What is the function of the magnet in NMR?
A) It limits the nuclear spin to certain allowed spin states.
B) It allows random orientation of nuclear magnetic moments.
C) It causes the nucleus to spin.
D) It holds the sample in place.

Answers

Answer 1

Answer:

A) It limits the nuclear spin to certain allowed spin states.

Explanation:

A nucleus with an odd atomic number or an odd mass number has a nuclear spin, which can be observed through NMR.

A proton is the simplest nucleus, and its odd atomic number of 1 implies that it has one spin. We can visualize a spinning proton as a positively charged rotating sphere. This movement of a  charged particle is like an electric current in a wired loop. It generates a magnetic field called the magnetic moment. When a small magnetic bar is placed in the field of a larger magnet, it rotates to align itself with the field of the larger magnet, a lower energy arrangement than an orientation against the field. Quantum mechanics requires that the proton's magnetic moment is aligned with the external field or against the field. The lowest energy state with the proton aligned with the field is called the spin alpha state (α spin).  The higher energy state with the proton aligned against the external magnetic field is called the beta spin state (β spin).

In the absence of an external magnetic field, the magnetic moments of the protons have random orientations. When an external magnetic field is applied, each proton in a sample it assumes β state or α state. Because the state of spin α is lower in energy, there are more α spins than β spins.

What Is The Function Of The Magnet In NMR? A) It Limits The Nuclear Spin To Certain Allowed Spin States.

Related Questions

In which field(s) is knowledge about how science works important?
A. Medicine
B. All of these are correct
C. Law
D. Politics
E. Agriculture

Answers

Answer:B

Explanation:

Describe the evidence for Mercury having a molten iron core

Answers

Scientists used the calculated density to determine that Mercury holds a large metallic core. Radar images taken from Earth revealed that the core is molten liquid, rather than solid. Mercury's core has more iron than any other planet in the solar system.

Which four practices are examples of how humans use science?
A. Making decisions that help humans survive
OB. Developing technologies that help humans thrive
C. Developing explanations based on facts
D. Imagining entertaining stories that explain observations
O E. Gathering facts that explain natural events

Answers

Answer:

A. Making decisions that help humans survive

B. Developing technologies that help humans thrive

C. Developing explanations based on facts

E. Gathering facts that explain natural events

Explanation:

The above are examples of the practices of how humans use science.

Science has been of tremendous help to humans in making decisions that make humans survive and develop technologies that help humans thrive. It has helped to gather and develop explanations that are based on facts. It has helped to explain natural events.

If the density of a diamond is 3.5g/cm3, what would be the mass of a diamond whose volume is 0.5 cm3?

Answers

Answer:

1.75 g

Explanation:

as density ×volume =mass

3.5×0.5=mass

mass=1.75 g

plz mark as brainliest if it helps

The mass of the diamond which has a density of 3.5g/cm3 is [tex]1.75kg[/tex]

Density is given as:[tex]3.5g/cm3[/tex]having a volume of [tex]0.5 cm^3[/tex]But we know that Density can be regarded as the the ratio of mass to that of volume of that particular object.let us represent this mathematically as;[tex]Density=[/tex] [tex]\frac{ mass }{ volume }[/tex]we can make Mass the subject of the formula to find the mass[tex]Mass= ( Density * volume)[/tex]Then let us substitute the give value, then we will have

[tex]= ( 3.5*0.5)[/tex][tex]= 1.75kg[/tex]

Therefore, the mass is[tex]1.75kg[/tex]

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Write balanced molecular and net ionic equations for the following metathesis (double displacement) reactions, if they occur. If no reaction occurs, write NR on the product side. All reactants are aqueous. Phase subscripts must be included to indicate what products stay in solution (aq), and what products precipitate (s).
a. zinc acetate + sodium carbonate
b. barium nitrate + sodium sulfate
c. lead (II) nitrate + sodium sulfate
d. zinc acetate + sodium sulfate
e. barium nitrate+ potassium iodide
f. lead (I) nitrate+ potassium iodide
g. zinc acetate + potassium iodide

Answers

Answer:

attached below is the required solution

Explanation:

A) Zinc acetate + Sodium carbonate

B) barium nitrate + sodium sulfate

C ) lead ( II ) nitrate + sodium sulfate

D) Zinc acetate + sodium sulfate

E) barium nitrate + potassium iodide

F) Lead ( I ) nitrate + potassium iodide

G) Zinc acetate + potassium iodide

A net ionic equation shows the ions that underwent change in a reaction hence it excludes the spectator ions.

A metathesis reaction is one which the cations exchange anion partners in the products. A general example of a methathesis reaction is AX + BY ---> AY + BX.

