the electrical interaction between the nucleus and the orbital electron is a force of
-
A) attraction
B) repulsion

Answers

Answer 1

Answer:

Attraction

Explanation:

Nucleus has a positive charge. Electron has a negative charge. Opposite charges attract and equal charges repel

Answer 2

The electrical interaction between the nucleus and the orbital electron is a force of attraction.

Electrons are negatively charged and are pulled pretty close to each other by their attraction to the positive charge of a nucleus. The electrons are attracted to the nucleus at the same time as electrons repel each other. The balance between attractive and repulsive forces results in shielding.The nucleus is positive and the electrons are negative, which obviously means they attract. However, electrons are organized into shells, and so as you move further out, you have more shells of electrons in the way of the nucleus, which repels the outermost electrons a little more.

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Related Questions

Identify the two layers of the earth in which the actual temperature is hotter than the melting point

Answers

Answer:

outer core.....

The two layers of the earth where the actual temperature is hotter than the melting point is outer and inner core.

Layers of the earth

The Earth is separated into four layers.

These layers are the crust, the mantle, the outer core, and the inner core.

The hottest layer is the inside of the Earth.

The inner core is more hot than the outer core.

The force on the inner core is higher.

Therefore we can conclude that both the inside layers of the earth are hotter than the melting point.

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A person is singing in the shower. They notice that as certain notes become very loud, the shower walls vibrate. Which statement describes this effect? (1 point)

The note is one of the harmonic frequencies for the shower.

The note is one of the natural amplitudes for the shower.

The note is one of the nodes for the shower.

The note is one of the antinodes for the shower.

Answers

Answer:

the note is one of the harmonic frequencies in the shower

*sorry i cant spell*

Explanation:

Option B Is correct. The statement that describes this effect will be 'the note is one of the natural amplitudes for the shower.'

What is resonance frequency?

Mechanical systems, and charged particles all have a frequency that they vibrate at. This frequency is referred to as the resonance frequency or natural frequency.

When a light or sound wave impacts an item that is already vibrating at a specific frequency, and that frequency happens to match the resonant frequency of the thing being struck, you get resonance.

When the matching vibrations of another item enhance the amplitude of an object's oscillations, this is known as resonance.

An external force or a vibrating system causes another system surrounding it to vibrate with higher amplitude at a set frequency of operation.

Hence option B Is correct. The statement that describes this effect will be  'The note is one of the natural amplitudes for the shower.'

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The formula for kinetic energy is KE = 1/2mv2. If you increase the velocity of an object by 1 m/s, describe the responding change in kinetic energy.

Answers

Answer:

A

Explanation:

I took the test on progress learning and got it right.

If we increase the velocity of an object by 1 meter per second, as a result the kinetic energy of the object will increase as velocity is directly proportional to the kinetic energy.

What is Kinetic energy?

The kinetic energy of an object is the energy which the object possesses due to its motion. Kinetic energy is defined as the work which is required be done to accelerate an object of a given mass from the state of rest to its stated velocity.

Kinetic energy is the energy possessed by an object due to its motion. Potential energy is the form of energy which is possessed by an object due to the position or state. Kinetic energy is directly proportional to the mass and velocity of the object. Therefore, if we increase the velocity of an object, then kinetic energy of the object will increase.

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BRAINLIEST WILL BE REWARDED TO THE CORRECT ANSWER
How does the Half-life setting affect how quickly the simulated substance decays?


The greater the half-life is, the faster the rate of decay will be.

The greater the half-life is, the slower the rate of decay will be.

The smaller the half-life is, the slower the rate of decay will be.

The half-life does not affect rate of decay.

Answers

Answer:

the greater the half life is the slower the rate of decay will be.

Explanation:

half life of a radioactive substance is inversely proportional to the radioactive decay.

Answer:

B. The greater the half life is, the slower the rate of decay will be

Explanation: Most living things contain carbon-14, an unstable isotope of carbon that has a half-life of around 5,000 years. That means that when scientists dig up fossil bones, they can figure out how old they are by measuring the amount of carbon-14 remaining in the bones.

