The molar mass of NaCl is the first piece of information we need to solve this issue. It has a density of 58.44g/mol. Additionally, keep in mind that 5 M Equals 5 mol/L. As a result, 292.2 g of NaCl is required to create 1 L of 5 M stock solution.
5*5.0 = 25L
How is a 1 molar salt solution made?A 1M NaCl solution can be made by measuring 58.44 g of salt and placing it in a 1 litre volumetric flask, then filling the flask with distilled water to the graduation point. It should be noted that molarity and molality are not synonymous.
To create 1 litre of final solution, a 1 molar (M) solution will include 1.0 GMW of a material dissolved in water.
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Q16. Choose whether this is a physical or chemical change. *
cream
being
whipped
Because air puffs up the cream as it is whipped, there is a physical change even though the ingredients are still cream and air.
What is physical change ?Physical modifications are those that affect a chemical substance's form but not its chemical content. Physical changes may normally be used to separate compounds into chemical elements or simpler compounds, but they cannot be used to separate mixtures into their component compounds.
Liquid cream is extensively combined with small air bubbles to form the foam colloid known as whipped cream. Because milk is transformed from a colloid (cream) to a solid (butter) without changing its chemical makeup, turning milk into butter is a physical transformation. This change in the body can be undone.
Thus, there is a physical change even though the ingredients are still cream and air.
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what would the pressure be at 25.0g of chlorine gas at "-10.0celsius" in a 4.50 L
The pressure of the chlorine gas at the given condition is 1.7 atm.
What is the pressure of the chlorine gas?The pressure of the chlorine gas at the given condition is calculated by applying ideal gas law.
PV = nRT
where;
n is the number of molesR is the ideal gas constantT is the temperatureThe number of moles of 25 g of chlorine is calculated as follows;
n = m/M
n = 25/71
n = 0.352
The pressure of the chlorine gas at the given condition is calculated as;
P = nRT/V
P = (0.352 x 0.0821 x 263) / (4.5)
P = 1.7 atm
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What is Heat? What is Cold?
Answer:
Heat is the process of something getting hot(temperatures going up). Cold is when something gets cold(temperature decreases).
Explanation:
The rotational spectrum of 79BrºF shows a series of equidistant lines spaced 0-714 33 cm - apart. Calculate the rotational constant B, and hence the moment of inertia and bond length of the molecule. Determine the wavenumber of the J = 9+= 10 transition, and find which transition gives rise to the most intense spectral line at room temperature (say 300 K).
and calculate the number of revolutions per second which the Brf molecule undergoes when in (a) the J = 0 state, (b) the J = 1 state, and (c) the J = 10 state. Hint: Use E = {lwin conjunction with Eqs (2.10) and (2.13), but remember that here w is in radians per second.[its Q season 2 from fundamentals of molcular spectruscopy . banwell.c.n]
In the J = 0 state, the BrF molecule does not undergo any revolutions per second. In the J = 1 state, it undergoes approximately 0.498 revolutions per second, and in the J = 10 state, it undergoes approximately 15.71 revolutions per second.
To calculate the rotational constant B, we can use the formula:
B = 1 / (2 * π * Δν)
Where:
B = rotational constant
Δν = spacing between consecutive lines in the rotational spectrum
Given that the spacing between consecutive lines is 0.71433 cm^(-1), we can substitute this value into the formula:
B = 1 / (2 * π * 0.71433 cm^(-1))
B ≈ 0.079 cm^(-1)
The moment of inertia (I) of the molecule can be calculated using the formula:
I = h / (8 * π^2 * B)
Where:
h = Planck's constant
Given that the value of Planck's constant (h) is approximately 6.626 x 10^(-34) J·s, we can substitute the values into the formula:
I = (6.626 x 10^(-34) J·s) / (8 * π^2 * 0.079 cm^(-1))
I ≈ 2.11 x 10^(-46) kg·m^2
The bond length (r) of the molecule can be determined using the formula:
r = sqrt((h / (4 * π^2 * μ * B)) - r_e^2)
Where:
μ = reduced mass of the molecule
r_e = equilibrium bond length
To calculate the wavenumber (ν) of the J = 9+ to J = 10 transition, we can use the formula:
ν = 2 * B * (J + 1)
Substituting J = 9 into the formula, we get:
ν = 2 * 0.079 cm^(-1) * (9 + 1)
ν ≈ 1.58 cm^(-1)
To determine the most intense spectral line at room temperature (300 K), we can use the Boltzmann distribution law. The intensity (I) of a spectral line is proportional to the population of the corresponding rotational level:
I ∝ exp(-E / (k * T))
Where:
E = energy difference between the levels
k = Boltzmann constant
T = temperature in Kelvin
At room temperature (300 K), the population distribution decreases rapidly with increasing energy difference. Therefore, the transition with the lowest energy difference will have the most intense spectral line. In this case, the transition from J = 0 to J = 1 will have the most intense spectral line.
