Which actions most likely cause the domains in a ferromagnetic material to align?
Check all that apply.
- heating the material
- rubbing the material against a magnet
- passing electricity around the material
- placing the material in a magnetic field of opposite polarity
- placing the material near a strong magnet
- hitting the material

Answers

Answer 1

Answer:

A ferromagnetic material is a temporary magnet. The domains in a ferromagnetic material are randomly arranged. Under certain actions, the domains align in a particular direction and the material acts as a magnet. The actions that can cause alignment of domains in a ferromagnetic material are:

rubbing the material against a magnet would cause the alignment of domains in the same direction as of the magnet. passing electricity around the material would generate magnetic field which would cause domains to align along the direction of the field. placing the material near a strong magnet would cause the alignment of domains in the direction of the field generated by the strong magnet.

Other actions like heating the material,  placing the material in a magnetic field of opposite polarity and hitting the material would lead to demagnetization of the magnetic material.

Answer 2

Answer:

2,3, and 5

Explanation:

Edg 2022


Related Questions

What effect does the removal of vegetation have on soil ?

Answers

Hello!

The removal of vegetation causes the desertification and erosion of soil. The roots of the plants that are inside the soil create a sort of net that prevents the material to be dragged by the water from the rain. They also absorb any excess water that can weaken the soil structure. If vegetation is removed from the soil, the nutrients can be dragged by water currents and slowly the desertification will occur. 

Have a nice day!

Ohm’s law is I = V ÷ R. What is the current of a circuit with a 3.0-volt battery and 1.0 ohm of resistance? The current of a circuit with a 3.0-volt battery and 1.0 ohm of resistance is (blank) amps.

Answers

current = voltage \ resistance
x= 3 \ 1
x = 3 amps

Final answer:

Using Ohm's Law, which states I = V / R, the current of a circuit with a 3.0-volt battery and 1.0 ohm of resistance is calculated to be 3.0 amperes.

Explanation:

Calculating Current with Ohm's Law

Ohm's Law describes the relationship between current (I), voltage (V), and resistance (R) in an electrical circuit, stating that I = V / R. To calculate the current in a circuit with a 3.0-volt battery and 1.0 ohm of resistance, you would use the formula I = V / R. Plugging the values into the formula gives us I = 3.0 V / 1.0 Ω, which simplifies to I = 3.0 A. Therefore, the current of the circuit would be 3.0 amperes.

Which has greater force fly hitting windshield of rapidly moving car or the force of windshield hitting fly? Explain

Answers

the force applied on the fly and the windshield are equal based on Newton's Law of Action and Reaction. the difference between them is that the fly's body does not have enough mechanical strength to withstand the force but the windshield does.

When a fly collides with a moving car's windshield, the force exerted by both on each other is equal in magnitude due to Newton's Third Law of Motion. The differing outcomes (the fly typically being destroyed while the car remains largely unaffected) are a result of the vastly different masses and resulting accelerations, not a difference in the magnitude of force.

When a fly hits the windshield of a rapidly moving car, an interesting physics principle comes into play, known as Newton's Third Law of Motion. This law states that for every action, there is an equal and opposite reaction. Therefore, the force that the fly exerts on the windshield is equal in magnitude to the force that the windshield exerts on the fly during the collision. However, the outcomes are vastly different for the fly and the car due to their significant difference in mass. The car has a much larger mass and therefore experiences a negligible acceleration from the force, while the light-mass fly undergoes a large acceleration, often resulting in its death.

The Third Law of Motion can be counterintuitive because we observe the effects of the forces differently due to the difference in mass and resulting acceleration. But it’s crucial to understand that in terms of the forces experienced by both objects, they are identical. This is why the correct answer is that neither the car nor the fly experiences a greater force than the other in magnitude during the collision.

A 65 Kg roller-blade is accelerating at 5 m/s/s across the side walk. What force would be necessary for this acceleration to occur?