Which one of these contains two carbon atoms and six hydrogen atoms​

Answers

The second option
You can see it in the name that see represents carbon and H represents hydrogen on the periodic table. The numbers after it are the amount of items that are in the molecule
second one. you see the letter for each and then how many of them there are

You have 12 Mohms of resistance, 9 amps of current, what is the voltage within the circuit?

Answers

[tex]\bf{ \underline{Given:- }}[/tex]

[tex] \sf• \: We \: have \: 12 \: ohms \: of \: resistance, \: 9 \: amps \: of \: current.[/tex]

[tex] \\ [/tex]

[tex]\bf{ \underline{To \:  Find :- }}[/tex]

[tex] \sf{• \: The \: Voltage\: within \: the\: circuit. }[/tex]

[tex] \\ [/tex]

[tex] \huge\bf{ \underline{ Solution:- }}[/tex]

[tex] \sf According \: to \: the \: question, [/tex]

[tex] \sf• \: Current \: (I) = 9 \: Amps.[/tex]

[tex] \sf• \: Resistance \: (R) = 12 \: Ω[/tex]

[tex] \sf{We \: know \: that, }[/tex]

[tex] \bf \red{ \bigstar{ \: V = IR }}[/tex]

[tex] \rightarrow \sf V = 9 \times 12[/tex]

[tex] \rightarrow \sf V = 108[/tex]

[tex] \\ [/tex]

[tex] \sf \purple{Therefore, \: the \: voltage \: within \: the \: circuit \: is \: 108 \: v \: .}[/tex]

THE RIGHT ANSWER WILL RECEIVE A BRAINLESS AND POINTS AND THANKS!!! THE RIGHT ANSWER WILL RECEIVE A BRAINLESS AND POINTS AND THANKS!!! What is the fundamental frequency of a mandolin string that is 42.0 cm long when the speed of waves of the string is 329 m/s? with working outs

Answers

Answer:

391.67Hz

Explanation:

The fundamental frequency formula in string is expressed as;

Fo = V/2L

V is the velocity of the wave = 329m/s

L is the length of the string = 42cm = 0.42m

Substitute

Fo = 329/2(0.42)

Fo = 329/0.84

Fo = 391.67Hertz

Hence the  fundamental frequency of a mandolin string is 391.67Hz

Which of the following is a valid unit of power?
Kg.m2/s
Kg.m2/ s3
J
Kg2.m2/ s3

Answers

Answer:

kg•m^2/s^3

Explanation:

Here, we want to get the valid unit for power

Mathematically, power is time rate of doing work

Work is the product of force and distance

Unit for force is;

kg•ms^-2

work is;

Kg•ms^-2 • s

= kg•m^2•s^-2

Divide through by the s for time;

we have ;

kg•m^2•s^-2/s

kg•m^2•s^-3

And that is;

kg•m^2/s^3

. Si mi mejor amigo vive a 100 metros de mi casa (una cuadra aproximadamente) y sabe qué cuando pongo una canción determinada es porque me voy a poner a bailar ¿Cuándo escuchará más rápido la música mi amigo en un día que la temperatura este en 27°C o en 36°C?

Answers

Answer:

Nuestro mejor amigo escuchará la música más rápido a una temperatura de 36 ºC (309.15 K)

Explanation:

Supongase que el aire se comporta como un gas ideal y que experimenta un proceso adiabático, entonces la velocidad del sonido ([tex]v[/tex]), medida en metros por segundo, queda traducida en la siguiente fórmula:

[tex]v = \sqrt{\frac{\gamma \cdot R_{u}\cdot T}{M} }[/tex] (1)

Donde:

[tex]\gamma[/tex] - Coeficiente de dilatación térmica, sin unidad.

[tex]R_{u}[/tex] - Coeficiente universal de los gases ideales, medido en kilogramo-metros cuadrados por mol-Kelvin-segundo cuadrado.

[tex]T[/tex] - Temperatura, medida en Kelvin.

[tex]M[/tex] - Masa molar, medida en kilogramos por mol.