To calculate the number of revolutions per second, we can use the formula:
ω = 2 * π * B * J
Where:
ω = angular frequency (in radians per second)
J = rotational quantum number
For J = 0:
ω = 2 * π * 0.079 cm^(-1) * 0 = 0 rad/s
For J = 1:
ω = 2 * π * 0.079 cm^(-1) * 1 ≈ 0.498 rad/s
For J = 10:
ω = 2 * π * 0.079 cm^(-1) * 10 ≈ 15.71 rad/s
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50 Points Help
1) Find the mass of 250.0 mL of benzene. The density of benzene is 0.8765 g/mL.
7) What volume of silver metal will weigh exactly 2500.0 g. The density of silver is 10.5 g/cm3.
1. Find mass of 250.0 ml of benzene : -
given data :
density = 0.8765 g/mlvolume = 250 mlwe know the relation between mass, volume and density
that is
\( \boxed{ \boxed{density = \dfrac{mass}{volume} }}\)
\(0.8765 = \dfrac{m}{250} \)\(m = 250 \times 0.8765\)\(m = 219.125 \: \: grams\)\( \approx219.12 \: g\)7. Find volume of silver metal :
given data :
mass = 2500.0 gdensity = 10.5 g/ cm³Since we already know the relation, let's solve form volume :
\(10.5 = \dfrac{2500}{v} \)\(v = \dfrac{2500}{10.5} \)\(v = 238.095 \: \: cm {}^{3} \)\( \approx238.1 \: \: cm {}^{3} \)\(\\ \sf\longmapsto Density=\dfrac{Mass}{Volume}\)
\(\\ \sf\longmapsto Mass=Density\times volume\)
\(\\ \sf\longmapsto Mass=250(0.8765)\)
\(\\ \sf\longmapsto Mass=219.12g\)
#2
Mass=2500gDensity=10.5g/cm^3\(\\ \sf\longmapsto Density=\dfrac{Mass}{Volume}\)
\(\\ \sf\longmapsto Volume=\dfrac{Mass}{Density}\)
\(\\ \sf\longmapsto Volume=\dfrac{2500}{10.5}\)
\(\\ \sf\longmapsto Volume=238.09cm^3\)
Which of these physical structures in animals is similar to this structure in plants?
Answer: Exoskeleton
Explanation:
Structurally, plant and animal cells are very similar because they are both eukaryotic cells. They both contain membrane-bound organelles such as the nucleus, mitochondria, endoplasmic reticulum, golgi apparatus, lysosomes, and peroxisomes.
Does anyone have a course hero account they can look at for me?
Sure, what's the questions and I can get it for you, and if need further assist you.
Ammonium phosphate is an important ingredient in many fertilizers. It can be made by reacting phosphoric acid with ammonia . What mass of ammonium p
Answer:
7.5 g
Explanation:
There is some info missing. I think this is the original question.
Ammonium phosphate ((NH₄)₃PO₄) is an important ingredient in many fertilizers. It can be made by reacting phosphoric acid (H₃PO₄) with ammonia (NH₃). What mass of ammonium phosphate is produced by the reaction of 4.9 g of phosphoric acid? Be sure your answer has the correct number of significant digits.