The molecular and net ionic equation for the reactions are;

1) Zn(CH3COO)2(aq) + Na2CO3(aq) -----> ZnCO3(s) + 2CH3COONa(aq)

Net ionic equation; Zn^2+(aq) + CO3^2-(aq) ------>  ZnCO3(s)

2) Ba(NO3)2(aq) + Na2SO4(aq) ------> BaSO4(s) + 2NaNO3(aq)

Net ionic equation; Ba^2+(aq) + SO4^2-(aq) ------> BaSO4(s)

3) Pb(NO3)2(aq) +  Na2SO4(aq) ------> PbSO4(s) + 2NaNO3(aq)

Net ionic equation; Pb^2+(aq) + SO4^2-(aq) ------> PbSO4(s)

4) Zn(CH3COO)2(aq) + Na2SO4(aq) ------> ZnSO4(s) + 2CH3COONa(aq)

Net ionic equation: Zn^2+(aq) + SO4^2-(aq) ------>  ZnSO4(s)

5) Ba(NO3)2(aq) + 2KI(aq)  ------> 2KNO3(aq) + BaI2(aq)

There is no net ionic equation for this reaction.

6) Pb(NO3)2(aq) + 2KI(aq)  -------> PbI2(s) + 2NaNO3(aq)

Net ionic equation: Pb^2+(aq) + 2I^-(aq) ----->  PbI2(s)

7) Zn(CH3COO)2(aq) + 2KI(aq) -----> ZnI2(aq) + 2CH3COOK(aq)

There is no net ionic equation for this reaction

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Is condensation phyiscal change

Answers

Answer:

condensation is the change of the physical state of matter from the gas phase to the liquid phase :)

Explanation:

Answer:

Yes.

Explanation:

Condensation is the change of physical state of matter from gas to liquid.

What particle(s) of an atom would NOT found in the nucleus?
Electrons
proton
neutron
neutrons and electrons

Answers

Answer:

Electrons, they circle the nucleus.

Helium is more reactive than magnesium.
TRUE
FALSE

Answers

Answer: FALSE

Explanation: Magnesium is more reactive.

Hope this helps!

Answer:

False

Explanation:

Magnesium is more reactive.

1
Select the correct answer.
Which statement about the relationship between laws, hypotheses, and theories is true?

A.
Laws that remain true over an extended period of time are considered theories.
B.
A theory that holds true for a long time is considered a law.
C.
If a law is not contradicted after a lot of testing, it may be considered a hypothesis.
D.
If a hypothesis is not contradicted after a lot of testing, it may be considered a law.

Answers

Answer:

the answer is D

Explanation:

Why are atoms usually portrayed as spheres when most orbitals are not spherically shaped?
a. The shape of an atom depends on the shape of its nucleus, not on the shape of its orbitals.
b. The shape of an atom depends on the shape of the outer orbital which always spherical
c. The shape of an atom is obtained by superimposing all of its orbitals.
d. The shape of an atom is not important so it is easier to treat atoms as spheres.

Answers

Answer:

The shape of an atom is not important so it is easier to treat atoms as spheres.

Explanation:

In considering the shape of an atom, we do not consider the shape of the orbitals individually.

Hence, we do not seek to determine the exact shape of the atom, rather we simply treat the atom as spheres. Even though most orbitals are not spherically shaped.

1- Science that deals with the identification and quantification of the components of material systems
A)Analytical Science
B)Biochemistry
C)Organic Chemistry
D) Inorganic Chemistry
Q1-(30 Marks) Choose the correct answer​

Answers

Answer:

Analytical science

Explanation:

Given that the specific heat of chromium is 0.455J/g∙K find the final temperature after 35.9J of energy is removed from 11.7g of chromium at 28.5°C.

Answers

Answer:

[tex]T_2=35.2\°C[/tex]

Explanation:

Hello,

In this case, since the heat is computed in terms of mass, specific heat and temperature as follows:

[tex]Q=mCp(T_2-T_1)[/tex]

In such a way, for the given heat, we obtain the following temperature:

[tex]T_2=T_1+\frac{Q}{mCp}\\ \\T_2=28.5\°C+\frac{35.9J}{11.7g*0.455\frac{J}{g\°C} }\\ \\T_2=35.2\°C[/tex]

Best regards.

Which of the following experimental methods cannot be used to measure the rate of a reaction? Group of answer choices measurement of the absorbance of a colored reactant with time measurement of the change in the partial pressure of a gas-phase product over time measurement of the equilibrium concentration of an acidic product via titration with a strong base measurement of the absorbance of a colored product with time measurement of the change in the partial pressure of a gas-phase reactant over time

Answers

Answer:

measurement of the equilibrium concentration of an acidic product via titration with a strong base

Explanation:

The rate at which a reaction proceeds refers to how quickly the reaction is occuring. In other words, it is how quickly the reactants are changing to the products. According to the question, the rate of a reaction can be measured experimentally using the reactants' or products' properties e.g volume, pressure etc.

