An experiment was performed in which an empty 100-mL graduated cylinder was weighed. It was weighed once again after it had been filled to the 10.0-mL mark with dry sand. A 10-mL pipet was used to transfer 10.00 mL of methanol to the cylinder. The sand–methanol mixture was stirred until bubbles no longer emerged from the mixture and the sand looked uniformly wet.
The cylinder was then weighed again. Use the data obtained from this experiment (and displayed at the end of this problem) to find the density of the dry sand, the density of methanol, and the density of sand particles. Does the bubbling that occurs when the methanol is added to the dry sand indicate that the sand and methanol are reacting?
Mass of cylinder plus wet sand 45.2613 g Mass of cylinder plus dry sand 37.3488 g Mass of empty cylinder 22.8317 g Volume of dry sand 10.0 mL Volume of sand methanol 17.6 mL Volume of methanol 10.00 mL

Answers

Answer 1

The bubbling is likely due to the methanol displacing the air between the grains of sand, which causes the bubbles to form.

Does the bubbling that occurs when the methanol is added to the dry sand indicate that the sand and methanol are reacting?Density of dry sand = Mass of dry sand/ Volume of dry sand = 37.3488 g/ 10.0 mL = 3.7349 g/mL.Density of methanol = Mass of methanol/ Volume of methanol = (45.2613 g - 37.3488 g)/ 10.00 mL = 0.79125 g/mL.Density of sand particles = Mass of sand particles/ Volume of sand particles = (37.3488 g - 22.8317 g)/ 10.0 mL = 1.4517 g/mL.No, the bubbling that occurs when the methanol is added to the dry sand does not indicate that the sand and methanol are reacting.The data obtained from this experiment can be used to calculate the density of the dry sand, the density of methanol, and the density of sand particles. The density of the dry sand can be calculated by subtracting the mass of the cylinder plus the wet sand from the mass of the cylinder plus the dry sand, and then dividing that number by the volume of dry sand.The density of methanol can be calculated by subtracting the mass of the cylinder plus the wet sand from the mass of the empty cylinder, and then dividing that number by the volume of methanol. The density of sand particles can be calculated by subtracting the mass of the cylinder plus the wet sand from the mass of the cylinder plus the dry sand, and then dividing that number by the volume of sand methanol.The bubbling that occurs when the methanol is added to the dry sand does not indicate that the sand and methanol are reacting. The bubbling is likely due to the methanol displacing the air bubbles in between the particles of sand.

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Related Questions

for a given reaction, kc is the equilibrium constant based on the molar of reactants and products while kp is the equilibrium constant based on the partial of reactants and products.T/F

Answers

The statement is true that for a given reaction, kc is the equilibrium constant based on the molar of reactants and products while kp is the equilibrium constant based on the partial of reactants and products.

Kp And Kc are the equilibrium constant of an ideal gaseous mixture.Kp is equilibrium constant used when equilibrium concentrations are expressed in atmospheric pressure and Kc is equilibrium constant used when equilibrium concentrations are expressed in molarity. However, the difference between the two constants is that Kc is defined by molar concentrations, whereas Kp is defined by the partial pressures of the gasses inside a closed system.Relation between Kp and Kc depends on the change in the number of moles of gaseous reactants and products (△n).

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why do object fall toward. the. center. of the. earth

Answers

Answer:

because of the downward force called gravity

A student in a lab measures a current flowing three a long loop of wire if the is no battery connected to the wire witch of the follow explained the source of the current

Answers

When a current flows through a wire over an extended period of time, heating effect takes place, meaning the temperature of the wire rises, which causes the wire's resistance to rise.

What happens if a circuit's current is allowed to run continuously for a prolonged period of time? When a current flows through a wire over an extended period of time, heating effect takes place, meaning the temperature of the wire rises, which causes the wire's resistance to rise.As a result, when the current through the electric bulb is reduced, less heat and light energy are produced.So, the brightness goes down.The light bulb will light up when a capacitor is added to a circuit that also includes a battery and a light bulb because the capacitor will first charge up and the circuit will have a nonzero current flowing through it as this charging process takes place.Due to the inclusion of a second resistor to the circuit, closing the switch reduces current.

