Which of the following statements regarding the energy of a particle is NOT correct?
a. The ground state of a particle is the lowest and most stable energy state.
b. The energy of a particle is zero when it is in its ground state.
c. An excited state is any energy state above the ground state.
d. When the particle undergoes a transition from a higher energy state to a lower
one, energy is emitted

Answers

Answer 1
The answer would be D

Related Questions

Is it dangerous to remove gunpowder from firecracker​

Answers

Gun powder and any other firework explosive needs combustion to explode so if there’s no fire around the firecracker it’s 999999.99999999% likely you’ll be okay unless it gets in ur eyes or u snort it

Spread your smarts while you wait.

Answers

Answer:

lol ok 1+1=2 2 x 2=4

have a good day :)

Explanation:

Answer:  oke

Explanation: have a goood day!

What is the hypothetical van't Hoff factor of magnesium nitrate, Mg(NO3)2?

Answers

Answer:

The hypothetical van't Hoff factor of magnesium nitrate,[tex]Mg(NO_3)_2[/tex] is 3 .

Explanation:

Lets calculate -

[tex]Mg(NO_3)_2\rightarrow Mg^2^+ +2NO_3^-[/tex]

We know that ,

[tex]i=\alpha n+(1-\alpha )[/tex]

Dissociation should be 100% for the hypothetical vant hoff factor , that is

[tex]\alpha =1[/tex] and [tex]n=3[/tex] for  [tex]Mg(NO_3)_2[/tex]

Therefore , putting the given values ,

[tex]i=1\times3+(1-1 )[/tex]

[tex]i=3+0[/tex]

[tex]i=3[/tex]

Hence , the answer is 3.

The hypothetical van't Hoff factor of magnesium nitrate is 3.

Van't Hoff factor is a measure of the deviation of a solution from ideal behavior. It depends on the number of particles in the solution. The more the particles in solution, the greater the Van't Hoff factor and the greater the deviation from ideal behavior.

For Mg(NO3)2, the hypothetical van't Hoff factor is 3 since there are three particles in solution when magnesium nitrate is dissolved in water.

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The enthalpy of formation of water is -285.8 kJ/mol. What can be inferred from this statement? O The enthalpy of the products is equal to the enthalpy of the reactants. O Heat is absorbed during the process. O Heat is released during the process. The enthalpy of the products is more than the enthalpy of the reactants.​

Answers

Answer:

the answer is c

Explanation:

i did the test

The enthalpy of the formation of water is -285.8 kJ/mol. The information that can be made by the statement is heat is released during the process. The correct option is C.

What is enthalpy?

Enthalpy is the volume times the pressure times the internal energy of the system. It is an entity of thermodynamics. It is the measurement of the energy in a thermodynamic system. The enthalpy totals the internal energy plus pressure and volume.

The statement that is given here is given that enthalpy is -285.8 kJ/mol. The value is negative, so the energy is released here. When energy is gained the energy will be positive and when the energy is released it is negative.

Thus, the correct option is C, heat is released during the process regarding the given statement of enthalpy.

To learn more about enthalpy, refer to the link:

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What frequency corresponds to an absorption line at 460 nm?
A. 1.53 x 1014 Hz
B. 6.88 x 1014 Hz
C. 6.52 x 1014 Hz
D. 4.32 x 1014 Hz

Answers

Answer:

C. 6.52 x 10^14 Hz

Explanation:

hope this helps

A 0.125 g sample of unknown hydrocarbon is prepared for combustion analysis. After the hydrocarbon undergoes complete combustion, 0.4225 g of CO2 and 0.0865 g of H2O are produced. What is the empirical formula of the unknown

Answers

Answer:

Empirical formula is CH

Explanation:

A hydrocarbon, CₐHₓ reacts with oxygen in the combustion reaction as follows:

CₐHₓ + O₂ → a CO₂ + x/2 H₂O

That means we can find the moles of C and H from the moles of CO2 and H2O. As empirical formula is defined as the simplest whole-number ratio of atoms in a molecule, we can determine it as follows:

Moles CO2 = Moles C -Molar mass: 44.01g/mol:

