Answer:
3167 .8 liters
Explanation:
P1 V1 = P2 V2
96.3 * 2000 = 60.8 * V2 solve for V2 =3167.8 l
Why do lunar and solar eclipses not happen every month?
Starting with 0.3500 mol CO(g) and 0.05500 mol COCl2(g) in a 3.050 L flask at 668 K, how many moles of CI2(g) will be present at equilibrium?
CO(g) + Cl2(g)》COCl2(g)
Kc= 1.2 x 10^3 at 668 K
At equilibrium, the number of moles of \(Cl_2\) (g) will be 0.2025 mol.
1: Write the balanced chemical equation:
\(C_O\)(g) + \(Cl_2\)(g) ⟶ \(C_OCl_2\)(g)
2: Set up an ICE table to track the changes in moles of the substances involved in the reaction.
Initial:
\(C_O\)(g) = 0.3500 mol
\(Cl_2\)(g) = 0.05500 mol
\(C_OCl_2\)(g) = 0 mol
Change:
\(C_O\)(g) = -x
\(Cl_2\)(g) = -x
\(C_OCl_2\)(g) = +x
Equilibrium:
\(C_O\)(g) = 0.3500 - x mol
\(Cl_2\)(g) = 0.05500 - x mol
\(C_OCl_2\)(g) = x mol
3: Write the expression for the equilibrium constant (Kc) using the concentrations of the species involved:
Kc = [\(C_OCl_2\)(g)] / [\(C_O\)(g)] * [\(Cl_2\)(g)]
4: Substitute the given equilibrium constant (Kc) value into the expression:
1.2 x \(10^3\) = x / (0.3500 - x) * (0.05500 - x)
5: Solve the equation for x. Rearrange the equation to obtain a quadratic equation:
1.2 x \(10^3\) * (0.3500 - x) * (0.05500 - x) = x
6: Simplify and solve the quadratic equation. This can be done by multiplying out the terms, rearranging the equation to standard quadratic form, and then using the quadratic formula.
7: After solving the quadratic equation, you will find two possible values for x. However, since the number of moles cannot be negative, we discard the negative solution.
8: The positive value of x represents the number of moles of \(Cl_2\)(g) at equilibrium. Substitute the value of x into the expression for \(Cl_2\)(g):
\(Cl_2\)(g) = 0.05500 - x
9: Calculate the value of \(Cl_2\)(g) at equilibrium:
\(Cl_2\)(g) = 0.05500 - x
\(Cl_2\)(g) = 0.05500 - (positive value of x)
10: Calculate the final value of \(Cl_2\) (g) at equilibrium to get the answer.
Therefore, at equilibrium, the number of moles of \(Cl_2\) (g) will be 0.2025 mol.
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what is the kg of the net force is 30 N and the acceleration is 6 m/s 2
Answer:
5kg
Explanation:
Use the law: F=MA
F= force which is newton
M= mass which is kg
A= acceleration which is \(m/s^{2}\)
1. Imagine that you found a new element that has 4 valence electrons and 8 energy levels. What group would it be in?
2. What period would it be in?
Question 3 and 4 In picture.
Answer:it would be in group 14 and in period 8.
Explanation:
. Phosphorus – 29 is a positron emitter. Write an equation for this nuclear reaction and identify the product nucleus
The equation of the nuclear reaction of the positron emitter is:
\(^{29}P_{15}\longrightarrow^{29}Si_{14} +^0e_{+1}\)
What is the nuclear reaction?In nuclear chemistry, a nuclear reaction can be described as a process in which two nuclei and an external subatomic particle, collide to form one or more new nuclides. Therefore, a nuclear reaction should cause a transformation of one nuclide to another.
The term "nuclear reaction" refers either to a change in a nuclide induced by collision with a particle or to a spontaneous change of a nuclide without collision.
The emission of a positron from phosphorous-29 can be represented:
\(^{29}P_{15}\longrightarrow^{A}X_{Z} +^0e_{+1}\)
15 = Z +1
Z = 14
and, 29 = A + 0
A = 29
The product of the given nuclear reaction is ²⁹Si₁₄.
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How many molecules are in
5.657g H2SO4?
There are approximately 3.47 x 10²² molecules in 5.657g H₂SO₄.
To calculate the number of molecules in 5.657g H₂SO₄, we need to use the Avogadro's number and the molar mass of H₂SO₄.
The molar mass of H₂SO₄ is 98.079 g/mol.
