he famous miller–urey experiment was conducted in 1953. this experiment tested the hypothesis that primitive earth conditions were favorable for creating complex organic compounds from simple compounds. classify the compounds according to whether they were inputs or outputs in this experiment.

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Answer 1

The famous miller–urey experiment was conducted in 1953. this experiment tested the hypothesis that primitive earth conditions were favorable for creating complex organic compounds from simple compounds. classify the compounds according to whether they were inputs or outputs in this experiment.

Scientists were able to demonstrate that Miller's initial tests produced well over 20 different amino acids after Miller's death in 2007 by looking at sealed vials that had been maintained from the original trials. That is significantly more than the 20 naturally occurring mutations in the genetic code as well as what Miller originally claimed.

What is the Miller-Urey experiment?

The Miller-Urey experiment, often known as the Miller experiment, was a chemical experiment that explored the chemical origin of life under conditions that were supposed to have existed on the early, primordial Earth in 1952. Alexander Oparin and J.'s theory was confirmed by the experiment at the time. According to B. S. Haldane's theory, the environment on the early Earth was favourable for chemical reactions that produced more complex organic chemicals from simpler inorganic ones. It was carried out by Stanley Miller in 1952 under the direction of Harold Urey at the University of Chicago, and the results were published the following year. This experiment is regarded as the standard investigation of abiogenesis.

Scientists were able to demonstrate that Miller's initial tests produced well over 20 different amino acids after Miller's death in 2007 by looking at sealed vials that had been maintained from the original trials. That is significantly more than the 20 naturally occurring mutations in the genetic code as well as what Miller originally claimed. Although more recent research indicates that the gas used in the Miller experiment may not have been representative of the Earth's original atmosphere, prebiotic experiments continue to yield racemic combinations of simple to complex chemicals, including cyanide, under various settings.

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Related Questions

Hydrazine, N2H4 , has been used as a rocket fuel because its reaction with oxygen is extremely exothermic:

N2H4(l) + O2(g) -> N2(g) + 2H2O(g) H=-534.0kJ

The enthalpy change for the vaporization of water is given by:

H2O(l) -> H2O(g) H= 40.7kJ

Calculate the enthalpy change that would result if the water were produced in liquid rather than the gaseous form.
N2H4(l) + O2(g) -> N2(g) + 2H2O(l) H=?

Answers

Answer:

127

Explanation:

534-107

= 127

It's soo simple you just have to subtract valuew

_______ botulinum produces a deadly toxin that may be found in improperly home-canned, low-acid foods.

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Clostridium botulinum  produces a deadly toxin that may be found in improperly home-canned, low-acid foods. Under low oxygen circumstances, the bacterium Clostridium botulinum creates harmful toxins (botulinum toxins). Botulinum toxins are among the deadliest chemicals yet discovered. Botulinum toxins can cause respiratory and muscle paralysis by blocking nerve functioning.

A toxin that targets the body's nerves and produces botulism, an uncommon but severe illness, can cause difficulties breathing, muscle paralysis, and even death. The bacteria Clostridium botulinum, as well as Clostridium botulinum and Clostridium baratii, occasionally produce this toxin. The anaerobic rod-shaped spore-forming bacteria Clostridium botulinum produces a protein with distinctive neurotoxicity.

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of the two lewis/electron dot structure representations, which is the correct one for phosphorus trifluoride?

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Lewis dot structure of PF3 contains 1 lone pair on the central atom(phosphorous) and 3 lone pairs on each outer atom(fluorine).

The diagrams known as Lewis structures, often referred to as Lewis dot formulas, Lewis dot structures, electron dot structures, or Lewis electron dot structures, depict the interactions between the atoms in a molecule as well as any lone pairs of electrons that may be present.

The trigonal pyramid is the form or molecular geometry of PF3. Since PF3's core region comprises four zones of electron density, its electron geometry is tetrahedral. One lone pair is present on the core atom (phosphorus) in the Lewis dot structure of PF3, and three are present on each outside atom (fluorine).

