Balance these equations
N2 + O2 > NO

Answers

Answer 1

Answer:

N2 + O2 --->  2NO

Explanation:

There has to be the same amount of elements on both sides of the equation and it's the rules of chemistry that you cannot add subscripts to the elements because that just changes the whole compound so you must always add coefficients. (The 2 distributes to both elements)

Answer 2

Final answer:

The balanced equation for the reaction between molecular nitrogen (N2) and oxygen (O2) to form nitrogen monoxide (NO) is N2(g) + O2(g) → 2 NO(g). Adding more O2 to a system at equilibrium will shift it to form more NO.

Explanation:

To balance the given equation N2 + O2 → NO, one must ensure that there are equal numbers of each type of atom on both sides of the equation. Starting with nitrogen, we have one N2 molecule, which contains 2 N atoms. On the right side, there is one NO molecule, which contains only 1 N atom, so we can place a coefficient of 2 in front of NO to balance nitrogen. Now we have 2 atoms of nitrogen on both sides. Initially, we have one O2 molecule with 2 O atoms and only one O atom in each NO molecule. After balancing nitrogen, we have two NO molecules, bringing the number of O atoms to two, which balances the oxygen atoms as well. So the balanced equation is N2(g) + O2(g) = 2 NO(g).

If more O2 is added to this system at equilibrium, according to Le Chatelier's Principle, the system would adjust to counteract this change by forming more NO, thus consuming some of the added O2 and potentially shifting the equilibrium position.


Related Questions

Which of the following was originally a tenet of Dalton's atomic theory, but had to be revised about a century ago?
Atoms are tiny indivisible particles.
The atoms of any one element are different from those of any other element.
Compounds are made by combining atoms.
Atoms of different elements can combine with one another in simple whole number ratios.

Answers

Answer:

Atoms of different elements can combine with one another in simple whole number ratios

All the given statements are first proposed by John Dalton. But the one think that atoms are tiny indivisible particles had to be revised because of the discovery of subatomic particles electrons, protons and neutrons.

What is an atom?

An atom is the basic unit of every substance in the universe. Atoms are made up of a nucleus and electrons. Nucleus is composed of positively charged protons and neutral particles neutrons.

There were many theories addressing the structure of atom in which the first significant one was Dalton's theory. According to this theory, Atoms are tiny indivisible particles.

The atoms of any one element are different from those of any other element. Compounds are made by combining atoms. Atoms of different elements can combine with one another in simple whole number ratios.

Later J.J thomson discovered electrons and Rutherford discovered protons and revolving nature of electrons around the nucleus. It was Niels Bohr who proposed the modern theory for atomic model and with the aid of this theory electronic properties of atoms were studied more.

Therefore, the indivisibility of atoms proposed by Dalton was wrong and thus option A is correct.

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How does the specific heat of water affect the oceans

Answers

Answer:

Heating a substance causes molecules to speed up and spread slightly further apart, occupying a larger volume that results in a decrease in density. ... Hot water is less dense and will float on room-temperature water. Cold water is more dense and will sink in room-temperature water.

Explanation:

Answer: it keeps the temperature more even

Explanation:

How many molecules of dinitrogen pentoxide are in 0.27 moles of dinitrogen
pentoxide?​

Answers

Answer:

1.6 × 10²³ molecules of N2O5

Explanation:

To find the amount of molecules from the amount of moles of a substance we simply multiply the amount of moles by Avagadro's number.

0.27mol × 6.02×10²³ = 1.6 × 10²³ molecules of N2O5

The best explanation for the organization of Mendeleev's Periodic Table by atomic mass rather than atomic number is that ―

Answers

Answer:

The reactivity of an element From left to right.

Explanation:

The most reactive are on the right while the least reactive elements towards the left.

He observed that the physical and chemical properties of elements were related to their atomic mass in a repeating or in a periodic manner.

What is a periodic table?

Dmitri Ivanovich Mendeléev was a Russian chemist and perhaps the most important person who contributed to the early development of the periodic table. Many periodic tables were made before him but the most important one till then was the Mendeleev periodic table.

