Find the similarities, differences, and relationships between coefficients and subscript. (At least 2 of each)

Answers

Answer 1

The subscripts are a part of the formulations and once the formulas for the reactants and products have been established, they cannot be changed.

What is the difference between coefficients and subscript?

The subscripts are a component of the formulas, and they cannot be modified after the formulas for the reactants and products have been established. The number of each material participating in the reaction is indicated by the coefficients, which can be modified to make the equation more or less balanced.

Although both coefficient and subscript are numerical terms, they provide different information on a particular chemical reaction. Coefficient indicates the number of moles of a material, whereas subscript gives the number of atoms in a molecule, and this is the main distinction between coefficient and subscript.

A smaller-than-usual number, figure, symbol, or indicator that is placed either slightly above (superscript) or below (subscript) the standard line of type is referred to as a superscript or subscript (subscript).

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Related Questions

The gases in a hair spray can are at a temperature of 27 degrees C and a pressure of 206. 843 kPa. If the gases in the can reach a pressure of 620. 528 kPa, the can will explode. To what temperature must the gases be raised in order for the can to explode?

a. 273 0C.

b. 450 0C.

c. 630 0C.

d. 360 0C

Answers

630°C of temperature must be attained by the gases.

Gay-law Lussac's which was found in 1808 and published in 1809, is the term used to describe Joseph-Louis Gay-law Lussac's of combining volumes of gases. It can also describe the relationship between a gas's volume and absolute temperature under constant pressure. Simple whole numbers can be used to indicate the volume ratio of the reactant gases to the gaseous products.

This is an illustration of Gay-Law Lussac's since the volume is constant but the pressure and temperature are changing:

[tex]P1/T1=P2/T2[/tex]

The formula above may be rearranged to yield

T2=T1*P2/P1

Your data include:

P1=206. 843 kPa

T1=(27+273.15)K=300.15K

P2= 620. 528 kPa

T2=?

T 2 = 300.15 K* 620. 528 kPa/ 206. 843 kPa= 900.45K = 627.3 °C

Near to 627.3 °C the temerature is 630 °C

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Magnesium

-what is appearance of metal
-what is the observation of reactions

Answers

Answer:

A silvery-white metal that ignites easily in air and burns with a bright light.

Oxygen: When exposed to oxygen, magnesium turns into magnesium oxide. Hydrogen: When exposed to hydrogen, magnesium turns into magnesium hydride. Nitrogen: When reacted with nitrogen, magnesium turns into magnesium nitride.

Explanation:

if he gas has an average kinetic energy of 8150 j/mol under certain conditions, what is the root mean square speed of o2 gas molecules under the same conditions?

Answers

If  He gas has an average kinetic energy of the 8150 J/mol under the certain conditions, the root mean square speed of O₂ gas molecules under the same conditions is  3.0 × 10²⁹ m/s.

The average kinetic energy  is expressed as :

K.E = 3 R T / 2

8150 = ( 3 × 8.314 × T ) / 2

16300 = 24.94 T

T = 653.5 K

The root mean square speed, Vrms = √(3kNaT ) /M

The root mean square speed, Vrms = √ ( 3 × 1.38 × 10⁻²³ × 6.023 × 10²³ ×

                                                                                   653.5 ) / 5.31 × 10⁻²⁶

The root mean square speed, Vrms = 3.0 × 10²⁹ m/s.

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Find the balanced equation for “Aqueous sodium hydroxide and carbon dioxide gas yields sodium carbonate solution and liquid”

Answers

Answer:

2NaOH + CO2 -----> Na2CO3 + H2O

Explanation:

Carbon dioxide is acid anhydride, so reacts like and acid with Sodium hydroxide is neutralisation reaction to form salt and water

Select all the correct images.
Select the atoms that belong to the same element.
16 protons 16 neutrons
14 protons 14neutrons
16 electrons
11 protons 10 neutrons
13 protons 14 neutrons 13 electrons
14electrons
11protons
12 neutrons
11 electrons
11electrons

Answers

Isotopes are atoms that belong to the same element: 11 protons, 10 neutrons, 11 electrons, 13 protons 14 neutrons, and 13 electrons

What are isotopes?