We need to calculate the number of moles of H₂SO₄:
Number of moles = mass/molar mass
= 5.657g / 98.079 g/mol
= 0.05767 mol.
Then, we can use Avogadro's number, which is 6.022 x 10²³ molecules/mol, to find the number of molecules:
Number of molecules = number of moles x Avogadro's number
= 0.05767 mol x 6.022 x 10²³ molecules/mol
= 3.47 x 10²² molecules
To calculate the number of molecules in a given sample of a substance, you need to use the Avogadro's number, which is 6.022 x 10²³ molecules/mol. This means that one mole of a substance contains 6.022 x 10²³ molecules.
We are given the mass of H₂SO₄, which is 5.657 g. To calculate the number of molecules, we first need to determine the number of moles of H₂SO₄ in the given sample. The molar mass of H₂SO₄ is 98.08 g/mol. So, the number of moles of H₂SO₄ can be calculated as follows:
moles = mass / molar mass
moles = 5.657 g / 98.08 g/mol
moles = 0.0576 mol
Now, we can use the Avogadro's number to determine the number of molecules of H₂SO₄ in 0.0576 moles:
number of molecules = moles x Avogadro's number
number of molecules = 0.0576 mol x 6.022 x 10²³ molecules/mol
number of molecules = 3.47 x 10²² molecules
As a result, in 5.657 g of the material, there are roughly 3.47 x 1022 molecules of H₂SO₄.
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Which of the following is an incorrect representation for a neutral atom?
36Li
613C
3063Cu
1530P
This representation suggests that the element is phosphorus (P) with a mass number of 30, which is incorrect. The correct mass number for phosphorus is approximately 30.97. The incorrect representation for a neutral atom is 36Li
To determine the correct representation for a neutral atom, we need to consider the atomic number (Z) and mass number (A) of the element. The atomic number represents the number of protons in the nucleus, while the mass number represents the sum of protons and neutrons.
Let's analyze the given representations:
36Li:
This representation suggests that the element is lithium (Li) with a mass number of 36, which is incorrect. The correct mass number for lithium is approximately 6.94.
613C:
This representation suggests that the element is carbon (C) with a mass number of 13, which is correct. Carbon has different isotopes, and 13C represents one of its stable isotopes.
3063Cu:
This representation suggests that the element is copper (Cu) with a mass number of 63, which is correct. Copper has different isotopes, and 63Cu represents one of its stable isotopes.
1530P:
This representation suggests that the element is phosphorus (P) with a mass number of 30, which is incorrect. The correct mass number for phosphorus is approximately 30.97.
Therefore, the incorrect representation for a neutral atom is 36Li, as it does not match the known properties of lithium.
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When the conductivity is at a minimum, what must be true about the amount of Ba(OH)2?
When the conductivity is at a minimum, the true thing about the amount of Ba(OH)₂ is that the amount of the two reactants are the same when conductivity is low.
What is conductivity?The ability of an aqueous solution to carry an electric current is measured by its conductivity. Ionic strength is measured by conductivity monitors. In automated chromatography systems, conductivity is the main input control parameter used to enable the generation of salt gradients or to control buffer dilution or in-line buffer preparation.
Conductivity monitors can be used to automate and monitor cleaning and equilibration procedures. It's important to remember that temperature affects measurements of conductivity and pH.
When conductivity is low, the amounts of the two reactants are equal. Between the reactants, there are no excesses. The aqueous solution cannot dissolve the precipitate BaSO₄. Since there are no ions, the conductivity is at its lowest.
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Complete question
The Ba(OH)₂ dissociates as Ba+2 + 2 OH-. H₂SO₄ dissociates as 2 H+ + SO₄-2. When the conductivity is at a minimum, what must be true about the amount of Ba(OH)₂ compared to H₂SO₄
Which force pulls an object inwards to accelerate in a circular motion around another object
A centripetal force is experienced by any item traveling in a circle (or along a circular path).
What is centripetal force?A centripetal force is a force that causes a body to move in a circular motion. The centripetal force always acts orthogonally to the motion of the body and towards the stationary point of the path's instantaneous center of curvature.
Centripetal force is demonstrated by the rotation of the moon around the earth and the spinning of the top.
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Calculate the mass of 0.105 mol of Na₂CO3-10H₂0. [H= 1; C = 12; O = 16; Na = 23]
30.03 g
This is the right answer .
The elevated ridges of the brain are
called the
are patches of gray matter that
regulate skeletal muscle movement.
is the gray matter is located in the
outermost region of the brain
involved with integration.
