A 10. 0 ml syringe contains 0. 10 g of nitrogen gas at 0. 0 degrees celsius. What is the pressure inside the syringe? 8. 0 atm 0. 80 atm 224 atm 0. 22 atm.

Answers

Answer 1

The pressure inside the syringe is 0.68 Pa

What is ideal gas equation?

The ideal gas law, also known as the general gas equation, is the equation of state for a hypothetical ideal gas. It has some limitations, but is a good approximation of the behavior of many gases under many conditions.

It is specified by the following formula:

PV = nRT

P =  nRT/V

n = mass/ molar mass

n = 0.1/28

n = 0.003 moles

R = 8.314 J/(mol.K)

T = 0°C or 273 K

V =  10 ml

P =  nRT/V

P =  0.003× 8.314×273/10

P = 0.68 Pa

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Related Questions

a sample of a metal is heated. which of the following are needed to calculate the heat absorbed by the sample? i. the mass of the sample ii. the density of the sample iii. the specific h

Answers

Mass of sampleDensify of samplespecific heat capacity of sample

What is heat absorption?

The heat absorbed is calculated by using the specific heat of steam Heat is a type of energy. When absorbed by a substance, heat causes inter-particle bonds to weaken and break which leads to a change of state (solid to liquid for example). Heat causing a phase change is NOT sufficient to cause an increase in temperature.A reaction in which heat is absorbed is called an endothermic reaction.An exothermic process releases heat, causing the temperature of the immediate surroundings to rise. An endothermic process absorbs heat and cools the surroundings.”These examples could be written as chemical reactions, but are more generally considered to be endothermic or heat-absorbing processes: melting ice cubes. melting solid salts. evaporating liquid water.A heat sink is a device that absorbs heat generated by electronic components or chips. Among the different types of heat sinks, two-phase forced-convection cooling of high-heat-flux/high-power electronic devices is one of the most effective means of thermal management.

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After constructing the Lewis dot formula for CF3, give its electronic arrangement and
molecular shape.
O tetrahedral, angular
O tetrahedral, trigonal pyramidal
O trigonal bipyramidal, T- shaped
O trigonal planar, trigonal planar

Answers

Last option, trigonal planar

CF3 forms an electronic arrangement of tetrahedral shape. However due to the repulsion between bonded pair and lone pair of electrons, they acquires a molecular shape of trigonal bipyramidal.

What is carbon trifluoride?

Carbon trifluoride is a covalent compound formed between carbon and fluorine through electron sharing . However, one pair electron is unbonded here because this compound exists as a radical cation.

The valency of carbon is 4. But there are only 3 fluorine atoms to bond. Thus, one pair exists as radical. The electron arrangement looks like a tetrahedral structure.

However, there occurs repulsion between the negative clouds of the bonds from the fluorine atoms and the lone pair -bond pair repulsion is even higher, the lone pair locates at the axial position and thus form a trigonal bipyramidal geometry.

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what is the purpose of injecting air into the vial of diluent equal to the amount of diluent needed to reconstitute the drug?

Answers

The purpose of injecting air into the vial of diluent equal to the amount of diluent needed to reconstitute the drug is to allow the diluent draw easily.

The purpose of the diluent injection in a reconstitute a drug for injection is to dilute and dissolve the drug. The reconstitute the drug is to allow the diluent draw easily.  2 needles and syringes are needed to reconstitute a drug. An up - side angle should be hold the vial of diluent. Roll the vial in your hand is the technique to mix the drug and the diluent.

Thus, The purpose of injecting air into the vial of diluent equal to the amount of diluent needed to reconstitute the drug is to allow the diluent draw easily.

