A radical, also known as a free radical, is an atom, molecule, or ion that has at least one unpaired valence electron.With some exceptions, these unpaired electrons make radicals highly chemically reactive.Organic radicals are stabilized by any or all of these factors: presence of electronegativity, delocalization, and steric hindrance.Organic radicals are inherently electron deficient thus the greater the electronegativity of the atom on which the unpaired electron resides the less stable the radical.Organic radicals are inherently electron deficient thus the greater the electronegativity of the atom on which the unpaired electron resides the less stable the radical.The greater the steric hindrance the more difficult it is for reactions to take place, and the radical form is favored by default.
The least stable radical is methyl radicals
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if a chemical reaction produces hydroxide ion, oh- , what would be the range for the target ph of a buffer solution that would favor ph stabilization under these conditions? explain your answer
The range for the target ph of a buffer solution that would favours ph stabilization unders this condition in (4.75-4.85).
What is Henderson Hasselback equation ?
The Henderson-Hasselbalch equation, pH = pKa + log([A]/[HA]), can be used to determine the pH of a buffer. The terms "HA" and "A" in this equation stand for the equilibrium concentrations of the conjugate acid-base pair that were employed to make the buffer solution.
What is acetate?
A proton is taken out of the carboxy group of acetic acid to produce acetate, a monocarboxylic acid anion. It performs a function as a Saccharomyces cerevisiae metabolite as well as a human metabolite. The base is a conjugate of an acetic acid. ChEBI. Alternatives to ACETIC ACID
The Henderson Hasselback equation for a suitable acetic acid / acetate buffer-
Ph= Pka + log (salt)/(acid)
(salt) = (acetate)
(acid) = (acetic acid)
now, CH3 COOH dissociates as
CH3COOH ⇔ CH3COOH +H
Pka for CH3COOH = 4.75
If a chemical reaction produced hydroxide ions, then CH3COOH gets consumed and more acetate ions with produces. This leads to change in Ph of the solution as due (CH3C00H-) increases the ph absence increases.
The range for the target ph of a buffer solution that would favours ph stabilization unders this condition in (4.75-4.85)
The buffer capacity is the ability of a given buffer to resist any changes in ph when small amount of acid or base added to it.The buffer capacity of a mixed weak acid( here Acetic acid)-base (NaOH) buffer is much greater when the individual pKa values are in close proximity with each other.
Therefore, The range for the target ph of a buffer solution that would favours ph stabilization unders this condition in (4.75-4.85).
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Which of the following is the net ionic equation for the
reaction between aqueous sodium fluoride and hydrochloric
acid?
NaF(aq)+HCl(aq)→NaCl(aq)+HF(aq)
Na+(aq)+F−(aq)+H+
(aq)+Cl−(aq)→Na+(aq)+Cl−(aq)+HF(aq)
Na+(aq)+Cl−(aq)→NaCl(aq)
F−(aq)+H+(aq)→HF(aq)
This reaction's molecular equation is NaF(aq) + HCl(aq) ==> NaCl(aq) + HF (aq) Because HF is a weak acid, we won't ionize it and will instead write the following net ionic equation: H+(aq) plus F-(aq) equals HF (aq)
How is an ionic equation written?By dissolving all soluble ionic chemicals (those denoted with a (aq)) into their corresponding ions, the ionic equation can be written. To demonstrate that an ion is present in solution, it should be displayed with its charge and a (aq). To display the quantity of each ion present, use coefficients.
What does "net ionic equation" mean?A chemical equation known as a net ionic equation only includes the ions that are undergoing chemical change as the reaction progresses.
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if a 1.00 ml sample of the reaction mixture for the equilibrium constant experiment required 32.40 ml of 0.258 m naoh to titrate it, what is the monoprotic acetic acid concentration in the mixture? select one: 0.399 m 5.82 m 8.36 m 7.96 m 12.6 m
The mixture contains a concentration of monoprotic acetic acid of
(8.36 M). (0.0083592 mol/1000 mL = 8.36 M) = 0.258 M x 32.40 mL/1000 L.