Step 1: Write the balanced equation
H₃PO₄ + 3 NH₃ ⇒ (NH₄)₃PO₄
Step 2: Calculate the moles corresponding to 4.9 g of phosphoric acid
The molar mass of phosphoric acid is 98.00 g/mol.
\(4.9 g \times \frac{1mol}{98.00g} = 0.050mol\)
Step 3: Calculate the moles of ammonium phosphate produced from 0.050 moles of phosphoric acid
The molar ratio of H₃PO₄ to (NH₄)₃PO₄ is 1:1. The moles of (NH₄)₃PO₄ produced are 1/1 × 0.050 mol = 0.050 mol.
Step 4: Calculate the mass corresponding to 0.050 moles of ammonium phosphate
The molar mass of ammonium phosphate is 149.09 g/mol.
\(0.050mol \times \frac{149.09 g}{mol} = 7.5 g\)
Calculate the molar mass of magnesium chloride, CaCl 2.
Ca = 40.1g, Cl = 35.5g
Answer:
Ca = 40.1 g
Cl = 35.5
So CaCl240.1 + 35.5×2
40.1 + 71
111.1 g
.) At 500 oC, cyclopropane, C3H6, rearranges to form propene. The reaction is first order with a rate constant of 6.7 x 10-4 s-1. If the initial concentration of C3H6 is 0.0500 M, (a) what is the molarity of C3H6 after 30 min
Answer:
0.015 M
Explanation:
For a first order reaction;
ln[A] =ln[A]o - kt
[A] = final concentration
[A]o =initial concentration
k= rate constant
t= time taken
ln[A] =ln[A]o - kt
ln[A] = ln(0.0500) - 6.7 x 10-4 (30 × 60)
ln[A] = -2.9957 - 1.206
ln[A] = -4.202
e^ln[A] = e^(-4.202)
A= 0.015 M
biochem chapter 8 analyze the data and complete the following sentences. match the words in the left column to the appropriate blanks in the sentences on the right. make certain each sentence is complete before submitting your answer.
Examine experimental data
Consider the following experimental data that were obtained for two different enzymes, A and B, to determine their reaction rate or velocity under varied substrate concentrations, [S].
Table for Enzyme A Table for Enzyme R
(S)x 10-³. reaction rate. (S)x10-³. reaction rate
(mmol/L). (mmol/s). (mmol/L) (mmol/s). 1. 29. 2. 2.5
2. 45. 3. 3.9
5. 30. 6. 6.5
6. 20.8. 8. 8
7. 65. 12. 10
8. 80. 24. 13.5
9. 90. 36. 16
12. 112. 40. 16 For enzymes obeying the Michaelis-Menten equation, a graph that plots the reaction rate or velocity as a function of substrate concentration will be a hyperbolic curve. This curve can be
used to determine Vmax and KM, where Vmax is the maximum velocity of the reaction (maximum rate), and KM is the substrate concentration when the velocity is half its maximum.
8
shows no trend
decreases uniformly
40 × 10-³
a linear
8 × 10-³
x
Increases uniformly
a hyperbolic
A
no defined
40
B
16
Of the two enzymes studied, when plotting concentration versus reaction rate, enzyme A produces a
plot with
shape and enzyme B produces a plot with
shape.
The reaction rate of enzyme A
saturation point, and the reaction rate of enzyme
Given this data, enzyme
this plot, the estimated value of Vmax is
mmol/L.
as the concentration of substrate increases to its
over the same set of conditions.
obeys the Michaelis-Menten equation. Analyzing the shape of
mmol/s and KM is
Of the two enzymes studied, when plotting concentration versus reaction rate, enzyme A produces a hyperbolic plot and enzyme B produces a linear plot.
The reaction rate of enzyme A increases uniformly, reaches a saturation point, and the reaction rate of enzyme B decreases uniformly over the same set of conditions.
Given this data, enzyme A obeys the Michaelis-Menten equation. Analyzing the shape of this plot, the estimated value of Vmax is 112 mmol/s and KM is 8 × 10-³ mmol/L. For enzyme B, there is no defined saturation point and the reaction rate decreases uniformly.