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which of the following statements are true about cations? select all that are true. they are positively charged. they are negatively charged. they are formed by removing protons from a neutral atom. they are formed by adding protons to a neutral atom. they are formed by removing electrons from a neutral atom. they are formed by adding electrons to a neutral atom.

Answers

They are positively charged and they are formed by removing electrons from a neutral atom.

A cation may be defined as an atom or molecule that is positively charged.

By shedding its single valence electron, a neutral sodium atom is likely to acquire an octet in its outermost shell.

                                       Na→Na++e−

To distinguish it from the element, the cation created in this manner, Na+, is known as the sodium ion. The second electron shell, which contains eight electrons, is the sodium ion's outermost shell. This satisfies the octet rule.

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A metal oxide with the formula MO contains 19.66% oxygen. Type the symbol for the element represented by M.

Answers

The oxygen content of something like a metal oxide matching the composition MO is 19.66%. The element M is represented by the Zn symbol.

What are metals and an example of one?

The elements with boiling and melting temperatures and glossy crystalline solids are known as metals. Metals are efficient heat and electrical conductors. Metals like iron, aluminium, nickel, silver, and tin, for instance, are utilized frequently in our daily lives.

Who made the metal?

Native Metals were originally discovered and used by ancient man around 5000 BC. In the following two thousand years, up until the beginning of the Bronze Age, humankind perfected the techniques for discovering, working with, and using these local metals. Gold nuggets were frequently the simplest to locate and utilize.

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el 188497 percent of the world's water supply is difficult, if not impossible, to obtain or to use because it is in the oceans or in the form of glaciers and ice caps. Scientists are exploring methods of conserving and protecting the rest of Earth's water supply for the growing population. According to the information provided, which of the following activities most directly affects the water supply?

Answers

Producing energy and manfacturing of the following activities most Mass directly affect the water supply

what is The definition of Mass

An object's mass is determined by how much matter it has. Anything that has more substance will weigh heavier overall. For instance, because an elephant contains more stuff than a mouse does, it has a heavier mass. How much energy an object contains is not determined by its size.

What does "has mass" mean?

The resistance of the body to acceleration (change in velocity) when ever a net force is employed can be measured experimentally as mass, which is equivalent to inertia. The gravitational pull of an object to other bodies is also dependent on its mass.

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8.02 x 10^20 atoms of copper to grams

Answers

Answer:

Explanation:

1

 atom of

Cu

has a mass of

1.055

×

10

22

g

.

Explanation:

1 atom Cu

1 mol Cu

6.022

×

10

23

atoms Cu

63.546 g Cu

1 mol Cu

=

1.055

×

10

22

g Cu

1 atom of copper must be converted in moles to express it as a quantity that can be converted into grams (our second step).

Avogadro's Number

(

1 mole

=

6.022

×

10

23

particles

)

and the relative atomic mass of copper

(

1 mole of copper = 63.546 g

)

are the equalities required to make

Use the diagram below to answer the question: What element does this atom likely represent?

Answers

Lithium is the element because only lithium atom with 3 protons in this diagram.

What do you mean by an element ?

An element is a pure substance that cannot be broken down into simpler substances through physical or chemical means.

Lithium is the symbol for the element. Because lithium has three protons, it has the atomic number 3. Because lithium atoms contain either 3 or 4 neutrons, it has an atomic mass of 6.94. On the periodic table, lithium is in group 1 and has one valence electron.

Thus, Lithium is the element because only lithium atom with 3 protons in this diagram.

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The table shows examples of two different types of rocks. Which of these bedt compares the way that these rocks are formed?
1. Granite is formed from cooled molten rock, while gneiss is formed solid rock.
2. Granite is formed from layers of compacted material, while gneiss is formed from cooled molten rock.

