Answer:
I say the second one, im not rlly sure tho
Explanation:
Which portion of a molecule of F2O has partial positive charge?
Question 3 options:
A)
The F atoms
B)
The central O atom
C)
The partial charge on each atom is zero
D)
The partial charge on each atom is negative
The partial charges on each fluorine atom are negative. Option B) The central O atom is the correct answer. Option B
The partial charges in a molecule are determined by the electronegativity values of the atoms involved. Electronegativity is the ability of an atom to attract electrons towards itself in a chemical bond. In the case of \(F_2O\), fluorine (F) is more electronegative than oxygen.
Fluorine is the most electronegative element on the periodic table, meaning it has a high ability to attract electrons. Oxygen is also relatively electronegative but less so than fluorine. When fluorine atoms bond with oxygen, the shared electrons will be pulled more towards the fluorine atoms, creating a polar covalent bond.
In \(F_2O\), each fluorine atom will pull the shared electrons towards itself, resulting in a higher electron density around the fluorine atoms. This creates a region of partial negative charge around the fluorine atoms.
Conversely, the oxygen atom will have a region of lower electron density and, therefore, a partial positive charge. This is because the shared electrons spend more time around the fluorine atoms due to their higher electronegativity.
Option B
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A beryllium (Be) atom contains 4 protons, 5 neutrons, and 4 electrons. What would be formed if one proton were removed from this atom?
A. A neutral atom of lithium
B. A lithium ion
C. A beryllium ion
D. An isotope of beryllium
A student obtained 1.57 g of product in a chemical reaction in the lab although she expected to produce 2.04 g of product. What was the percent yield of the experiment?
A. 23.1%
B. 43.4%
C. 56.5%
D. 77.0%
Answer:
D. 77.0%
Explanation:
% yield = actual yield/theoretical yield x 100%
% yield = 1.57 g / 2.04 g x 100%
% yield = 76.96 (round up)
A 54.2 g sample of polystyrene, which has a specific heat capacity of 1.880 J-gc, is put into a calorimeter (see sketch at
right) that contains 100.0 g of water. The temperature of the water starts off at 21.0 °C. When the temperature of the water stops
changing it's 34.3 °C. The pressure remains constant at 1 atm.
Calculate the initial temperature of the polystyrene sample. Be sure your answer is rounded to the correct number of significant
digits.
thermometer.
insulated
container
water
sample.
a calorimeter
Tthe initial temperature of the polystyrene sample is 39.4°C.
Given: Mass of polystyrene sample = 54.2 gSpecific heat of polystyrene = 1.880 J-g°CWater mass = 100.0 g Initial water temperature = 21.0°CWater final temperature = 34.3°CPressure remains constant at 1 atmFormula used:Heat gained by water = heat lost by polystyreneHence,Heat lost by polystyrene = Heat gained by water=> mcΔT = mcΔTwhere,m = mass of polystyrene or waterc = specific heat capacityΔT = change in temperatureThe temperature change is ΔT = 34.3°C - 21.0°C = 13.3°CNow we can use this temperature change to calculate the initial temperature of the polystyrene.Taking the water's specific heat capacity, c = 4.184 J/g°CHeat gained by water = (100.0 g)(4.184 J/g°C)(13.3°C) = 5574 JHeat lost by polystyrene = 5574 JTaking the polystyrene's specific heat capacity, c = 1.880 J/g° ) = 13.3°C Now let's calculate the mass of polystyrene using the specific heat capacity formula.5574 J = (54.2 g)(1.880 J/g°C)(13.3°C - Ti)Ti = 39.4°C
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Which is an unavoidable error in this experiment?
Responses
A The tube in the machine is on it's seventh run and may contain the remains of old experiments.The tube in the machine is on it's seventh run and may contain the remains of old experiments.
B Injection of the sample into the machine requires a certain minimum time.Injection of the sample into the machine requires a certain minimum time.
C Darryl washed the sample with the wrong solvent.Darryl washed the sample with the wrong solvent.
D Darryl set the temperature on the machine to 350°C instead of 400°CDarryl set the temperature on the machine to 350°C instead of 400°C
What is the style of Vincent Van Gogh's Starry Night (1889)?
Post Impressionism
Symbolism
Pointilism
Surrealism
The style of Vincent Van Gogh's Starry Night (1889) is Post-Impressionism.
Understanding post-impressionalismPost-Impressionism is an art movement that developed in France in the late 19th century as a reaction against the limitations of Impressionism. It is characterized by a focus on subjective emotions and personal interpretations of the world, as well as an interest in the formal qualities of art, such as color, line, and form.
Van Gogh's work is known for its expressive use of color and texture, and Starry Night is a prime example of his Post-Impressionist style, with its swirling brushstrokes, intense colors, and dreamlike quality.