What is an example of monoprotic acid?Monoprotic acids include benzoic acid (C6H5CO2H), acetic acid (CH3CO2H or HOAc), nitric acid (HNO3), and hydrochloric acid (HCl).
What strength of acid is monoprotic acid?H2SO4 and H3PO4 are examples of polyprotic acids that contain two or three hydrogen ions. Although it is alluring to believe that polyprotic acids are more powerful than monoprotic acids since they include several hydrogen ions, this is not the case.
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why is it important different types of chemical reactions (i.e acid-base, precipitation, and oxidation-reduction reactions)?
Precipitation, acid-base, and oxidation-reduction reactions are the three most common types of chemical reactions.
When dissolved substances react, one (or more) solid products are produced, which is known as Precipitation reaction. These kinds of reactions, which are also occasionally known as double displacement, double replacement, or metathesis reactions, frequently involve the exchange of ions between ionic compounds in aqueous solutions. These interactions, which occur frequently in nature, are what cause kidney stones in mammals and coral reefs to grow in ocean waters. They are extensively utilized in industry to produce a variety of common and specialized compounds. Many chemical analysis procedures, such as gravimetric methods for figuring out the composition of matter and spot tests used to identify metal ions, heavily rely on precipitation reactions as well. This is called Precipitation reaction.
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what mass of cacl2 is required to make 53 ml of a 0.020 m cacl2 solution? g cacl2 how many moles of chloride ions are present in the solution?
1.176 g of CaCl2 is required to make 53 mL of a 0.020 M CaCl2 solution, and there are 0.0106 moles of chloride ions present in the solution.
What is chloride ion?
The anion (negative charges ion) called Cl is the chloride ion. It is created when a compound like hydrogen chloride dissolves in water or even other polar solvents, or when the halogen element chlorine gains an electron. Sodium chloride and other chloride salts are frequently very water soluble. It is a crucial electrolyte that is present in all bodily fluids and is in charge of maintaining the proper acid-base balance, transmitting nerve signals, and controlling the flow of fluid into and out of cells. Less frequently, this same word chloride could also be included in chemical compounds' "common" names. These compounds contain one or even more chlorine atoms bound together covalently.
To calculate the mass of CaCl2 required to make 53 mL of a 0.020 M CaCl2 solution, we need to use the equation:
Mass (g) = Volume (mL) x Molarity (M) x Molar Mass (g/mol)
Mass (g) = 53 mL x 0.020 M x 110.98 g/mol
Mass (g) = 1.176 g CaCl2
To calculate the number of moles of chloride ions in the solution, we need to use the equation:
Moles = Mass (g) x (1mol/Molar Mass (g/mol))
Moles = 1.176 g x (1mol/110.98 g/mol)
Moles = 0.0106 moles Cl- ions
Therefore, 1.176 g of CaCl2 is required to make 53 mL of a 0.020 M CaCl2 solution, and there are 0.0106 moles of chloride ions present in the solution.
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which d electron count can exhibit both high-spin and low-spin states in an octahedral complex? d3 d8 d5
d electron count can exhibit both high-spin and low-spin states in an octahedral complex is d⁶
high spin complex is a complex ion with more unpaired electrons in the d orbitals of the central atom. These ions are known to be paramagnetic.
low spin complex ion is a complex known to have electron pairs at low energy levels.
High-spin and low-spin complexes are characterized based on their magnetic moments.
If the configuration of the complex has an unpaired electron, it is said to be a high-spin complex. If the unpaired electron is missing, the complex is called low-spin.
There are two types of ligands approaching the central metal ion: strong electric fields and weak electric fields. In both cases, the d-orbital splitting is different. In case of strong electric field Δ>P
For weak electric field Δ
where Δ is the crystal field splitting
When. P is the pairing energy
Only d⁶ type electron configurations can display both High Spin (HS) and Low Spin (LS).
d⁶(strong)= t₂⁶g gives LS
d⁶(weak)= t₂⁴g eg³ gives HS
Therefore, only the d 6 electron configuration can give rise to both LS and HS complexes in the presence of strong and weak ligand fields, respectively.
