Scientists use question and observations to form a hypothesis and use it for testing the hypothesis.
What is hypothesis?Hypothesis can be defined as an assumption which is made for the sake of argument . It is an interpretation of a practical condition for which action needs to be taken.It is defined as a tentative assumption which is made to test logical consequences.It is an antecedent clause of a statement which is conditional.
It is constructed before research. There are six types of hypothesis 1)simple hypothesis 2) complex hypothesis 3) directional hypothesis 4)non-directional hypothesis 5) null hypothesis 6)casual hypothesis
The hypothesis should be clear and precise, it must be specific and way of explanation of hypothesis should be simple.
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what volume, in ml, of a 0.530 m solution of nabh4 is required to produce 0.533 g of b2h6? h2so4 is present in excess.
Given: 0.530M of NaBH4, Excess of H2SO4 to produce 0.533g of B2H6.
First, find the molar mass of B2H6 and examine the molar ratio of NaBH4 to B2H6.
The molar mass of B2H6 is 67.8 g/mol and the molar ratio of NaBH4 to B2H6 is 1:2. We can calculate the volume of NaBH4 needed to produce 0.533 g of B2H6 as follows:
Volume of NaBH4 required (ml) =
(0.533 g of B2H6 x 1 mol B2H6/67.8 g B2H6) x (1 mol NaBH4/2 mol B2H6) x (0.530 mol NaBH4/1 L NaBH4) x (1000 ml/1 L)
= 6.04 ml of NaBH4
Therefore, 6.04 ml of a 0.530 m solution of NaBH4 is required to produce 0.533 g of B2H6 in the presence of excess H2SO4.
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Formulas empíricas y molecular relacionado con la masa atomica
La fórmula empírica es la forma más simple de representar una molécula, y muestra la relación entre los átomos en la molécula. Por ejemplo, la fórmula empírica de la glucosa es CH2O, lo que significa que hay un átomo de carbono, dos átomos de hidrógeno y un átomo de oxígeno en la molécula.
La fórmula molecular, por otro lado, muestra el número exacto de átomos en la molécula. Por ejemplo, la fórmula molecular de la glucosa es C6H12O6, lo que significa que hay seis átomos de carbono, doce átomos de hidrógeno y seis átomos de oxígeno en la molécula.
La relación entre la fórmula empírica y la fórmula molecular se relaciona con la masa atómica de los átomos en la molécula. La masa atómica de un átomo es la masa de un átomo de un elemento en relación con la masa de un átomo de carbono-12. La masa atómica se utiliza para calcular la masa molecular de una molécula, que es la suma de las masas atómicas de todos los átomos en la molécula.
Para calcular la fórmula empírica a partir de la fórmula molecular, se divide la masa molecular por la masa atómica de cada elemento en la molécula. Esto da la relación entre los átomos en la molécula, que se puede utilizar para escribir la fórmula empírica.
Por ejemplo, la masa molecular de la glucosa es 180.16 g/mol, y las masas atómicas de carbono, hidrógeno y oxígeno son 12.01 g/mol, 1.01 g/mol y 16.00 g/mol, respectivamente. Dividiendo la masa molecular por las masas atómicas de cada elemento, se obtiene la relación 6:12:6, que se puede simplificar a 1:2:1. Esto da la fórmula empírica CH2O.
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If a sample of 200 g of water must be boiled and the heat of vaporization of water is 2260 j/g, how much heat is needed to cause this entire sample to boil into steam?
The latent heat of vaporization per gram of water, which means that adding that much heat to a sample of water will vaporize one gram of 2.26 kJ/g.
What type of reaction is vaporization?Hence, vaporization is an exothermic process. Exothermic reaction is the process in which the heat is evolved. Consider the exothermic process of conversion of water vapor to liquid water. The molecules in gas state are higher in energy than the molecules in liquid state.
What energy is vaporization?When a material in liquid state is given energy, it changes its phase from liquid to vapor; the energy absorbed in this process is called heat of vaporization. heat of vaporization of water is about 2,260 kJ/kg, which is equal to 40.8 kJ/mol.