Answers

Newton's second law states that the force applied to an object is equal to the product between the mass m of the object and its acceleration a:
[tex]F=ma[/tex]
Using [tex]m=65 kg[/tex] and [tex]a=5 m/s^2[/tex], we can find the value of the force applied to the roller-blade to obtain this acceleration:
[tex]F=(65 kg)(5 m/s^2)=325 N[/tex]

What is the average acceleration during the time interval 0 seconds to 10 seconds?

a) 0.5 meters/seconds^2
b) 1 meter/second^2
c) 2meters/second^2
d) 3 meters/second^2,

Answers

your answer is a.0.5 m/s

Please help me answer these questions ASAP !

Answers

1. Layer A is the oldest. The law of superposition says that the oldest layer is at the bottom whilst the newest is at the top.
2. The law of original horizontality.
3. The law of original lateral continuity.

Which statement describes how echolocation and ultrasound imaging are the same?

A.They both use the absorption of sound waves.
B.They both use the diffraction of sound waves.
C.They both use the reflection of sound waves.
D.They both use the transmission of sound waves.

Answers

They both use the reflection of sound waves.

Answer: The correct option is C.

Explanation:

The sound wave is reflected back after striking from the barrier. This is called the reflection of the sound.

When the sound wave incidents on the barrier then it is called incident wave.

When the sound wave gets reflected back from the barrier then it is called reflected wave.

Ultrasound imaging is a medical technique which is used to take the image of the internal parts of organ of the body.

Echolocation is the process which is used by several species. It is used by bats to locate its prey. It is the biological SONAR.

Therefore, echolocation and ultrasound imaging are same as they both use the reflection of sound waves.

Question 2 Saved
What might you look for as evidence that fusion occurs inside a star?

Question 2 options:

antiprotons


protons


electrons


neutinos

Answers

protons and/or neutrons

"which forms of light are lower in energy and frequency than the light that our eyes can see"

Answers

Electromagnetic radiation covers a wide spectrum of which we can only see an extremely small sliver (wavelength between 390 nm and 740 nm).

The electromagnetic radiation with a wavelength greater than 740 nm meets the given criterion. This mainly consists of infrared, microwave, and radio waves. 

If you want to see something really interesting, Google the wavelength of Hawking radiation! 
Final answer:

Infrared light, microwave radiation, and radio waves are all forms of light that have lower energy and frequency than what our eyes can perceive. These forms of light are part of the electromagnetic spectrum and have various applications in technology.

Explanation:

The forms of light that are lower in energy and frequency than the light that our human eyes can see are infrared light, microwave radiation, and radio waves. These forms of light make up part of the electromagnetic spectrum, which ranges from high-frequency, high-energy gamma rays to low-frequency, low-energy radio waves.

In relation to the visible light we see, these energies are less, and therefore their frequencies are also lower. To illustrate, infrared light is just below red light on the spectrum and is often associated with heat radiation. Microwave radiation is commonly used in technologies such as microwave ovens and wireless communication devices, and radio waves are the longest and hence the lowest energy/frequency waves in the spectrum, utilized in broadcasting signals such as television and radio.

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A ball is thrown upward from the ground with an initial speed speed of 25 meters/second; at the same instant, a ball is dropped from rest from a building 15 meters high. After how long will the balls be at the same height?

Answers

at the speed of 15m/s of first ball

an object which has a mass of 70 kg is sitting on a cliff 10m high calculate the objects potential energy. given g=10m/s^2

A.7,000 Joules
B. 3,500 Joules
C. 700 Joules
D. 70 Joules
E. 35 Joules

Answers

7,000 joules as MGH is the equation so 70kg * 10 m/s^2 *10m

Answer: Potential Energy = 7,000 Joules(A)

Explanation:

Potential Energy is the energy possessed by the virtue of its position and it is given as,

P. E = mgh

Where m is the mass= 70kg

g is acceleration due to gravity =10m/s²

h= height = 10m

P. E = 70×10×10

P. E= 7000J

Therefore the potential energy is 7000J

You drive in a straight line at 24.0 m/s for 8.0 miles, then at 30.0 m/s for another 8.0 miles. What is the average velocity?