After the rejection of Newlands Octave Law, in 1869, Mendeleev's Periodic table came was bought into the picture. In Mendeleev’s periodic table, elements were arranged according to the fundamental property of their atomic mass, and chemical properties.

During Mendeleev’s work, there were only 63 elements that were known. After he finished studying the properties of every element, Mendeleev found that the properties of elements were related to atomic mass in a repeating or periodic manner. That is why he arranged the elements in a manner where the elements that had similar properties were in the same vertical columns of the periodic table.

Therefore, he observed that the physical and chemical properties of elements were relating to their atomic mass in a repeating or in a periodic manner.

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Suppose that a fictitious element, X, has two isotopes: 59X (59.015 amu) and 62X (62.011 amu). The lighter isotope has an abundance of 81.7%. Calculate the atomic mass of the element X.

Answers

Answer:

Atomic Mass of Element = 59.57 amu

Given Data:

Element X Isotope 1 atomic weight = 59.015 amu  

Element X Isotope 2 atomic weight = 62.011 amu

The abundance of lighter isotope = 81.7%

Atomic Mass of Element X = ?

Solution:

81.7% is the abundance of element that is lighter so it is the of the isotope having weight 59.015 amu

Then the remaining abundance = 100 -81.7 = 18.3 %

18.3 % abundance of the isotope weight = 62.011 amu

Formula:

Mass of the element =  % of abundance (atomic mass of Isotope 1) + % of abundance (atomic mass of Isotope 2)

Put the values

Atomic mass of Element X = 81.7/100 (59.015) + 18.3 /100 (62.011)

Atomic mass of Element = 0.817 (59.015) + 0.183 (62.011)

Atomic mass of Element = 48.22 + 11.35

Atomic Mass of Element = 59.57 amu

Which element is a d block element?

A) S

B) Ar

C) Ag

D) As

E) None of these elements is a d block element.

Answers

Answer:

Option C : Ag

Electronic configuration:

47Ag: 1s2 2s2 2p6 3s2 3p6 4s2 3d10 4p6 5s2 4d9

The d-block elements are present in the middle of periodic table between s and p-block elements. d-block elements are also called Transition elements. Their valance electrons are reside in the d orbitals. They have more electropositive character than p-block elements but less than s- block elements.

Final answer:

The d block element among the given choices is Ag (silver), which is part of the second transition series, making the correct answer C) Ag.

Explanation:

The element that is a d block element among the choices provided is Ag (silver). This is because d block elements comprise the groups 3 through 12 on the periodic table, which are also known as the transition metals.

According to the division of the d block elements, silver (Ag) falls into the second transition series. S (sulfur) and Ar (argon) are p block elements, while As (arsenic) is also a p block element. Therefore, the correct answer is C) Ag.

A graduated cylinder contains 17.5 ml of water. When a metal cube is placed onto the cylinder, it’s water level rises to 20.3 ml. What is the volume of the cube cm3

Answers

Answer:

20.3-17.5=2.8ml  1ml=1cm3   vol= 2.8cm3

Explanation:

Final answer:

The volume of the metal cube is calculated by subtracting the original volume of water in the cylinder (17.5 ml) from the volume after the cube was placed in the cylinder (20.3 ml), resulting in a cube volume of 2.8 cm³.

Explanation:

The volume of the metal cube that was placed in the graduated cylinder can be calculated from the change in water level. At the beginning, the cylinder contained 17.5 ml of water. When the metal cube was placed into the cylinder, the water level rose to 20.3 ml. The volume of the cube in cubic centimeters (cm³) or milliliters (ml), since 1 cm³ = 1 ml, can be determined simply by subtracting the original volume of water from the final volume.

So, the calculation is as follows: 20.3 ml - 17.5 ml = 2.8 cm³. Therefore, the volume of the metal cube is 2.8 cm³.

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Different kinds of wood have different densities. The density of american white oak wood is generally 0.77 g/cm3. If Jim grabs a 38.5 cm3 piece of wood out of his pile of materials, what would the mass be if that pile was all american white oak?

Answers

Answer:

m= 29.645 g

Explanation:

Density:

Density is equal to the mass of substance divided by its volume.

Units:

SI unit of density is Kg/m3.