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in a titration of 35.00 ml of 0.737 m h2so4, ml of a 0.827 m koh solution is required for neutralization. question 25 options: 25.8 62.4 39.3 1.12 35.0
For neutralization in a titration of 35.00 mL of 0.737 M H₂SO₄, 62.4 mL of a 0.827 M KOH solution is needed.
H₂SO₄ + 2 KOH ---> K₂SO₄+ 2 H₂O
from the concentration equation
m1 n1 v1 = m2 n2 v2 ( since m = molarity , n = factor and v = volume)
M1 = 0.737 M
n1 = 2
V1 = 35 mL
M2 = 0.827 M
n2 = 1
V2 = ??
0.737 m x 2 x 35 mL = 0.827 m x 1 x v2
v2 =62.4
Hence, 62.4 mL of a 0.827 M KOH solution is needed for neutralization.
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what volume (ml) of 7.48 × 10-2 m phosphoric acid can be neutralized with 115 ml of 0.244 m sodium hydroxide?
Volume of the original phosphoric acid solution is 375.133 ml.
What is phosphoric acid?
Phosphoric acid, also known as orthophosphoric acid, monophosphoric acid, or phosphoric(V) acid, is an inorganic solid with the chemical formula H3PO4 that contains phosphorus. It is frequently found as an 85% aqueous solution, that is a syrupy liquid that is colourless, odourless, and non-volatile. It is a significant industrial chemical that is used in numerous fertilisers. This substance is an acid. The phosphate ion PO 3 4 is produced when all three H+ ions are removed. Dihydrogen phosphate ion H2PO 4 and hydrogen phosphate ion HPO24 are produced, respectively, by removing one or two protons. Organophosphates are esters created by phosphoric acid.
Here, we have given two solution with their conc. and volume .
So, formula used to calculate volume is:
M1V1 = M2V2
let, M1 = molarity of phosphoric acid
V1 = volume of phosphoric acid used
M2 = molarity of NaOH
V2 = volume of NaOH used
Now,
7.48 X 10-2 X V1 = 0.244 x 115
V1 = 0.244 x 115/ 7.48 X 10-2
V1 = 375.133 ml.
Hence, the volume of phosphoric acid is 375.133 ml.
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what term is used to describe the thick mixture of liquid and solid used to form the chromatography column?
Thick liquid layer that interacts with an inert carrier gas or mobile phase and is chemically linked to the inside of a capillary column
What is a chromatographic example?
Chromatography Methods
Some forms of liquid chromatography include high-performance liquid chromatography (HPLC), size exclusion chromatography, and supercritical fluid chromatography. Ion-exchange, resin, and paper chromatography are a few other varieties of chromatography.
What is the chromatography's fundamental tenet?
Chromatography is one more method for separating and analyzing chemical mixtures. The method is based on the interaction of polarity between the sample and two additional components, the solid (or stationary) phase, and the mobile phase, which can be either a liquid or a gas.
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when considering whether a toxic compound will easily move through soil and enter the groundwater--which of the following properties must be identified?
The property that must be identified to consider whether a toxic compound will easily move through soil and enter the groundwater is: D. Soil sorption coefficient (Kd).
What is the soil sorption coefficient?Soil sorption coefficient (Kd) is the measurement to predict the amount of chemical substance absorbed into the soil per amount of water. This measurement is also called Freundlich solid-water distribution coefficient. To calculate the Kd value, we could use the equation as follows:
Kd = concentration on the solids (mg/kg) / concentration in the pore water (mg/L)
“The question seems incomplete. The complete query is as follows:
When considering whether a toxic compound will easily move through soil and enter the groundwater—which of the following properties must be identified?
a. Water-air ratio (Kw)b. Bioconcentration factor (BCF)c. Octanol-water coefficient (Kow)d. Soil sorption coefficient (Kd)”Learn more about toxic chemicals here https://brainly.com/question/29563367
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Triglycerides are biosynthesized by phosphorylated glycerol and enzyme functionalized fatty acid esters. Triglycerides are produced by enzymatic ______________________.
The action of lipase is much more manifest on triglyceride, and it is also much faster the higher the molecular weight of the fatty acid present.