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Read the following information. Which statement describes the homes of the Southwest and Pacific Northwest Native American culture regions best? (3 points)

a Venn diagram comparing the Southwest and Pacific Northwest cultural regions. The Southwest says that they lived in a hot, dry area; they lived in multi-floor buildings made of clay, or in cone-shaped buildings; they wore clothing made of cotton or hides; they grew crops; the were known for weaving blankets, making dolls, and making pottery. The Both sections says they both hunted for meat; they both traded with other tribes; and many people lived together in one home in both cultural regions. The Pacific Northwest says they lived near the coast with lots of forests and rivers; they lived in long, rectangular wooden homes; they wore clothing made of fur or bark; they ate a lot of fish; they traveled in canoes; and they are known for carving totem poles and weaving baskets.

Group of answer choices

Homes in the Southwest and Pacific Northwest had many floors to fit many people.

Homes in the Pacific Northwest and Southwest were made from clay.

Homes in the Pacific Northwest and Southwest were made from wood.

Homes in the Southwest and Pacific Northwest were made from different materials.

Answers

Answer:

Homes in the Pacific Northwest and Southwest were made from wood

Explanation:

Carving wood was an essential cultural characteristic in the Southwest and Pacific NorthWest

electrons may be in more than one orbital at once, due to the general possibility of superposition of quantum state

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When an electron is superposed, its various states can be viewed as distinct outcomes, each with a specific chance of being observed.

What is Superposition ?

Superposition is the ability of a quantum system to exist in multiple states simultaneously up until a measurement is taken. This fundamental principle of quantum mechanics is frequently illustrated through an experiment conducted in 1801 by the English scientist Thomas Young since the idea is challenging to grasp.

The positioning of one thing above or on top of another The law of superposition, which is extremely straightforward, is used to establish if one sedimentary rock is older than another.

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One of the two amino acids that has a side chain including the modified carboxyl group, carboxamide, is _______________.

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One of the two amino acids that has a side chain including the modified carboxyl group, carboxamide, is Asparagine.

Non-essential amino acid aspartic acid (Asp/D) has a carboxyl group in its Rgroup. Oxaloacetate is transaminase to easily create it. At physiological pH, the side chain of aspartic acid has a pKa of 3.9 and is negatively charged.

The side chain of the amino acid cysteine is chemically reactive and capable of forming bonds with other cysteines.

At this location, known as the side chain, each amino acid is joined to a different chemical group. Each amino acid differs from the others due to its side chain, which also gives it a distinctive set of chemical properties. The side chain is frequently referred to as a R group and is represented by the letter R.

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When the leveling bulb is higher than the water level, the pressure in the system is greater than atmospheric pressure. true /false

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The correct answer is true.

When the leveling bulb is higher than the water level, pressure in the system is greater than atmospheric pressure

What do you mean by atmospheric pressure?

Atmospheric pressure, also called the barometric pressure, force per unit area exerted by an atmospheric column (that is, the entire body of air above the specified area).

Atmospheric pressure can be measured with a mercury barometer (hence the commonly used synonym barometric pressure), which indicates height of a column of mercury that exactly balances the weight of the column of atmosphere over the barometer.

The  atmospheric pressure is also measured using an aneroid barometer, in which the sensing element is one or more hollow, partially evacuated, corrugated metal disks supported against collapse by an inside or outside spring; the change in the shape of the disk with changing pressure can be recorded using a pen arm and a clock-driven revolving drum.

A pressure system is a relative peak or lull in sea level pressure distribution. Pressure systems cause the weather to be experienced locally.

Low-pressure systems are associated with band precipitation that minimize the temperature changes throughout the day, whereas, high-pressure systems normally associate with dry weather and mostly clear skies with larger diurnal temperature changes due to the greater radiation at night and greater sunshine during the day. Pressure systems are analyzed by those in the field of meteorology within the surface weather maps.

The leveling bulb is higher than the water level, pressure in the system is greater than atmospheric pressure.

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You fire a beam of light at a piece of metal and determine that electrons are emitted with 2. 0 ev of energy. You increase the wavelength of the light and determine that electrons are still being emitted. What else is true?.

Answers

The correct answer is option B: there is a decrease in the speed of the emitted electrons.