Other units are given below,

g/cm3, g/mL , kg/L

Formula:

D=m/v

D= density

m=mass

V=volume

Symbol:

The symbol used for density is called rho. It is represented by ρ. However letter D can also be used to represent the density.

Given data:

density of wood = 0.77 g/cm³

volume= 38.5 cm³

mass= ?

Solution:

d= m/v

m= d × v

m= 0.77 g/cm³× 38.5 cm³

m= 29.645 g

Final answer:

The mass of a 38.5 cm3 piece of American white oak wood from the pile would be 29.645 g.

Explanation:

The density of American white oak wood is generally 0.77 g/cm³.

To calculate the mass of a 38.5 cm³ piece of wood from the pile, we can use the formula:

Mass = Density x Volume

Therefore, the mass of the wood would be: 0.77 g/cm³ x 38.5 cm³ = 29.645 g.


What type of bonds hold together the atoms in an oxygen molecule?

Answers

Answer:

Covalent bond

Explanation:

Covalent bond:

"The bond which is formed by the sharing of electrons between the atoms is called covalent bond"

The covalent bond is less stronger than ionic bond so require less energy to break as compared to the energy require to break the ionic bond.

The covalent bond is present between the oxygen molecule. It is the bond which is formed by the sharing of electrons between the two atoms of oxygen. Oxygen is present in group six of periodic table so there are six valance electrons are present. Oxygen molecules is formed by sharing the two valance electrons by each oxygen atom, thus double covalent bond is present in oxygen molecules. This is represented as O=O and two lone pairs are still present on each oxygen atom.

Answer:

two covalent bonds

Explanation:

Oxygen atoms can form two covalent bonds, so to link the two oxygen atoms together, a double bond forms between them.

Methane (CH4) reacts with water (H20) to produce carbon monoxide (CO) and hydrogen (H2)

Answers

This reaction only occurs at high temperatures and in the presence of a metal-based catalyst (nickel). And the H2O is in the form of steam (due to the high temperature)

Melting ice off a windshield is which change

Answers

Answer:

Physical Change

Explanation:

The ice isn't changing what it is, because its still water (even though its in a different form) If you freeze it again it will be exactly the same and so its a Physical Change

Answer:

Melting ice will change to water and windshield will change to very vescus fluid.

Explanation:

When glucose is consumed, it reacts with oxygen in the body to produce carbon dioxide, water, and energy. How many grams of carbon dioxide would be produced if 45g of C6H12O completely reacted with oxygen

Answers

Answer:

There will be produced 66g of CO2 if 45g of glucose completely reacted with oxygen

Explanation:

Step 1 : Balance the formula

Oxidation of glucose can be shown in the following equation :

C6H12O6  + 6 O2  → 6 CO2 + 6H2O

This means that for 1 mole glucose that react there will react 6 moles of O2, to form 6 moles of CO2 and 6 moles of H2O

Step 2: Calculating moles

mole glucose = 45g / Molar mass glucose

   ⇒ Molar mass = 6*12 + 12*1 + 6*16 = 72 + 12 + 96 = 180g/mole

⇒ mole glucose = 45g / 180g/mole

⇒mole glucose = 0.25 mole

Since 1 mole of glucose is used to form 6 moles of CO2

0.25 mole of glucose is used to form 1.5 moles of CO2

Step 3 : Calculating mass of Carbon dioxide

Mass of CO2 = 1.5 moles of CO2 * 44 g/mole

mass of CO2 = 66g

There will be produced 66g of CO2 if 45g of glucose completely reacted with oxygen

Final answer:

If 45g of glucose reacts with oxygen, 66.015 grams of carbon dioxide would be produced. This calculation is based on converting the mass of glucose to moles, using the stoichiometry of the balanced chemical equation, and then calculating the mass of CO2 produced.

Explanation:

When glucose (which has the chemical formula C6H12O6) is consumed, it reacts with oxygen to produce carbon dioxide, water, and energy. The chemical equation for this reaction is C6H12O6 + 6 O2 → 6 CO2 + 6 H2O. Given that 45g of C6H12O6 completely reacts with oxygen, we need to calculate the mass of carbon dioxide produced from this reaction.