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PLEASE HELP!!
Electron configuration using the aufbau configuration. Which means filing in the order of lowest energy level

Answers

6) Cobalt - [Ar] 3d⁷4s²

7) Silver -[Kr] 4d¹⁰5s¹

8) tellurium - [Kr] 4d¹⁰ 5s² 5p⁴

9) radium - Rn 7s²

10) lawrencium - [Rn] 5f¹⁴ 7s² 7p¹

11) 1s² 2s² 2p⁴ 3s² 3p⁶ 4s² 3d¹⁰4p⁶ 5s¹ - strontium

13) [Kr] 5s² 4d¹⁰ 5p³- antimony atom

14) [Xe] 6s² 4f¹⁴ 5d⁶ - Osmium

15)[Rn] 5f¹⁴ 7s² 7p¹ - Einsteinium

16) 1s² 2s² 2p⁴ 3s² 3p⁶ 4s² 4d¹⁰ 4p⁵ - Bromine

17) 1s² 2s² 2p6 3s² 3d⁵ - Chlorine

18) [Ra]7s²5f⁶ - Einsteinium

19) [Kr] 5s² 4d¹⁰ 5p⁵ - Tellurium

20) [Xe] - Xenon.

How do you determine the configuration of electrons?

The shell number (n) is the first symbol used to represent an electron configuration, followed by the type of orbital and the superscript number of electrons in the orbital. Consider this: The periodic table shows that oxygen has eight electrons.

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If a forensic scientist can piece together broken pieces of glass from a bottle that was used as a weapon, it has:
a. individual characteristics b. class characteristics
c. identification characteristics d. comparative characteristics

Answers

If a forensic scientist can piece together broken pieces of glass from a bottle that was used as a weapon, it has individual characteristics.

Class features are defined as the properties of evidences which allow group comparison. It contains individual, class, identification, and comparative characteristics.

Individual characteristics is defined as the evidence which is associated with a common source with high certainty degree. The different evidences which are associated with individual characteristics are fingerprints, DNA, striations or pattern of lines on a bullet, glass, torn piece of cloth etc.

Class characteristics are associated with restricted group of people, which includes paint types, different blood groups of the people. Class characteristics are used to narrow down list of possible sources.

Therefore, if a forensic scientist can piece together broken pieces of glass from a bottle that was used as a weapon, it has individual characteristics. Hence, 'option a' is correct.

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Answer: Individual characteristics

Explanation: The reason is that DNA, fingerprints, and blood type can be gained from the broken pieces of the broken glass bottle.

write the correct chemical formula of the precipitate that would form when mixing the two compounds listed below. if no precipitate would form write nr for no reaction. naoh and cabr2

Answers

The precipitate which is formed by chemical reaction between sodium hydroxide and calcium bromide is calcium hydroxide whose chemical formula is Ca(OH)₂.

What is chemical formula?

Chemical  formula is a way of representing the number of atoms present in a compound or molecule.It is written with the help of symbols  of elements. It also makes use of brackets and subscripts.

Subscripts are used to denote number of atoms of each element and brackets indicate presence of group of atoms. Chemical formula does not contain words. Chemical formula in the simplest form  is called empirical formula.

There are four types of chemical formula:

1)empirical formula

2) structural formula

3)condensed formula

4)molecular formula

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what is the role of sulfuric acid in the reaction? b) (1 point) why is the mixture extracted with sodium bicarbonate? your answer should include a chemical equation to explain why gas bubbles are observed and identify the gas. c) (1 point) what is brine and why is it used?

Answers

Because it neutralizes any residual acids in the reaction mixture, sulfuric acid serves as a proton donor in the this Fischer esterification reaction. Solution is dried using brine, a salt and water mixture.

Tell us about sulfuric acid.

H2S04, often known as sulfuric acid, is a corrosive chemical that harms the skin, eye, teeth, and lungs. Extreme exposure can be fatal. Worker exposure to sulfuric may be harmful. The dose, timeframe, and nature of the work determine the exposure level.

What occurs when sulfuric acid is touched?

Sulfuric acid will burn your flesh if you touch it. Your eyes will burn and water if you accidentally put sulfuric acid in them. In these sections, the word "burn" refers to the chemical burn rather than a physical burn brought on by coming into touch with a hot object.

Briefing:

CH3COOH + NaHCO3 —> H2CO3 + CH3COONa

H2CO3 —> CO2 (g) + H2O (gas formed is CO2)

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elements of the fourth and higher main-energy levels do not seem to follow the normal sequence for filling orbitals. why is this so?

Answers

In order to create an electron configuration with the lowest energy level that is stable, electrons from the s-orbitals may occasionally be elevated to a higher energy level.