Como se puede ver, la velocidad del sonido es directamente proporcional a la raíz cuadrada de la temperatura. Por tanto, nuestro mejor amigo escuchará la música más rápido a una temperatura de 36 ºC (309.15 K)

How powerful is a
mobile charger with
an output voltage of
5V and a current of
2A?​

Answers

Answer:

P = 10 Watts

Explanation:

Given that,

The voltage of a mobile charger, V = 5 V

Current, I = 2 A

We need to find the power of the charger. The formula for the electric power is given by:

P = VI

So,

[tex]P=5\ V\times 2\ A\\\\P=10\ W[/tex]

So, the power of the mobile charge is 10 watts.

Please help. Brainliest!

Answers

Answer:

i dont really know, sorry

Explanation:

Properties of helium

Answers

Answer:

Helium has many unique properties: low boiling point, low density, low solubility, high thermal conductivity and inertness, so it is use for any application which can explioit these properties. Helium was the first gas used for filling balloons and dirigibles

A 50,000 kg train car moving at 2 m/s collides and connects to another identical car initially at rest.

Answers

Complete question:

A 50,000 kg train car moving at 2 m/s collides and connects to another identical car initially at rest. Find the velocity of the two cars immediately after collision.

Answer:

The final velocity of the two cars after collision is 1 m/s.

Explanation:

Given;

mass of first car, m₁ = 50,000 kg

mass of the second car, m₂ = 50,000 kg  (identical to first car)

initial velocity of the first car, u₁ = 2 m/s

initial velocity of the second car, u₂ = 0

let the final velocity of the two cars after collision = v

The final velocity of the two cars can be calculated from law of conservation of linear momentum for inelastic collision.

m₁u₁ + m₂u₂ = v(m₁ + m₂)

50,000 x 2    + 50,000 x 0 = v(50,000 + 50,000)

100,000 = 100,000v

v = 100,000 / 100,000

v = 1 m/s

Therefore, the final velocity of the two cars after collision is 1 m/s.

Laura adds 50mL of boiling water to 100mL of ice water. If the 150 mL of water is then put into a freezer, at what temperature will the water freeze?

Answers

water that is pure, will always freeze at 0 degrees.

PLEASE TELL ME IF IM CORRECT!! IF IM NOT PLS SAY WHAT THE ANSWER IS!!!

Answers

Great work on the first one.

The second one is Spring.

(The next position will be #1.

In #1, the southern hemisphere will be tilted toward the sun, so it will be Summer there.

The position just before Summer is Spring.)

Calculate equivalent resistance in the following between points P and Q​

Answers

[tex] \sf{(i)  \: We \:  are \:  given  \: a  \: figure \:  of  \: Series \:  Circuit. }[/tex]

[tex] \sf{Here \:  Resistances  \: are ,}[/tex]

[tex] \sf• \:  R_{1}  =3  Ω[/tex]

[tex] \sf•  \: R_{2}  =3Ω[/tex]

[tex] \sf•  \: R_{3}  =3Ω[/tex]

[tex] \sf{We \:  know  \: the  \: formula  \: of  \: the  \: Equivalent \:  Resistance \:  for  \: Series  \: Circuit, }[/tex]

[tex] \bf \orange {\bigstar  {\: R_{s}  =  R _{1}  +  R _{2}  +  R_{3}+...+ R_{n}}}[/tex]

[tex] \sf ⇒ R_{s} =(3 + 3 + 3)Ω[/tex]

[tex] \sf \therefore R_{s}  =9Ω[/tex]

[tex] \sf  \pink{ \boxed{Answer : 9 Ω.}}[/tex]

[tex] \\  \\ [/tex]

[tex] \sf{(ii)  \: We \:  are \:  given  \: a  \: figure \:  of  \: Parallel \:  Circuit. }[/tex]

[tex]\sf{Here \:  Resistances  \: are ,}[/tex]

[tex] \sf• \:  R_{1}  =3  Ω[/tex]

[tex] \sf• \:  R_{2}  =3  Ω[/tex]

[tex] \sf• \:  R_{3}  =3  Ω[/tex]

[tex] \sf{We \:  know  \: the  \: formula  \: of  \: the  \: Equivalent \:  Resistance \:  for  \: Parallel  \: Circuit, }[/tex]

[tex] \bf \orange {\bigstar  {\:  \frac{1}{R_{p}}  =   \frac{1}{R _{1}}  +   \frac{1}{R_{2}}  +  \frac{1}{R_{3}}+...+\frac{1}{R_{n}} }}[/tex]