If we increase the wavelength of the light and determine that electrons are still being emitted. Then the truth is that there is a decrease in the speed of the emitted electrons.

In chemistry, the relation between the energy of a light photon and its wavelength is given by the following equation;

E = hc / λ

or λ  = hc / E

Here, h is the plank's constant, 'E' represents the energy of light photons, and c is the light speed where λ indicates the wavelength of the light.

The above equation shows that the energy of photons and wavelength are inversely related to each other.

The value of energy decreases, if wavelength increases.

To put it simply, if the energy decreases then the speed and kinetic energy of the emitted electron also decrease.

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The complete question is:

You fire a beam of light at a piece of metal and determine that electrons are emitted with 2.0 eV of energy. You increase the wavelength of the light and determine that electrons are still being emitted. What else is true?

(A) there is an increase in the speed of the emitted electrons.

(B) there is a decrease in the speed of the emitted electrons.

(C) there is an increase in the number of electrons emitted.

(D) there is a decrease in the number of electrons emitted.

Which quantity is held constant when working with boyle’s, charles’s, and gay-lussac’s laws? volume moles pressure temperature

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The quantity the is help constant in Boyles's law is Temperature, Charles' law is Pressure, Gay-Lussac's law is number of moles.

Boyle's law states that at constant temperature the volume of the gas is directly proportional to the pressure exerted by the gas.

P α V....(i)

Charles' law states that at constant pressure the volume of the gas is directly proportional to the absolute temperature of the gas.

V α T....(ii)

Gay-Lussac's law states that for a given number of molecules of gas the Pressure of the gas is directly proportional to the absolute Temperature of the gas.

P α T....(iii)

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An extra-strength aspirin contains 0.500 g of aspirin. how many grains is this? (1grain=64.8mg)

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By unit conversion, the aspirin contains 7.72 grains.

We need to know about unit conversion to solve this problem. The unit conversion can be used to convert a unit to another unit. It can be defined as

a = xb

where a is unit a, b is unit b and x is the constant of conversion.

From the question above, we know that

m = 0.5 gram

unit conversion

(1 grain = 64.8 mg)

Convert the unit conversion to 1 mg

1 grain = 64.8 mg

1/64.8 grain = 64.8/64.8 mg

1 mg = 1/64.8 grain

Convert the aspirin mass to grain

m = 0.500 g

m = 0.5 x 10³ mg

m = 0.5 x 10³ x 1/64.8 grain

m = 7.72 grain

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What type of chemical bond holds the atoms together within a water molecule?
a. nonpolar covalent bond
b. ionic bond
c. polar covalent bond
d. coordinate covalent bond

Answers

C. Polar Covalent Bond is the chemical bond holds the atoms together within a water molecule.

What type of chemical bond holds the atoms in a water molecule together?

bonds that are covalent

Covalent bonds are strong bonds that hold the hydrogen (white) and oxygen (red) atoms of individual H2O molecules together. Covalent bonds form when two atoms, in this case oxygen and hydrogen, share electrons. Polar covalent bonds hold the atoms in a water molecule together. Hydrogen bonds attract water molecules to one another. One of the most important characteristics of water is that it is made up of polar molecules. Water molecules (H2O) contain two hydrogen atoms and one oxygen atom, which form polar covalent bonds. The oxygen atom in a single molecule of water is bonded to the two hydrogen atoms via polar covalent bonds. As a result, water molecules are polar and can form hydrogen bonds with one another.

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6. A student adds a mixture of oil, sand and salt in a beaker of water and stirs it. The student stops stirring, and observes that the salt is no longer visible. It is also observed that the oil floats on the top and the sand sinks to the bottom of the beaker.
a. Why does oil float on water?
b. Why is salt no longer visible after the stirring?
c. How can you separate the components of this mixture?​

Answers

Explanation:

a)oil floats on water because oil has less dense than the water.

b) since salt dissolve in water.

c) 1. Decantation -

Oil floats on water (oil is insoluble in water), so it can be decanted easily.

2. Filtration-

Filter the mixture and sand will be separated from the water (as it is insoluble in water), and only salt solution will be left.