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Nonmetallic materials that are strong, brittle, resistant to heat and attack by chemicals, and are typically made from clay are known as:________
An exothermic reaction releases 325 kJ. How much energy is this in calories
An exothermic reaction releases 325 kJ. 1359.8 kJ energy is this in calories.
An exothermic reaction is a chemical reaction that releases heat energy into the surroundings. During an exothermic reaction, the products of the reaction have less potential energy than the reactants, and the excess energy is released in the form of heat.
One calorie is defined as the amount of energy required to raise the temperature of one gram of water by one degree Celsius.
One joule is defined as the amount of energy required to apply a force of one newton over a distance of one meter.
1 cal = 4.184 J
1 cal = 0.004184 kJ
325000 cal = x kJ
0.004184/ 1 = x / 325000
x = 1359.8 kJ
Thus, 1359.8 kJ energy is this in calories.
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Carbon doesn't have a charge because it doesn't generally share or donate electrons.
*
True
O
False
Answer:
Correct me if i'm wrong but i'm pretty sure its FALSEExplanation:
Its because In a single bond, two carbon atoms share one pair of electrons. In a double bond, they share two pairs of electrons, and in a triple bond they share three pairs of electrons.Can Someone please help?!?!!
Answer:
because the ice makes water bc ice turns into water hope it helps
Explanation:
Calculate the molarity of 34.1 of MgS in 743 mL of solution.
Answer: 0.814 M MgS
Explanation:
I am assuming that 34.1 is in Grams if not this answer is propably not correct.
34.1 g MgS / 56.369 MgS(molar mass from Periodic table) = 0.605 moles
Molarity - moles / Liter
M= 0.605 / 0.743 Liter =0.814 M
Tính axit giảm dần của các chất C6H5 OH (1) ,p – CH3 OC6H4 OH (2), p-NO2C6H4OH (3) pCH3COC6H4OH (4), p-CH3C6H4 OH (5) là:
Answer:
di ko po Alam sorry
Explanation:
sorry sorry sorry sorry sorry
atomic size of an atom is decided by_________
Answer:
The edge of its orbital
Explanation:
The size of an atom is defined by the edge of its orbital. However, orbital boundaries are fuzzy and in fact are variable under different conditions
In paragraphs 11-16 of "Miss Brill," Mansfield includes the scene in which a young couple joins Miss Brill on her special bench. What is the significance of this scene? Select each correct answer. Miss Brill overhears their arguing and decides it is her role to interrupt and help them resolve their dispute. The story reaches its climax when Miss Brill realizes how others see her, and her sense of importance is destroyed. Miss Brill envisions the couple as the romantic heroes of the play she imagines all of them to be a part of The young couple takes the place of the old couple, just as younger generations replace older.
In paragraphs 11-16 of "Miss Brill," Mansfield includes the scene in which a young couple joins Miss Brill on her special bench and the significance of this scene includes the following:
The story reaches its climax when Miss Brill realizes how others see her, and her sense of importance is destroyed. Miss Brill envisions the couple as the romantic heroes of the play she imagines all of them to be a part of. What is the significance of this scene?In this scene, we can see Miss Brill having a good time in the park but coming to realize soon enough that the couple who she admired and planned to listen to did not think kindly of her. This made the woman sad even as she walked down to her home.
Her sense of importance was dealt a blow in this case. In this story also, Miss Brill applied her ability to envision a joyful scene.
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What concentration of acid is needed to completely neutralize 25.0 mL of 1.5 M NaOH, if it takes exactly 12.5 mL to
reach the endpoint of the titration? (show your work!)
The concentration of acid which is needed to completely neutralize 25.0 mL of 1.5 M NaOH, if it takes exactly 12.5 mL to reach the endpoint of the titration would be 3M.
We know that at the equivalence point in a neutralization, the moles of acid are equal to the moles of base.