To do this, we first need to determine the molar mass of glucose, which is 180.16 g/mol. This means that 1 mole of glucose weighs 180.16 grams. We can then find out how many moles of glucose 45g represents by dividing 45g by 180.16 g/mol, which gives us 0.25 mol of glucose.

According to the chemical equation, 1 mole of glucose produces 6 moles of CO2. Therefore, 0.25 moles of glucose would produce 0.25 × 6 = 1.5 moles of CO2. The molar mass of CO2 is 44.01 g/mol, so the mass of CO2 produced by 0.25 moles of glucose is 1.5 moles × 44.01 g/mol, resulting in 66.015 grams of CO2. So, if 45g of C6H12O6 completely reacted with oxygen, 66.015 grams of CO2 would be produced.

Which of the following phases occur at point B on the phase diagram shown below

A. Boiling
B. condensation
C. freezing
D. sublimation

if the person who answers would kindly give an explanation so I can understand how to do this in the future, that would be great :) thank you!

Answers

Answer:

C. freezing

Explanation:

Point B is right at the border between a solid and a liquid so you can have two physical changes:

a) solid is meting to transform into a liquid

or

b) liquid is freezing to transform into a solid (C)

If you are on the border between a solid and a gas you have the following physical changes:

solid to gas - sublimation

gas to solid - deposition

If you are on the border between a liquid and a gas you have the following physical changes:

liquid to gas - boiling

gas to liquid - condensation

Answer: It is C

Explanation: got a 100% on this assignment

2.
The number of protons in one atom of an element determines the atom's
., and the number of electrons determines
of and element.
to the number of

Answers

Answer:

Atomic number

Explanation:

Final answer:

The number of protons in an atom determines its atomic number, which is unique to each element and also indicates the number of electrons in a neutral atom.

Explanation:

The number of protons in one atom of an element determines the atom's atomic number, and the number of electrons determines the chemical properties of an element. Atoms of each element contain a characteristic number of protons, and this number is unique to that element. For example, any atom containing one proton is hydrogen and has the atomic number 1. The atomic number not only distinguishes one element from another but also signifies the number of electrons in a neutral atom, since the number of protons equals the number of electrons. Therefore, the atomic number of an element defines both its identity and the number of electrons in its neutral state. Scientists use the atomic number to identify and categorize elements, with known elements' atomic numbers ranging from 1 (hydrogen) to 118 (Oganesson).

Which of the following is characteristic property of the alkaline earth metals?

Answers

Answer:the man speaks the truth

Explanation:

Final answer:

Alkaline earth metals are in group 2 of the periodic table, forming alkaline solutions when their oxides react with water. They have higher ionization energies and smaller atoms than alkali metals, which makes them less reactive. In chemical reactions, they lose their valence electrons and exhibit a 2+ oxidation state.

Explanation:

The alkaline earth metals, which include beryllium, magnesium, calcium, strontium, barium, and radium, are part of group 2 of the periodic table. Characteristically, these metals form alkaline solutions when their oxides react with water. Additionally, these alkaline earth metals possess smaller atoms and have higher first ionization energies than the alkali metals existing within the same period. This contributes to their lower reactivity in comparison to alkali metals, though they are still highly reactive on their own.

A defining trait of these metals is that they readily lose both their valence electrons in chemical reactions, which leads them to exhibit an oxidation state of 2+. Furthermore, they have a completed s subshell in their outermost shell. The reactivity of these metals escalates with an increase in their size and a decrease in ionization energy.

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what is √200 in simplest form?​

Answers

Answer:

14.14

If you round it I'm guessing it would be 14.

Good luck <3

Answer:

10√2

Explanation:

5. What type of clouds can be found in the mesosphere?
Nimbus
Cumulus
Noctilucent
Stratus

Answers

Some material from meteors lingers in the mesosphere, causing this layer to have a relatively high concentration of iron and other metal atoms. Very strange, high altitude clouds called "noctilucent clouds" or "polar mesospheric clouds" sometime form in the mesosphere near the poles.

I really hope this helps! I wish you the best of luck!

Which two Chemists organized elements based on properties such as how the elements react or whether they are solid on
liquid?