Answers

Granite is formed from cooled molten rock, while gneiss is formed solid rock bedt compares the way that these rocks are formed.

What is molten rocks?

Molten rocks, also known as magma, is hot, liquid rock that is found beneath the Earth's surface. It is formed when heat and pressure cause rocks to melt, releasing gas and other materials. Molten rocks can contain crystals, gas bubbles, and other materials.    When molten rock reaches the Earth's surface, it is called lava. Molten rocks can be made of many different minerals, including basalt, andesite, and rhyolite.

Therefore, Granite is formed from cooled molten rock, while gneiss is formed solid rock bedt compares the way that these rocks are formed.

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select the mass law(s) demonstrated by the following experimental results. experiment 1: a student heats of copper and of bromine to produce of a white compound; of bromine remains. experiment 2: a second student heats of copper and of bromine to form of a white compound; of copper remains. select all that apply: Law of multiple proportions Law of definite composition Law of mass conservation

Answers

The following experimental findings illustrate the mass laws:

1. The law of definite composition states that a compound has a definite composition if the same amounts of copper and bromine are used in both tests and the same amount of the white compound is generated.

2. Law of mass conservation: In both experiments, the amount of copper and bromine utilised is equal to the amount of white compound generated plus the amount of unreacted copper or bromine. This is known as the law of mass conservation. This demonstrates the law of mass conservation since it demonstrates that the mass of the reactants and products are equal.

3. Law of multiple proportions is not demonstrated in these experiments as only one compound is formed and the same proportion of elements is used in both experiments.

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when a system reaches equilibrium, the transition of individual molecules from reactants to products or products to reactants stops, and all molecules remain in the respective states they were in when equilibrium was reached. True
False

Answers

The given statement, "When a system reaches equilibrium, the transition of individual molecules from reactants to products or products to reactants stops, and all molecules remain in the respective states they were in when equilibrium was reached" is true (T) because at chemical equilibrium, all molecules to remain in their respective states.

 

In a chemical reaction at equilibrium, the rate of the forward reaction is equal to the rate of the reverse reaction. As a result, the concentration of the reactants and products remains constant over time, meaning that the transition of individual molecules from reactants to products or vice versa stops. The state of all the molecules remains unchanged from when the system reached equilibrium, making it a state of balance between the forward and reverse reactions. The position of equilibrium can shift if the conditions of the reaction change (such as temperature, pressure or concentration), but the system will always strive to reach a new balance once again.

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. Scientists have developed a theory of how the universe formed. A. What is the name of this theory? (2 points) B. What happened according to this theory? (2 points) C. What is one form of evidence used to support this theory

Answers

Scientists have developed a theory of how the universe formed called the big bang (question a), which suggests the universe is expanding (question 2) and it is based on the relative temperature/light of far way celestial bodies (question 3).

What is the big bang theory?

The big bang theory is a theory used to explain the origin of the universe, which is based on data from nature and astronomical observations.

Therefore, with this data, we can see that the big bang theory is based on experimental and observational data and suggest the universe is continuously expanding.

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Which statements are true regarding acids and bases?
- Aqueous ammonia does not produce toxic vapors but ammonium hydroxide does.
- All concentrated acids require a special hood to deal with the vapors.
- Hydrogen fluoride is the safest of all the hydrogen halides.
- Nitric acid causes yellowing of the skin by denaturing proteins.
- When preparing aqueous solutions of acid, it is important to add the acid to the water to dissipate heat.
- strong acids and bases, and some weak, cause irreversible damage to living tissue
-Preparing solutions of bases can cause the water to boil.