--
The are large fiber tracts that
allow the two hemispheres to
communicate with each other.
--
[Choose]
[Choose]
[Choose]
[Choose]
<
>
The elevated ridges of the brain are called gyri. Motor cortex are patches of gray matter that regulate skeletal muscle movement.
Cerebral cortex is the gray matter is located in the outermost region of the brain involved with integration.
Corpus callosum are large fiber tracts that allow the two hemispheres to communicate with each other.
How to explain the informationThe elevated ridges of the brain are called the gyri. Motor cortex are patches of gray matter that regulate skeletal muscle movement.
Cerebral cortex is the gray matter is located in the outermost region of the brain involved with integration. Corpus callosum are large fiber tracts that allow the two hemispheres to communicate with each other.
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Some objects can store more thermal energy than others.
A. True
b. False
Answer:
A. True
Explanation:
One main difference between the heating of gases on the one hand and solids or liquids on the other is that ___________________. One main difference between the heating of gases on the one hand and solids or liquids on the other is that ___________________. heating of gases depends not only on the temperature difference, but also on the process as well as the amount of gas present. heating of gases depends on temperature difference as well as the amount of gas present. specific heat is not defined for gases. heat cannot be exchanged with gases.
Answer:
heating of gases depends not only on the temperature difference, but also on the process as well as the amount of gas present.
Explanation:
The work done when a gas is heated does not only depends on the initial and final states of the gas but also on the process used to achieve the change of state of the gas.
Several processes can be applied in changing the state of a gas such as; adiabatic process, isobaric process, isochoric process and isothermal process.
Hence, the heating of a gas, depends not only on the temperature difference, as well as the amount of gas present according to the ideal gas laws but also on the process used to achieve the change of state.
A gas occupies a volume of 584 mL at a pressure of 770 mm of Hg. When the pressure is changed, the volume becomes 603 mL If the temperature stays constant, what is the new pressure in mm of Hg?
Please help!!
Answer:
\(P_2=795mmHg\)
Explanation:
Hello there!
In this case, according to the given information, it turns out possible for us to calculate the final pressure by using the Boyle's law as an inversely proportional relationship in pressure to volume at constant temperature:
\(\frac{P_2}{V_2} =\frac{P_1}{V_1}\)
Thus, we solve for our target, P2, to obtain:
\(P_2=\frac{P_1V_2}{V_1} =\frac{770mmHg*603mL}{584mL}\\\\P_2=795mmHg\)
Regards!
lons form because the loss of one or more electrons makes
them less stable than their corresponding atoms; this state
requires more energy to maintain.
TRUE
FALSE
This statement lons form because the loss of one or more electrons makes them less stable than their corresponding atoms; this state requires more energy to maintain is FALSE.
An ion forms when an atom loses or gains one more electrons. This loss or gain of electrons causes the ion to gain the stable octet configuration. This stable octet configuration requires less energy to maintain than the corresponding atom.So, since the stable octet configuration of the ion requires less energy than the corresponding atom, the statement is false.
So, the statement lons form because the loss of one or more electrons makes them less stable than their corresponding atoms; this state requires more energy to maintain is FALSE.
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What is exfoliation?
Answer:
Exfoliation involves the removal of the oldest dead skin cells on the skin's outermost surface. Exfoliation is involved in all facials, during microdermabrasion or chemical peels. Exfoliation can be achieved by mechanical or chemical means.
Explanation:
I did copy off internet!
:P
Which of these is
true for a
molecular model
like the one
shown?
A. The model shows the relative sizes of the atoms to each other.
B. The model shows how the various atoms are connected in the
molecule.
C. We can always identify the type of each atom based on color.
D. The model shows the actual size of each atom correctly.
The true statement about the model is that the model shows how the various atoms are connected in the molecule.
What is a molecular model?
A molecular model is a representation of a molecule. We know that the molecular model shows the extent to which the atoms are bonded in the compound. The model gives us an idea of the intricate atom to atom arrangement that exists in the molecule that is under study.
Now we know that the atoms that are in the models must be shown by the use of different colors. This enables us to be able to effectively and properly distinguish between the atoms of the compound as shown in the model.
The true statement about the model is that the model shows how the various atoms are connected in the molecule.
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Is sand a substance or is seawater a substance or is salt a substance?
Sand, seawater, and salt are substance because all of these matter has a specific composition and specific properties.