An isotope is one of two or more atom types of a chemical element that share the same atomic number, position on the periodic table, chemical behavior, and physical properties, but differ in atomic mass. One or more isotopes can be found in any chemical element. The number of protons in an atom's nucleus is the first criterion for determining its identity and labeling.

The observation that all atoms with the same atomic number have roughly the same chemical properties—if not exactly the same—gives this atomic number its significance. The symbol Z is typically used to represent this number. An ingot of pure uranium, for instance, only contains atomic number 92 atoms. Each atomic number has a place on the periodic table of elements, and each of these places is labeled with the element's common name, like calcium, radon, or uranium.

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after a long period of time what does the carbon in the sediment become

Answers

Answer:

When animals die, they decompose and when they decompose their remains become seditment thus trapping the stored carbon. This sediment sometimes forms fossil fuels like coal and oil which in turn release carbon back into the atmosphere when the fossil fuels are burned.

What is the type of pollutant in waterways which can be toxic at high levels and is
present in the river mentioned in question 1?
Olead
OE. coli
Oammonial
Onitrates

Answers

The type of pollutant in waterways which can be toxic at high levels is nitrates.

What is pollutant?

Pollutant is a substance that is introduced into the environment and has negative effects on living organisms and the environment. It can be either natural or man-made and can include air pollutants such as carbon dioxide, sulfur dioxide, nitrogen oxides, and particulate matter, as well as water pollutants such as nutrients, heavy metals, and toxic chemicals.

Nitrates are nitrogen-containing compounds and are often found in fertilizers, wastewater and agricultural runoff. Nitrates can lead to oxygen depletion in water and can be harmful to aquatic life and humans if consumed in high amounts. The River Avon in Warwickshire is known to have high levels of nitrates due to agricultural runoff.

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A representative element donates or accepts electron to gain stability. This is known as the ___ rule

Answers

A representative element donates or accepts electron to gain stability. This is known as the octet rule. The octet rule states that atoms tend to gain or lose electrons in order.

This process is called electron configurations and is the reason behind the formation of ions and chemical bonding.According to the octet rule, atoms usually gain or lose electrons in order to have eight electrons in their valence shell, which is their outermost energy level. For the majority of elements, an eight-electron complete valence shell is the most stable electron configuration. This is so because an atom's valence shell, which is its outermost shell, contains the electrons that participate in chemical reactions and bonding. To reach a complete valence shell, which is more stable than a partially filled shell, atoms will lose, acquire, or share electrons. It is for this reason that ions form and atoms interact chemically. Understanding and predicting the chemical behavior of elements is made easier by the octet rule.

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___Ag+ + ___S8 ----> ___Ag2S

Answers

Answer:

16Ag +S8 --> 8Ag2S

Explanation:

You know that you are starting out with 8 sulfer's on the reactant side, so there must be an equal amount on the product side. So, to get 8 sulfer's on the product side we multiply the entire (Ag2S) by 8 to get 8Ag2S. Now on the reactant and product side we have an equal amount of sulfer. However, the product side has 16 silvers. To balance this out, on the reactant side we multiply the number of Ag by 16 to get 16 Ag ont he reactant and product sides. Now the reactant and product sides have the same number of each element :)

why are carbon and silicon especially relevant to us

Answers

Carbon and silicon are especially relevant to us because they are key building blocks of many important materials and technologies in our daily lives.

Carbon is a versatile element that is found in many different forms, such as graphite, diamond, and carbon fiber, and is used in a wide range of applications. For example, it is used as a lubricant, a fuel, and a structural material in the production of steel. Carbon is also the basis of all life on earth and is an essential component of DNA, proteins, and cell membranes.

Silicon is a semiconductor material that is widely used in the electronics industry. It is the basis of most computer chips and is also used in solar cells, transistors, and other electronic devices. Silicon is also used in the production of glass, ceramics and other materials.

Furthermore, carbon and silicon are the basis of many organic compounds and materials, which are widely used in the chemical industry, from drugs to plastics. They are also widely used in the energy industry in batteries and fuel cells.

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What is the formula for
Fe+2 + (SO4)-2 ?

Answers

Answer:

FeSO4 is the formula for iron(II) sulfate.

select all that apply. which of the following processes are spontaneous? (a) earth moves around the sun. (b) a boulder rolls up a hill. (c) sodium metal and chlorine gas form solid sodium chloride.