Since reactions must involve reactants and products, the manner in which either the reactants or products changes over time can be measured. For example; measurement of the absorbance of a colored reactant or product with time, measurement of the change in the partial pressure of a gas-phase reactant or product over time can be used.

However, a measurement of the equilibrium concentration of an acidic product via titration with a strong base will not tell us how fast the reaction is going because it is in an EQUILIBRIUM state i.e. reaction is occuring at an equal rate

how do you convert wavelength to frequency?

Answers

Answer:

Image result for how do you convert wavelength to frequency?

How do you calculate energy from wavelength?

Convert your wavelength into meters.

Divide the speed of light, ~300,000,000 m/s, by the wavelength in m. This gives you the wave's frequency.

Multiply the frequency by Planck's constant, 6.626 x 10-34. The result is the waves energy in joules (J).

Explanation:

is a light bulb chemical or physical change. State evidence why

Answers

Answer:

It is a chemical change.

Explanation:

When the electricity is off, the filament cools down to its original physical state. This physical process repeats every time the light is turned on and off. However, if the bulb is cracked and air is introduced, the oxygen in the air reacts with the tungsten filament which then undergoes a chemical change.

I need helpp!!!!!!!!!

Answers

Answer: water is a compound.

2. You are tasked with calculating the average weight of kindergartners in a class of
21 students. Their weights range from a low of 40.5 lbs to a high of 58.6 lbs.
How many significant figures should be in the average that you find?

Answers

There should be 3 significant figures in the average that you find because there are three significant figures in the weights you are using to find an average.

Group of molecules which do not contain carbon
O enzymes
O inorganic compounds
O buffer
O elements

Answers

inorganic compounds

Consider this equilibrium reaction at 400 K. Br2(g)+Cl2(g)↽−−⇀2BrCl(g)Kc=7.0 If the composition of the reaction mixture at 400 K is [BrCl]=0.00415 M, [Br2]=0.00366 M, and [Cl2]=0.000672 M, what is the reaction quotient, ???? ? ????= How is the reaction quotient related to the equilibrium constant, Kc, for this reaction?

Answers

Answer:

Q = 7.0

Q = kc. The reaction is in equilibrium

Explanation:

Based on the reaction:

Br₂ + Cl₂ ⇄ 2BrCl

Equilibrium constant of the reaction, kc, is the ratio of equilibrium concentrations products over reactants powered to its reaction coefficient:

Kc = [BrCl]² / [Br₂] [Cl₂] = 7.0

Now, reaction quotient, Q, is write as the same Kc but the concentrations are actual concentrations:

Q = [BrCl]² / [Br₂] [Cl₂]

Replacing:

Q = [0.00415M]² / [0.00366M] [0.000672M]

Q = 7.0

Now, as Q = Kc = 7.0, the reaction mixture is in equilibrium

john has a solution with a pH of 12.21. what is the hydrogen ion concentration of this solution? ​

Answers

Answer:

In this way, ph is determined by hydrogen ion concentration . In the case of neutral solution [H+] =10-7 which we call a ph of 7. This means, for example, that a hydrogen-ion concentration of a solution with a ph of 4 is 10-4 mol/l, meaning it contains 0.0001 mole of hydrogen ion in a solution of 1 liter.

For a trip to the Moon, a rocket must lift off from
Earth's surface. Suppose it takes 5 minutes for the
rocket to reach a velocity of 6,000 m/s upward from
a starting velocity of 0 m/s. What is the rocket's
acceleration?

Answers

Answer:

20 m/s^2

Explanation:

given,

final velocity (v) = 6000m/s

initial velocity (u) = 0m/s

time taken (t) = 5 minutes

= 5×60second

= 300second

acceleration(a) = ?

we know that,

a = (v-u)/t

= (6000-0)/300

= 20 m/s^2

Discuss the effect of changing the flow tube radius on flow rate.

Answers

Answer:

The flow rate of a tube is the volume of fluid flowing through the tube per unit time. The flowrate is proportional to the product of the velocity of the fluid through the tube, and the cross-sectional area of the tube.

That is

Q = AV

where

A is the area of the tube

V is the velocity of the tube

The cross-sectional area of the tube is proportional to the radius of the tube. From the above equation, we can deduce that if the velocity of the fluid flowing through the tube is held constant, the flowrate of the fluid through the tube will increase with an increase in the radius of the tube, and it will decrease with a decrease in the radius of the tube.

an object has a mass of 14g and a volume 3.5 mL. what is the density of the object ?