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Fill in the blanks to complete these sentences about rock characteristics.
A rock is an
natural
of minerals.
The
hardness
of a rock is a result of its mineral composition.
Most rocks contain more than one type of
.
The answers are:
accumulationhardnessmineralWhat is mineral?A rock is a naturally occurring collection of minerals, and the kind and quantity of minerals it contains influence its hardness. Quartz, feldspar, mica, and calcite are just a few of the minerals that are present in all rocks. Additionally, rocks may include mineraloids and organic byproducts. Rocks are categorised based on their texture, mineral makeup, and additional features including colour, streak, lustre, and cleavage.
The three rocks are sedimentary, igneous, and metamorphic rocks. Rocks can be utilised in a variety of applications, including building, landscaping, and industrial activities.
A mineral assemblage forms a rock.A rock's mineral makeup determines how hard it is.The majority of rocks contain a variety of minerals.To know more about metamorphic rocks, visit:
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Two asteroids are 75,000 m apart one has a mass of 8 x 10^7 N what is the mass of the other asteroid
The mass of the asteroid is C. 1.2 x \(10^{12}\) Kg
To find the mass of the other asteroid, we can rearrange the equation for the gravitational force between two objects:
F = (G * m1 * m2) / \(r^{2}\)
where F is the force of gravity, G is the gravitational constant, m1 and m2 are the masses of the two asteroids, and r is the distance between them.
Given that the distance between the asteroids is 75000 m, the force of gravity between them is 1.14 N, and one asteroid has a mass of 8 x \(10^{7}\) kg, we can substitute these values into the equation and solve for the mass of the other asteroid (m2):
1.14 N = (6.67430 × \(10^{-11}\) N \(m^{2}\)/\(Kg^{2}\) * 8 x \(10^{7}\) kg * \(m2\)) / \((75000 m)^{2}\)
Simplifying and solving the equation, we find that the mass of the other asteroid (m2) is approximately 1.2 x \(10^{12}\) kg. Therefore, Option C is correct.
The question was incomplete. find the full content below:
Two asteroids are 75000 m apart one has a mass of 8 x \(10^{7}\) kg if the force of gravity between them is 1.14 what is the mass of the asteroid
A. 3.4 x \(10^{11}\) kg
B. 8.3 x \(10^{12}\) kg
C. 1.2 x \(10^{12}\) kg
D. 1.2 x \(10^{10}\) kg
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Which element can bond with titanium (Ti) to form a polar covalent bond?
The element that can bond with titanium (Ti) in order to form a polar covalent bond is nitrogen (abbreviated as N).
What is a covalent bond?A covalent bond is a type of chemical bond in which two different atoms interact due to differential electronegative charges. A polar covalent bond is formed in the case that differential electronegativity between atoms that may share negatively charged electrons through a covalent bond.
In consequence, a polar covalent bond is a special class of covalent bond where atoms show an unequal distribution in the covalent bond.
Therefore, with this data, we can see that polar covalent bonds represent a special class of covalent bonds where the atoms form a bond but they are distributed in an equal way, which occurs between titanium and nitrogen due to their electronegative charges and therefore unequal distribution of these charges.
Complete question:
Which element can bond with titanium (Ti) to form a polar covalent bond?A.
beryllium (Be)
B.
fluorine (F).
C.
manganese (Mn)
D.
nitrogen (N)
E.
oxygen (0)
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The rate constant (k) for a reaction was measured as a function of temperature. A plot of lnk versus 1/T (in K ) is linear and has a slope of − 5780 K. Calculate the activation energy for the reaction
The value of the rate constants at various temperatures can be measured from the plot of ln K versus 1/T. The activation energy of the reaction obtained from the plot is
What is activation energy?The minimum excess energy that the reactants must acquire so as to have energy equal to the threshold energy for the reaction is defined as the activation energy.
In the plot of ln K versus 1/T the slope obtained is [ -Eₐ / 2.303 R ] and the intercept on the y -axis is equal to log A.