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4. The lake water changes color rapidly on exposure to air. Suggest a factor that may affect the
speed of the reaction in Blood Falls. This question is not in the article directly. Give a reasonable
guess, that shows thought and effort.
A factor that might affect the speed of reaction of the water in Blood Falls is the concentration of iron in the water.
How can the speed of reaction of the lake water be affected ?Blood Falls is located in the McMurdo Dry Valleys of Antarctica, where a subglacial lake with a high concentration of iron mixes with oxygenated seawater to create the characteristic reddish color of Blood Falls.
The speed of this reaction may be influenced by the amount of iron present in the water, as well as the availability of oxygen to react with the iron. If the concentration of iron is high, the reaction may proceed more quickly than if the concentration is lower.
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What is the air quality like in Boise today?
quality in any particular place, including Boise. But, you may use websites like AirNow or the Idaho Department of Environmental Quality's Air Quality Monitoring website to check the air quality index
The capital of Idaho, Boise, is situated in the Pacific Northwest of the United States. It is renowned for its natural beauty, which includes the Boise River Greenbelt and the close-by Rocky Mountain foothills. Boise is a developing city that has a thriving downtown, a rich cultural diversity, and a robust economy backed by sectors like technology, healthcare, and education. Both locals and visitors may take part in a number of outdoor pursuits throughout the year, including as hiking, skiing, and river rafting, as well as a range of cultural and artistic events. Boise is a popular area to live and travel because it provides a distinctive fusion of
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Electronegativity values for elements in Group 1A are much lower than the values for elements in Group 7A. What type of bond forms if an element in Group 1A bonds with an element from Group 7A?
An ionic bond is formed when an element in Group 1A (alkali metals) bonds with an element from Group 7A (halogens) due to the large difference in their electronegativity values.
The resulting compound is held together by the electrostatic attraction between the oppositely charged ions. If an element from Group 1A (alkali metals) bonds with an element from Group 7A (halogens), an ionic bond is formed. Alkali metals have low electronegativity values and tend to lose an electron, while halogens have high electronegativity values and tend to gain an electron. In the process, the alkali metal becomes a positively charged ion (cation) and the halogen becomes a negatively charged ion (anion). The opposite charges of the ions attract each other and form an ionic bond. The resulting compound is held together by the electrostatic attraction between the oppositely charged ions.
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when the temperature of a liquid increases what happens to the viscosity and surface tension of the liquid?
When the temperature of a liquid increases, the viscosity of the liquid typically decreases, while the surface tension also decreases but to a lesser extent.
Viscosity is a measure of a fluid's resistance to flow, and it is affected by the intermolecular forces between the molecules of the fluid. When the temperature of a liquid increases, the kinetic energy of the molecules increases, which tends to weaken the intermolecular forces between them, causing the viscosity of the liquid to decrease. This is why liquids such as honey or molasses become less viscous when they are heated.
Surface tension, on the other hand, is a measure of the force required to break the surface of a liquid. It is caused by the cohesive forces between the molecules at the surface of the liquid. When the temperature of a liquid increases, the kinetic energy of the molecules also increases, which tends to weaken the cohesive forces between the molecules, causing the surface tension of the liquid to decrease. However, the effect of temperature on surface tension is relatively small compared to its effect on viscosity.
It is important to note that the specific effect of temperature on viscosity and surface tension depends on the type of liquid and the conditions under which it is measured. For example, some liquids, such as water, exhibit a maximum in their viscosity at a particular temperature (around 40°C for water), above which the viscosity begins to decrease. Additionally, the effect of temperature on surface tension can depend on the presence of impurities or surfactants in the liquid.
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why are dissolved oxygen concentrations higher in the surface ocean than in the deep ocean at both high and low latitudes?
Answer:
this is where oxygen dissolves into the ocean from the atmosphere, and the surface water is where oxygen is produced by phytoplankton through photosynthesis .