Lavoisier and Mendeleev

Dobereiner and Newlands

Newlands and Mendeleev

Lavoisier and Dobereiner

Answers

Lavoisier and Dobereiner  

I hope this helps!

Answer:

Lavoisier and Dobereiner is the correct answer.

Explanation:

Lavoisier and Dobereiner two Chemists organized elements based on properties such as how the elements react or whether they are solid onliquid.Lavoisier and Dobereiner are the scientists who have done an important contribution to the periodic table.Johann Wolfgang Dobereiner found the occurrence of classes of elements with alike chemical properties.Lavoisier made major contributions made to understand the chemical properties in the periodic table.

How many grams of O are in 905 grams of Na2O? ​

Answers

Final answer:

To find the number of grams of O in 905 grams of Na2O, we calculate the molar mass of Na2O and O. Then, we use the ratio of moles of O to Na2O to calculate the number of moles of O. Finally, we multiply the number of moles of O by the molar mass of O to find the grams of O.

Explanation:

To calculate the number of grams of O in 905 grams of Na2O, we need to find the molar mass of Na2O and the molar mass of O. The molar mass of Na2O is 46 grams/mol (2*23 for Na + 16 for O) and the molar mass of O is 16 grams/mol.

In Na2O, there are 2 moles of Na for every 1 mole of O. So we can calculate the number of moles of O in 905 grams of Na2O by dividing 905 grams by the molar mass of Na2O, and then multiplying by the ratio of moles of O to moles of Na2O:

Number of moles of O = (905 grams Na2O / 46 grams/mol Na2O) * (1 mole O / 2 moles Na2O) = 9.85 moles O

Finally, we can calculate the number of grams of O by multiplying the number of moles of O by the molar mass of O:

Number of grams of O = 9.85 moles O * 16 grams/mol O = 157.6 grams O

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What is energy that can be released as light or thermal energy in a Reaction

Answers

Answer:

In an endothermic reaction, the products have more stored chemical energy than the reactants. In an exothermic reaction, the opposite is true. The products have less stored chemical energy than the reactants. The excess energy in the reactants is released to the surroundings when the reaction occurs.

Explanation:

Final answer:

Energy released as light or thermal energy in a reaction is typically from exothermic chemical reactions, where more energy is released than required to break bonds. This occurs during the transformation of chemical potential energy into other energy forms such as heat or light.

Explanation:

The energy that can be released as light or thermal energy in a reaction is typically associated with chemical reactions. When the energy required to break the bonds in reactants is less than the energy released when new bonds form in products, the reaction is known as exothermic. Chemical energy, which is stored in the bonds of molecules, is a form of potential energy. During exothermic reactions, this energy is released as either heat or light, which can be observed, for example, as a flame on a kitchen burner fueled by natural gas. If the reaction absorbs more energy than it releases, it is called an endothermic reaction.

If apples are $.67/lb, what is the cost of 2.5 kg of apples?

Answers

Answer:

The cost would be $1.68

Explanation:

I found the answer by multiplying

.67x or .67lb with 2.5, getting $1.68

Answer: $3.693

Explanation:

Since an apple costs $0.67 per lb

To get the price for 2.5kg, we need to first convert kg to lb

Since 1kg = 2.205lb

2.5kg = (2.205×2.5)lb

2.5kg = 5.513lb

Since $0.67 = 1lb

$x = 5.513lb

Cross multiplying we have;

x × 1 = 0.67×5.513

x = $3.693

Determine the mass of 4.1 x 1023 atoms Cl.
Answer in units of g​

Answers

Answer:24.14g Cl

Explanation:

Convert to moles

4.1 x 10^23 atoms Cl x (1 mol/6.022 x 10^23 stoms) = 0.68 moles

Convert from moles to grams using the molar mass by periodic table

0.68moles(35.45g/1 mol) = 24.14g Cl

To determine the mass of 4.1 x 10²³ atoms of Cl, we calculate the number of moles using Avogadro's number and then convert to grams using the molar mass of chlorine. The mass is 24.14 grams.

To determine the mass of 4.1 x 10²³ atoms of chlorine (Cl), we need to use Avogadro's number and the molar mass of chlorine.