Answers

8 miles = 12874.8m 
Total distance = 16 miles = 25749.5m 
 time = distance/velocity
 First instance, t =12874.8/24
  = 536.45 
 Second instance, t = 12874.8/30
  = 429.16 
 Total time = 536.45 + 429.16 = 965.61 
 Average velocity = Total distance / Total time
  = 25749.5/965.61
  = 26.67 m/s

With what minimum speed must you toss a 200 g ball straight up to just touch the 15-m-high roof of the gymnasium if you release the ball 1.6 m above the ground? solve this problem using energy.

Answers

Total energy before the toss:
[tex]E_1 = \frac{1}{2} mv_1^2 + mgh_1 [/tex]

Total energy at the roof:
 [tex]E_2 = \frac{1}{2} mv_2^2 + mgh_2[/tex]

Energy must be conserved so :
[tex]E_1 = E_2 \\ \\ \frac{1}{2} mv_1^2 + mgh_1 = \frac{1}{2} mv_2^2 + mgh_2 \\ \\ \frac{1}{2} m (v_1^2 - v_2^2) = mg(h_2 - h_1) \\ \\ \frac{1}{2} (v_1^2 - v_2^2) = g(h_2 - h_1) \\ \\ v_1^2 - v_2^2 = 2g(h_2 - h_1)[/tex]

If v₁ is the initial velocity and v₂ is the final velocity, which is zero at the roof:
[tex]v_1^2 = 2g(h_2 - h_1) \\ \\ v_1 = \sqrt{2g(h_2 - h_1)} [/tex]

[tex]v_1 = \sqrt{(2)(9.81 \frac{m}{s^2} )(15m - 1.6m)} = 16,2 \frac{m}{s} [/tex]

you can feel the heat waves from small electric heater on your hands and face even though the heater is on the other side of the room this is an example of

Answers

radiation
hope this helps

Final answer:

Feeling the heat from a heater at a distance is an example of heat transfer by radiation, where electromagnetic waves emitted by the heater are absorbed by the skin, causing a warming sensation.

Explanation:

Feeling the heat waves from a small electric heater on your hands and face, even though the heater is on the other side of the room, is an example of heat transfer by radiation. This occurs when a hot body like a heater emits electromagnetic waves that travel through the space and are absorbed by your skin, warming you without the need for a medium. This type of heat transfer is the same that occurs when we feel the warmth from the Sun or when an oven warms us as we walk by.

Suppose you are holding a flat mirror and standing at the center of a giant clock face built into the floor. someone standing at 12 o'clock shines a beam of light toward you, and you want to use the mirror to reflect the beam toward an observer standing at 5 o'clock. what should the angle of incidence be to achieve this? what should the angle of reflection be?

Answers

The situation is shown in the figure attached.
The original beam of light comes from 12 o'clock, and it is reflected to 5 o'clock.
Since there are 12 hours on the clock, each hour covers an angle of
[tex]360^{\circ}/12=30^{\circ}[/tex].
This means that between 12 o'clock and 5 o'clock there is an angle of
[tex]30^{\circ}\cdot 5 = 150 ^{\circ}[/tex].
This corresponds to the total angle between the incident beam and the reflected beam. But for the law of reflection, we have that the incident angle should be equal to the angle of reflection, so this is only possible if both angles are half of [tex]150^{\circ}[/tex], so we have:
- angle of incidence: [tex]150^{\circ}/2 = 75^{\circ}[/tex]
- angle of reflection: [tex]150^{\circ}/2 = 75^{\circ}[/tex]

What material is rare in the atmosphere of earth, but common in the atmospheres of mars and venus?

Answers

the answer is carbon dioxide

Describe the steps in which a power plant transforms the energy in fossil fuels to electrical energy.

Answers

In general, this process looks like this:
1) Fossil fuels are burnt in order to get heat from them
2) This heat is being used evaporate water
3) This hot water vapor is used to  power the turbine 
4) Turbine transforms mechanical energy into electrical energy
The best thermal efficiency achieved, so far, using this process is just under 60%.