Carbon dioxide (co2) gas in a piston-cylinder assembly undergoes three processes in series that begin and end at the same state (a cycle). Process 1-2: expansion from state 1 where p1
A) The work done for the each process are :
Process (1 - 2) = 1000 kJ
Process (2 - 3) = 0 kJ
process (3 - 1) = -3000 kJ
B) The net work for the cycle = -2000 kJ
The work done for process (1 - 2) is as :
W₁ ₋ ₂ = (P₁ V₁ - P₂ V₂ ) / n - 1
= [ ( 10 × 1 ) - ( 1.25 × 4 ) ] / 1.5 - 1
= [ 10 - 5 ] / 0.5
= 10 × 100 = 1000 kJ
The work done for process ( 2-3 ) is as :
W₂₋₃ = 0 kJ
The work done for process ( 3-1) is as :
W₃₋₁ = P ( Δ V ) , pressure = constant
= 10 × 100 ( -3 )
= - 3000 kJ
B) The net work for the cycle is as :
W = W₁ ₋ ₂ + W₂₋₃ + W₃₋₁
= 1000 kJ + 0 kJ + - 3000 kJ
= - 2000 kJ
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This question is incomplete. the complete question is :
Carbon dioxide (CO2) gas in a piston-cylinder assembly undergoes three processes in series that begin and end at the same state (a cycle). Process 1-2: Expansion from state 1 where p1 = 10 bar, V1 = 1 m3, to state 2 where V2 = 4 m3. During the process, pressure and pV1.5 volume are related by = constant. Process 2-3: Constant volume heating to state 3 where p3 = 10 bar. Process 3-1: Constant pressure compression to state 1. Sketch the processes on p –V coordinates and evaluate the work for each process, in kJ. What is the net work for the cycle, in kJ?
the km of an enzyme is 5.0 mm . calculate the substrate concentration when this enzyme operates at one‑quarter of its maximum rate.
The substrate concentration when the enzyme operates at one-quarter of its maximum rate is 1.25 mm.
If we know the value of Km for an enzyme, we can use it to calculate the substrate concentration at which the enzyme operates at any fraction of its Vmax. In this case, we are interested in the substrate concentration at one-quarter of the maximum rate, which is equivalent to 0.25 Vmax.
To calculate this,
0.25 Vmax = (Vmax [S]) / (Km + [S])
Solving for [S],
[S] = (0.25 Km)
Substituting the value of Km given in the problem,
[S] = (0.25 x 5.0 mm) = 1.25 mm
Therefore, the substrate concentration when the enzyme operates at one-quarter of its maximum rate is 1.25 mm.
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how many molecules are in the compound 3CO2
The number of molecule is represented by the stoichiometry. The chemical compound 3CO[tex]_2[/tex] has three molecules.
What is carbon dioxide?Carbon dioxide is a colorless gas with a strong odor as well as a sour taste. It is among the most significant greenhouse gases associated with global warming.
Nonetheless, it is a tiny component of the Earth's atmosphere, created by the burning of carbon-containing materials, fermentation, and animal respiration, and used by plant inside the photosynthesis producing carbohydrates. The number of molecule is represented by the stoichiometry. The chemical compound 3CO[tex]_2[/tex] has three molecules.
Therefore, the chemical compound 3CO[tex]_2[/tex] has three molecules.
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The following sets of quantum numbers, listed in the order n, â„“, mâ„“, and ms, were written for the last electrons added to an atom. Identify which sets are valid and classify the others by the rule or principle that is violated. Drag the appropriate items to their respective bins.
The sets of quantum numbers, listed in the order :
a. 5 0 0 +1/2
5 0 0 -1/2
Valid
b. 3 2 -1 +1/2
3 2 0 +1/2
3 2 +1 +1/2
3 2 0 +1/2
3 2 +2 +1/2
Pauli violation
c. 3 1 -1 +1/2
3 1 0 +1/2
3 3 +1 +1/2
Other violation
For the a set;
5 0 0 +1/2
5 0 0 -1/2
This set will correctly corresponds to the 5s orbital and it is valid.