What enzyme breaks down triglycerides into monoglycerides?The salivary glands, stomach, and pancreas secrete lipase enzymes to break down triglycerides into monoglycerides, fatty acids, and glycerol.It acts on the surface and in an aqueous medium, the emulsifying agent represented by bile salts is essential for optimum effectiveness.They are widely distributed, with a presence in the animal and plant kingdoms and even in the simplest unicellular organisms.Every fatty acids has a long hydrocarbon chain (with even amounts of carbons, usually 16 or 18) and a carboxyl group.Glycerol is a 3-carbon molecule with 3 -OH groups. Fatty accids and glycerol can be connected by single or double bonds, depending on if the fatty acid is saturated or unsaturated.when a lipid forms, the -COOH functional groups of 3 fatty acids react with -OH groups of glycerol. This leaves 16, 18, or 20 carbons, making a triglyceride 16, 18, or 20 carbons long.Lipases are a set of water-soluble enzymes that hydrolyze substrates such as triglycerides and phospholipids, have a similar structure and are essential in the metabolism of lipoproteins and lipids.That is, the function of lipase enzymes is to hydrolyze triglycerides to generate diglycerides, monoglycerides, fatty acids and glycerol.To learn more about triglycerides refer to:
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what is the electron-pair geometry for s in so3? fill in the blank 1 there are fill in the blank 2 lone pair(s) around the central atom, so the molecular geometry (shape) of so3
The electron-pair geometry around the S atom in SO[tex]_{3}[/tex] is Trigonal Planar as there is Zero(0) lone pairs around the S atom.
What is electron-pair geometry?
The electron pair arrangement determines the spatial arrangement of bonds and lone pairs within a molecule. VSEPR theory is used to calculate the shape of molecules according to the arrangement of electron pairs around a central atom.
VSEPR theory states that electron pairs repel each other around the central atom and are placed as far apart as possible.
Molecular geometry is described as the 3D arrangement of atoms within a molecule, usually relative to a single central atom. Electron geometry, on the other hand, is the 3D arrangement of electron pairs around a central atom, whether bonded or unbonded.
A lone (non-bonded) pair refers to a pair of valence electrons that are not shared with another atom in a covalent bond, and a bond pair is a pair of electrons present in a bond.
Therefore, The electron-pair geometry around the S atom in SO[tex]_{3}[/tex] is Trigonal Planar.
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PLEASE HELP AS SOON AS POSSIBLE!!
Balance the equation and indicate whether it is a synthesis reaction, a dedo position reaction, a single-displacement reaction, a double- displacement reaction or a combustion reaction.
The question is in the photo below!!! Thanks!!
Answer:
2H2 + O2 → 2H2O
Double-displacement reaction
too ezyyy
Explanation:
when an alkene is subjected to treatment with hg(oac)2 in ch3oh followed by reaction with nabh4, what new class of compound is formed?
An alcohol is created when an alkene undergoes treatment with hg(oac)2 in ch3oh, followed by a reaction with nabh4.
What are the uses of alkene?
Introduction. One of the most adaptable chemical building blocks, alkenes are essential to numerous synthetic reactions. Alkene reactants are used in hydrofunctionalization processes such olefin hydroalkoxylation and hydroamination, which is a very active area of catalysis.
Alkene vs. alkane: what are they?
Alkanes are saturated hydrocarbons because they only have one bond between the carbon atoms. Alkenes have at least one double bond between carbon atoms. Alkynes have one or more triple bonds between carbon atoms. Unsaturated hydrocarbons are the name given to alkenes and alkynes.
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which one of the following elements has the largest atomic radius? question 18 options: a) al b) b c) o d) p e) f
The element which has the largest atomic radius is Aluminium. Therefore, the correct answer is option A- Al has the largest atomic radius.
We are aware that when atomic number increases, the number of shells also rises and, consequently, does atomic radius down a group in the periodic table. Along a period, as the atomic number rises, the nuclear charge rises as well, leading to an increase in the nuclear force of attraction. As a result, atomic radius shrinks over time.
Since the third period is below the second period, it will have a bigger atomic radius than the second period.
In the periodic table, aluminum and boron both belong to the same group. Atomic radius tends to rise from top to bottom within a group, according to this trend. The fact that aluminum is included in the periodic table below boron indicates that it has a bigger atomic radius than boron.