3. Evaporation-

The salt solution can be evaporated, by this, the salt will separate out.

at the molecular level: a. create a question a researcher would ask at this level b. give an example of an experiment that could be done to answer questions at this level

Answers

In following way we can create the question:

How does dissolving a salt molecule in the water make its atoms ionize?

Dissolving a salt molecule in the water does not make its atoms ionize. The atoms in the solid salts are already ionized long before touching the water.

Electrons in an atom can only take on the specific wave states, and only one electron can occupy one wave state at a time. As a result, electrons in an atom take different states, starting from lowest energy state and going upwards in energy until the electrons have all found distinct states. For various reasons that are not worth mentioning here, electron states in the atoms tend to form various groups, with the states in the same group having very similar energies and states. Chemists call these groups of electron states "shells", even though they have nothing to do with the literal shells.

What is an electron?

The electron is a subatomic particle (denoted by symbol e− or β−) whose electric charge is negative one elementary charge. Electrons belong to first generation of the lepton particle family, and are generally thought to be elementary particles because they have no known components or substructure. The electron's mass is approximately 1836 times smaller than that of proton. Quantum mechanical properties of electron include an intrinsic angular momentum (spin) of a half-integer value, expressed in units of the reduced Planck constant, ħ. Being fermions, no two electrons can occupy same quantum state, in accordance with the Pauli exclusion principle.

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Identify a base that can be used to deprotonate propane (ch3ch2ch3) efficiently.

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Identify a base that can be used to deprotonate propane (CH3CH2CH3) efficiently. А "NH2 B None of the given bases are suitable.

What is deprotonate propane?

Deprotonation (or dehydronation) is the removal (transfer) of a proton (or hydron, or hydrogen cation), (H+), from a Brnsted-Lowry acid in an acid-base reaction. The species created is the conjugate base of that acid. Protonation is the complimentary procedure that occurs when a proton is added (transferred) to a Brnsted-Lowry base (or hydronation). The conjugate acid of that base is the species that results.

Amphiprotic refers to a species that has the ability to either take or contribute a proton. The H2O (water) molecule serves as an illustration. It has the ability to either gain a proton and produce the hydronium ion, H3O+, or lose a proton and form the hydroxide ion, OH.

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Indicate which alcohol in each pair will undergo an elimination reaction more rapidly when heated with h2so4.

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Indicate which alcohol in each pair will undergo an elimination reaction more rapidly when heated with H-SO CH2OH CH CH2OH он OH.

What is alcohol ?

Ketones, aldehydes, and carboxylic acids can be produced when alcohol is oxidized. These functional groups can be used to additional processes; for instance, carboxylic acids can be used for esterification, while ketones and aldehydes can be applied to subsequent Grignard reactions. When an organic compound is oxidized, more bonds from carbon to oxygen (or another electronegative element, like a halogen), and possibly fewer links to hydrogen, are formed.

Secondary alcohols can be efficiently oxidized up to the ketone stage without rupturing carbon-carbon bonds. Except in extremely restricted circumstances, no more oxidation is visible. Tertiary alcohols cannot be oxidized at all without rupturing carbon-carbon bonds, in contrast to primary alcohols, which can be converted to aldehydes or further converted to carboxylic acids.

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Find the radius of a cylindrical can (with a lid) to contain 2197 cm3 of water, using the minimum amount of metal. (use symbolic notation and fractions where needed.)

Answers

The radius of the cylindrical can is [tex]\sqrt{699.682/h}[/tex]

A cylinder's radius is equal to the distance from the cylinder's center to its edge, which are located at its top and bottom.

A three-dimensional object known as a cylinder is a hollow rod with rounded ends. This circular base's diameter can change, and the radius is equal to half of that value.

A cylinder's radius (r) is equal to [tex]\sqrt{V/\pi h}[/tex], where V denotes the cylinder's volume, h its height, and π (Pi) is a mathematical constant having a value of around 3.14.

Given:

Volume = 2197[tex]cm^3[/tex]

Formula:

Volume, V = π x radius, [tex]r^2[/tex] x height, h

Calculations:

[tex]r^2[/tex] = 2197 / 3.14 x h

[tex]r^2[/tex] = 699.682 / h

Radius, r = [tex]\sqrt{699.682/h}[/tex]

Result:

[tex]\sqrt{699.682/h}[/tex] is found to be the radius of the cylindrical can.