For the b set;
3 2 -1 +1/2
3 2 0 +1/2
3 2 +1 +1/2
3 2 0 +1/2
3 2 +2 +1/2
This set should correspond to the 3d orbital but it is clear that the two electrons in the set that have the exactly the same quantum numbers of the 3 2 0 +1/2. This violates the Pauli exclusion and it is Pauli violation.
For the c set:
3 1 -1 +1/2
3 1 0 +1/2
3 3 +1 +1/2
This set should have the corresponded to the 3p orbital but the values of l only range from the 0 to (n - 1). This is other violation.
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The following sets of quantum numbers, listed in the order n, l, ml, and ms were written for the last electrons added to an atom. Identify which sets are valid and classify the others by the rule or principle that is violated.
choices for these answers are: "other violation," "pauli violation," and "valid."
a. 5 0 0 +1/2
5 0 0 -1/2
b. 3 2 -1 +1/2
3 2 0 +1/2
3 2 +1 +1/2
3 2 0 +1/2
3 2 +2 +1/2
c. 3 1 -1 +1/2
3 1 0 +1/2
3 3 +1 +1/2
what intermolecular forces are present in pure samples of both ch₃f and cf₄?
Both CH₃F and CF₄ are non-polar molecules, and they only exhibit London dispersion forces, which are a type of intermolecular force that arises from temporary fluctuations in electron density within a molecule.
London dispersion forces arise due to the temporary imbalance of electron distribution within a molecule, which results in the formation of temporary dipoles. These temporary dipoles induce opposite dipoles in neighboring molecules, and this interaction between temporary dipoles is known as London dispersion force.
Since CH₃F(methyl fluoride) and CF₄ (carbon tetrafluoride) are both non-polar, their London dispersion forces are comparable in strength, and the boiling points of these molecules reflect this. CF₄ has a higher boiling point (and stronger London dispersion forces) than CH₃F due to its larger size and greater number of electrons.
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which response identifies a possible ψ for the last-filled electron in a magnesium ion?ψ 2,0,0ψ 2,0,-1ψ 3,0,1ψ 3,3,0
A magnesium ion has 12 electrons, with the electron configuration of 1s²2s²2p⁶3s². When magnesium loses two electrons to form an ion, the last-filled electron in the ion will be in a 3p orbital.
Out of the given options, only ψ 3,0,1 corresponds to a 3p orbital, with n=3, l=1, and m=0. Therefore, ψ 3,0,1 is a possible ψ for the last-filled electron in a magnesium ion.
What is an electron configuration?An electron configuration refers to the distribution of electrons in the atomic orbitals of an atom or ion. It describes the arrangement of electrons in the electron shells and subshells and is usually represented using a notation that indicates the number of electrons in each shell and subshell. The electron configuration of an atom is determined by the number of protons in its nucleus and the rules governing the filling of electron shells and subshells. The electron configuration of an atom plays a critical role in determining its chemical and physical properties, including its reactivity, bonding, and the energy required to remove or add electrons.
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what is the formal charge of a nitrogen atom that has no lone pairs and forms two double bonds?
The formal charge of nitrogen atom that has no lone pairs and forms two double bonds is -3.
The formal charge of an atom is the difference between the number of valence electrons of an atom in its free state as well as the number of electrons assigned to that atom in a molecule.
For nitrogen (N), the number of valence electrons in its free state will be 5. In a molecule where it forms two double bonds, nitrogen will share a total of 8 valence electrons (4 from each bond) with other atoms. Therefore, the number of electrons assigned to nitrogen is 8.
To calculate the formal charge of nitrogen in this case, we can use the formula: Formal charge = valence electrons - assigned electrons
Substituting the values for nitrogen, we get:
Formal charge of nitrogen = 5 - 8 = -3
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which one of the following solutions will have the greatest concentration of hydroxide ions?