In example, the 4s and 3d orbitals have n=4 and l=0, respectively, meaning that n+l=4+0=4 and n=3 and l=2, respectively, mean that n+l=3+2=5. As a result, 4s will be filled first before going on to the 3d orbital since 4s has a lower energy of 4 compared to the 3d orbital, which has a greater energy of 5.

The fourth energy level typically comprises 18 electrons. The 4s 3d and 4p orbitals are part of the periodic table's fourth energy level. There are 6 electrons in the 4p orbital. The 4d orbital has 10 electrons and corresponds to the periodic table's fifth energy level.

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the concentration of the enzyme acid phosphatase secreted by the prostate is up to 400 times higher in seminal fluid than any other bodily fluid

Answers

It is true that seminal fluid has a 400-fold greater quantity of the prostate's released acid phosphatase enzyme than any other body fluid.

How is an enzyme defined?

An enzyme is a type of biological catalyst that is typically always a protein. It accelerates a certain chemical process in the cell. The enzyme is not destroyed during the procedure; it is continually used.

What is an example of an enzyme?

For instance, the enzyme pepsin is a vital component of gastric fluids and aids in the breakdown of food particles in the stomach. Similar to how salivary amylase, an enzyme that converts starch into sugar to help with early digesting The thrombin enzyme is used in medicine to hasten wound healing.

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What kind of elements usually form ionic bonding? ​

Answers

According to the electronic configuration, elements of group 1,2 and 3 usually form ionic bonds as they have 1,2 and 3 valence electrons.

What is electronic configuration?

Electronic configuration is defined as the distribution of electrons which are present in an atom or molecule in atomic or molecular orbitals.It describes how each electron moves independently in an orbital.

Knowledge of electronic configuration is necessary for understanding the structure of periodic table.It helps in understanding the chemical properties of elements.

Elements undergo chemical reactions in order to achieve stability. Main group elements obey the octet rule in their electronic configuration while the transition elements follow the 18 electron rule. Noble elements have valence shell complete in ground state and hence are said to be stable.

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one mole of an ideal gas does 3000 j of work on its surroundings as it expands isothermally to a final pressure of 1 atm and volume of 25 l. determine (a) the initial volume and (b) the temperature of the g

Answers

i) The initial volume of the gas is 4.6 L

ii) The temperature of the gas is 212.7 K

What is the initial volume?

We know that work can be done by a gas when the gas expands because the gas is pushing against the walls of the container and as such we have the use of the formula;

W = PΔV

W = work done

P = pressure of the gas

V = volume of the gas

Now;

The work done is 3000 J or 29.6 Latm

29.6  = 1(25 - V1)

V1 = initial volume

29.6 = 25 - V1

V1 = 29.6 - 25

V1 = 4.6 L

Now we have to obtain the temperature of the gas during the cause of the isothermal expansion of the gas as follows;

W =nRTln(V2/V1)

n = Number of moles

R = gas constant

T = temperature

3000 = 1 * 8.314 * T ln(25/4.6)

3000 = 14.1T

T = 3000/14.1

T = 212.7 K or -60.3°C

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Write the structure of the major organic product formed in the reaction of 1−methylcyclohexene with hydrogen chloride.

Answers

When 1-methylcyclohexene interacts with HCl, the methyl-substituted carbon atom receives an addition of bromide ion to create 1-chloro-1-methylcyclohexane.

Example of a chemical reaction.

One or more chemicals transform into one or more other compounds in a chemical reaction. When vinegar and baking soda are combined, sodium acetate, carbon dioxide, and water are the results.

Alkenes are hydrocarbons containing a single double bond, and the suffix "ene" is used to name them. Alkenes respond better in an addition reaction, including 1-methylcyclohexene. The double bond will be shattered, and the replacements will be offered to them.

The carbons of the broken bond will receive H and Cl during the reaction with HCl. When H is inserted at the least replaced carbon, the main product is created. Therefore, the item will be 1-chloro-1-methylcyclohexane.

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Circle the letter of each sentence that is true about water's structure. a. water is made up of atoms bonded to form molecules. b. water contains half as many hydrogen atoms as oxygen atoms. c. water molecules tend to push away from each other. d. the chemical formula for water is h20.

Answers

Water has the chemical formula H20 and is composed of atoms bound together to form molecules.