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describe/draw the difference between lone pairs of electrons and bonded electrons? give two examples of molecules that have both in their structure

Answers

The difference between bond pair and lone pair of electrons are :

1. Bond pair is a pair of electrons that are in a bond where as lone pair of electrons are not in a bond.

2. Bond pairs electrons are always in bonds where as lone pair of electrons are not in bonds but it can forms bond by donating the electrons.

3. In bond pair, electrons belongs to two atoms where as in lone pair, electrons belongs to the same atom.

4. Bond pair is created due to sharing of electrons where as lone pair is due to the absence of orbitals.

Two examples of molecules that have both lone pair and bond pair electrons are : ClF3,  h2O

                     

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According to the law of multiple proportions, if 12 g of carbon combine with 16 g of oxygen to form co, the number of grams of carbon that combine with 16 g of oxygen in the formation of co2 is ________.

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The amount of carbon combined with oxygen in order to form Carbon Dioxide(CO₂)  is 12 grams

The Law of Multiple proportions is one of the basic laws in chemistry along with the Law of Definite proportion. This law was proposed by John Dalton in 1803. The law states that if two elements react to form one or more compounds then the ratio of masses of both the elements is in the ratio of small whole numbers.

It is known that Carbon can form two different compounds while reacting with Oxygen that is: Carbon Monoxide, Carbon Dioxide. For Carbon Monoxide, 12g of Carbon needs to react with 16g of Oxygen. Whereas, In Carbon Dioxide, 12g of Carbon needs to react with 32g of Oxygen. So the mass of Carbon is equal in both cases is 12g.

                      C(12g)   +   O(16g)   ⇒  CO   (Carbon Monoxide)    

                      C(12g)   +  2O(32g) ⇒  CO₂  (Carbon Dioxide)

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consider the aldol condensation between dibenzyl ketone and benzil in strong base. a reaction was performed in which 0.28 g of dibenzyl ketone was reacted with 0.28 g of benzil to make 0.34 g of 2,3,4,5‑tetraphenylpentadienone. calculate the theoretical yield and percent yield for this reaction.

Answers

In organic chemistry, an aldol condensation is a condensation reaction in which an enol or enolate ion combines with a carbonyl chemical to produce a -hydroxyaldehyde or -hydroxyketone, which is then dehydrated to produce a conjugated enone.

Aldol condensations are significant in the synthesis of organic compounds because they offer a reliable method for forming carbon-carbon bonds. Aldol condensation, for instance, occurs during the Robinson annulation reaction sequence, and the Wieland-Miescher ketone product is a crucial building block in numerous chemical syntheses. Aldol condensations are frequently studied as a useful bond-forming reaction that exemplifies significant reaction mechanisms in university-level organic chemistry coursework. in the standard form.

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Aluminum is a lightweight metal (density 2.70 g/cm3) used in aircraft construction, high-voltage transmission lines, and foils. what is its density in kg/m3?

Answers

The density of high voltage transmission lines, and foils = 2700 kg/m³

Converting :

2.70 g/cm³ to kg/m³,

we use what's called "dimensional analysis" . But, really, it's just multiplying 2.70 g/ cm³ with converters.

Since we would like to convert g/cm³ to kg/m³, let's first recall that 1 kg = 1000 g, and 100 cm = 1 m .

Then, we just multiply:

[tex]\frac{2.70g}{cm^{3} }[/tex]× [tex]\frac{1 kg}{1000g}[/tex]×[tex]\frac{100cm}{m}[/tex]³

This works since 1kg/1000g is simply 1, same with 100cm/m. Also, note that the cm/m converter is cubed, since the first is cm³.

Then, (2.70) x (100)³ / (1000) = 2,700 kg/m³

Definition of dimensional analysis:

a way of analysis in which physical quantities are expressed in terms of their fundamental dimensions that is often used when there is not enough information to set up precise equations

What is dimensional analysis used for?

dimensional analysis, technique utilized in the physical sciences and engineering to reduce physical properties, like acceleration, viscosity, energy, et al. , to their fundamental dimensions of length (L), mass (M), and time (T).