Answers

The statements that are true regarding acids and bases are: Aqueous ammonia does not produce toxic vapors but ammonium hydroxide does. Hydrogen fluoride is the safest of all the hydrogen.

halides. Nitric acid causes yellowing of the skin by denaturing proteins. When preparing aqueous solutions of acid, it is important to add the acid to the water to dissipate heat. strong acids and bases, and some weak, cause irreversible damage to living tissue It is not always true that all concentrated acids require a special hood to deal with the vapors, it depends on the acid in question and the concentration. The statements that are true regarding acids and bases are: Aqueous ammonia does not produce toxic vapors but ammonium hydroxide does. Hydrogen fluoride is the safest of all the hydrogen. Preparing solutions of bases can cause the water to boil but also depends on the base and the concentration.

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At a resting pulse rate of 77 beats per minute, the human heart typically pumps about 67 mL of blood per beat. Blood has a
density of 1060 kg/m^3?. Circulating all of the blood in the body through the heart takes about I min for a person at rest.
1. Approximately how much blood is in the body? Volume of blood in body: m^3

2. On average, what mass of blood does the heart pump with each heart beat?
Mass per heart beat: kg

Answers

1. 5005 ml blood is in the body. 2. On average, 68.9gram of blood does the heart pump with each heart beat.

What is density ?

The term density is defined as the ratio of mass and volume. It is represented by the formula density = mass / volume.

Given :

1. Density of blood = 1060 kg/m^3

At a resting pulse rate of 77 beats per minute, the human heart typically pumps about 65 mL of blood per beat. Circulating all the blood in the body through the heart takes about 1 min for a person at rest

Since we are given that heart beats per minute = 77

And Heart pumps about 65 mL of blood per beat

Therefore, blood in the body is 77 × 65 = 5005 ml

2. mass = volume × density

Then,  mass of blood does the heart pump with each heart beat

= volume × density

mass = 65ml × 1060 kg/m^3

mass = 68.9gram

Thus, 1. 5005 ml blood is in the body. 2. On average, 68.9gram of blood does the heart pump with each heart beat.

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The color change of the copper (II) carbonate hydroxide hydrate as it was heated can help identify the product. Use the following list of copper compounds to identify the product. CuCO_3-light green powder Cu(OH)_2-blue green powder Cu_2O-reddish brown crystals CuO-black powder

Answers

The color change of the copper (II) carbonate hydroxide hydrate will be CuCO_3-light green powder.

Copper(II) carbonate or cupric carbonate is a chemical compound having chemical formula CuCO₃. At ambient temperatures, it is an ionic solid (a salt) which is consisting of copper(II) cations Cu²⁺ as well as carbonate anions CO₂⁻³. This compound is rarely encountered because it is very difficult to prepare[2] and readily reacts with water moisture from the air.

Copper carbonate will be green colored, when heated it gives out a black solid copper oxide. C u C O ₃ → C u O + C O ₂ [ g ] Zinc carbonate will be white colored, when heated it will gives a yellow solid - zinc oxide.

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reaction of non metal with oxygen with equation

Answers

Non metals react with oxygen to form non-metallic oxides. For example, SO2 , NO2 , etc. These are usually acidic in nature. This is the reason for acid rain.

Examples:

C ( s ) + O 2 ( g ) → CO 2 ( g )

H 2 ( g ) + O 2 ( g ) → 2 H 2 O ( l )

S + O2→ SO2

Answer:

A non-metal oxide is produced when a non-metal burns in oxygen.

Explanation:

The word equation for the overall reaction is as follows:

Oxygen with non-metal result in non-metal oxide.

Non-metal + oxygen → Non-metal oxide

under which of the following conditions of temperature and pressure will h2 gas be expected to behave most like an ideal gas? responses 50 k and 0.10 atm 50 k and 0.10 atm 50 k and 5.0 atm 50 k and 5.0 atm 500 k and 0.10 atm 500 k and 0.10 atm 500 k and 50 atm

Answers

H₂ gas  expected to behave most like an ideal gas in condition of temperature 500 K and pressure 0.1 atm.

When temperatures and pressures are extremely high and low, real gases will behave like ideal gases. Nevertheless, actual gases are less likely to behave optimally at lower temperatures and pressures.

PV=nRT is the ideal gas equation, where P is the gas pressure.