Hence, Aluminium has the largest atomic radius among the given options.
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a medal in a plastic cube whose index of refraction is 1.5 appears to be 20 mm below the upper surface of the cube. the depth of the medal is actually
A medal in a 1.5 index of refraction plastic cube seems to be 20 mm below the cube's upper surface. The medal is actually 30mm deep inside the acrylic cube
It looks that a medal in a plastic cube is 20 mm below its upper surface.
Equation
Appearance depth is 20mm
Let's say the real depth of the medal in the plastic cube is h.
We know that
real depth/apparent depth =the plastic's refractive index in relation to the air.
H/20 mm
= 1.5 H
= 20 mm x 1.5 mm
= 30.0 mm
Thus, the medal's real depth inside the plastic cube is 30 mm.
Refraction: What Is It?
Refraction is the bending of a wave as it travels through different media. The two materials' different densities are what lead to the bending.
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when gas molecules collide (for example molecules of o2 or n2 in the air), why don't they stick together?
when gas molecules collide (for example molecules of o2 or n2 in the air), they don't stick together due to their high thermal energy.
Why are collisions between gas molecules said to be elastic?Because gas molecules are so small, the kinetic theory of gases assumes that every collision between them will be fully elastic. The energy and momenta of the molecules are conserved during collisions if the molecules are small. As a result, regardless of accidents, the temperature does not change.
What is an elastic collision between gas particles according to the kinetic theory?Any collision in which there is no overall kinetic energy loss is said to be elastic. During an elastic collision, kinetic energy may be transmitted from one particle to another, but the combined energy of the colliding particles remains unchanged. Between gas particles, there are no forces of attraction or repulsion.
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What belief has the scientist in The Daily Times article developed as a result of experimentation?
1. He believes that if deafness is caused by a defective gene, gene therapy has the potential to cure many forms of hearing loss.
2. He believes that deafness is not hereditary, therefore there is no gene treatment that applies.
3. He believes that the scientists that conducted the study do not have the credentials to validate the results.
4. He believes that the tests are not valid and the results are not true.
The belief that scientists in The Daily Times article developed as a result of experimentation is he believes that if deafness is caused by a defective gene, gene therapy has the potential to cure many forms of hearing loss. The correct option is 1.
What is gene therapy?Gene therapy is a process in which the defective gene is repaired by scientific methods. Gene therapy is a form of genetic engineering. It is an attempt to cure diseases. It involves replacing a mutated gene.
Therefore, the correct option is 1. He believes that if deafness is caused by a defective gene, gene therapy has the potential to cure many forms of hearing loss.
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How many individual decay steps are in the decay chain of uranium-238 before the stable end product of lead-206 is produced?
When stable lead-206 is produced by the radioactive decay of uranium-238, it passes through a 14-step radioactive decay series. There are eight and six decays in this sequence.
What is radioactive decay ?Ionizing radiation is released as a result of radioactive decay. Ionizing radiation offers a health concern by destroying tissue and the DNA in genes because it can damage the atoms in living things.
The decay chain is the collection of decay products produced to achieve this equilibrium. For instance, after producing intermediates like Uranium-234, Thorium-230, Radium-226, and Radon-222, the decay chain starting with Uranium-238 ends in Lead-206. Known as the "decay series" as well.
The daughter nucleus, thorium 234, is created by the alpha emission of a uranium 238 nuclei. This thorium then changes into protactinium 234 and experiences beta-negative decay to yield uranium 234 as a byproduct.
Thus, When stable lead-206 is produced by the radioactive decay of uranium-238, it passes through a 14-step radioactive decay series.
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a chemical reaction happens in three steps. step 1:step 2:step 3:a→b cc→d ed a→f(fast)(slow)(fast)step 1:a→b c(fast)step 2:c→d e(slow)step 3:d a→f(fast) what is the rate-determining step
Answer:
Step 2 only
Explanation:
equal volumes of 0.500 m hco2h and 0.100 m na(o2cch3) are mixed. what is the ph of the resulting solution? the pka of hco2h is 3.75 and the pka of ch3co2h is 4.75.