The correct answer is A,D

what they Examples of molecules ?

A molecule is the tiniest unit of any substance that is capable of independent existence and that is made up of one or more components while still maintaining the substance's physical and chemical properties. Even more atoms can be separated from molecules. The symbols for the oxygen atom and molecule, respectively, are O and O2, respectively.

What do fundamental molecules do?

The term "life's four fundamental sorts of molecules" is frequently used. Proteins, carbohydrates, lipids, and nucleic acids make up the four molecules that make up life. For every living thing on Earth, each of the 4 groups is essential. A cell and an organism cannot exist without any one of these four molecules.

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Two spheres, one hollow and one solid, are rotating with the same angular speed around an axis through their centers. Both spheres have the same mass and radius. Which sphere, if either, has the higher rotational kinetic energy?.

Answers

The hollow sphere has the higher rotational kinetic energy.

A hollow sphere: what is it?

A hollow sphere is a ball that has been hollowed out so that an internal ball within the external ball is created by a wall of similar thickness.

In comparison to solid ones, hollow spheres are 40 to 70 percent lighter. An air current is used to lift and hold polystyrene balls over a fluidized bed as a suspension made of metal powder and a binder is sprayed onto them to begin the process.

I(hollow sphere) = 2/3 mr squared

I(solid sphere) = 2/5 mr squared

KE(r) = 1/2 I w squared

I(h) > I(s)

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Based on location in the periodic table, which element has chemical properties that are most similar to iodine (i)?.

Answers

Fluorine (F) is an element that has the most similar chemical properties to iodine based on location in the periodic table.

Halogen elements

The halogen elements, namely fluorine, chlorine, bromine, and iodine, are elements of the halogen or VIIA group in the periodic table of elements. These elements have ns2 np5 valence electrons. The reactivity of a substance is related to the ease with which the outer electrons of an element's atom can be released (metals) or captured (non-metals). Since the group VIIA elements are non-metallic elements that tend to gain electrons, their reactivity is directly proportional to their electron affinity. The greater the electron affinity, the easier it is for the atom to react (capture 1 electron). Because in a group of halogen elements the electron affinity decreases from top to bottom, so the topmost element, fluorine, is the element with the greatest electron affinity. This means that the fluorine element is the most reactive among the halogen elements.

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A 25. 0 ml sample of 0. 150 m hydrofluoric acid is titrated with a 0. 150 m naoh solution. What is the ph at the equivalence point? the ka of hydrofluoric acid is 3. 5 × 10-4.

Answers

8.17  is the ph at the equivalence point.

The volume of NaOH used to reach equivalence point

M(HF)*V(HF) =M(NaOH)*V(NaOH)

0.15 M *25.0 mL = 0.15M *V(NaOH)

V(NaOH) = 25 mL

Molarity of HF = 0.15 M

Volume of HF = 25 mL

Molarity of NaOH = 0.15 M

Volume of NaOH = 25 mL

mol of HF = Molarity of HF * Volume of HF

mol of HF = 0.15 M * 25 mL = 3.75 mmol

mol of NaOH = Molarity of NaOH * Volume of NaOH

mol of NaOH = 0.15 M * 25 mL = 3.75 mmol

mol of HF = 3.75 mmol

mol of NaOH = 3.75 mmol

3.75 mmol  of both will react to form F- and H2O

F- here is strong base

F- formed = 3.75 mmol

Volume of Solution = 25 + 25 = 50 mL

Kb of F- = Kw/Ka =  1*10^-14/3.5*10^-4 = 2.857*10^-11

concentration ofF-,c = 3.75 mmol/50 mL = 0.075M

F- dissociates as

F-        + H2O   ----->     HF  +   OH-

0.075                        0         0

0.075-x                      x         x

Kb = [HF][OH-]/[F-]

Kb = x*x/(c-x)

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What are the four fields in pivot table?.

Answers

The four sections of the pivot table—Report Filter, Column Labeling, Row Labels, and Values—are located at the bottom of the Self - configuration Field List window.

What are pivot tables and how do they function?

One of the fundamental tools for data is the pivot table. Many significant business concerns can be swiftly resolved with pivot tables.

