rate refers to how fast a chemical reaction occurs, while the reaction time indicates the duration it takes for the reaction to happen. In general, there is an inverse relationship between reaction rate and reaction time. The faster the reaction rate, the shorter the reaction time, and vice versa. For example, if we compare two reactions, one with a fast reaction rate and the other with a slow reaction rate, the reaction with the fast rate will have a shorter reaction time.

BRAINLIEST + 20 POINTS!!!
Which of the following statements is true about energy quantization at the atomic level?

The energy of a photon depends on the frequency of the emission.
The energy of a photon depends on the mass of the neutrons and protons.
An electron can only move from a lower energy level to a higher energy level.
An electron may emit or absorb a quarter of a photon during energy level transitions.

Answers

Answer:

The energy of a photon depends on the frequency of the emission.

Explanation:

E = hν  

where E is the energy of a photon, ν   is the frequency of photon and h is Planck’s constant.  

Energy of a photon is quantized and is directly proportional to the frequency of the emission.  

Quantized energy of a photon explained the photoelectric effect. It was proven that light not has wave nature but particle nature as well. This later gave rise to wave particle duality of light waves.

Find the concentration of H+ ions at a pH = 11 and pH = 6. Then divide the concentration of H+ ions at a pH = 11 by the of H+ ions at a pH = 6. Record your answer in Table C. What is the concentration of H+ ions at a pH = 11? mol/L What is the concentration of H+ ions at a pH = 6? mol/L How many fewer H+ ions are there in a solution at a pH = 11 than in a solution at a pH = 6?

Answers

Explanation:

When pH of the solution is 11.

[tex]pH=-\log[H^+][/tex]

[tex]11=-\log[H^+][/tex]

[tex][H^+]=1\times 10^{-11} M[/tex]..(1)

At pH = 11, the concentration of [tex]H^+[/tex] ions is [tex]1\times 10^{-11} M[/tex].

When the pH of the solution is 6.

[tex]pH=-\log[H^+]'[/tex]

[tex]6=-\log[H^+]'[/tex]

[tex][H^+]'=1\times 10^{-6} M[/tex]..(2)

At pH = 6, the concentration of [tex]H^+[/tex] ions is [tex]1\times 10^{-6} M[/tex].

On dividing (1) by (2).

[tex]\frac{[H^+]}{[H^+]'}=\frac{1\times 10^{-11} M}{1\times 10^{-6}}=1\times 10^{-5} [/tex]

The ratio of hydrogen ions in solution of pH equal to 11 to the solution of pH equal to 6 is [tex] 1\times 10^{-5}[/tex].

Difference between the [tex]H^+[/tex] ions at both pH:

[tex]1\times 10^{-6} M-1\times 10^{-11} M=9.99\time 10^{-7} M[/tex]

This means that Hydrogen ions in a solution at pH = 7 has [tex]9.99\time 10^{-7} M[/tex] ions fewer than in a solution at a pH = 6

Answer:

0.00000000001

0.000001

100,000

Explanation:

What occurs in the A horizon of soil

Answers

A soil horizon is a layer parallel to the soil surface, whose physical, chemical and biological characteristics differ from the layers above and beneath. Horizons are defined in many cases by obvious physical features, mainly colour and texture.

Which statement about the elements in the periodic table is true

Answers

A. The number of valence electrons increases as atomic mass increases. == Generally true for the representative elements since atomic mass generally increases with increasing Z.  

B. The reactivity of alkali metals increases as atomic mass increases. == True. Atomic mass increases down the column and so does reactivity  

C. The reactivity of the halogens increases as atomic mass increases. == False. Reactivity decreases down the column.  

D. The number of valence electrons decreases across a period. == False. In general, the number of valence electrons increases across a period, particularly for the representative elements.

Answer:

The reactivity of alkali metals increases as atomic mass increases.

Explanation:

There are six elements in the periodic table that can be classified as alkali metals. These elements are extremely reactive and it is correct to say that the reactivity of alkali metals increases as the atomic mass increases.

These metals can be found in the IA family of the periodic table and contain the names: Lithium, Sodium, Potassium, Rubidium, Cesium, Francium.

The Big Bang theory states that ________.

A.The universe will explode

B.The universe began as a small,dense ball of matter

C.The universe is contracting

D.The universe cannot expand anymore

Answers

I believe the correct answer is B

Final answer:

The Big Bang theory posits that the universe began as a highly compressed, hot, and dense state roughly 13.7 billion years ago, later expanding and cooling to its current form, with the cosmic microwave background (CMB) serving as a key piece of evidence.

Explanation:

The Big Bang theory states that the universe began as a small, dense ball of matter. This is often described as a hot, dense state, which then underwent rapid expansion and cooling to arrive at its present condition. According to this theory, the universe started about 13.7 billion years ago, and it continues to expand and cool today. The cosmic microwave background (CMB) is a critical piece of evidence supporting the theory, as it is the redshifted afterglow of the Big Bang and can be observed from any direction in space.

Contrary to the Big Bang being an explosion of matter into space, it is more accurately the expansion of space itself, with the universe's density decreasing over time as it expands. This expansion continues to be a subject of study, including whether the universe will eventually stop expanding and begin contracting in a 'big crunch' or continue to expand indefinitely, an idea connected to concepts like the cosmological constant and dark energy.

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