0.4225g * (1mol / 44.01g) = 0.0096 moles C

Moles H2O -Molar mass: 18.01g/mol:

0.0865g H2O * (1mol / 18.01g) = 0.0048moles H2O * (2mol H / 1mol H2O) =

0.0096 moles H

The ratio of atoms of C:H is:

0.0096moles C / 0.0096moles H = 1

That means empirical formula is CH

What is one movement that liquid water CANNOT do while on or at the Earth's surface? (GIVE RIGHT ANSWER OR I DELETE 100 POINTS)

Answers

Answer:

One movement that i can't do is float in mid air

Explanation:

Question 1 (1 point)
It is not necessary to balance an equation to find the correct mole ratios.
True
False

Answers

Answer:

false

Explanation:

cozz you'll need it inorder to find the correct mole ratio

How many molecules are present in 4.5
moles of H2O?

Answers

Answer:

Mole of the H2O = 4.5

Number of molecules =4.5 multipled by avogadro's number.

The heat of combustion per mole for acetylene, C2H2(g), is -1299.5 kJ/mol. Assuming that the combustion products are CO2(g) and H2O(l), and given that the enthalpy of formation is -393.5 kJ/mol for CO2(g) and -285.8 kJ/mol for H2O(l), find the enthalpy of formation of C2H2(g).

Answers

Answer: The heat of combustion per mole for acetylene is 227.7 kJ/mol.

Explanation:

The combustion equation of acetylene is as follows.

[tex]C_{2}H_{2} + \frac{5}{2}O_{2} \rightarrow 2CO_{2} + H_{2}O[/tex]

Formula to calculate enthalpy of formation for a reaction is as follows.

[tex]\Delta H^{o}_{rxn} = \sum \Delta H_{products} - \sum \Delta H_{reactants}\\\Delta H^{o}_{rxn} = [2\Delta H^{o}_{f}(CO_{2}) + \Delta H^{o}_{f} (H_{2}O)] - [\Delta H^{o}_{f}(C_{2}H_{2}) + \frac{5}{2} \Delta H^{o}_{f} O_{2}]\\-1299.5 = 2(-393.5) + (-285.8) - \Delta H^{o}_{f} (C_{2}H_{2})\\\Delta H^{o}_{f} (C_{2}H_{2}) = 227.7 kJ/mol[/tex]

Thus, we can conclude that heat of combustion per mole for acetylene is 227.7 kJ/mol.

If the fan and power source are not connected to anything else, the amount of electrical energy is the same as the amount of mechanical energy. What is this rule known as?

1. transference of energy
2. conversion of energy
3. adaptation of energy
4. conservation of energy

Answers

Answer:

not B

Explanation:

my friend got it wrong

in an expirement a scientist should

Answers

I suppose there are answer choices you forgot to list but in general

They should think of a question
They should form a hypothesis
Do research and test
Have an independent and dependent variable
Have repetitions and replications

If there’s answer choices put them in the comments and I’ll answer it

Hl Weakly dissociates in water according to the chemical equation below. H20+ Hl <-> H3O^+ + l- What is a conjugate acid-base pair in this reaction?

Answers

Answer:

https://www.clutchprep.com/chemistry/practice-problems/70217/hi-aq-h2o-l-h3o-aq-i-aq-identify-each-as-either-a-bronsted-lowry-acid-bronsted-l

Explanation:

https://www.clutchprep.com/chemistry/practice-problems/70217/hi-aq-h2o-l-h3o-aq-i-aq-identify-each-as-either-a-bronsted-lowry-acid-bronsted-l

What is the oxidation state of nitrogen in Nz?

Answers

Answer:

the oxidation state of nitrogen is +5


10 ml of a 0.25M solution is diluted to make exactly 250 ml of solution. What's the concentration of the diluted solution?

Answers

Answer:

0.01 M

Explanation:

As this problem deals with a dilution process, we can solve it by using the following formula:

C₁V₁=C₂V₂

Where subscript 1 stands for the initial concentration and volume, while 2 stands for the final conditions.