First, we find out how many moles of Cl atoms are present by using Avogadro's number (6.022 x 10²³ atoms/mol):

4.1 x 10²³ atoms Cl × (1 mol Cl/6.022 x 10²³ atoms Cl) = 0.681 mol Cl

Next, we use the molar mass of chlorine, which is 35.45 grams per mole, to convert moles to grams:

0.681 mol Cl × (35.45 g/mol) = 24.14 grams of Cl

Therefore, the mass of 4.1 x 10²³ atoms of Cl is 24.14 grams.

PLZZ HELP! Why is hydrogen and oxygen not a physical property of water ?

Answers

Answer:

They aren't physical properties of water because it's the chemical formula of water, H2o, or hydrogen and oxygen.

Explanation:

Examples of the physical property of water are Boiling Point, Freezing Point, Surface Tension, Heat of Vaporization, and Vapor Pressure, Viscosity, Cohesion, it's Solid, Liquid and Gas state.

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Properties are qualities of something so a property of water would be that its a liquid and that has low high thermal conductivity.
Hydrogen and oxygen is just what makes up the water molecule but aren’t properties

how many moles of particles in ethanol

Answers

Answer:

In this case, ethanol's molecular mass is 46 g/mol. This means that in 1 mol of ethanol, there are 46 g, thus the term molecular mass and molar mass are often used interchangeably. The same is true of a mole. A mole of anything is 6.022 x 1023 of that item

Explanation:

Answer:

9 moles of particles are present in 1 mole of ethyl alcohol.

Explanation:

1. Ethanol is ethyl alcohol with the chemical formula [tex]C_2H_5OH[/tex]

2. Molecular formula is given by [tex]C_2 H_6 O[/tex]

3. [tex]1 C_2 H_6 O_1[/tex]  

4. 1 represents 1 mole of ethyl alcohol

5. Subscripts represents the number of moles of each element.

6. 2 moles of carbon atoms,  6 moles of Hydrogen atoms and 1 mole of oxygen atoms are present in 1 mole of ethyl alcohol.

7. So, totally 9 moles of particles are present in 1 mole of ethyl alcohol

8. 1 mole contains [tex]6.022\times10^{23}[/tex] particles or atoms or molecules or ions  

9. For example 1 mole of [tex]H_2 O[/tex] contains [tex]6.022 \times 10^{23} H_2O[/tex] molecules (contains 2 moles of H and 1 mole of O atoms )

10. 1 mole of Na contains [tex]6.022 \times 10^{23}[/tex] Na atoms  

11. 1 mole of [tex]CaCO_3[/tex] contains [tex]6.022\times 10^{23}CaCO_3[/tex]  molecules (1 mole of Ca, 1mole of C and 3 moles of O atoms )

12. 1 mole of [tex]Na^+[/tex] contains [tex]6.022 \times 10^{23} Na^+[/tex] ions

what are some physical and chemical changes that occur as a car ages?

Answers

Answer:physical: a part falling off or changing a tire. chemical:rust

Explanation:

The chemical changes that occur as a car ages are fading of paint due to sunlight. rusting on the chrome, corrosion of electrical wiring. Some physical changes that occur as a car ages are breaking of the handles and straps, wearing down of tyre, paint  scratches.

A chemical change is one which brings change in the composition of the substance. In other words, it is such a change which forms a completely new substance or product. It is an irreversible change.

On the other hand, a physical change is one which brings structural change or change in appearance of a substance without changing its original composition. It is a reversible change.

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If you flip a fair coin 7 times, what is the probability that you will get exactly 2 tails?

Answers

Final answer:

The probability of getting exactly 2 tails when flipping a fair coin 7 times is approximately 16.41%, calculated using the binomial probability formula.

Explanation:

The probability of getting exactly 2 tails when you flip a fair coin 7 times can be calculated using the binomial probability formula, which is given by:

P(X=k) = (n choose k) × (pk) × ((1-p)(n-k))

where:

n is the number of trials (in this case, 7 flips),

k is the number of successful events (in this case, 2 tails),

p is the probability of success on a single trial (for a fair coin, this is 0.5 for getting a tail).