What is substance?A substance is defined as a matter which has a specific composition and properties. A compound is a mixture that is the same or uniform throughout. Think of the example of salt water. This is also called a "homogenous mixture." A blend that is not a solution is not constant throughout. Saltwater is a homogeneous mixture or a solution. Soil is collected from small pieces of a variety of materials, so it is a heterogeneous mixture. Water is a substance; more correctly, because water is controlled by hydrogen and oxygen, it is a compound.
So we can conclude that Salt and other combination can only be decomposed into their elements by a chemical process.
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Guys i need help with these questions! I will give brainliest to the first person who answers
determine the number of atoms of each element in the empirical formula of a compound with the following composition: 65.08 percent c, 10.14 percent h, 24.77 percent o.
The number of atoms of each element in the empirical formula of a compound is C7H13O2.
Empirical formula mass = 129 g/mol
Carbon atom =7
Hydrogen atom =13
Oxygen atom=2
The empirical formula is a representation of the simplest whole number ratio of atoms in a compound. It is derived from the results of chemical analysis and gives the smallest whole number ratio of elements in a compound. The empirical formula is not always equal to the molecular formula, which gives the actual number of atoms of each element in a molecule.
To find the empirical formula, the number of moles of each element in a sample must be determined. The moles of each element can be divided by the smallest number of moles to obtain the ratio of elements. This ratio is the empirical formula. The empirical formula can be used to identify unknown compounds, predict properties and reactivity, and provide information about the molecular structure.
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what mass of glucose c6h12o6 would be required to prepare 5000 mL of a 0.215 M solution
Approximately 194.0 grams of glucose (C6H12O6) would be required to prepare a 5000 mL solution with a concentration of 0.215 M.
To determine the mass of glucose (C6H12O6) required to prepare a 0.215 M solution in 5000 mL, we need to use the formula:
Molarity (M) = moles of solute / volume of solution (in liters)
First, let's convert the volume of the solution from milliliters (mL) to liters (L):
5000 mL = 5000/1000 = 5 L
Now, we can rearrange the formula to solve for moles of solute:
moles of solute = Molarity (M) x volume of solution (L)
moles of solute = 0.215 M x 5 Lmoles of solute = 1.075 mol
Since glucose (C6H12O6) has a molar mass of approximately 180.16 g/mol, we can calculate the mass of glucose using the equation:
mass of solute = moles of solute x molar mass of solute
mass of glucose = 1.075 mol x 180.16 g/mol
mass of glucose = 194.0 g (rounded to three significant figures)
Therefore, approximately 194.0 grams of glucose (C6H12O6) would be required to prepare a 5000 mL solution with a concentration of 0.215 M. It's important to note that the molar mass of glucose used in this calculation may vary slightly depending on the level of precision required.
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T:
How were you able to balance the
reaction? Select the two correct
answers.
SELECT ALL THAT APPLY
by using a coefficient of 2 for N₂
by using a coefficient of 4 for H₂
by using a coefficient of 3 for H₂
by using a coefficient of 3 for N₂
by using a coefficient of 1 for N₂
SUBMIT
The equation can be balanced by using options C and E
How do you balance a reaction equation?To balance a chemical reaction equation, you need to ensure that the number of atoms of each element is the same on both sides of the equation. Balancing the equation is important because it follows the law of conservation of mass, which states that matter cannot be created or destroyed in a chemical reaction.
Start balancing with elements that appear in the fewest compounds: Begin balancing the equation by adjusting elements that appear in the fewest compounds first.
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A sample of O2 gas occupies a volume of 571 mL at 26 ºC. If pressure remains constant, what would be the new volume if the temperature changed to:
(a) -5 ºC
(b) 95 ºF
(c) 1095 K
Answer: The new volume at different given temperatures are as follows.
(a) 109.81 mL
(b) 768.65 mL
(c) 18052.38 mL
Explanation:
Given: \(V_{1}\) = 571 mL, \(T_{1} = 26^{o}C\)
(a) \(T_{2} = 5^{o}C\)
The new volume is calculated as follows.
\(\frac{V_{1}}{T_{1}} = \frac{V_{2}}{T_{2}}\\\frac{571 mL}{26^{o}C} = \frac{V_{2}}{5^{o}C}\\V_{2} = 109.81 mL\)
(b) \(T_{2} = 95^{o}F\)
Convert degree Fahrenheit into degree Cesius as follows.
\((1^{o}F - 32) \times \frac{5}{9} = ^{o}C\\(95^{o}F - 32) \times \frac{5}{9} = 35^{o}C\)
The new volume is calculated as follows.