0.1 M NaOH solution contains the highest concentration of hydroxide ions.
In aqueous solution, NaOH dissociates completely into Na+ ions and OH- ions. Therefore, a 0.1 M NaOH solution contains 0.1 M OH - ions. Option (a) 0.1 M H₂SO₄ is an acidic solution, and it will not contain a high concentration of OH- ions. Option (b) 0.1 M NH₄Cl is an acidic salt. When NH₄Cl dissolves in water, it hydrolyzes to produce H+ ions and NH₃. Therefore, it will not contain a high concentration of OH- ions. Option (c) 0.1 M KNO₂ is a neutral salt. When it dissolves in water, it dissociates into K+ ions and NO₂₋ ions. NO₂₋ ions can react with water to form HNO₂, which can act as a weak acid. Therefore, it will not contain a high concentration of OH- ions.
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Complete Question
Which one of the following 0.1 M solutions contains the highest concentration of
OH⁻ ions?
(a) 0.1 M H₂SO₄
(b) 0.1 M NH₄Cl
(c) 0.1 M KNO₂
(d) 0.1 M NaOH
In both reactions 1 and 2, the temperature change was , meaning that the reactions heat.
While reaction two is endothermic, reaction one is exothermic. A reaction that loses energy in the shape heat warmth is exothermic. An endothermic reaction is one that absorbs energy in the form of heat.
What is reaction?Reaction is the process of responding to any type of stimulus. It could be an emotional response, a physical reaction, or an intellectual response. For example, when you see a scary movie, you might have a physical reaction of your heart beating faster or feeling a chill. When someone says something that offends you, you might have an emotional reaction of anger or sadness. When you read a scientific article, you might have an intellectual reaction of understanding or confusion. In each case, the reaction is a response to a stimulus.
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Answer: Positive and gave off
Explanation: just did it :)
which particle determines the reactivity of this atom
The quantity of electrons in the outermost shell of an atom determines how reactive it is.
Atoms, which are very small units of matter, are what give a chemical element its particular properties. An atom is composed of a center and one or more negatively charged electrons that orbit it. It's possible to find the positively charged, somewhat large atomic nuclei that make up the nucleus.
The two types of fundamental elements that make up an atom are quarks and protons. An region of electrons surrounds the nucleus of an atom. The electrical charge of the every electron is negative one. The protons and neutrons that make up an atom's nucleus and balance it out are made of quarks.
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how many electrons can occupy a filled 2nd energy level
Answer:8 electrons
Explanation:the second energy level can only have 8 electrons so the next electron in sodium has to be on the next (third) level.
what is molar mass of sucrose?
The molar mass of the sucrose , that is the C₁₂H₂₂O₁₁ is 342.3 g/mol.
The molar mass of the sucrose that is C₁₂H₂₂O₁₁ is as follows :
The molar mass of the sucrose, C₁₂H₂₂O₁₁ = 12(12) + 22 (1) + 11 (16)
The molar mass of the sucrose, C₁₂H₂₂O₁₁ = 342.3 g/mol
The Sucrose is the molecule that is composed of the two monosaccharides, that are the glucose and the fructose. The formula for the non-reducing disaccharide is C₁₂H₂₂O₁₁. The Sucrose is commonly called as the table sugar or the cane sugar. In the molecule of the C₁₂H₂₂O₁₁, the fructose and the glucose molecules both are connected through a bond called a glycosidic bond.
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How will you detect the endpoint of the titration of the borate ion with HCl? Select one: a. The borate ion precipitate will dissolve completely. b. The calculated volume of HCl will be dispensed. c. The bromocresol green indicator will change colors. d. Solid will begin to appear in the flask.
The Bromocresol green indicator will change colors, this will detect the endpoint of the titration of the Borate ion with HCl
Correct option: c
What is titration?A typical laboratory technique for quantitative chemical analysis to ascertain the concentration of a recognized analyte is titration. A reagent, also known as a titrant or titrator, is created as a standard solution with a specified volume and concentration. Titration, sometimes referred to as titrimetry, is a method for calculating the concentration of a specific analyte in a mixture that is used in chemical qualitative analysis. Titration, which is also sometimes referred to as volumetric analysis, is a crucial analytical chemistry method.
The Bromocresol green indicator will change colour.