That means that in this case:

C₁ = 0.25 MV₁ = 10 mLC₂ = ?V₂ = 250 mL

We input the given data:

0.25 M * 10 mL = C₂ * 250 mLC₂ = 0.01 M

Solve (2 x 10^3) + (7 x 10^5) *

Answers

Answer:

702000

Explanation:

(2 x 10^3) + (7 x 10^5)

=> 2 x 1000 + 7 x 100000

=> 2000 + 700000

=> 702000

What are the missing coefficients for H3PO4 + HCl = PCl5 + H2o

Answers

Answer:

H3PO4 + 5 HCl → PCl5 + 4 H2O

Explanation:

The given equation is

H3PO4 + HCl = PCl5 + H2O

The above chemical equation has one P atom on both the sides, hence phosphorus is balanced

There are 5 Cl on the RHS but only one Cl on the LHS. On balancing the chlorine, we get -

H3PO4 + 5HCl = PCl5 + H2O

Now, there are 8 hydrogen atom on the LHS but only two on the RHS. On balancing the hydrogen on both the sides, the new equation become

H3PO4 + 5HCl = PCl5 + 4H2O

Let us check for oxygen

Oxygen on LHS = 4 and oxygen on RHS = 4

Thus, the balanced equation is H3PO4 + 5HCl = PCl5 + 4H2O

1. Which individuals are most likely to die before reproducing, those with adaptive traits or
nonadaptive traits? Why? (Hint: You may use the newt population as an example in your
explanation.)

Answers

Nonadaptive traits .

What would the products be for the reaction between Na3PO4 + MgSO4?

Answers

MgSO4 + Na3PO4 = Na2SO4 + Mg3(PO4)2

Answer: The products of Na3PO4 + MgSO4 are Na2SO4 + Mg3(PO4)2

Explanation:

How does the water cycle show precision in God's creation?
HELP ME!!

Answers

Explanation:

He used just the right amount of matter in water to get it to evaporate at a normal temperature and to condense into clouds for rain.

To cause water evaporate at a regular temperature and condense in clouds for rain, God has employed precisely the proper amount of substance in the water.

What is water cycle?

Water is constantly circulated throughout the Earth-atmosphere system throughout the water cycle, also known as the hydrologic cycle. The five key stages of the water cycle—evaporation, transpiration, condensate, precipitation, and runoff—are the most crucial. Water is used by all of the processes in the cycle, but its distribution changes over time even while the overall amount of water is largely constant.

Water is converted from its liquid state to its gaseous, or smoke, state through evaporation. This transfer happens when some water molecules have accumulated enough kinetic energy to launch themselves off the water's surface. To cause water evaporate at a regular temperature and condense in clouds for rain, God has employed precisely the proper amount of substance in the water.

Therefore, to cause water evaporate at a regular temperature and condense in clouds for rain, God has employed precisely the proper amount of substance in the water.

To know more about water cycle. here:

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A 0.150-kg sample of a metal alloy is heated at 540 Celsius an then plunged into a 0.400-kg of water at 10.0 Celsius, which is contained in a 0.200-kg aluminum calorimeter cup. The final temperature of the system is 30.5 Celsius. What is the specific heat of the metal alloy in J/Kg.Celsius

Answers

Answer:

[tex]C_{alloy}=0.497\frac{J}{g\°C}[/tex]

Explanation:

Hello there!

In this case, according to this calorimetry problem on equilibrium temperature, it is possible for us to infer that the heat released by the metal allow is absorbed by the water for us to write:

[tex]Q_{allow}=-(Q_{water}+Q_{Al})[/tex]

Thus, by writing the aforementioned in terms of mass, specific heat and temperature, we have:

[tex]m_{alloy}C_{alloy}(T_{eq}-T_{alloy})=-(m_{water}C_{water}(T_{eq}-T_{water})+m_{Al}C_{Al}(T_{eq}-T_{Al})[/tex]

Then, we solve for specific heat of the metallic alloy to obtain:

[tex]C_{alloy}=\frac{-(m_{water}C_{water}(T_{eq}-T_{water})+m_{Al}C_{Al}(T_{eq}-T_{Al})}{m_{alloy}(T_{eq}-T_{alloy})}[/tex]

Thereby, we plug in the given data to obtain:

[tex]C_{alloy}=\frac{-(400g*4.184\frac{J}{g\°C} (30.5\°C-10.0\°C)+200g*0.900\frac{J}{g\°C}(30.5\°C-10.0\°C)}{150g(30.5\°C-540\°C)} \\\\C_{alloy}=0.497\frac{J}{g\°C}[/tex]

Regards!