Answers

A spontaneous process is a kind of process which occurs without any external input to the system. Earth moves around the sun and formation of solid sodium chloride from sodium metal and chlorine gas.

What do you understand by spontaneous and non-spontaneous processes?

A spontaneous process is a process which is in one direction under a certain set of conditions and a nonspontaneous process is in the reverse direction. For instance, At room temperature and atmospheric pressure ice will melt spontaneously, but water will not freeze spontaneously.

Is boiling a spontaneous process?

Boiling always occur spontaneously at all the given temperatures.

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what is the molarity of a solution prepared by mixing 25.0 ml of 0.375 m nacl with 42.0 ml of a 0.632 m nacl solution?

Answers

The molarity of the solution prepared by mixing 25.0 mL of 0.375 M NaCl with 42.0 mL of a 0.632 M NaCl is 0.536 M

How do I determine the molarity of the solution?

We'll begin by obtaining the mole of NaCl in both solutions. Details below:

For 0.375 M NaCl:

Volume = 25 mL = 25 / 1000 = 0.025 LMolarity = 0.375 MNumber of mole of NaCl =?

Molarity = number of mole / Volume

Cross multiply

Number of mole = molarity × volume

Number of mole of NaCl = 0.375 × 0.025

Number of mole of NaCl = 0.009375 mole

For 0.632 M NaCl:

Volume = 42 mL = 42 / 1000 = 0.042 LMolarity = 0.632 MNumber of mole of NaCl =?

Molarity = number of mole / Volume

Cross multiply

Number of mole = molarity × volume

Number of mole of NaCl = 0.632 × 0.042

Number of mole of NaCl = 0.026544 mole

Finally, we shall determine the molarity of the solution. Details below:

Total mole of NaCl = 0.009375 + 0.026544 = 0.035919 moleTotal volume = 0.025 + 0.042 = 0.067 LMolarity = ?

Molarity = mole / volume

Molarity = 0.035919 / 0.067

Molarity = 0.536 M

Thus, the molarity of the solution is 0.536 M

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A gas consisting of 25. 6 moles of carbon fills a volume of 128 L and has a pressure of 135 kPa. Find the temperature of the gas in °C

Answers

A gas consisting of 25. 6 moles of carbon fills a volume of 128 L and has a pressure of 135 kPa. The temperature of the gas is -270.58°C.

The temperature of a gas can be found using the Ideal Gas Law, which states that PV = nRT. The Ideal Gas Law relates the pressure, volume, and temperature of a gas to the number of moles of the gas present.

In this case, we are given the number of moles of the gas (n = 25.6 moles), the volume of the gas (V = 128 L), and the pressure of the gas (P = 135 kPa). We can use these values to find the temperature of the gas in degrees Celsius.

First, we need to convert the pressure from kPa to Pa. To do this, we multiply the pressure in kPa by 1000:

P = 135 kPa x 1000 Pa/kPa = 135 000 Pa

We can now substitute this value into the Ideal Gas Law:

PV = nRT

T = (nRT)/P

T = (25.6 mol * 8.314 J/mol.K) / (135 000 Pa)

T = 2.57 K

To convert from Kelvin to Celsius, we subtract 273.15 from the temperature in Kelvin:

T(°C) = T(K) - 273.15

T(°C) = 2.57 K - 273.15 = -270.58°C

So the temperature of the gas is -270.58°C

Please note that this is an ideal gas equation and it will not work for real gases. Also, the temperature is extremely low, it's unlikely that the gas can exist at that temperature.

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you decide to test your pillbugs' preference for an acidic environment versus a nonacidic environment. on one side of the chamber you place filter paper moistened with water. what is appropriate to place on the other side to test this variable?

Answers

you decide to test your pillbugs' preference for an acidic environment versus a nonacidic environment. on one side of the chamber you place filter paper moistened with water. Dry filter paper is appropriate to place on the other side to test this variable.

ABOUT PILLBUGS

Armadillidiidae (Pillbugs) is a family of woodlice, a terrestrial crustacean group in the order Isopoda. Unlike members of some other woodlice families, members of this family can roll into a ball, an ability they share with the outwardly similar but unrelated pill millipedes and other animals. This ability gives woodlice in this family their common names of pill bugs or roly polies.Other common names include slaters, potato bugs, and doodle bugs. Most species are native to the Mediterranean Basin, while a few species have wider European distributions. The best-known species, Armadillidium vulgare, was introduced to New England in the early 19th century and has become widespread throughout North America.