Using the formula, we calculate:

P(X=2) = (7 choose 2) × (0.5²) × ((1-0.5)⁷⁻²)

P(X=2) = 21 × (0.25) × (0.03125)

P(X=2) = 0.1640625

Therefore, the probability of getting exactly 2 tails when flipping a fair coin 7 times is approximately 16.41%.

Choose all the answers that apply.

Sound _____.

can travel through a vacuum
travels in longitudinal waves
is caused by vibration
travels most slowly through a gas
speeds up when temperature is increased

Answers

Answer: False, True, True, True, True

Explanation:

Sound can travel through a vacuum.

False. Sound requires a medium (solid, liquid, or gas) to travel through. It cannot travel through a vacuum because there are no particles in a vacuum to transmit the sound waves.

Sound travels in longitudinal waves.

True. Sound waves are indeed longitudinal waves, which means the particles in the medium vibrate parallel to the direction of the wave.

Sound is caused by vibration.

True. Sound is produced by the vibration of particles in a medium, which creates compressions and rarefactions that propagate as sound waves.

Sound travels most slowly through a gas.

True. Sound generally travels more slowly through gases compared to liquids and solids because the particles in gases are more spread out, leading to a lower transmission speed.

Sound speeds up when the temperature is increased.

True. In general, the speed of sound increases with an increase in temperature. This is because an increase in temperature typically leads to an increase in the speed of the particles in the medium, allowing sound waves to propagate more quickly.

So, the correct statements are 2, 3, 4, and 5.


Which of the following Period 4 elements would be most li
form a cation?
A. K (IE, = 419 kJ/mol)
B. Ge (IE, = 762 kJ/mol)
C. Br (IE, = 1140 kJ/mol)
D. Kr (IE, = 1351 kJ/mol​

Answers

Answer:

K

Explanation:

The key aspect in this question is to look for Ionization Energy (EI), which describe the needed energy to take out an electron. Thefore, the potasiumm need lower energy . Another important thing is analyze how K will take nobel gas electron configuration when loss 1 electron, this It will be more stable

What are 2 recatents of photosynthesis

Answers

Answer:

The two reactants for photosynthesis are carbon dioxide (CO₂) and water (H₂O).

Explanation:

The equation for photosynthesis is as following:

6CO₂ + 6H₂O => C₆H₁₂O₆ + 6O₂

The reactants of a chemical reaction are the chemicals before the arrow, before the reaction takes place. In the equation above the reactants are carbon dioxide (CO₂) and water (H₂O).

Final answer:

Photosynthesis occurs in two stages: light-dependent reactions and the Calvin cycle. The light-dependent reactions convert sunlight into chemical energy and release oxygen. The Calvin cycle uses this energy to capture carbon and assemble sugar molecules.

Explanation:

Photosynthesis takes place in two stages: the light-dependent reactions and the Calvin cycle. In the light-dependent reactions, chlorophyll absorbs energy from sunlight and converts it into chemical energy with the aid of water. The light-dependent reactions release oxygen as a byproduct from the splitting of water. In the Calvin cycle, the chemical energy derived from the light-dependent reactions drives both the capture of carbon in carbon dioxide molecules and the subsequent assembly of sugar molecules.

what are some chemical properties of a rock?

Answers

Final answer:

Chemical properties of rocks include their ability to react with acids, undergo oxidation, and release substances under certain conditions; they define how rocks interact chemically with their environment.

Explanation:

Chemical Properties of Rocks

Chemical properties are characteristics of a substance that describe its potential to undergo certain chemical changes during reactions. In the context of rocks, these properties are crucial in understanding how they will interact with the environment. For instance, some common chemical properties of rocks include their reactivity with acids, ability to undergo oxidation, and potential to emit substances when exposed to various conditions.

Iron within rocks, for example, has the chemical property of reacting with oxygen and water to form rust, also known as iron oxide. This reaction is a form of corrosion and represents a significant chemical change. Another example is the reaction of calcite, a common mineral in limestone rocks, with acids; this results in the rock fizzing as carbon dioxide gas is released. Many rocks contain minerals that can react to cause a distinct chemical reaction, and identifying those reactions is essential for studying and classifying different rock types.

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