V = Gas Volume

Gas constant: R

T = gas temperature

n = the quantity of gas moles.

When the amount of gas molecules and the intermolecular interactions between them are minimal, the ideal gas functions properly. Low pressure and high temperature make this possible.

Hydrogen gas will therefore most likely possess/behave like an ideal gas at 500 K and 0.10 atm.

Consequently, we can say that the conditions under which a sample of neon gas behaves most like an ideal gas ; 500K and 0.1 atm

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Would bromoethene act as a dienophile under mild conditions?

Answers

Answer:The Diels-Alder reaction is a conjugate addition reaction of a conjugated diene to an alkene or alkyne (the dienophile) to produce a cyclohexene.

Explanation:

Bromoethene, also known as 1,2-dibromoethene or ethylene dibromide, is an unsaturated compound with a double bond between the carbon atoms. Dienophiles are molecules that can react with a diene, which is a compound with two double bonds, to form a cyclic compound through a Diels-Alder reaction.

Bromoethene is not considered a dienophile in the Diels-Alder reaction. The Diels-Alder reaction is a type of pericyclic reaction that requires a high degree of orbital symmetry between the dienophile and diene, and the double bond in bromoethene does not possess the required symmetry for this reaction. Additionally, the bromine atoms in bromoethene are electron-withdrawing and decrease the reactivity of the double bond, making it less likely to act as a dienophile.

Therefore, it is unlikely that bromoethene would act as a dienophile under mild conditions.

predict whether the ph of pure neutral water will increase or decrease as temperature decreases and explain your reasoning using le chatelier's principle and the thermochemical equation of the autoionization of water.

Answers

The pH of pure neutral water will increase when temperature decreases.

The formation of hydrogen or hydronium ions and hydroxide ions from neutral water proceeds via an endothermic reaction. The equilibrium reaction is written as:

H₂O ⇄ H⁺ + OH⁻

In the forward reaction heat is absorbed.

According to Le Chatelier's principle, "if we increase the temperature of the water, the equilibrium will move to lower the temperature again. It will do that by absorbing the extra heat."

This means if a change is made to the conditions of a reaction in dynamic equilibrium, the position of equilibrium will move to counter the change that we have made.

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please help answer that and show step by step working

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The amount of electricity is required to deposit one mole of aluminium from a solution of [tex]$\mathrm{AlCl}_3$[/tex] exists Three Faradays.

What is meant by mole?

The unit of measurement used by chemists known as a mole is very significant. In the same way that having a dozen eggs implies you have twelve eggs, having a mole of anything indicates you have 602,214,076,000,000,000,000,000 of that thing. When measuring very small objects like atoms, molecules, or other particles, chemists must use moles.

In the International System of Units, a substance's amount is measured in moles, which are denoted by the sign mol. The quantity of a substance is a measurement of the number of elementary entities of a specific substance present in an object or sample.

The quantity of atoms is measured in terms of moles. Mole conversion can be done for units like grams and milligrams.

[tex]$$A l^{3+}+3 e^{-} \rightarrow A l$$[/tex]

The amount of electricity required = 3 Faraday.

Therefore, the correct answer is option C. Three Faradays,

The complete questions:

What amount of electricity is required to deposit one mole of aluminium from a solution of [tex]$\mathrm{AlCl}_3$[/tex] ?

A. One Faraday

B. One ampere

C. Three Faradays

D. Three amperes

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earth is attracted to. the sun by. the. force of. gravity. why. doesn't the earth fall into. the. sun

Answers

Answer:

because of the balance in centripetal and centrifugal forces.

Answer:

The earth's momentum, its centripetal and centrifugal forces, prevent it from falling into the sun.

neutral compounds of boron may be described as electron deficient based on its electron configuration predict how many covalent bonds boron will form is this the maximum number of bonds boron will form

Answers

Many covalent bonds boron will form is this the maximum number of bonds boron will form we can expect boron to form three bonds since it has three valence electrons.