[tex] \sf⇒ \frac{1}{ R_{p} }  =  \frac{1}{3}  +  \frac{1}{3}  +  \frac{1}{3} [/tex]

[tex] \sf⇒ \frac{1}{ R_{p} }  =  \frac{1 + 1 + 1}{3} [/tex]

[tex] \sf⇒ \frac{1}{ R_{p} }  =  \frac{3}{3} [/tex]

[tex] \sf⇒ \frac{1}{ R_{p} }  =  1[/tex]

[tex] \sf \therefore R_{p}   =  1Ω[/tex]

[tex] \sf  \pink{ \boxed{Answer : 1 Ω.}}[/tex]

The attaction between magnets is a chemical property.
True
Or
False

Answers

Answer:

false its an attraction property

Answer:

True

The attraction is a chemical property.

what is a example of the doppler effect

Answers

Answer:

The change in pitch of a siren on an ambulance

Answer:

Explanation:

The drop in pitch of ambulance sirens as they pass by and the shift in red light are common examples of the Doppler Effect.

Why would a tuba have a lower pitch than a trumpet. Be sure to discuss air molecules in your answer!

Answers

Answer:

The tuba is the biggest, and among the newest, of all the brass instruments. Tuba players create the low-pitched sound by making a kind of "buzz" with their breath against the mouthpiece and pressing the tuba's valves to form notes.

Explanation:

in other words it because less air molecules are abloe to go through the mouth peiece of the tuba

If 100 grams of water is to be heated from 24.0°C to 100.0°C to make a cup of tea, how much heat must be absorbed? The specific heat of water is 4.184 J/g∙°C

Solve the problem and show your work.

Answers

Answer:

76*

Explanation:

Answer:

Q= 31,798.4

Explanation:

You would use the specific heat formula which is Q=mCΔt

m(mass)=100

C(Specific heat capacity)= 4.184

Δt(change in temperature)=24-100=-76 or just 76 in this case

so Q=(100)(4.184)(76)=

418.4(76)=31,798.4

Therefore the missing value Q(heat lost or gained) equal 31,798.4

Hope that helped! xoxo

Un objeto con una carga de 7μC se coloca en un campo eléctrico uniforme de 200N/C con dirección vertical. ¿Cuál es el valor de la masa del objeto si se queda "flotando" en el campo?

Answers

Answer:

 m = 1,429 10⁻⁴ kg

Explanation:

For the object to remain floating, the translational equilibrium condition must be met, we set a reference system where the vertical upward direction is positive

          F_e -W = 0

          F_e = W

          q E = m g

we clear

         m = [tex]\frac{qE}{g}[/tex]

let's calculate

        m = [tex]\frac{7 \ 10^{-6} \ 200}{ 7 }[/tex]

        m = 1,429 10⁻⁴ kg

What is one thing magnetism and electricity have in common ?​

Answers

Answer: One thing magnetism and electricity have in common is that they are related.
Explanation: Flowing electrons produce a magnetic field, and spinning magnets cause an electric current to flow.

The moon has a smaller mass than the Earth. If
you were to travel to the moon your weight would
A. Increase
B. Decrease
C. Stay the same
D. Vary with day and night

A force acting toward the center of a curved
or circular path is called
A. Balanced forces
B. Net force
C. Centripetal force
D. Gravity

If dropped from the same height, how would
each ball hit the ground?
Wood Plastic Metal
A. Metal first, then plastic, then wood
B. Wood first, then plastic, then metal
C. Plastic first, then metal, then wood
D. They will all hit at the same time

Answers

Answer:

Decrease

Explanation:

If you were on the Moon, which has significantly less mass than the Earth, your weight would: decrease

The point that seemed to be giving me a complicated time was being able to distinguish the difference and meaning of weight and mass and being able to apply that to a problem. I kept mixing up the definitions. For example in homework 3.1, one question asked:

If you were on the moon, which has significantly less mass than the earth, your mass would:

a. increase

b. decrease

c. stay the same

d. become zero

The definition of mass is the amount of matter in an object. The definition of weight is the amount or unit of force. For me, I just had to remember that when it asked about weight, it wasn’t referring how heavy an object is. After I was able to recognize that when it came to weight, questions became easier.

The final and correct answer was decreasing. The answer is because the Moon’s mass is less. This means the gravitational force is less on your body, therefore, your mass is going to be lighter

What does transverse wave mean

Answers

Answer:

Transverse wave, motion in which all points on a wave oscillate along paths at right angles to the direction of the wave's advance. Surface ripples on water, seismic S (secondary) waves, and electromagnetic (e.g., radio and light) waves are examples of transverse waves.

Answer:

Transverse wave, motion in which all points on a wave oscillate along paths at right angles to the direction of the wave's advance. Surface ripples on water, seismic S (secondary) waves, and electromagnetic (e.g., radio and light) waves are examples of transverse waves.

Explanation:

Examples of transverse waves include:

ripples on the surface of water.

vibrations in a guitar string.

a Mexican wave in a sports stadium.

electromagnetic waves – eg light waves, microwaves, radio waves.

seismic S-waves.

___________________ is the opposition to the flow of electric charge. (Resistance or Electric power)

Answers

Answer:

The answer is Resistance

Answer:

Resistance

Explanation:

it opposes the flow of energy

When a bat hits a baseball, what is transferred from the bat to the ball?​

Answers

Answer:

kinetic energy

Explanation:

A force of 3kN acts on a car to make it accelerate by 1.5m/s/s. What is the mass of the car?

Answers

Answer:

2

Explanation:

To find force it's force = mass times acceleration so to find mass you would divide force by acceleration

The position of an object in simple harmonic motion is described by the following equation: y=(0.50 m)cos(pi/2)t. What is the amplitude of vibration?

A. 0.75 m
B. 0.25 m
C. 0.50 m
D. 1.0 m

Answers

Answer:

C. 0.50 m

Explanation:

mark me as brainliest

The amplitude of the vibration with the given equation, y = (0.50) cos (π/2 ×t) is 0.50 m. Thus, option C is correct.

What is Simple Harmonic Motion?

Simple Harmonic motion is defined as the periodic motion of the body resulting from the dynamic equilibrium. It is defined as the motion in which the restoring force is directly proportional to the displacement of the body.

Simple Harmonic Motion is defined as the repetitive back-and-forth motion of the central displacement. The maximum displacement of one side is equal to the maximum displacement of the other side.

The simple harmonic motion. F ∝ -x or a ∝ -x, where F is force and a is the acceleration of the body, and x is the displacement. The maximum displacement of the body is called the amplitude of the motion.

The energy is purely kinetic at its mean positions whereas the energy is purely potential at its extreme ends. The harmonic motion is also called oscillatory motion.

From the given, SHM equation, y = A sin(ωt) where A is the amplitude of the wave and ω is the angular frequency of the wave. In the cosine function,  y = A cos(ωt + Ф) where Ф is the phase change.

Thus, the amplitude of the vibration is 0.50 m. Hence, the correct option is C.

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Describe the relationship between the amount of charge on an object and the strength of the electric force

Answers

Answer:

The electric force is directly proportional to the amount of Charge.

Explanation:

We define the electric force as the attractive or repulsive interaction between any two charged objects in an electric field.

The electric field is investigated by measuring the force on a small positive test charge. This charge is so small that it does not significantly alter the field after testing.

An object having a greater electric charge will exert a greater force on an object than an object having a smaller electric charge.

Hence the electric force is directly proportional to the amount of Charge.

you are on a walk moving at 3m/s forward what would happen i you stepped off onto the floor? what if you stepped onto another walkaway moving with the same velocity?

Answers

Answer:

1) The person ma tend to fall

2) The person will remain upright

Explanation:

1) According to Newton's first law of motion, an object will continue in its state of rest or maintain its uniform motion on a straight line unless acted on by a force

Therefore, when a person steps off onto the floor from a walkway moving at 3 m/s, the friction between the floor and the person's feet prevents the forward motion of the feet, however the person's upper body will tend to continue with the forward motion, and the person may tend to tilt and fall over

2) If the person steps onto another walkway moving with the same velocity, the initial velocity of all parts of the person's body is maintained, such that the person will continue in his uniform motion without experiencing any force and therefore, the person will remain upright

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