Here the slope in the plot is given as − 5780 K. Then the activation energy is calculated as:
Slope = -Eₐ / R
-5780 K = -Eₐ / 8.314 J/ mol.K
Eₐ = 8.314 J/ mol.K × 5780 K = 48054.9 J/ mol = 48.054 kJ.
Thus the activation energy of the reaction is 48054.9 J/ mol or 48.054 kJ.
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Which equation shows how frequency is related to velocity and wavelength?
The equation that shows how frequency is related to velocity and wavelength is f = v / λ (Option A)
What is frequency?This is defined as the number of oscillations made in one second. It is expressed as
Frequency (f) = 1 / period (T)
f = 1 / T
Relationships between frequency, wavelength and velocityThe velocity, frequency and wavelength of a wave are related according to the following equation
v = λf
Making f the subject, we have
f = v / λ
Thus, we can conclude that the correct answer to the question is:
f = v / λ (Option A)
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What pressure will be produced when 2.0 moles of N2 gas is heated to 68oC in a container that holds 1.25 of gas?
The pressure of the nitrogen gas produced is determined as 44.77 atm.
What is the pressure of the Nitrogen gas?
The pressure of the nitrogen gas is determined from ideal gas equation, as shown below;
PV = nRT
P = nRT/V
where;
n is number of moles = 2 molesR is ideal gas constant = 0.08205 L.atm/mol.KT is temperature = 68⁰C = 68 + 273 = 341 KV is volume = 1.25 LP = (2 x 0.08205 x 341)/(1.25)
P = 44.77 atm.
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Write on atomic orbital,bohr atom, dual nature of matter (with reference)
Answer:
i am confused sorry guys.How many moles are in 68 grams of Mg(OH)
Answer:
1.16 mol
Explanation:
Given data:
Mass in gram Mg(OH)₂ = 68 g
Number of moles of Mg(OH)₂ = ?
Solution:
Formula:
Number of moles = mass/molar mass
Molar mass of Mg(OH)₂ = 58.32 g/mol
By putting values,
Number of moles = 68 g/ 58.32 g/mol
Number of moles = 1.16 mol
The pH of a 0.15 M butylamine, C&H3NH2 solution is 12.0 at 25°C. Calculate the dissociation
constant of the base.
The dissociation constant of the base : 7.4 x 10⁻⁴
Further explanationButylamine, C4H9NH2 Is A Weak Base
Kb is the dissociation constant of the base.
LOH (aq) ---> L⁺ (aq) + OH⁻ (aq)
\(\rm Kb=\dfrac{[L][OH^-]}{[LOH]}\)
[OH⁻] for weak base can be formulated :
\(\tt [OH^-]=\sqrt{Kb.M}\)
pH of solution : 12
pH+pOH=14, so pOH :
14-12 = 2, then :
\(\tt [OH^-]=10^{-pOH}\\\\(OH^-]=10^{-2}\)
the the dissociation constant (Kb) =
\(\tt 10^{-2}=\sqrt{Kb.0.15}\\\\10^{-4}=Kb\times 0.15\\\\Kb=\dfrac{10^{-4}}{0.15}=6.6\times 10^{-4}\)
Or you can use from ICE method :
C4H9NH2(aq) + H2O(l) ⇌ C4H9NH3+(aq) + OH-(aq)
0.15
x x x
0.15-x x x
\(\tt Kb=\dfrac{x^2}{0.15-x}\rightarrow x=[OH^-]\\\\Kb=\dfrac{10^{-4}}{0.15-10^{-2}}=7.14\times 10^{-4}\)
Which of the following monosaccharides is not an aldose?
Select one:
a, erythrose
b. fructose
c. glucose
d. glyceraldehyde
Answer:
fructose
Explanation:
because fructose is a ketonic sugar.
Which yield comes from measurements obtained during a real experiment?
A) actual yield
B) theoretical yield
C) percent yield
Answer:
A) actual yield
Explanation:
Theoretical yield is the amount of product expected based on the stoichiomety.