Pivot Tables can be thought of as a form of visual storytelling even if they are merely tables and lack real graphics.

Can two Pivot Tables be combined?

Most tools demand the somewhat tedious process when comparing two Table or merging them. With some exclusions, like Lumeer, numerous Pivot Table that have the same structure can be laid over.

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How many liters of O₂ are needed to react completely with 10.0 L of H₂S at STP
according to the following reaction?
2H₂S(g) + 30₂(g) → 2SO₂(g) + 2H₂O(g)

Answers

Ideal gas law is valid only for ideal gas not for vanderwaal gas. Therefore, 10L of  H₂S should react with 6.6L of oxygen at stanadard pressure and temperature.

What is ideal gas equation?

Ideal gas equation is the mathematical expression that relates pressure volume and temperature.

Mathematically the relation between Pressure, volume and temperature can be given as

P×V=n×R×T

where,

P = pressure of gas

V= volume of gas

n =number of moles of gas

T =temperature of gas

R = Gas constant = 0.0821 L.atm/K.mol

At Standard temperature and pressure, 2 moles of  H₂S react with 3 moles of 0₂. S0, 10L of H₂S should react with 0.66×10=6.6L of oxygen.

Therefore, 10L of H₂S should react with 6.6L of oxygen.

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how many grams of khp are needed to exactly neutralize 20.3 ml of a 0.274 m potassium hydroxide solution ?

Answers

The mass of a KHP needed to neutralize the 20.3 ml of a 0.274M of a potassium hydroxide(KOH) solution is 1.14g.

The reaction between KHP and KOH is given as

KHC₈H₄O₄+KOH→K₂C₈H₄O₄+H₂O

From given data, first find out moles of KOH

moles=20.3 ml×(1 L/1000 ml)×(0.274 mol/1 L)

moles=(20.3×0.274 mol/1000)

moles=(5.5622 mol/1000)

moles=0.0055622 mol

Since mol to mol ratio between KOH and KHP is 1:1. Hence, the moles of KHP required is 0.0055622 mol. Convert this moles into the mass

The molar mass of KHC₈H₄O₄ is

Molar mass=[39+(5×1)+(8×12)+(4×16)]g/mol

=(39+5+96+64)g/mol

=204g/mol

Hence, mass of KHP required is

mass=0.0055622 mol×(204 g/1 mol)

mass=1.1346 g=1.135g

mass=1.14 g

Therefore, the mass of KHP required to neturalize potassium hydroxide is 1.14 g.

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What is the level of organization in the human body from the
least to the most complex?

Answers

The major levels of organization in the body, from the simplest to the most complex are: atoms, molecules, organelles, cells, tissues, organs, organ systems, and the human organism.

What is the most complex level of organization of the human body?As can be seen, there are many different degrees and approaches to studying anatomy. Understanding the order of these levels puts the complexity of the human body in context. The chemical level of organization is the most basic level of organization, but first-year chemistry students would disagree. Simple atoms interact to create relatively straightforward compounds at this level. For instance, water (H2O) is composed of two hydrogen atoms and one oxygen atom, and carbon dioxide (CO2) is composed of one carbon atom and two oxygen atoms. There are four main types of macromolecules in the human body: lipids (fats), proteins, nucleic acids, and carbohydrates (sugars). Macromolecules (macro: big) are larger and more complex.These four macromolecules serve as the foundation for the cellular level, the next level of organization.

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Using the general formulae for alkanes, work out how many hydrogens does a molecules with 25 carbons have?.

Answers

H= 52. Alkanes were saturated hydrocarbons, meaning that only hydrogen and carbon atoms are bound together by a single covalent connection to create them. The typical formula for alkanes is CnH2n+2.

What is an example of an alkane?

Alkanes, commonly known as hydrocarbons, are chemical substances made up of carbon (C) & hydrogen (H) atoms. Alkanes have single bonds as their only chemical constituents. Examples of a chemical compositions of two alkanes, pentane and ethane, are shown in this picture.

What are the uses of alkane?

Alkanes are significant chemical industry raw materials and the main component of lubricating lubricants and gasoline. Natural gas, which mostly comprises methane and ethane, is used to generate electricity and for cooking and heating (gas turbines).