Since it takes one electron from each atom to form a single bond, we can expect boron to form three bonds since it has three valence electrons. We can see this in the molecule borane BH3. Here, boron forms three covalent bonds, using all three of its valence electrons in single bonds to the hydrogens.the second electron shell has a maximum occupancy of eight electrons. This means that there’s a space for two more electrons in the second electron shell. Since boron only has three valence electrons, it can only form three covalent bonds maximum.

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The chemical equation below shows the reaction between carbon dioxide (CO2) and lithium hydroxide (LiOH). CO2 + 2LiOH Right arrow. Li2CO3 + H2O The molar mass CO2 is 44.01 g/mol. How many moles of LiOH are needed to react completely with 25.5 g of CO2? 0.290 moles 0.579 moles 1.16 moles 1.73 moles

Answers

As per the given reaction, 2 moles or 46 g of LiOH is needed to completely react with CO₂. Then, 25.5 g of CO₂ requires 1.16 moles of LiOH.

What is lithium hydroxide ?

Lithium hydroxide is an ionic compound formed by the combination of metallic lithium and water moiety. LiOH easily reacts with carbon dioxide forms an insoluble compound lithium carbonate and water.

As per the given balanced equation of the reaction between LiOH and carbon dioxide, one mole of CO₂ reacts with 2 moles of LiOH.

molar mass of CO₂ = 44 g/mol

molar mass of LiOH = 23 g/mol

mass of 2 LiOH = 46 g.

Then, mass of LiOH needed to react with 25 .5 g of CO₂ = (25.5 × 46) /44 = 26.13 g

Number of moles in 26.13 g of LiOH = 26.13/23 = 1.16 moles.

Therefore, the number of moles of LiOH are needed to react completely with 25.5 g of CO2 is 1.16 moles.

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How do ions form, and how does the octet rule determine if an atom becomes a cation or an anion?

Answers

When an atom gains or loses electrons from its outermost energy shell, ions form. When an electron or electrons are lost to achieve a full duplet or octet, elements form cations. An anion is formed when an element gains an electron or more than one electron.

What do you mean by octet rule ?

The octet rule refers to atoms' preference for having eight electrons in their valence shell. Atoms with fewer than eight electrons are more likely to react and form more stable compounds.

Atoms can satisfy the octet rule in one of two ways. One method is for them to share their valence electrons with other atoms. The second method is to move valence electrons from one atom to another.

Thus, When an atom gains or loses electrons from its outermost energy shell, ions form.

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How many moles of aluminum do 4.70×1024 aluminum atoms represent?

Answers

One mole of aluminum  contains 6.02 × 10²³ Al  atoms or formula units. Hence, 4.70 × 10²⁴ atoms  of Al  contains 7.8 moles of Al.

What is one mole ?

One mole of a substance is its amount containing 6.02 × 10²³  atoms or molecules. This number is called Avogadro number. One mole of every elements contains Avogadro number of atoms.

Similarly one mole of every compound contains 6.02 × 10²³  molecules. The mass of one mole of an element  is called its atomic mass.

Al is 13th element in periodic table. Zn is a transition metal.  One mole of Al  contains 6.02 × 10²³ Al atoms . Hence number of moles of  4.70 × 10²⁴atoms  is:

4.70 × 10²⁴ / 6.02 × 10²³  =7.8 moles  .

Hence, there will be 7.8 moles of  aluminum.

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in this exercise, you will interpret how to read a safety data sheet (sds) by listing the basic information provided on a sds. Use the Internet to find the SDS for regular bleach (sodium hypochlorite, 4-6%)

Answers

A safety data sheet is a document which contains information regarding occupational safety and health hazards pertaining to a certain chemical product.