A simple way to look at kinetic energy is

A. Violent motion
B. The energy involved when you sit down
C. The energy when you move
D. The energy in a candy bar
E. The high energy, not known to be essential

Answers

Answer:

c I do believe good luck with the answer

C. The energy when you move

200.0g of a 3.0% NaF solution, how much distilled water do we weigh out?

197g of distilled water
194g of distilled water
140g of distilled water
170g of distilled water

Answers

Answer:

194g of distilled water.

Explanation:

Hello there!

In this case, according to the given information for this problem, it turns out possible for us to use the given mass of the solution and the percent by mass of NaF to firstly calculate the grams of this solute as shown below:

[tex]\%m=\frac{m_{solute}}{m_{solution}} *100\%\\\\m_{solute}=\frac{\%m*m_{solution}}{100\%} \\\\m_{solute}=\frac{3.0\%*200.0g}{100\%} \\\\m_{solute}=6g[/tex]

And finally, since the mass of solution is calculated by adding mass of solute and mass of solvent we obtain the mass of water (solvent) as follows:

[tex]m_w=200g-6g=194g[/tex]

Therefore, the answer is 194g of distilled water

Regards!

Use the equations below to calculate the enthalpy of formation for propane gas, C3H8, from its elements, hydrogen gas and solid carbon. Please hurry!!

Answers

Answer: I got -4542.9kg/mol

Explanation:

Using the enthalpy relation, the enthalpy of formation of propane gas in the given equation is 4542.9 kJ/mol

[tex] △H_{f} = Product [/tex]

Using the enthalpy value of [tex] CO_{2} [/tex] and[tex] H_{2}0[/tex] given :

Product = [tex] 3CO_{2} + 4H_{2}0[/tex]

Product = 3(-393.5) + 4(-285.8) = - 2323.70

Reactant = [tex] C_{3}H_{8} + 5H_{2}0[/tex]

Water, H20 has △H = 0

Reactant = [tex] C_{3}H_{8} + 0[/tex]

Enthalpy of formation = product - Reactant

2219.2 = -2323.70 - (propane + 0)

2219.2 = - 2323.70 - propane

Propane = - 2323.70 - 2219.2

[tex] C_{3}H_{8} = - 4542.9 [/tex]

Therefore, the entalphy of formation of propane gas is - 4542.9 kJ/mol.

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What is the molar mass of Ca(NO3)2?

Answers

Answer:

The molar mass is 40.1+2×(14+3(16))=40.1+2×(62)=164.1g/mol.

Which of the following would result in being able to dissolve a greater amount of gas in a solution? ​

Answers

Answer:

Lower the temperature of the solution

A __ is a solid that forms in a liquid when a chemical reaction takes place.

Answers

Answer:

A precipitate is a solid that forms in a liquid when a chemical reaction takes place.

1) For the following molecules: - Draw the Lewis structures/dots - Determine the polarity (polar or non-polar). - List all intermolecular forces. a) CF4 b) CH2Br2 c) H2CO3 d) N2 e) PCl3 f) XeF2 g) NH4

Answers

Answer:

ed

Explanation:

ed

For a reaction that has reactant A in its rate law, select which factor(s) affect the reaction rate of reactant A. Choose one or more: A. temperature B. change in concentration of a reactant C. catalyst D. change in concentration of a product E. physical state of the reactants

Answers

Answer:

Option B

Explanation:

The rate law is represented as

Rate of the reaction = [tex]k [A^x][B^y][/tex]

Here K is the rate constant

A is the concentration of substance A

B is the concentration of substance B

Hence, If  reactant A is in the rate law equation, then if its concentration varies then it will impact the rate of the reaction

Hence, option B is correct

Derive the equation for half life 0.693/k​

Answers

Deride .00314. Because it the answer
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