The reaction becomes:
B₄O₇⁻² + 2HCl → H₃BO₃ + NaCl
(Borate) (weak acid)
At the end point a weak acid of H₃BO₃ formed as a resultant solution, which is acidic in nature. Bromocresol green indicator have the pH range 3.8 - 5.4. So, at the end point solution changes colour blue to yellow.
Thus, correct option: c
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Which type of attraction results from the formation of weak momentary dipoles? A Dispersion (van der Waals) forces B metallic C ionic D molecule-ion
The type of attraction that results from the formation of weak momentary dipoles is dispersion (van der Waals) forces. These forces occur between nonpolar molecules or atoms and arise due to the temporary shifting of electrons in one atom or molecule, which then induces a temporary shift in electrons in another atom or molecule.
What is a dipole moment?A dipole moment measures the separation of electrical charges in a molecule or compound. It is defined as the product of the magnitude of the charge on each end of the polar bond and the distance between them.
What creates a temporary dipole moment?A temporary dipole moment is created due to the shifting of electrons within a molecule or atom. Electrons are constantly moving and randomly distributed within an atom or molecule. At any given moment, the electrons may be more heavily concentrated on one side of the molecule or atom, creating a temporary dipole moment.
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- Addition & Subtraction
TY
Perform the following
mathematical operation, and
report the answer to the
appropriate number of
significant figures.
15.222 - 3.88 = [?]
Enter
Answer:
Below
Explanation:
Your answer should have the same number of S.D. as the element with the least number of S.D. ....in this case 3.88 has THREE S.D. so your answer should be rounded to three S.D.
15.222 - 3.88 = 11.342 = ~ 11.3 to three sig dig
50 POINTS!! CAN SOMEONE PLEASEEEE HELP ME do this for my chemistry class please i need it done asap!! to give me the answers your probably going to have to write it on paper then attach the picture to your answer!! thank you so much!! <3
The chlorine atom only requires one more electron to fulfill its octet because the potassium atom only has one valence electron and has seven total electrons.
How do atoms work?Protons, positive charged particles, and neutrons, neutral charged particles, make up the nucleus of each atom. Around the nucleus are electrons, which are negative particles. Atoms of the same element share the same chemical characteristics and mass, but atoms of other elements have unique chemical characteristics and masses. Compounds are created when atoms join in ratios of few whole numbers.
Describe a compound?A compound is a substance made up of two or more types of elements together in a specific proportion of their atoms. As the components are combined, they interact with one another.
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The system below was at equilibrium and
then some NO2 gas was removed from the
container. What change will occur for the
system?
2NO(g) + O2(g) 2NO2(g) + 113.06 kJ
A The reaction will shift toward the reactants (left)
B The reaction will shift toward the products (right)
C The reaction will shift toward the reactants (left)
D The reaction will not change because it was already at equilibrium
The response will change to focus on the goods (right). Le Chatelier's principle states, when NO2 is removed from the system, concentration will fall and the system will change to allow NO2 to be replaced.
When a component of the equilibrium is taken away, how does the system respond?Reducing a concentration causes the equilibrium position to shift to the left. Essentially, this is what takes place when one of the products is eliminated as soon as it forms. The position of equilibrium would shift to the right to take the place of C, for instance, if it were to be eliminated in this manner.
What impact does pressure change have on equilibrium?The equilibrium will move to the side of the reaction where there are fewer moles of gas as pressure rises. The equilibrium will move towards the side of the reaction where there are more gas molecules when the pressure is reduced.
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What is H2SO4 as an acid?
With the chemical formula H2SO4, sulfuric acid is a powerful, mineral acid that is extremely corrosive. It is a viscous, colourless to slightly yellow, pungent-ethereal liquid that is always soluble in water.
It may occasionally be darkened during manufacture to draw attention to its dangers. "Oil of vitriol" is the name given to this acid historically. Sulfuric acid that has been concentrated is 98% pure and exhibits various characteristics depending on the concentration.
Because of the high exothermic nature of sulfuric acid's hydration process, we should do dilution by adding acid to water rather than vice versa. Due to its strong affinity for water, pure sulfuric acid does not occur naturally on Earth in its anhydrous state.