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the flavor and odor of fruits comes primarily from the esters they contain. for example, a major component in the flavor of oranges is octyl acetate. draw the organic products formed when octyl acetate reacts with aqueous sodium hydroxide. omit any na ions, if applicable. the starting material is a carbonyl bonded to methyl and an oxygen bonded to an 8 carbon chain. this reacts with n a o h and water to form the products.

Answers

The organic product formed when octyl acatate reacts with sodium hydroxide is octan-1-ol and sodium acetate.

CH3COOCH2CH2CH2CH2CH2CH2CH2CH2(Octyl acetate) + NaOH

------>  HOCH2CH2CH2CH2CH2CH2CH2CH2(Octan-1-ol) +        

                                 CH3COONa

What is ester?

By mixing an oxoacid with a hydroxyl molecule, such as alcohol or phenol, esters are chemical compounds that are created. Esters are used often. The majority of fats and oils that are produced spontaneously are fatty acid esters of glycerol.

Ester examples are fats and oils. The melting point of their esters distinguishes them from one another. The ester is thought of as an oil if its melting point is lower than room temperature.

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consider the structures of the molecules below. are these molecules polar, nonpolar, or amphiphilic?

Answers

Compounds A and D are amphiphilic, compound B is nonpolar, and compounds C and E are polar.

What is amphiphilic?

A chemical substance with both hydrophilic (polar, attracted to water) and lipophilic (attracted to fat) qualities is called an amphiphile (also known as an amphipath; from the Greek, amphis: both and, philia: love, friendship). Amphiphilic or amphipathic describes such a chemical. Soaps, detergents, and lipoproteins are examples of common amphiphilic compounds. Cell membranes' primary structural element is a phospholipid amphiphile.

Chemistry and biochemistry research, particularly that on lipid polymorphism, is based on amphiphiles.

Bolaamphiphilic refers to organic molecules with hydrophilic groups at both ends of the molecule. Prolate micelles are what they create in the aggregate.

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write the symbol for every chemical element that has atomic number greater than 70 and atomic mass less than 179.5 u

Answers

The elements and there symbols are as follows: Oxygen ⇒ O fluorine ⇒ F Neon ⇒ Ne Sodium ⇒ Na.

What is Oxygen ?

When a hydrogen atom loses or receives an electron, a hydrogen ion is produced. A positively charged hydrogen ion (or proton) can combine with other particles easily, therefore it is only observed alone when it is in a gaseous condition or a place that is almost particle-free.

The bare hydrogen ion cannot live freely in solution due to its extremely high charge density, which is approximately 21010 times that of a sodium ion. Instead, it rapidly hydrates, or binds, with other molecules. The IUPAC recommends using the phrase "hydrogen ion" to refer to all hydrogen ions and its isotopes. Positively charged ions and negatively charged ions can be divided into two classes based on the ion's charge.

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Consider the structure of vitamin a1 c.o't''e~'ll (c2oh3oo). vitamin a1 should be:________

Answers

Consider the structure of vitamin a1 c.o't''e~'ll (c2oh3oo). vitamin a1 should be less soluble in water than in oil.

What is structure of vitamin?

Vitamins perform a variety of biological processes. The proliferation and differentiation of cells and tissues is regulated by vitamin A. Vitamin D performs a hormone-like function by controlling how quickly bones and other organs use minerals. The B complex vitamins serve as cofactors (coenzymes) for enzymes or as their precursors.

Therefore,

Consider the structure of vitamin a1 c.o't''e~'ll (c2oh3oo). vitamin a1 should be less soluble in water than in oil.

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Select the correct answer. what type of creation story describes how earth originated from water? a. ex nihilo b. emergence c. world parents d. earth diver

Answers

Earth diver story type of creation story describes how earth originated from water.

A creation myth or cosmogonic myth is a symbolic narrative of how the world began and how people first came to inhabit it. earth diver is a common character in various traditional creation myths who is sent by a supreme being into the primal waters to find substance (often sand or mud) with which to build habitable land. earth diver featured character are the on who dives into water and bring up a small amount of mud and sand and that's why according to this theory supreme being is responsible for sending animals inside the water to find little bit of mud and sand.