The addition of 0.1 M HCl lowers the pH of the solution. The pH starts to decline gradually at first.
Sodium acetate is 0.1M and acetic acid is 0.2M. So, 4.7 and log (0.1/0.2) added together give the pH value. i.e., 4.39. A solution with 0.2M acetic acid and 0.1M sodium acetate, therefore, has a pH of 4.39. Because H+ aq is smaller in size and more mobile than Na+ aq, it will have a greater m in 0.1 M HCl.
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describe what happens during the citric acid cycle and identify where the carbon atoms of acetyl coa end up and where the energy that was stored in acetyl coa ends up.
Through a series of enzymatic reactions, the two carbons that were formerly the acetyl group of acetyl CoA are released as carbon dioxide, one of the primary byproducts of cellular respiration, in the citric acid cycle.
All six carbon atoms from the original glucose molecule are eventually incorporated into carbon dioxide because the two acetyl carbon atoms will eventually be released on later turns of the cycle.
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how is the number of molecular orbitals approximated by a linear combination of atomic orbitals related to the number of atomic orbitals used in proximation
In quantum chemistry, Linear Combination of Atomic Orbitals or LCAO is a superposition or mixing of atomic orbitals and a technique used for calculating molecular orbitals.
By Linear Combination of Atomic Orbitals , we can predict which atomic orbitals can mix to form a molecular orbital on the basis of orbital symmetry. We can also predict the number of molecular orbitals that can be produced from the interaction between two atomic orbitals.
By LCAO, the position of electrons can be determined. If can electron is found in an atomic orbital say "A" and also in atomic orbital say B". Then the superposition of the two atomic orbitals A and B will give the overall wave function. It is represented by ψ.
ψ± = N(A ± B)
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the specific heat of solid water and liquid watrer are 2.03 jgc and 4.18 g c respectively. calculate the heat of fusion of water in j/g
The heat of fusion of water is 335.091 j/g when considering the concept of calorimetry, sensible heat, and latent heat.
What is a simple definition of calorimetry?
Calorimetry is a branch of science that measures a body's status with regard to temperature in order to look at changes in its physical and chemical composition. The changes could be chemical, like burning, acid-base neutralization, or physical, such melting or evaporation.
What is the calorimetry's fundamental tenet?
Calorimeter Theory
While the body at a lower temperature absorbs heat, the body at a higher temperature releases heat. The law of conservation of energy is demonstrated by the principle of calorimetry, which states that the total amount of heat lost by a heated body is equal to
Briefing:
The total heat required is calculated as:
Total heat required= Q1 + Q2 + Q3
Total heat required= 2.50 kJ + 49.3 g× ΔHfus + 9.21 kJ
Heating a 49.3 g sample of g ice from -25.0 °C to water at 44.7 °C requires 28.23 kJ of heat. This is, the total heat required is 28.23 kJ. Then:
28.23 kJ= 2.50 kJ + 49.3 g× ΔHfus + 9.21 kJ
Solving:
28.23 kJ= 11.71 kJ + 49.3 g× ΔHfus
28.23 kJ- 11.71 kJ = 49.3 g× ΔHfus
16.52 kJ = 49.3 g× ΔHfus
16.52 kJ / 49.3 g= ΔHfus
0.335091= 335.091 =ΔHfus
In summary, the heat of fusion of water is 335.091 .
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What is the molecular formula for a compound that is 24.82% nitrogen, 49.87% oxygen, and
25.31% fluorine and has a molar mass of 450.08g?
Molecular formula is n times the empirical formula, where n is integers 1,2,... The empirical formula is F[tex]_3[/tex]N[tex]_4[/tex]O[tex]_7[/tex]. Therefore, the molecular formula of the given compound is F[tex]_6[/tex]N[tex]_8[/tex]O[tex]_{14}[/tex].
What is molecular formula?
Molecular formula is a chemical formula for a compound existing as discrete molecules that gives the total number of atoms of each element in a molecule.