A variety of data is listed on the  safety data sheet which can be used as and when required. The data that can be read from the safety data sheet include Chemical Product and Company Identification, Composition, Information on Ingredients, Hazards Identification, First Aid Measures, Fire Fighting Measures, Accidental Release Measures, Handling and Storage, Exposure Controls, Personal Protection, Physical and Chemical Properties, Stability and Reactivity , Toxicological Information, Ecological Information, Disposal Considerations, Transport Information, Regulatory Information, etc. The more recent Safety Data Sheet format is internationally standardised, unlike the older MSDS formats, which might vary from source to source within a nation according on national restrictions.

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Which of the following processes is illustrated by the downward arrows from the atmosphere that show the conversion of nitrogen gas into usable forms available to producers?
A
Nitrogen assimilation
B
Nitrogen fixation
C
Photosynthesis
D
Weathering

Answers

Answer:

Explanation:

To be used by plants, the N2 must be transformed through a process called nitrogen fixation. Fixation converts nitrogen in the atmosphere into forms that plants can absorb through their root systems.

1. 50cm³ of 0.5 mol/dm³ NaOH solution and 50cm³ of 0.5mol/dm³ HNO3 were mixed at 20°c and stirred in a calorimeter with negligible heat capacity. The temperature of the mixture rose to 23.2°c.the density of each solution is 1.0g/cm³ and the specific heat capacity of each solution is 4.18J/K/g.calculate
i.the enthalpy for the neutralization
ii.calculate the change in enthalpy per mole of water formed​

Answers

The enthalpy of neutralization is  -53.6 kJ/mol

The  change in enthalpy per mole of water formed​ is 53.6 kJ/mol.

What is the enthalpy of neutralization?

We have to note that the enthalpy is the heat that have been evolved or absorbed in a reaction. We can see that in this case, the reaction involved the combination of sodium hydroxide and nitric acid.

Number of moles of the reactants = 50/1000 L * 0.5 mol/dm³

= 0.025 moles

Total mass of the reactants = 50 g + 50 g = 100 g (Since the density of the solution is 1.0g/cm³)

The heat evolved = mcdT

m = mass of the solution

dT = temperature change

c = Heat capacity of the solution

H = 100 * 4.18 * ( 23.2 - 20)

H = 1.34 kJ

The heat evolved = - ( 1.34 kJ/0.025 moles)

= -53.6 kJ/mol

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please help me on my living environment homework

Answers

The great nutritional value of crickets, particularly in terms of protein, makes them an excellent dietary source.

Why should we consider adding crickets as part of your school lunches?

In particular, lean protein, minerals, and vitamins are all abundant in crickets, which are a great source of these nutrients. Compared to chicken, they have a greater protein content of about 65%. In addition to having a high protein content, crickets also have chitin and other fibers that have an impact on gut health.

The primary benefit of using crickets as a food source is their high nutritional value, particularly in terms of protein.

In other words, crickets metabolize their food more effectively and need less food to produce the same amount of protein as cattle. This is known as a greater feed conversion rate. Less area will need to be set aside for the production of protein sources as a result.

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A mass on a spring vibrates horizontally on a smooth level surface( see the figure). Its equation of motion is x(t)=8 sin t, where t is in seconds and x in centimeters.
a, Find the velocity and acceleration at time t.
b, Find the position, velocity, acceleration of the mass at the time t=2p/3. In what direction is it moving at that time? It is speeding up or slowing downs

Answers

a) The velocity x(t) = 8sint

The position x'(t) = 8cost

The acceleration x"(t) = -8sint

b) position, x(t) =  4√3 cm.

   velocity, x'(t) = 4 cm/s

   acceleration, x"(t) = -4cm/s²

a) The velocity, position and acceleration at the time t is as follows :

The velocity x(t) = 8sint

The position x'(t) = 8cost

The acceleration x"(t) = -8sint

b) The position, velocity and the acceleration of the mass at the time t = 2π / 3.

The position, x(t)=8sin(2π /3)

                            = 4√3 cm.

The velocity, x'(t) = 8cos(2π /3)

                             =  4 cm/s

The acceleration, x"(t) = 8sin(2π/3)

                                      = -4cm/s²

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