Answers

Given :

Mass of object , M = 14 g .

Volume of object , V = 3.5 mL .

To Find :

The density of the object .

Solution :

Density of an object is given by :

[tex]Density=\dfrac{Mass}{Volume}\\\\\rho=\dfrac{M}{V}\\\\\rho=\dfrac{14}{3.5}\ g/mL\\\\\rho=4\ g/mL[/tex]

Therefore , the density is 4 g/mL .

Hence , this is the required solution .

Akito is warming a test tube over a Bunsen burner. He heats it too much and the glass breaks.
Which best describes what Akito should do first?
Ο Ο Ο Ο
O get paper towels
O change lab stations
turn off the burner
remove his contacts

Answers

turn off the burner

Answer:

c

Explanation:

In the density of a liquid activity, the graph had an intercept. If you were to make a similar graph using metal blocks, would the graph have an intercept?

Answers

Answer:

NO

Explanation:

It would be difficult to plot a line of best fit on the scattered graph of the activities of metal blocks as the activities would almost be the same horizontally on the graph and an attempt to draw/determine an intercept will be almost impossible.  The line of best fit is usually drawn to determine the relatedness/correlation of the variables.

Drawing intercept for the activities of the liquid is easier because a line of best fit can be easily placed between the clustered liquid activities on the scattered plot.

which of the following is not true about water ? *

Water has a freezing point of 0℃

Water is chemically stable and makes a good energy source

Water has a density of 1 g/mL

water is polar

water has a boiling point of 100℃

Water is less dense as a solid

Answers

Freezing point is -5 C

What angle is needed to spread 4 bonds as far apart as possible?

Answers

Answer:

109°

Explanation:

According to Valence Shell Electron Pair Repulsion Theory, electron pairs on the valence shell of the central atom of a molecule must be positioned as far apart in space as possible to minimize repulsion between valence shell electron pairs.

The shape of a molecule depends on the number and type of electron pairs on the valence shell of its central atom. Lone pairs generally cause more repulsion than bond pairs of electrons.

The ideal bond angle for a molecule with four bonds is 109° which corresponds to a tetrahedral geometry. This enables the four bonds to spread as far apart in space as possible.

What percentage of light hits Earth’s surface directly?

3 percent
5 percent
31 percent
47 percent

Answers

Answer: yall trust me on this one, i took one for the team. The answer is "C" or you can say 31 percent. boys get me 50 thanks.

Explanation:

The percentage of sunlight that hits the Earth's surface directly is 31 percent. The correct option is C.

What is sunlight?

Sunlight is the electromagnetic radiation transferred by the sun.

The sun is 93 million away from the earth, so it takes eight and half minutes to reach the sunlight to the earth.

Only 30 to 34 percent of light reaches the earth, and the remaining lights are reflected back by clouds and the earth itself.

Thus, the correct option is C, 31 percent.

Learn more about sunlight

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What is the purpose of keeping a running list of new vocabulary words?
A. To make it easier to decode the word when you see it again
B. To provide an easy-to-remember picture associated with the word
C. To make it easier to remember and use new words
D. To allow you to critically evaluate every new word you come
across
Shjajfbcjahaixhfjwnzhsbsjxjdbxbsjzjfbwnznsnwnnsndndnwnbwjshsbdbdndnndndndbxbxnsnsn

Answers

Answer:

C

Explanation:

As C would be the wisest choice as being able to remember and use more words than the average human not only opens up your vocabulary but also your chances of writing a better essay using said words.

Answer:

C

Explanation:

Makes it easier to remember and use new words

What was Albert Einstein's contribution to our understanding of the
photoelectric effect?
A. He described the relationship between energy and mass.
B. He described photons as little packets of electrons.
C. He described electricity as moving electrons.
D. He described light as little packets called photons.

Answers

Answer: The Answer Is D, He described light as little packets called photons.

Explanation:

The contribution of Albert Einstein to our understanding of the photoelectric effect is he described light as little packets called photons. The correct option is D.

Who is Albert Einstein?

The theory of relativity, which Albert Einstein developed and is rightfully famous for, transformed our understanding of space, time, gravity, and the cosmos.

Along with his work on relativity, the physicist established the scientific principles behind items like paper towels, lasers, and other everyday items.

Since Einstein first suggested using the use of light quanta to clarify the photoelectric impact, quantum theory accurately portrays the photoelectric impact. The quantum theory of radiation gives this concept a formal formulation.

Therefore, the correct option is D. He described light as little packets called photons.

To learn more about Albert Einstein, refer to the below link:

https://brainly.com/question/4229446

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