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how long does it take for a serious burn to occur when the temperature of a liquid is 140 f degrees?

Answers

Answer:

When a liquid is 140° F it really only takes five or less seconds to produce a serious burn.

you react 100 g of methane with an excess of o2 in a combustion reaction. how many water is made from this reaction?

Answers

Answer:

7.52x10^24 molecules of H2O.

Explanation:

1)  We need to start with a balanced equation for this reaction, combustion of methane:

CH4 + 2O2 →CO2 + 2H2O

This tells us that 1 mole of methane will produce 2 moles of water.  (2 moles H2O)/(1 mole CH4)

2)  Find the moles of methane in 100g of the molecule.  The molar mass of methane is 16.0 g/mole.  

Moles CH4 = (100g/16.0 g/mole) = 6.25 moles CH4

3)  Multiply 6.25 moles CH4 by the molar ratio from (1):

   (6.25 moles CH4)( (2 moles H2O)/(1 mole CH4) = 12.50 moles H2O [the moles CH4 cancel]

4)  Multiply the moles H2O by Avogadro's number:  6.02x10^23 molecules/mole

   (12.50 moles H2O)*(6.02x10^23 molecules/mole) = 7.52x10^24 molecules of H2O.

(ii) Ga bubble of __________ will be evolved at the electrode in
the given experiment.
a) Oxygen and Hydrogen
b) Carbon dioxide and Hydrogen
c) Oxygen and Carbon dioxide
d) None of thee

Answers

a) Oxygen and Hydrogen That is accurate, indeed. An oxygen and hydrogen gas bubble will develop at the electrode in the experiment. This is due to the fact that during the electrolysis process, a material that

The chemical element with the atomic number 8 and symbol O is called oxygen. It belongs to the periodic table's chalcogen group, is a very reactive nonmetal, and an oxidising agent that easily produces oxides with most elements as well as other compounds. After hydrogen and helium, oxygen is the third most plentiful element in the universe and the most prevalent element on Earth. Two atoms of the element combine to generate dioxygen, a colourless and odourless diatomic gas with the formula O 2, at ordinary temperature and pressure. The Earth's atmosphere is now made up of 20.95% diatomic oxygen gas, however this has fluctuated significantly over a very long time. In the form of oxides, oxygen makes up over half of the Earth's crust. [3]

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Table 2. 3. The density of liquids Liquid Volume, mL Mass, g Density, g/mL Water 50 77 - 27 = 50 Saturated Salt Solution 50 83 - 27 = 56 6. Calculate the densities of the liquids in Table 2. 3. The accepted density of water is 1 g; cm. How do your results compare? Remember that 1 cm = 1 mL. ​

Answers

According to the table the density of water is 1g/cm^3 and the density of saturated solution is 1.12g/cm^3.

The ratio of an object or substance's volume (the amount of space it occupies) to the amount of matter it contains is known as its density (its mass). Density Formula: ρ = m/V, where ρ is the density, m is the object's mass, and V is its volume.

Given the volume of water = 50ml

The mass of water = 50g

Then density of water = mass of water/volume of water = 50/50 = 1g/ml = 1g/cm^3

The mass of Saturated Salt Solution = 56g

The volume of Saturated Salt Solution = 50ml

The density of Saturated Salt Solution = 56/50 = 1.12g/ml = 1.12g/cm^3

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complete question: Calculate the densities of the liquids in Table 2.3. The accepted density of water is 1 g/cm3. How do your results compare? Remember that 1 cm3 = 1 mL

a. graphite, a form of elemental carbon,can be turned into diamond ,and other form of carbon, at very high temperatures and pressures. type of property

Answers

This is an example of a phase transition, which is a change in the physical state of a substance, such as a solid, liquid, or gas, due to changes in temperature and/or pressure.

In this case, the phase transition is from graphite, a form of carbon in a solid state, to diamond, another form of carbon in a solid state, under high temperatures and pressures.

Graphite and diamond are both forms of carbon, but they have different crystal structures, which gives them distinct properties. Graphite is a soft, slippery solid that is used as a lubricant and in pencils because of its ability to leave a dark mark on the paper. Diamond, on the other hand, is the hardest natural substance known and is used in cutting tools and jewelry.