Briefing:

If n = 25 (25 carbon atoms),

2n + 2 = 2 × 25 + 2 = 52.

H= 52 hydrogen atoms

Formula= C₂₅H₅₂.

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It is known as fracking and it uses pressurized liquids to fracture rock formations that hinder access to natural gas. What is it?.

Answers

Hydraulic fracturing is known as fracking and it uses pressurized liquids to fracture rock formations that hinder access to natural gas.

Hydraulic fracturing, or “fracking” as it's miles extra commonly known, is simply one small approach of the broader technique of unconventional development of oil and herbal fuel. Fracking is a proven drilling era used for extracting oil, natural fuel, geothermal electricity, or water from deep underground.

Fracking is brief for hydraulic fracturing, which is the manner of making fractures in rocks and rock formations by means of injecting specialized fluid into cracks to pressure them to open similarly. the larger fissures permit greater oil and gas to drift out of the formations and into the wellbore.

Hydraulic fracturing is used to grow the charge at which materials such as petroleum or natural fuel may be recovered from subterranean herbal reservoirs. Reservoirs are normally porous sandstones, limestones or dolomite rocks, but also encompass "unconventional reservoirs" which include shale rock or coal beds.

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osha noted a violation of safety standards for chemical use in a film development laboratory. the laboratory was given 6 months to correct the problem. when the deadline arrived, the laboratory was still in violation of the standards. this is a violation. a. failure to abate b. serious c. willful d. repeated

Answers

A film production lab was found to be using chemicals improperly, according to OSHA. The lab was given six months to fix the issue. The laboratory was still not up to par when the deadline rolled around. This violates the law of failure to abate(C).

OSHA's Occupational Exposure to Hazardous Chemicals in Laboratories standard (29 CFR 1910.1450), refer to as the Laboratory standard, designates the required necessities of a Chemical Hygiene Plan (CHP) to insulate lab employees from harm due to perilous projectiles for weaponry.

Laboratory standard resides of five main items in accordance with OSHA:-

Hazard labeling Chemical HygienePlan Information preparation Exposure  Monitoring Medical conference 'and examinations.

Congress devised OSHA to promise reliable and healthful environments for active people interested in something by scene and prosecuting principles and providing preparation, exceed, instruction, and agreement help.

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The weighted average of the atomic masses of the naturally occurring isotopes of an element is the.

Answers

The atomic mass of the element is the weighted average of the atomic masses of the naturally occurring isotopes of an element.

The atomic mass

The atomic mass (ma) of a chemical element is the mass of an atom at rest, generally expressed in atomic mass units. Atomic mass is often synonymous with relative atomic mass, average atomic mass, and atomic weight. However, there is a slight difference in that the values can be either weighted averages of the masses of all isotopes of an element, or the masses of just one isotope. As is the case for an element that has only one dominant isotope, the atomic mass value of the very abundant isotope can be almost the same as the atomic weight value of that element. As elements whose isotopes are generally more than one, the difference in the value of the atomic mass with the atomic weight can be up to more than half a mass unit (for example chlorine). The atomic mass of a rare isotope can differ from the standard atomic weight by several mass units.

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what volume of 0.0700 m phosphoric acid is required to neitralize 20.0 ml of .105 m potassium hydroxide

Answers

30ml volume of 0.0700 m phosphoric acid is required to neutralize 20.0 ml of .105 m potassium hydroxide.

Simple definition of neutralization reaction:

Any chemical process in which an acid and a base quantitatively combine to produce salt and water is referred to as a neutralisation reaction. H+ ions and OH- ions combine to generate water during a neutralization process.

An acid-base reaction is referred to as a neutralisation reaction. This is so that the reaction's neutral byproducts may be seen. One output is always water, while another output is salt. Among ionic compounds, salts are neutral.

Volume of phosphoric acid (v₁) =?

Volume of potassium hydroxide (v₂) = 20ml

Concentration of phosphoric acid (c₁) = 0.0700 m

Concentration of potassium hydroxide (c₂) = 0.105 m

c₁v₁ = c₂v₂

0.07 × v₁ = 0.105× 20

v₁ = 2.1/0.07

v₁ = 30ml

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a hypothetical element has three isotopes with the mass of 88, 89, and 91 amu. the natural abundance of the isotopes for this element is 80%, 15%, and 5%, respectively. what is the molecular weight of the element?