\( \qquad\longrightarrow \sf Moles_{(Acid)} = Moles_{(Base)}\\\)
\(\footnotesize{ \longrightarrow \sf Volume_{(Acid)}\times Concentration_{(Acid)} = Volume_{(Base)}\times Concentration_{(Base)}} \\\)
According to the specific parameters-
\( \sf Volume_{(Acid)} = 12.5 mL\\\)\(\sf Volume_{(Base)}= 25 mL\\\)\( \sf Concentration_{(Base)} = 1.5 M \\\)Now that we have all the required values,so we can plug them into the formula and solve for concentration of acid -
\( \footnotesize{\longrightarrow \sf Volume_{(Acid)}\times Concentration_{(Acid)} = Volume_{(NaOH)}\times Concentration_{(NaOH)} }\\\)
\( \longrightarrow \sf 12.5 \: mL \times Concentration_{(Acid)} = 25 \:mL \times 1.5\: M \\\)
\( \longrightarrow \sf Concentration_{(Acid)} = \dfrac{25 \:mL \times 1.5\: M }{12.5\:mL}\\\)
\( \longrightarrow \sf Concentration_{(Acid)} = \dfrac{37.5\:\cancel{mL} \: M }{12.5\:\cancel{mL}}\\\)
\( \longrightarrow \sf Concentration_{(Acid)} = \dfrac{37.5\:M}{12.5}\\\)
\( \longrightarrow \sf Concentration_{(Acid)} = \dfrac{\cancel{37.5}\:M}{\cancel{12.5}}\\\)
\( \qquad\longrightarrow \sf \underline{Concentration_{(Acid)} = \boxed{\sf{3\:M }}}\\\)
Henceforth, the concentration would be 3M.Copper is a metal that can behave like a magnet because
A. It has many magnetic domains oriented randomly
B. It has a very large magnetic domain pointing in a given direction
C. It is a conductor and can support electric current.
D. It has two large magnetic domains that always cancel each other out.
Copper is a metal that can behave like a magnet because It is a conductor and can support electric current.
What is a definition of metal?
Strong electrical and thermal conductivity, malleability, ductility, and high light reflection are all characteristics of metals, which are one type of materials.
Copper is not magnetic in and of itself. However, when a magnet comes close to copper (and some other metals), the magnetic field causes the copper's surface electrons to reorganize and start revolving. They generate resistance by rotating in a circular motion perpendicular to the magnetic field.
Copper has the highest conductivity among non-precious metals, which means it can carry more electrical current than other non-precious metals.
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What is the Internal Energy of a Human Body? Define internal energy as Delta E.
SHOW ALL WORK!
20 points
The internal energy of a human body is the net energy contained in the body due motion of its particle or molecules.
In a human body the internal energy is stored . It increases when the temperature of the body rises, or when the body observes some changes. Internal energy we can say that is the sum of kinetic and potential energy of all particles in the body.
Internal energy is a state function of a system and is an extensive quantity. Every substance possesses a fixed quantity of energy which depends upon its chemical nature and also on its state of existence. Every substance have a definite value of Internal energy.
The change in the Internal energy of a reaction may be considered as the difference between the internal energies of the two states.
ΔU = \(E_{B}\) - \(E_{A}\) where \(E_{B}\) and \(E_{A}\) are the initial energies of states A and B. Or we can also write the equation as:
ΔU = ΔE
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help me solve it pls
The term molefraction is an important method which is used to calculate the concentration of a solution. It is mainly employed to calculate the concentration of a binary solution. Here the molefraction is 1 / 5. The correct option are D, D and B.
Molefraction of any component of a solution is defined as the ratio of the number of moles of that component to the total number of moles of the solution. The sum of molefraction of solute and solvent is one.
Here the molefraction of nitrogen = Moles of nitrogen / Total number of moles
1. 'x' of 'N' = 2 / 5 + 3 + 2 = 0.2 or 1 / 5
2. Molefraction of Argon = 0.60 / 0.40 + 0.04 + 0.60 = 0.57
Partial pressure = Molefraction × Total pressure
0.57 × 6.3 = 3.59 atm
3. 20 cm³ mixture contains:
20 × 1 mole / 22400 m³ = 8.9286 × 10⁻⁴
1 mole occupies 22400 cm³
8.9286 × 10⁻⁴ × 22400 cm³ / 1 mole = 20 cm³
Thus the correct option are D, D and B.
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An empty beaker is weighed and found to weigh 23.1 g. Some potassium chloride is then added to the beaker and weighed again. The second weight is 24.862 g. What is the mass of the potassium chloride
Answer:Mass of Potassium chloride =1.762g
Explanation:
Mass of empty beaker = 23.100 g
Mass of beaker with Potassium chloride = 24.862g
Mass of Potassium chloride = Final weight - initial weight = Mass of beaker with Potassium chloride - Mass of empty beaker = 24.862-23.100 = 1.762g
Inspiration for new types of synthetic materials often comes from observations of…
Answer and Explanation:
Inspiration for new types of synthetic materials come from natural materials where a derivative is needed to be used in situations where properties of a natural material are adjusted. Inspirations for new types of synthetic materials can also come from current synthetic materials that create toxins, and new ones are created with the same properties but with less harmful downsides.
What's galactose's empirical formula?
Answer:
C6H12O6
Explanation:
C6H12O6
2 parallelograms are shown. Line W Y is the line of reflection. Line segment R R prime has a midpoint at point Z. Line segment S S prime has a midpoint at point X.
Consider the reflection of parallelogram PQRS across the line of reflection, Line W Y.
If RR' = 14, then RZ =
.
If SX = 5, then
= 5.