\(\frac{V_{1}}{T_{1}} = \frac{V_{2}}{T_{2}}\\\frac{571 mL}{26^{o}C} = \frac{V_{2}}{35^{o}C}\\V_{2} = 768.65 mL\)
(c) \(T_{2} = 1095 K = (1095 - 273)^{o}C = 822^{o}C\)
The new volume is calculated as follows.
\(\frac{V_{1}}{T_{1}} = \frac{V_{2}}{T_{2}}\\\frac{571 mL}{26^{o}C} = \frac{V_{2}}{822^{o}C}\\V_{2} = 18052.38 mL\)
Ocean water contains 3.3 % NaCl by mass.
How much salt can be obtained from 234g of seawater?
Answer:
Ans: 8.9 NaCl
Explanation:
Ocean water contains 3.5 nacl by mass how much salt can be obtained from 254 g of seawater
Question: Ocean water contains 3.5% NaCl by mass. How much salt can be obtained from 254g of seawater?
The bright coloring of the skin of this poison dart frog announces, "Don't eat me! My
skin is poisonous."
This is an example of an adaptation that meets the challenge of...
maintaining structure
reproduction.
getting and using energy
2A+2b+2c rate law for this reaction?
Rate =\(k[A]^2[B]^2[C]^2\) with an overall reaction order of 6.
The rate law for a chemical reaction expresses the relationship between the rate of the reaction and the concentrations of the reactants. In the given reaction, 2A + 2B + 2C, the general rate law expression can be written as:
Rate =\(k[A]^a[B]^b[C]^c\)
However, since the coefficients in the balanced chemical equation represent the stoichiometric coefficients, they can also be used as the exponents in the rate law expression. Therefore, the rate law for the given reaction would be:
Rate =\(k[A]^2[B]^2[C]^2\)
Here, a = 2, b = 2, and c = 2 represent the exponents corresponding to the reactants A, B, and C, respectively. The overall order of the reaction is determined by adding the exponents:
Overall reaction order = a + b + c = 2 + 2 + 2 = 6
Hence, the rate law for the reaction 2A + 2B + 2C would be:
Rate =\(k[A]^2[B]^2[C]^2\) with an overall reaction order of 6.
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738.90 m has ____ significant figures
Answer: 4
Explanation: because the zero doesn't count
100 points need now!!!!!!!!!!!!!!! (dont copy what the web says when you search this up...)
how do earthquakes and volcanoes help scientists learn about earth core
Answer:
The scientist learn about the Earth core by the seismic waves by seeing how the core level are different from each other. Like the heat, the width, and how deep it is.
Answer and Explanation:
Theories and scientists make predictions about what could potentially be in the Earth's core. Earth is said to consist of many layers, but scientists ponder what lies in the middle. Earthquakes and volcanoes kind of work together in a way, since they both deal with Earth's energy. And yes, seismic waves do teach scientists about the two, but it's more than that.
Both earthquakes and volcanoes can teach scientists how these natural disasters affect nature. For example, when lava touches a forest floor, or even rock, it can melt everything in it's path. But, it can produce new plant life once the Earth beneath it heals. Earthquakes can help teach scientists about the layers in the Earth and where these spots are most frequent in the world where they appear.
Also, lava from volcanoes can tell scientists that there is some sort of liquid towards the center of the Earth, not only types of solids.
Let me know if you have more questions, I hope this helps.
Commercially prepared cloning vectors such as pUC18 are designed to contain several useful features. An example of one of these features is ________.
Vectors may be plasmids. An example of one of several useful features of commercially prepared cloning vectors is MULTIPLE CLONING SITES.
The pUC18 vector is a widely used standardized cloning vector for replication in Escherichia coli.
A multiple cloning site can be defined as a short DNA fragment observed in genetically engineered plasmids.
These DNA fragments (multiple cloning sites) contain twenty (20) or more sites where restriction enzymes can cut in order to generate recombinant DNA molecules.
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How do you prepare a solution of sugar 342g/mol. 0.45 in 50ml
0.01 mol/L is the molarity of given solution. 0.002 moles is added to 0.2 L solvent to make desired solution.
The amount of moles of solute found in a specific number of litres of the solution, or moles per litre of a solution, is known as molar concentration or molarity. Solutes are simply substances that can be found in solutions because a solution is defined as a homogenous mixture that comprises one or more solutes.
molar mass =342g /mol
number of moles=mass of solute / molar mass
0.45 /342 =0.002 moles
Volume solution = 50 mL / 1000 =0.2 L
M = n / V
M = 0.002 / 0.2
M = 0.01 mol/L
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