Answers

A hypothetical element has three isotopes with the mass of 88, 89, and 91 amu. the natural abundance of the isotopes for this element is 80 %, 15 %, and 5 %, respectively. the molecular weight of the element is 88.3 amu.

The mass M1 = 88 amu

the mass M2 = 89 amu

the amu M3 =91 amu

the 1st isotopes abundance = 80 % = 80 / 100 = 0.8

the 2nd isotopes abundance = 15 % = 15 / 100 = 0.15

the 3rd isotopes abundance = 5 % = 5 / 100 = 0.05

the average molecular weight = 88× 0.8 + 89 × 0.15 + 91 × 0.05

                                                  = 70.4 + 13.35 + 4.55

                                                  = 88.3 amu

The molecular weight of the element = 88.3 amu.

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Which of the following equations shows a physical change?(1 point)
Responses

A. C12H22O11 + 12O2 → 12CO2 + 11H2OC12H22O11 + 12O2 → 12CO2 + 11H2O

B. CaCO3 → CaO + CO2CaCO3 → CaO + CO2

C. N2O5 → NO2 + O2N2O5 → NO2 + O2

D. H2O(s) → H2O(l)

Answers

The equation that shows a physical change is as follows: H₂O(s) → H₂O(l) (option D).

What is a physical change?

A physical change is the change affecting the form of a chemical substance, but not its chemical composition.

On the other hand, a chemical change is any process in which reactants are changed into products by the breaking or creation of chemical bonds.

A physical change involves the following;

Change of state e.g. from liquid to gas and vice versaChange of phase

According to this question, water in solid state (ice) changes in an equation to water in liquid state (water), hence, is an example of physical change.

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In Becquerel’s initial experiment, in which he exposed uranium salt crystals to sunlight, the photographic paper became exposed even though it was shaded from the sun by a dark cloth. At first, how did Becquerel explain this result?

A) The black cloth emitted gamma rays that exposed the film.
B) The sun emitted gamma rays that exposed the film.
C) The crystals emitted X-rays when they were exposed to light, exposing the film.
D) The crystals phosphoresced when they were exposed to light, exposing the film.

Answers

His first interpretation was that the crystals phosphoresced when they were exposed to light, exposing the film. Option D

What was Becquerel's experiment?

We know that  Becquerel is generally credited as the one that was the pioneer of the technology of radioactivity. We know that he was the first person that found out that when we expose d uranium salt crystals to sunlight, the photographic paper became exposed even though it was shaded from the sun by a dark cloth.

He was unable to give a correct interpretation to this experiment until he had to carry out further studies that led to the discovery that the crystals actually gave off radiation.

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What happened when the ball was pulled toward the center of gravity?

Answers

When the ball was pulled toward the center of gravity is the gravity pulls the ball towards the center of the earth.

The gravity pull the ball towards the center of gravity is due the gravitation force by earth acted on ball. the center of gravity is the point of ball where the weight is distributed in all direction. The center of gravity of uniform ball is at the geometrical centre. if we through a ball in upward direction , the force of gravity pull the ball in downward direction . The force of gravity is directly proportional l to the mass of two objects and inversely proportional to the distance between them.

Thus, When the ball was pulled toward the center of gravity is the gravity pulls the ball towards the center of the earth.

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TRUE/FALSE. h2 burning in o2 to form h2o (l) is an example of a system where the entropy of the universe decreases. H2 is not flammable.

Answers

False. The flammability of the cosmos does not decrease in a system where H2 burns in O2 to generate h2o (l). H2 does not catch fire.

What exactly is a flammable risk?

Among the most typical dangerous compounds discovered in a laboratory are flammable liquids. The main danger posed by flammable liquids is that they easily ignite and burn. A flammable liquid, according to the National Fire Protection Association (NFPA), is one whose flash point is less than 100°F (38°C).

What sort of substance is flammable?

They consist of petroleum-based fuels like gasoline and kerosene as well as fossil fuels including coal, natural gas, and petroleum. Paper and cardboard are examples of materials produced of wood .

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