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four drops of a 0.25 m imidazole solution were added to a solution in a cuvette containing ferrihemoglobin. the mass of the ferrihemoglobin solution in the cuvette was measured to be 2.655 g initially and 2.739 g after the addition of the stock imidazole solution. what is the molar concentration of imidazole in the final solution?
The molar concentration of imidazole in the final solution is approximately 0.595 M.
What is the molar concentration?
First, we need to calculate the mass of the imidazole added to the solution. Since we added four drops of 0.25 M imidazole solution, we can assume that the volume of each drop is approximately 0.05 mL (this value can vary depending on the size of the dropper).
Therefore, the total volume of imidazole solution added is:
4 drops x 0.05 mL/drop = 0.2 mL
To convert this volume to liters, we need to divide by 1000:
0.2 mL / 1000 = 0.0002 L
The moles of imidazole added to the solution can be calculated using the formula:
moles = M x V
where;
M is the molar concentration of the imidazole solution and V is the volume of solution added. Substituting the values we have:moles = 0.25 M x 0.0002 L = 0.00005 moles
Next, we can calculate the mass of ferrihemoglobin in the final solution:
mass = 2.739 g - 2.655 g = 0.084 g
To calculate the molar concentration of imidazole in the final solution, we can use the formula:
Molarity = moles of solute / volume of solution (in liters)
density of ferrihemoglobin = 1.0 g/mL (approximate value)
volume of ferrihemoglobin solution = mass / density = 0.084 g / 1.0 g/mL = 0.084 mL
If we assume that the volume of the imidazole solution is negligible compared to the volume of the ferrihemoglobin solution, we can use the total volume as:
volume of solution = 0.084 mL = 0.000084 L
Now we can calculate the molar concentration of imidazole in the final solution:
Molarity = 0.00005 moles / 0.000084 L = 0.595 M
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Draw the structure of the product formed in the reaction: NaOH; ethanol 2 heat H
The product of the chemical equation of sodium hydroxide and ethanol is sodium ethoxide and water.
What is chemical equation?Chemical equation is a symbolic representation of a chemical reaction which is written in the form of symbols and chemical formulas.The reactants are present on the left hand side while the products are present on the right hand side.
A plus sign is present between reactants and products if they are more than one in any case and an arrow is present pointing towards the product side which indicates the direction of the reaction .There are coefficients present next to the chemical symbols and formulas .
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The charged particle that forms when an atom or small group of atoms, loses or gains one or more _____ is called an ion. An ion with a positive charge is called a (n) _____ while an ion with a negative charge is a(n) _____.
The charged particle that forms when an atom or small group of atoms loses or gains one or more electrons is called an ion.
An ion with a positive charge is called a cation, while an ion with a negative charge is called an anion.
A positive or negative electric charge is present in an atom or group of atoms due to the loss or gain of one or more electrons (such as a free electron). Having a net electrical charge makes an atom or molecule an ion. By convention, the charge of an electron is thought to be negative, and this charge is equal to and the opposite of the charge of a proton, which is thought to be positive.
A positively charged ion is a cation (atoms or groups of atoms that have more protons than electrons due to having lost one or more electrons). Negatively charged ions are known as anions (meaning they have more electrons than protons due to having gained one or more electrons).
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6. The rate of reaction depends on temperature, concentration, particle size and catalyst. Which statement is not correct? A Catalysts can be used to increase the rate of reaction. B Higher concentration decreases the rate of reaction. C Higher temperature increases the rate of reaction. D Larger particle size decreases the rate of reaction.
Answer:
Statement B is not correct.
Explanation:
Higher concentration typically increases the rate of reaction, not decreases it. This is because a higher concentration of reactants means that there are more particles colliding with each other, increasing the likelihood of successful collisions and therefore increasing the rate of reaction.
The other statements are all correct. Catalysts can be used to increase the rate of reaction by providing an alternative reaction pathway with a lower activation energy. Higher temperature increases the rate of reaction by increasing the kinetic energy of the particles, making them move faster and collide more frequently. Smaller particle size increases the rate of reaction by increasing the surface area available for reactions to take place.