The change from graphite to diamond is a phase transition, which occurs when the temperature and pressure of a substance are increased beyond certain limits. The exact conditions required to transform graphite into diamond vary depending on the specific method used but typically involve temperatures of around 900-1300 degrees Celsius and pressures of around 50,000 atmospheres. This process is called as high-pressure high temperature (HPHT) method. The process of graphite to diamond is known as metamorphism.

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What do you need to know to convert among the count,mass,and volume of something?

Answers

To convert between a substance's count, mass, and volume, you must understand the following information: The substance's molar mass is expressed as the weight of one mole.

which is often expressed in grams per mole (g/mol). You may translate between the quantity of moles and the substance's mass by knowing the molar mass of a substance. The substance's density: The unit of measurement for density is grams per cubic centimeter (g/cm3), which represents the mass of a material per unit of volume. You can convert between a material's mass and volume by knowing the density of the substance. The compound's molar volume is: The volume of a molar is one.Typically, a chemical is measured in liters per mole (L/mol) units. You may convert between the quantity of moles and the substance's volume by knowing the molar volume of a substance.The number of atoms or molecules in one mole of a material is known as the Avogadro number.

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Analyze the given diagram of the carbon cycle.

An image of carbon cycle is shown. The sun, a cloud, two trees, one towards left and the other towards right, an animal, lake, and a factory are included. Arrow A points from the sun to the left tree. Arrow B points from the air above the clouds to the left tree. Arrow C points from the factory towards the air above the clouds. Arrow D points from the air to the lake labeled Carbonates in Water. Arrow E points from the label Dead Organism under the animal to label Fossils and Fossil Fuels. Arrow F points from the right tree to the air.

Part 1: Which process does arrow A represent?
Part 2: Which type of energy transformation does arrow A represent?
Part 3: Justify why this process is a recycling of carbon in the carbon cycle.

Use complete sentences to explain your answer.

Answers

Answer;

1.Arrow A represents the process of photosynthesis.

2.This shows the process of light energy converting into chemical energy

3.Photosynthesis absorbs carbon dioxide and converts it into energy as biomass, so that its able to be used for something else later on.

Explanation:

Part I

At location G, the process of combustion is taking place where hydrocarbon or organic carbon from the fossil fuel is burnt in the presence of oxygen to produce carbon dioxide and water as the products.

CxHy = CO₂ + H₂O

Part II

At point G there is no transformation of energy since during the process of combustion energy will still be stored in form of chemical energy in the bonds of carbon Iv oxide and the water produced during the reaction.

Part III

The process shows recycling of carbon in the carbon cycle. This is because carbon from living organisms is cycled to non living organisms. When plants and animals die and are buried deep in the ground, they are then slowly converted to fossil fuels which contain organic hydrocarbon compounds including petrol, kerosene and other compounds. Then the fossils are used in the industries and undergoes combustion releasing carbon iv oxide which is then released to the atmosphere and used by the plants and animals. The process starts once again.

it the same:]

Photosynthesis is a process by which plants absorb carbon dioxide from the atmosphere and use energy from the Sun to convert it into glucose.

Which process does arrow A represent?Arrow A represents photosynthesis.Arrow A represents a transformation from light energy from the sun to chemical energy stored in the tree.The process of photosynthesis converts light energy from the sun into chemical energy for the tree, which captures carbon from the air. This carbon is then recycled through the carbon cycle as it is respired out of the tree, released into the air, absorbed by the water, and eventually released back into the atmosphere.Arrow A represents photosynthesis.Arrow A represents a transformation of light energy from the Sun into chemical energy stored in the form of carbohydrates in the tree.This process is a critical part of the carbon cycle because it removes carbon dioxide from the atmosphere and stores it in the form of carbohydrates in the plant.The plant can then use the glucose to produce energy and grow, or it can be consumed by animals and eventually broken down into carbon dioxide and returned to the atmosphere. This cycle of removing carbon dioxide from the atmosphere and then returning it is essential to maintaining the balance of carbon in the environment.

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what are the phases of the cell cycle
directions: complete this table by writing a description in each space provided
phase of the cell cycle
phase | stage | description |
interphase | G1 | 1.
| S | 2.
| G2 |3.

mitotic phase | mitosis |4.
| cytokinesis| 5.