Percent yield is the actual yield over the theoretical yield.
How many liters would you need to make a 1 m solution if you have 6 mol of sodium hydroxide.
The liters would we need to make the 1 M solution if we have 6 mol of sodium hydroxide of 6 L.
The moles of the sodium hydroxide = 6 mol
The molarity of the sodium hydroxide = 1 M
The expression for the molarity is as follows :
The molarity = moles / volume in L
The volume of the sodium hydroxide = moles / molarity
The volume of the sodium hydroxide = 6 / 1
The volume of the sodium hydroxide = 6 L.
Thus the volume of the sodium hydroxide is 6L in the 1 M of the solution.
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Scenario: You place a spoonful of frozen ice cream on your tongue a) Type of energy transfer b) Where will each form of transfer occur c) What will happen and why?
The type of energy transfer between the frozen ice cream and the tongue is convection. The frozen ice cream will gradually melt because of the temperature difference.
What is convection?Convection is the method of heat transfer that involves the transmission of heat in a fluid (liquid or gas) by the circulation of currents.
According to this question, a spoonful of frozen ice cream is placed on the tongue. The heat transfer will occur between the tongue with warmer temperature and the ice cream with colder temperature.
The heat energy will flow from the tongue to the ice cream, hence, making it defreeze or melt with time. This type of heat transfer is convection because it involves a fluid.
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The acetoacetic ester synthesis is a method for preparing methyl ketones from alkyl halides.
a. True
b. False
please help this is timed.
What is the total number of complete waves in the graph below
Answer:
2
Explanation:
you go from the middle line where it starts until you hit where it starts the pattern so if you took that shape it and flipped the bottom part it makes a big, complete oval
I hope this helped :))
Question 9
5 pts
Which energy transfer is correctly matched?
Fusion in the sun: chemical to light and heat
Lighting a match: heat energy into chemical energy
a cell phone: thermal to electrical
Turning on a ceiling fan: electrical to mechanical
Answer:
fusion in the sun
Explanation:
I know this because I am currently talking this test and I know it cause I did it
Answer:Turning on a ceiling fan: electrical to mechanical
I took the test and Fusion in the sun: chemical to light and heat Lighting a match: sound energy into chemical energy were the wrong answers.
An atom contains 18 neutrons and a mass number of 35. Draw the electronic structure of the atom and write down the electronic configuration
The electronic configuration is [Ne] 3s² 3p⁵
What is the electronic configuration?The electronic configuration of an atom or ion refers to the arrangement of its electrons in different energy levels or orbitals around the atomic nucleus. The electronic configuration determines many of the chemical and physical properties of an atom, as it affects how the electrons interact with other atoms or ions.
Electrons are arranged in different energy levels or shells, with each shell containing one or more subshells or orbitals.
The atomic number of the element is 35 - 18 = 17
Thus the element is chlorine.
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A small amount of chemical splashes in Frank’s eye. What should Frank do immediately?
Answer:
A small amount of chemical splashes in Frank's eye. What should happen next? Frank should go to the eyewash station while his lab partner tells the teacher what happened.
Explanation:
Brainlist
Totsw6) 33 grams of Beryllium hydride, BeH2, are dissolved
in 6.0 Liters of solution.
M001 loi 0.
no
Answer?
The molarity of the solution obtained by dissolving 33 g of Beryllium hydride, BeH₂, in 6.0 Liters of solution is 0.5 M
What is molarity?Molarity is defined as the mole of solute per unit litre of solution. Mathematically, it can be expressed as:
Molarity = mole / Volume
How to determine the mole of BeH₂Mass of BeH₂ = 33 gMolar mass of BeH₂ = 9 + (1×2) = 11 g/mol Mole of BeH₂ =?Mole = mass / molar mass
Mole of BeH₂ = 33 / 11
Mole of BeH₂ = 3 moles
How to determine the molarity Mole of BeH₂ = 3 moles Volume = 6 L Molarity =?Molarity = mole / Volume
Molarity = 3 / 6
Molarity = 0.5 M
Thus, the molarity of the solution is 0.5 M
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