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Give the charge of the stable ion formed by each of the following. Include the sign (+ or -) and magnitude (numerical value) of the charge in every case. (Note: Give only the charge, not the formula of the ion.)
1. A group 2A metal
2. A group 3A metal

Answers

The charges on the ions are;

1. A group 2A metal - 2+

2. A group 3A metal - 3+

What is a charge?

A charge could be positive or negative. We know that a positive charge is formed when there is an excess of protons compared to electrons in a specie. On the other hands, a negative ion is one in which there are more electrons than protons.

Now we know that metals mostly form positive ions. The magnitude of the charge on the ions depends on the group in the periodic table to which the metal belongs.

The charges on the ions are;

1. A group 2A metal - 2+

2. A group 3A metal - 3+

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What molecular features are required for soap to properly dissolve grease and oil?

Answers

The soap molecule has two distinct ends, one that is hydrophilic (polar head) that ties with water, and the other that is hydrophobic (non-polar hydrocarbon tail) that secures with grease and oil.

Is the hydrophobic tail polar or non-polar?

Per lipid, a molecule includes two parts; a head and a tail. The head is polar and hydrophilic ( Water loving) and the rears are non-polar and hydrophobic( Water hating).

Are hydrocarbon rears hydrophobic?

The most productive membrane lipids are the phospholipids. These have an opposing head group and two hydrophobic hydrocarbon tails. The tails are fatty acids, and they can vary in size (they normally contain between 14 and 24 carbon atoms).

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If+28.0%+of+a+sample+of+silver-112+decays+in+1.52+hours,+what+is+the+half-life+of+this+isotope+(in+hours)?

Answers

28% decay means, 72% remains from  the isotope.

Now,

N=N n ( 21 ) t/t 1 2

72=100( 21 ) t 1/2 1.52hr

​( 100/72​ )=( 21​ ) t 1/2 1.52h

Taking long as both side & solving we get,

t 1/2 =3.21 hr

What is isotope?

Isotopes are two or more different atom types that share the same atomic number and place in the periodic table but have different quantities of neutrons in their nuclei, resulting in various nucleon numbers.

Therefore,

If+28.0%+of+a+sample+of+silver-112+decays+in+1.52+hours,+what+is+the+half-life+of+this+isotope+(in+hours)?

28% decay means, 72% remains

Now,

N=N n ( 21 ) t/t 1 2

72=100( 21 ) t 1/2 1.52hr

​( 100/72​ )=( 21​ ) t 1/2 1.52h

Taking long as both side & solving we get,

t 1/2 =3.21 hr

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A solution containing a mixture of lactic acid and lactate was found to have a ph of 4.10.4.10. calculate the ratio of the lactate concentration to the lactic acid concentration in this solution.

Answers

The ratio is 1:4

pH of a solution is a measure of the hydrogen/hydronium ions present  in it

                                             pH = -log [ H+]

pH of lactic acid given is 4.10

∴ concentration of H+ ions in the solution is :

[H+] = 0.79 x 10^-5 mol

the Ka of lactic acid is 1.37 x 10^-4

lactic acid dissociates to form lactate ion and oxonium ion.

[lactate] = [ H+] = 0.79 x 10^-5 mol

[tex]Ka = \frac{[lactate][H+]}{[lactic acid]}[/tex]

[tex]1.37 x 10^-4 = \frac{(0.79 x 10^-5)^{2} }{Lactic acid}[/tex]

[lactic acid] = 2.195 x 10^-6 mol

[tex]\frac{[Lactate]}{[Lactic Acid]}[/tex]  = 1 : 4 (approx)

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Set the total electron capacity to:

c). a 3p orbital.

Answers

Answer:

6e

Explanation:

Number of orbitals in each subshell:

S - 1

P - 3

D - 5

F - 7

The number of orbitals increases by 2

Subshell p has 3 orbitals, each orbital can hold up to 2 electrons. Therefore, 3p has an electron capacity of 6.

**Note: The number 3 in 3p only represents the shell number and does not influence the electron capacity.

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