Answers

The G1, S, and G2 stages of interphase, the mitotic phases of mitosis and cytokinesis, and the G0 phase make up the cell cycle.

What are the phases of the cell cycle and describe each phase?

The cell cycle is a four-step process in which the cell grows in size (gap 1, or G1, stage), duplicates its DNA (synthesis, or S, stage), gets ready to divide (gap 2, or G2, stage), and divides (gap 3, or S, stage) (mitosis, or M, stage). The period between cell divisions is represented by the stages G1, S, and G2, which together make up interphase.

The process through which cells multiply and divide into two new cells is known as the cell cycle. G1, S, G2, and M are the several cell cycle stages. The cell is getting ready to divide in the G1 stage. The cell next enters the S phase, where it duplicates all the DNA, to accomplish this.

There are five of these phases: prophase, prometaphase, metaphase, anaphase, and telophase. As the final physical cell division after telophase, cytokinesis is frequently regarded as the sixth stage of mitosis.

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3. If you had 152.5 g of CO and 24.5 g of H₂ gas, how many grams of CH₂OH could be produced?
CO+ _
CH₂OH
H₂ →→
H2

Answers

Find the number of moles in each reactant in the formula CO + 2 H2 CH3OH.

How to find the calculation?The reactant that yields the least amount of methanol is known as the limiting reagent. The limiting reagent is CO because it yields less CH3OH than other chemicals.1 mol CO divided by 28.01g CO to equal 152500 g CO results in 5444 mol CO.24500 g H2 x 1 mol H2 / 2.02 g H2 = 12129 mol H2In order to produce one mol of CH3OH, one mol of CO and two mol of H2 are required, according to the 1:2 mol ratio between CO and H2.However, there are only 5444 mol of CO, whereas 6064 mol of CH3OH can be produced by H2.1 mole of CH3OH divided by 5444 moles of CH3OH results in a number.

= 174371 g = 174.4 kg.

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Question: Rank the following radicals in order of increasing stability.
Answer
The rank of the given radicals in the increasing order of stability is as follows:

Answers

Consider the following techniques to improve stability: mproving the foundation: Make certain that the foundation is strong, stable, and capable of sustaining the structure.

Maintaining balance: Keep the structure's weight equally distributed and balanced. Stress reduction: Avoid overstressing the structure and minimize current stress by suitable support and reinforcement. Material updates: Use materials that are recognized to be long-lasting and durable. Regular maintenance entails inspecting and maintaining the structure on a regular basis in order to discover and treat any concerns before they become big difficulties. Reduce dynamic loads: Keep vibrations and other dynamic loads to a minimum. Using suitable design: Ensure that the design takes into account the structure's stability needs. This is not a complete list, and the best method for boosting.

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45 points. I need help with chemistry. Will make the best answer the brainliest.

Answers

The entropy change of the given reactions can be determined from the entropies of each individual gases. The entropy change of the first reaction is - 389.74 J.

What is entropy?

Entropy of a system is the measure of the total randomness of system. As the number of moles increases, the entropy increases.

The entropy change of a reaction is given as follows:

ΔSrxn = ∑s (products) -  ∑s (reactants)

For the given reactions, the entropy of each reactants and products are given and use their number of moles to calculate the reaction entropies as follows:

For reaction 1:

(2 ×192.5 J) - [(3×130.58) + (2× 191.5 J)]  = - 389.74 J/K

Reaction 2:

(2 ×188.83 J + 213.6 J) - 186.3 J + (2× 205 J)]  = - 5.04 J/K

Reaction 3:

(2 ×220 J) - 205 + (2× 191.5 J)]  = - 148 J/K

Therefore, the entropy change of the given reactions can be determined in this way. For all these reactions, the entropy is decreasing.

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what trend do you notice for reactivity of a metal? explain the reason for this trend in 2-3 sentences.

Answers

Metal reactivity increases down groups and declines across periods from left to right.

because metals' reactivity increases as they move along the group. Since they are farther from the nucleus and have greater shielding, which results in a lower nuclear attraction, the outer electrons are simpler to expel.

Ionization Energy, which measures how easily an element may expel its electrons, is one influencing factor. The element's electronegativity is another consideration since it affects how eagerly an element seeks out electrons from other elements.