Answer:
it is 7 and xs hope this helps :) !
Explanation:
Answer:
Question 1 Answer: Option 1: 7Question 2 Answer: Option 2: XS'Explanation:
For the substituted cyclohexane compound shown, identify the atoms that will interact with the methyl group in a
1,3-diaxial fashion after rotation to the other chair conformation.
BE
BrE
HI
H
A CI
HF
HG
Н.С.
HOJ
D
HK
CIH
These atoms will interact with methyl in a 1,3-diaxial interaction.
DA
B
ID
ОН
EK
incorrect
Answer: choice: I & Choice E
Explanation:
Answer:
C and G
Explanation:
Where would you be likely find a generator?
Answer:
In an electrical room in A factory.
Explanation:
Please help with this....thank you
Answer:
large cracks suddenly form
Explanation:
the tectonic plates begin to move causing cracks. I think
identify whether the following elementary reactions are unimolecular, bimolecular, or termolecular, and determine if the correct rate law for each elementary reaction.
The nature and rate expression for the given elementary reactions are- (a) termolecular reaction with rate = k[CH3][O2][N2] (b) unimolecular reaction with rate = k[CH3CHO] (c) bimolecular with rate = k[O][H2S].
Unimolecular reactions involve the decomposition of a single molecule. The rate of unimolecular reactions is proportional to the concentration of the reactant species raised to the power of 1.
Bimolecular reactions involve the collision of two reactant species. The rate of bimolecular reactions is proportional to the product of the concentrations of the two reactant species.
Termolecular reactions involve the collision of three reactant species. These reactions are relatively rare as the probability of three reactant species colliding simultaneously is very low. The rate of termolecular reactions is proportional to the product of the concentrations of the three reactant species.
The rate expression for an elementary reaction is the mathematical expression that relates the rate of the reaction to the concentrations of the reactant species. The rate expression is determined experimentally and provides valuable information about the reaction mechanism.
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What is a molecular equation and how do I do that
In this question, we have a reaction between two compounds, Sodium sulfide and Hydrochloric acid. This reaction will have the following chemical formulas:
Na2S (aq) + 2 HCl (aq) --> H2S (g) + 2 NaCl (aq)
This is the complete and balanced reaction between Sodium sulfide and Hydrochloric acid, the correct answer will be the 1st option
H2O2(aq)+ClO4−(aq)→ClO2−(aq)+O2(g)
Express your answer as a net ionic equation including phases in basic solution
Answer:
H
2
O
2
(aq)+ClO
4
−
(aq)⟶O
2
(g)+ClO
2
−
(aq)
All atoms except H and O are balanced.
The oxidation number of Cl changes from 7 to 3. The change in the oxidation number is 4.
The oxidation number of O changes from -1 to 0. The change in oxidation number per O atom is 1.
Total change in the oxidation number for 2 oxygen atoms is 2.
To balance the increase in oxidation number with decrease in the oxidation number, multiply H
2
O
2
and O
2
with coefficients 2.
2H
2
O
2
(aq)+ClO
4
−
(aq)⟶2O
2
(g)+ClO
2
−
(aq)
To balance O atoms, add 2 water molecules on RHS.
2H
2
O
2
(aq)+ClO
4
−
(aq)⟶2O
2
(g)+ClO
2
−
(aq)+2H
2
O(l)
The oxygen atoms are already balanced.
This is the balanced chemical equation
b. How many kJ of heat are needed to completely vaporize 50.0g of water at 100°C? [Ans:113. kJ]
The amount, in kJ, of heat needed to completely vaporize 50.0g of water at 100°C is 118.8 kJ.
Heat of vaporization of waterThe heat needed to completely vaporize 50.0g of water at 100°C can be calculated using the following formula:
q = m x Hv
where:
q is the heat needed in joules (J)m is the mass of water in grams (g)Hv is the heat of vaporization of water which is approximately 40.65 kJ/mol at standard temperature and pressure.First, we need to convert 50.0g to moles by dividing by the molar mass of water which is approximately 18.015 g/mol3:
moles of water = 50.0 g / 18.015 g/mol moles of water = 2.776 mol
Thus:
q = (2.776 mol) x (40.65 kJ/mol) q = 112.8 kJ
In other words, 112.8 kJ of heat is needed to completely vaporize 50.0g of water at 100°C.
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please help me ASAAAAAAAAAAAP
Identify the Arrhenius acid and the Arrhenius base in this reaction.
H2SO4 + 2NaOH → Na2SO4 + 2H2O
Question 35 options:
Na2SO4(acid), 2H2O(base)
H2SO4(acid), NaOH(base)
NaOH(acid), Na2SO4(base)
H2SO4(acid), Na2SO4(base)
Answer:
H2SO4(acid), NaOH(base)
Explanation: