What mass of electrons would be required to just neutralize the charge of 5.0 g of protons? (the mass of a proton is 1.67262×10−24g, and the mass of an electron is 9.1×10−28g.)?

Answers

Answer 1
To  neutralize the charge of 1.0g of electrons?
Answer 2

Answer:

[tex]m = 2.72 \times 10^{-3} g[/tex]

Explanation:

total number of protons in 5 gram of total mass is given as

[tex]N = \frac{m}{m_p}[/tex]

here we have

[tex]N = \frac{5}{1.67262 \times 10^{-24}}[/tex]

[tex]N = 2.99 \times 10^{24}[/tex]

now to neutralize the charge we require same amount of negatively charge electrons

so we have

[tex]m = N(m_e)[/tex]

[tex]m = (2.99 \times 10^{24})(9.1 \times 10^{-28})[/tex]

[tex]m = 2.72 \times 10^{-3} g[/tex]


Related Questions

Please I need help with this I'll give medal.

Car A has a mass of 1,200 kg and is traveling at a rate of 22 km/hr. It collides with car B. Car B has a mass of 1,900 kg and is traveling in the same direction at 25 km/hr. Which of the following statements is true?


The momentum before the collision is equal to the momentum after the collision.

The momentum before the collision is greater than the momentum after the collision.

The momentum before the collision is less than the momentum after the collision.,

Answers

In this problem, we will be using the formula p=mv. Momentum equals mass times velocity. We need to first get km/hr into m/s as that is how velocity is measured. So, 1 kilometer is equal to 0.278 m/s. So we multiply 22 to get 6.116 m/s for Car A. Car B is 6.95 m/s. Take Car A now. p=1200 times 6.115 to get 7,338. Car B now is 1900 times 6.95 to get 13,205. Momentum stays the same. Therefore, the answer would be that the momentum before the collision is equal to the momentum after the collision.

Match the type of boundary with its characteristic

Answers

A is 2
B is 1 
C is 3
hope it helps

Answer:

The required relation is given in the figure below

Explanation

There are three main types of plate boundaries:

Convergent boundaries: where two plates are colliding.Divergent boundaries – where two plates are moving apart. ... Transform boundaries – where plates slide passed each other

How do you know that forces are balanced when static friction acts on an object?

Answers

1) When static friction acts on an object it is not moving, so its acceleration is zero.

2)  In virtue of the second Law of Newton, F = mass * acceleration, since the acceleration is zero, the net force is zero.

3) Zero net force is the result of forces balance, so you can conclude that the forces acting on the object are balanced.

Static friction ensures forces are balanced when an object is at rest by matching the applied force up to its limit. This balance means that the net external force on the object is zero. Such conditions imply static equilibrium.

When an object is at rest and static friction is acting on it, the forces are said to be balanced. This state of balance or equilibrium exists because the net external force on the object is zero. According to Newton's first law, an object will remain at rest if no unbalanced force acts on it.

To break it down step-by-step:

The object remains at rest, indicating that all forces acting on it are balanced.The static friction force adjusts to exactly match the applied force, up to its maximum limit, preventing motion.This balance implies that the sum of all forces in any direction is zero.

For example, consider a heavy crate on the ground. When you apply a small force to push it, if the crate does not move, the force of static friction equals the applied force but in the opposite direction. This indicates static equilibrium where forces are balanced.

To further understand, let's note that static friction does no work because the point of contact does not move relative to the surface. This characteristic helps in identifying balance as no work is done when forces are perfectly equal and opposite.

Which statements are correct? Check all that apply. A. An insulator slows the flow of heat. B. A conductor increases the flow of heat. C. A conductor decreases the flow of heat. D. An insulator speeds up the flow of heat.

Answers

A. An insulator slows the flow of heat. 
and 
B. A conductor increases the flow of heat.
are both correct!

Which statements are correct? Check all that apply.

A compass is used to make circles and arcs in geometric constructions.

A rough sketch by hand is considered a geometric construction.

Geometric constructions are created with a compass and straightedge.

Protractors are used in geometric constructions to measure degree measures.

Rulers are used in geometric constructions to measure segment lengths.

the answer is 1&3

According to the law of conservation of energy, energy cannot be _____.

A. changed or destroyed

B. created and destroyed

C. created or destroyed

D. created and changed

Answers

Answer: B ; created and destroyed

Explanation:

According to the law of conservation of energy, energy can neither be created nor destroyed but can be converted from one form to another

Which simply means you can't create energy and at the same time you can't destroy it.

An energy can be converted from one form to another that is from potential energy to kinetic energy

There is no destruction of energy in such a process

Final answer:

The Law of Conservation of Energy states that energy cannot be created or destroyed. This means that the total amount of energy in a system remains constant. When energy appears to disappear, it has typically been converted to another form.

Explanation:

According to the Law of Conservation of Energy, energy cannot be created or destroyed. This is a fundamental law in physics that states that the total amount of energy in an isolated system remains constant over time. For example, when a ball drops from a height, its potential energy is transformed into kinetic energy as it falls, but the total energy within the system (the ball and the Earth) doesn't change. Therefore, the correct answer is C: created or destroyed.

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A hydraulic jack is used to lift a car in order to change a tire. The car exerts a force of 9,800 N toward the ground due to the force of gravity.

1. To begin to lift the car, a hydraulic jack must produce ______ of force.

A. more than 9,800 N
B. less than 9,800 N
C. exactly 9,800 N

2. To keep the car in position once it is lifted, the jack must produce _____ of force.
A. more than 9,800 N
B. less than 9,800 N
C. exactly 9,800 N

Answers

To begin to lift the car, a hydraulic jack must produce
more than 9,800 N of force. (A)

To keep the car in position once it is lifted, the jack must
produce exactly 9,800 N of force. (C)

Force is defined as the product of mass and acceleration or gravity. Force is calculated in Newton.

The force required to lift the car should be more than 9,800 N, and, to keep the car in position, the force should be exactly same as 9,800 N.

The force is a vector quantity, calculated as the product of mass and acceleration (sometimes gravity.) In order to lift the car, Jack must apply a force greater than the weight of the car.

As given in the question,  the weight of the object is 9,800 N. The weight is equal to the force when the object is at rest.

Also, once the car is lifted, Jack must maintain the force exactly 9,800 N. The less force of the car will cause the gravity to pull the car downwards.

Therefore, the force should be exactly 9,800 N while lifting and should be more than 9,800 N, when beginning to lift the car.

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hi please help with this question! Need the workings.

A copper penny has a mass of 2.6 g Assuming it is pure copper, how much of this mass is contributed by a) the neutrons in the copper nuclei b) the electrons.


The answers are
a) 1.41 g
b) 6.5 x 10^-4,

Answers

Mass of the copper penny m = 2.6 g Atomic mass of copper = 63.55, Atomic number = 29, So the number of neutrons = Atomic mass - Atomic number = 63 - 29 = 34 a. Neutron mass = 34 x (2.6 / 63.55) = 1.4 grams Copper atoms per mole = 6.040 x 10^23 atoms/mol moles of copper = 2.6 / 63.06 = 0.04123 mol Total atoms in the copper = 6.040 x 10^23 atoms/mol x 0.04123 mol = 0.25 x 10^23 atoms Number of electrons in the copper = 29 per atom Mass of the electron = 9.085 x 10^-28 g b. Electron mass = 0.25 x 10^23 x 29 x 9.085 x 10^-28 = 65.86 x 10^-5 g

What is the kinetic energy of the emitted electrons when cesium is exposed to uv rays of frequency 1.9×1015hz? express your answer in joules to three significant figures?

Answers

Final answer:

The kinetic energy of the emitted electrons when cesium is exposed to UV rays of frequency 1.9 × 10¹⁵ Hz is approximately 9.51 × 10⁻¹⁹ J.

Explanation:

To find the kinetic energy of the emitted electrons, we need to use the equation:

Kinetic Energy (KE) = Energy of the photon - Work Function

The energy of a photon can be calculated using the equation:

Energy (E) = Planck's constant (h) × frequency (f)

Given that the frequency of the UV rays is 1.9 × 1015 Hz, we can calculate the energy of the photon. The value of Planck's constant is 6.626 × 10-34 J·s.

Let's calculate the energy:

E = (6.626 × 10-34 J·s) × (1.9 × 1015 Hz) = 1.2594 × 10-18 J

Now we need to find the work function of cesium, which represents the minimum energy required to remove an electron from the metal. The work function of cesium is approximately 1.93 eV.

Converting the work function to joules:

1 eV = 1.602 × 10-19 J

1.93 eV = 1.93 × (1.602 × 10-19) J = 3.08786 × 10-19 J

Now we can calculate the kinetic energy:

KE = (1.2594 × 10⁻¹⁸ J) - (3.08786 × 10⁻¹⁹J) = 9.50712 × 10⁻¹ J

Therefore, the kinetic energy of the emitted electrons when cesium is exposed to UV rays of frequency 1.9 × 10¹⁵ Hz is approximately 9.51 × 10⁻¹⁹ J.

Discuss how metallic bonding accounts for the common properties of metals

Answers

Metals are goods conductors of electricity because the electrons in the electrons sea are free to flow and carry electric currents. Metals are ductile and malleable because local bonds can be easily broken and reformed.

Particles in metals are strongly held by the intermolecular force called metallic bonds. This strong bonding make the metals hard, feasible to conduct thermally and electrically.

What are metals?

Metals are electropositive elements in periodic table. The alkali metals, alkaline earth metals and transition metals compose the metallic elements. They all shows the metallic properties such as conductivity, malleability, ductility, luster etc.

Metal are consists of a sea of mobile electrons amidst the pool of positive ions. The metallic particles form a well ordered crystal lattice structure with metal ions connected by strong metallic bonds.  The electrons can delocalize into the interstices and make the metal lattice conductive.

The close packed structure of metallic particles with free electrons make metals highly conductive both thermally and electrically. Moreover they exhibit color by the transition of electrons with absorption energy.

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When a wave strikes a solid barrier it behaves like a basketball hitting a backboard this wave behavior years called?

Answers

This behavior is called reflection.
Reflection is a change of in direction of the wave when it reaches another medium. Imagine a wave colliding with a glass in a tank of water.
During reflection, some of the initial energy of the wave is lost.
Waves always reflect with at same angle at which it approached the obstacle.

The Clean Air Act of 1963 was an improvement over the Air Pollution Control Act of 1955 because it _____.

Answers

Was the first act to actually set emissions towards factory smoke and pollution

Select all that apply. Greenhouse gases _____. absorb solar energy absorb carbon dioxide release carbon dioxide are released during the combustion of fossil fuels

Answers

Gases that trap heat in atmosphere are called Greenhouse gases (GHGs). Examples are carbon dioxide, water vapour, nitrous oxides etc.

The selected choices are that Greenhouse gases-

1. absorb solar energy

2. are released during combustion of fossil fuels.

A 10-kilogram bicycle is traveling at a speed of 2m/s. what is the bike's kinetice energy?

Answers

The kinetic energy of an object of mass m moving with speed v is given by:
[tex]K= \frac{1}{2}mv^2 [/tex]
For the bicycle in our problem, [tex]m=10 kg[/tex] and [tex]v=2 m/s[/tex], so the kinetic energy is
[tex]K= \frac{1}{2}(10 kg)(2 m/s)^2=20 J [/tex]

Which of the following occurs in January when the earth is closest to the sun?

Answers

Final answer:

The correct option is A Perihelion. Perihelion is the event that occurs in January when the Earth is closest to the Sun, and it results in the Earth being approximately 91.5 million miles from the Sun.

Explanation:

The event that occurs in January when the Earth is closest to the Sun is called perihelion. This is the point in Earth's elliptical orbit where it is at the minimum possible distance from the Sun. The Earth reaches perihelion approximately around January 3rd, depending on the year, with a slight variation over time.

At perihelion, the Earth is about 91.5 million miles from the Sun, as opposed to during aphelion, the farthest point, when it is about 94 million miles away. During this time, despite the Earth receiving more heat from the Sun, the Northern Hemisphere experiences winter because of the axial tilt directing this hemisphere away from the Sun.

Over long periods, the dates of perihelion and aphelion gradually shift due to the precession of the Earth's orbit. This change can have significant climatic effects over geological timescales.

You hear the engine roaring on a race car at the starting line. Predict the changes in the sound as the race starts and the car approaches the camera. A) The sound of the engine will get louder and the pitch lower. Eliminate B) The sound of the engine will get louder and the pitch higher. C) The sound is determined by the car and it will not change in any way. D) The sound of the engine will get louder but the pitch will not change.

Answers

B. The sound of the engine will get louder and the pitch higher.

Answer: The correct option is B.

Explanation:

Doppler effect is the phenomenon in which there is an apparent change in the frequency when there is relative motion between source and listener.

When the source and the listener are approaching each other then the frequency increases. The loudness depends on the amplitude. The energy of the wave is directly proportional to the square of the amplitude.

In the given problem, the engine is roaring on a race car at the starting line. There is change in the sound as the race starts and the car approaches the camera.

Pitch depends on the frequency.

Therefore, the sound of the wave will get louder and the pitch will get higher.

What is the magnetic force on a proton that is moving at 2.5 107 m/s to the left through a magnetic field that is 3.4 T and pointing toward you? The charge on a proton is 1.6 10-19 C. Use F = qv B sin(). **I know it's between C or D**
A. 4.0 10-12 N left
B. 4.0 10-12 N right
C. 1.4 10-11 N up
D. 1.4 10-11 N down,

Answers

Answer: C. 1.4 10-11 N up

Explanation:

The magnetic force, F on a charge q moving with velocity v in a magnetic field B at an angle θ is given by:

F = q v B sin θ

Charge of proton, q = 1.6 × 10⁻¹⁹ C

Strength of magnetic field, B = 3.4 T pointing outwards

velocity of the proton, v = 2.5 × 10⁷ m/s towards left

Magnetic force is given by:

F =  1.6 × 10⁻¹⁹ C× 2.5 × 10⁷ m/s ×3.4 T× sin 90 = 13.6 × 10⁻¹² N = 1.4 × 10⁻¹¹ N up

The direction of the force is given by Lorentz Right hand rule. The fingers point magnetic field, the thumb points towards velocity, then the force on the proton is given by the direction perpendicular to the palm.  

The magnetic field acts outwards with velocity of the proton towards left. The force would act perpendicular to the two -upwards.

Final answer:

The magnetic force on the proton is 1.4 \( \times \) 10-11 N upward, calculated using the formula F = qvB and the right-hand rule for the direction.

Explanation:

The magnetic force on a proton moving through a magnetic field can be calculated using the formula F = qvB sin(\theta), where F is the force on the particle, q is the charge of the particle, v is the velocity of the particle, B is the magnetic field, and \theta is the angle between the velocity vector and the magnetic field vector.

Given:

Velocity of the proton, v = 2.5 \( \times \) 107 m/sMagnetic field strength, B = 3.4 TCharge of the proton, q = 1.6 \( \times \) 10-19 CAngle between velocity and magnetic field, \theta = 90 degrees (since the magnetic field is pointing toward you and the proton is moving to the left)

For \theta = 90 degrees, sin(\theta) = 1, thus,

F = qvB sin(\theta) = qvB

F = (1.6 \( \times \) 10-19 C) \( \times \) (2.5 \( \times \) 107 m/s) \( \times \) (3.4 T)

F = 1.36 \( \times \) 10-11 N

Using the right-hand rule to determine the direction, the thumb points in the direction of the force. In this case, the force will be directed upward if the magnetic field is into the page and velocity to the left.

Therefore, the correct answer is C. 1.4 \( \times \) 10-11 N up.

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what is the net electrical charge on a magnesium ion that is formed when a neutral atom loses two electrons?

Answers

Recall that an electron has a charge of –1. Losing two electrons is a decrease by –2, which is the same as saying –(–2), which means a net charge of +2.

A ramp is 1.0 m high and 3.0 m long. What is the IMA of the ramp?

Answers

To calculate the ideal mechanical advantage for an inclined plane, divide th length of the incline by the height of the incline. 
Therefore; IMA = L/h
L= 3.0 m, while h =1.0 m
 IMA = 3/1
         = 3
Therefore the IMA of the ramp is 3 
This means the ramp increases the force that is being exerted by 3 times.

Final answer:

The Ideal Mechanical Advantage (IMA) of a ramp that is 1.0 m high and 3.0 m long is 3, indicating that the ramp multiplies the input force by a factor of 3.

Explanation:

The IMA (Ideal Mechanical Advantage) of a ramp is determined by the ratio of the distance along the ramp's slope (the length of the incline) to the vertical height of the ramp. To calculate the IMA of this particular ramp, which is 1.0 m high and 3.0 m long, you would divide the length by the height:

IMA = Length of the incline / Height = 3.0 m / 1.0 m = 3.

The Ideal Mechanical Advantage of the ramp is 3. This indicates that the ramp multiplies the input force by a factor of 3, meaning for every 1 unit of force applied along the ramp, the output force that lifts the object is 3 units.

Which of the following is not a name of a scale for measuring temperature? A. Kelvin B. Celsius C. Absolute D. Fahrenheit

Answers

Hello,

The answer is option C "absolute".

Reason:

The answer is option C because the three names for temperatures are: Kelvin, Celsius, and Fahrenheit therefore your answer is option C.

If you need anymore help feel free to ask me!

Hope this helps!

~Nonportrit

Answer:

Kelvin, Celsius, and Fahrenheit

Explanation:

Identify the following as a suspension or a colloid. sand in water

Answers

I would say that sand in water is a suspension as you can see the particles with the naked eye or a microscope. Also, the solution will settle if left alone and the sand will sink to the bottom.
suspension would be the answer

The energy emitted from the sun is a product of ________.

Answers

Q. The energy emitted from the sun is a product of ________.

A. Fusion

Why is a small crescent of light often observed on the moon when it is exactly in the new phase?

Answers

Este suceso se llama Plenilunio. Es cuando la tierra esta en medio del sol y la luna.

Which of the following always increases as a system becomes less organized? A. Entropy B. Heat C. Energy D. Temperature

Answers

Heat, because the particles are moving faster

Entropy, the measure of randomness or disorder in a system, increases when a system becomes less organized, such as when ice melts into water.

When a system becomes less organized, the measure of randomness or disorder that increases is known as entropy.

Entropy is a concept in thermodynamics representing the degree of disorder within a system. As energy disperses and becomes more random, entropy increases. This increase in entropy follows the second law of thermodynamics, which states that entropy of any isolated system not in equilibrium almost always increases; it can be thought of as a natural tendency for systems to move towards disorder and spread out energy. For instance, when ice melts into water, entropy increases because the ordered solid structure gives way to a more disordered liquid state, which requires energy input to maintain.

. The penalties for a person's second DUI conviction include completion of __________ hours of DUI school.

Answers

The penalties for a person's second DUI conviction include completion of 21 hours of DUI school.


the two main currents that affect the united states on the eat coast and west coast

Answers

The California current on the west coast which runs from north to south and the Gulf Stream on the East coast which runs from south to north.

Answer: The California Current and the Gulf Stream.

Explanation:The Gulf Stream is on the East coast it runs southward to northward While The California Current which is also a part of the North Pacific Gyre moves southward along the westward coast if America and ends off at the southward Baja California peninsula.

The California Current is a Pacific Ocean current.

Other Currents in America are Humboldt Current, the Canary Current, the Benguela Current, and the Somali Current.

When the moon is directly opposite the sun in the sky, its phase is?

Answers

It is called Full Phase

If an atom has 8 valence electrons, how many electrons does it need to gain to achieve a stable electron configuration?

Answers

It needs 8 to be stable so it is already stable

How much does it cost to operate a 25-w soldering iron for 8.0 hours if energy costs 8.0¢/kwh?

Answers

The power P is defined as the energy E per unit of time t:
[tex]P= \frac{E}{t} [/tex]
In our problem, the power is P=25 W and the total time is t=8.0h, so we can calculate the total energy used during this time:
[tex]E=Pt=(25 W)(8.0 h)=200 Wh=0.2 kWh[/tex]
The energy costs 8€ per each kwh, so we can write the following proportion:
[tex]8€: 1kwh = x:0.2 kWh[/tex]
where x is the price corresponding to 0.2 kWh. Solving the proportion we find x:
[tex]x= \frac{(8€)(0.2 kWh)}{1kWh}=1.6 [/tex]€
Final answer:

To find the cost of operating a 25-watt soldering iron for 8 hours at an energy cost of 8.0 cents per kWh, first convert the iron's wattage to kilowatts, then multiply by the hours to get kWh, and finally multiply by the cost per kWh. The total cost comes to 1.6 cents.

Explanation:

To calculate the cost of operating a 25-watt soldering iron for 8.0 hours with electricity costing 8.0 cents per kilowatt-hour, we first need to convert the power usage into kilowatts and then multiply by the number of hours used to find the total energy consumed in kilowatt-hours (kWh). Finally, we multiply the energy consumed by the cost per kWh to find the total cost.

First, we convert watts to kilowatts:
25 watts = 0.025 kilowatts (kW).

Next, we multiply the power consumption by the number of hours used:
0.025 kW × 8.0 hours = 0.2 kWh.

Lastly, we calculate the total cost:
0.2 kWh × $0.08 per kWh = $0.016.

So, operating a 25-watt soldering iron for 8 hours would cost 1.6 cents.

Holding a book while walking means i am doing work on the book. true or false

Answers

False, while holding the book it means there is no work done on the book.

Which best explains what happens to the motion of the pendulum?
A.The mechanical energy transforms to thermal energy as the pendulum slows and eventually stops moving.
B.The mechanical energy disappears as the pendulum slows and eventually stops moving.
C.The pendulum will continue moving at the same speed until someone stops it because energy cannot be destroyed.
D.The pendulum will slow down but will never stop moving because energy cannot be destroyed.

Answers

The answer is A, I just learned about this a few days ago!
I think the answer is A
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