As you move throughout a period from left to right, responsiveness declines. It is easier for electrons to be given or taken away the further to the left and down the periodic chart you travel, leading to higher reactivity.

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What is made of a single, long molecule of DNA?
Responses

protein


chromosome

allele

nucleus

Answers

Answer:

chromosome

Explanation:

Answer: Chromosome

Explanation: A chromosome is made up of a single, massively long DNA molecule containing a linear array of many genes.

Suppose you are performing a hydroboration oxidation of 1-hexene to form 1-hexanol. Your reaction includes 0. 93 mL of 1-hexene, which has a density of 0. 673 g/mL, 1. 79 mL of 1. 00 M borane in THF, and 1. 23 mL of 30. 0% m/v hydrogen peroxide. What is the theoretical yield of 1-hexanol (in g) for the reaction

Answers

From the stoichiometry of the reaction 0.18 g of 1-hexanol is formed.by hydroboration oxidation .

By hydroboration, which involves diborane in tetrahydrofuran followed by treatments with hydrogen peroxide and sodium hydroxide, 1-hexene may be changed into 1-hexanol: Hexan-1-ol An alkene can become an alcohol by a two-step hydration reaction called the hydroboration-oxidation reaction.

The theoretical yield of a compound is its yield based on the stoichiometry of the reaction.

We must now obtain the number of moles of each reactant:

For hexane;

Mass of hexane = Density × volume = 93 mL × 0.673 g/mL = 62.589 g

Number of moles = 0.55 g/84 g/mol = 0.0065 moles

For borane;

Number of moles = concentration × volume = 1.00 M ×  1. 79 mL/1000 L = 0.00179 moles

Since the reaction is 1:1, borane is the limiting reactant, hence;

Number of moles of 1-hexanol = 0.00179 moles × 102 g/mol = 0.18 g

In the procedure, the double bond is replaced by the simultaneous addition of a hydrogen and a hydroxyl group.

learn more about hydroboration Refer:brainly.com/question/2622427

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3. 3) What mass of ethanol could burn in 100 g of oxygen? C₂H5OH +30₂→2CO₂ + 3H₂O
hot mass of hydrogen is formed when 2.00 g of magnesium Mg + H₂SO4 → MgSO4+H₂ reacts with sulfuric acid?

Answers

Answer: 1st. 71.875 g of ethanol could burn in 100 g of oxygen.

2nd. 71.875 g of ethanol could burn in 100 g of oxygen.

Explanation: The balanced equation for the combustion of ethanol (C2H5OH) with oxygen (O2) to produce carbon dioxide (CO2) and water (H2O) is:

C2H5OH + 3O2 → 2CO2 + 3H2O

From the balanced equation, we can see that for every 1 mole of ethanol that burns, 3 moles of oxygen are required. The molar mass of ethanol is 46 g/mol and the molar mass of oxygen is 32 g/mol.

To find the mass of ethanol that could burn in 100 g of oxygen, we can use the following calculation:

mass of ethanol = (mass of oxygen / molar mass of oxygen) x (molar mass of ethanol / molar mass of oxygen)

mass of ethanol = (100 g / 32 g/mol) x (46 g/mol / 32 g/mol) = 71.875 g

Therefore, 71.875 g of ethanol could burn in 100 g of oxygen.

For the second question, the balanced equation for the reaction of magnesium (Mg) with sulfuric acid (H2SO4) to produce magnesium sulfate (MgSO4) and hydrogen (H2) is:

Mg + H2SO4 → MgSO4 + H2

From the balanced equation, we can see that for every 1 mole of magnesium that reacts, 1 mole of hydrogen is produced. The molar mass of magnesium is 24 g/mol and the molar mass of hydrogen is 2 g/mol.

To find the mass of hydrogen that is formed when 2.00 g of magnesium reacts with sulfuric acid, we can use the following calculation:

mass of hydrogen = (mass of magnesium / molar mass of magnesium) x (molar mass of hydrogen / molar mass of magnesium)

mass of hydrogen = (2.00 g / 24 g/mol) x (2 g/mol / 24 g/mol) = 0.08333 g

Therefore, 0.08333 g of hydrogen is formed when 2.00 g of magnesium reacts with sulfuric acid.

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