Number of gram atoms in compound and Divide by smallest Number of gram atoms in compound
F=(25.31%)÷18=1.40÷1.40=3
N=(24.82%)÷14=1.77÷1.40=4
O=(49.87%)÷16=3.11÷1.40=7
The atomic ratio is 1:1.21:2.2
Whole number is 1:1:2
Empirical formula corresponding to this whole number is F[tex]_3[/tex]N[tex]_4[/tex]O[tex]_7[/tex].
molecular formula mass= n ×empirical formula mass
450.08g= n ×225.04
n= 2
molecular formula= F[tex]_6[/tex]N[tex]_8[/tex]O[tex]_{14}[/tex]
Therefore, the molecular formula of the given compound is F[tex]_6[/tex]N[tex]_8[/tex]O[tex]_{14}[/tex].
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a mixture of helium and neon gases is collected over water at 28oc and 456 mmhg. if the partial pressure of he is 240 mmhg, what is the partial pressure of neon? (vapor pressure of water at 28oc is 28.3 mmhg)
Answer:
i need points
Explanation:
Fermentation is a chemical reaction that takes place in the choose. And occurs when oxygen is choose. . Byproducts of fermentation may include choose. Or choose. . Fermentation yields choose. Atp than the electron transport chain.
Fermentation is a chemical reaction that takes Byproducts of fermentation may include .
fermentation, chemical system with the aid of which molecules along with glucose are broken down anaerobically. more widely, fermentation is the foaming that happens at some point of the manufacture of wine and beer, a manner at least 10,000 years antique.
Fermentation is a metabolic technique wherein an organism converts a carbohydrate, which includes starch or a sugar, into an alcohol or an acid. as an example, yeast performs fermentation to acquire energy by means of changing sugar into alcohol. micro organism carry out fermentation, changing carbohydrates into lactic acid.
Each types of fermentation require primary components, a sugar supply and a bacterial culture; alcohol fermentations use types of yeast, at the same time as lactic acid fermentation generally relies on lactic acid bacteria.
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the fusion of hydrogen into helium in the core of the sun can be summarised as : 4 hydrogen nuclei are converted into one helim nucleus some gamma rays a netruino
The statement give in question is false as 4 hydrogen nuclei are converted into one helim nucleus some gamma rays, only two atom come together for fusion reaction.
The core is the power generator in the Sun. The core radius is close to one-fourth of that of the star. Inside the core, pressures and temperatures are high enough to make fusion. In a nuclear fusion reaction, the nuclei of two atoms come together to make a new atom. In the core of a sun, two hydrogen atoms combine to form a helium atom. The proton-proton cycle is an essential reaction that occurs within the core of the Sun.
H + H → He + ENERGY
In the proton-proton chain reaction, hydrogen nuclei are converted to helium nuclei through many intermediates. This reaction generates high-energy photons (gamma rays). This energy can be calculated by the famous Einstein equation, E = mc2.
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PLEASE HELP!!!
Consider the decomposition of hydrogen peroxide. Complete the chemical reaction. What is the missing product? How many molecules are needed to balance the equation?
Responses
A 3 molecules of water.3 molecules of water.
B 1 water molecule.1 water molecule.
C 2 molecules of H202 molecules of H 2 0
D 2 molecules of H2
Answer:
C
Explanation:
Hydrogen peroxide is H2O2 which decomposes to water and oxygen
so
2H2O2 => 2H2O + O2
a 15.0 ml solution of ba(oh)₂ is neutralized with 30.3 ml of 0.200 m hcl. what is the concentration of the original ba(oh)₂ solution?
A 15.0 ml solution of Ba(OH)₂ is neutralized with 30.3 ml of 0.200 m HCl. the neutralized of the original Ba(OH)₂ solution is 0.2M
The reaction is given as follows :
Ba(OH)₂ + 2HCl ----> BaCl₂ + 2HCl
concentration of HCl , molarity = 0.200 M
volume = 30.3 mL = 0.030 L
moles of HCl = molarity × volume
= 0.200 × 0.030
= 0.006 mol
moles of Ba(OH)₂ = 1/2 moles of HCl
moles of Ba(OH)₂ = 1 /2 × 0.006 = 0.003 mol
molarity of Ba(OH)₂ = moles / volume
= 0.003 / 0.015
= 0.2 M
The concentration of Ba(OH)₂ = 0.2 M
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