Power plants burn fossil fuels to produce steam, which spins a turbine connected to a generator, converting thermal energy into electrical energy. The electricity is then transmitted and distributed to homes and businesses.

Power plants convert fossil fuels into electrical energy through the following steps:

1. Fuel Combustion: Fossil fuels (coal, natural gas, or oil) are burned in a boiler to produce heat, releasing chemical energy.

2. Heat Production: The heat converts water into high-pressure steam.

3. Steam Generation: The steam heats up and pressurizes.

4. Mechanical Energy: High-pressure steam spins a turbine, converting thermal energy into mechanical energy.

5. Electrical Generation: The turbine drives a generator, converting mechanical energy into electrical energy.

6. Transmission: Electricity is transmitted through power lines at high voltage.

7. Distribution: Substations reduce voltage for safe distribution to homes and businesses.

8. Waste Management: Steam is condensed back to water and reused, and emissions are controlled to minimize environmental impact.

This cycle efficiently converts fossil fuel energy into electrical power.

Water vapor is an example of what phase? A. Plasma B. Gas C. Solid D. Liquid

Answers

Hi, water vapor is an example of a Gas. 

Hope this helps!
Hello there!

Answer:  B. Gas

Hoping this helps you!
(if you have any questions please ask me)

Have a great day! :D
-Ari.


Which two energy sources can help a star maintain its internal thermal pressure? which two energy sources can help a star maintain its internal thermal pressure? nuclear fission and gravitational contraction nuclear fusion and chemical reactions chemical reactions and gravitational contraction nuclear fusion and gravitational contraction nuclear fusion and nuclear fission?

Answers

nuclear fusion and gravitational contraction

constituent of star is hydrogen(including isotope) or helium. nuclear fission is almost impossible. D(deuterium; isotope of hydrogen) and T(tritium; also isotope of hydrogen) reacts and helium is formed. During this reaction, severe energy is generated. Heavier elements are formed and pulls each other. Gathered elements forms core of star. Gravity of the core prevents the gas to run away.

Answer:

nuclear fission and gravitational contraction

Explanation:

Which two energy sources can help a star maintain its internal thermal pressure? which two energy sources can help a star maintain its internal thermal pressure? nuclear fission and gravitational contraction nuclear fusion and chemical reactions chemical reactions and gravitational contraction nuclear fusion and gravitational contraction nuclear fusion and nuclear fission?

What is Nuclear fission is when a heavy nucleus split to release energy . it splits into two lesser nuclei.

Gravitational contraction:

is when there is collapse of an object in space due to the influence of its own gravity. This two phenomenon makes it possible for a satr to maintain its thermal (heat )pressure.

An atom that has a negative four charge will have which of the following?Answer 4 more protons than electrons An equal amount of protons and electrons 4 more electrons than protons 2 more neutrons than protons,

Answers

An atom with a negative four charge will have 4 more electrons than protons.

An atom that has a negative four charge will have 4 more electrons than protons. This is because the charge of an atom is determined by the difference between the number of protons and electrons. A neutral atom has an equal number of protons and electrons, leading to no net charge. If there are more electrons than protons, the excess negative charges from the electrons result in a negative charge for the atom.

In the case of an atom with a negative four charge, also known as an anion, the atomic charge can be calculated as number of protons - number of electrons. Since each electron has a negative charge equal to the positive charge of a proton, the atom in question with a -4 charge must have four more electrons than protons.

The atomic model that describes an atom as a spherical object containing a certain number of electrons trapped in a mass of positive charge is often called ____ model.

Answers

Answer: raisin pudding model or plum pudding model

This atomic model was developed in 1904 by the British scientist J.J. Thomson, from his discovery of the existence of the electron in 1897.

Taking into consideration that at that time there was still no evidence of the atom nucleus, Thomson thought the electrons (with negative charge) were immersed in a substance (the atom) of positive charge that counteracted the negative charge of the electrons. Just like the raisins embedded in a pudding or bread.

That is why this model was called the raisin pudding atomic model

The force in Newtons on a particle directed along the x-axis is given by F(x)=exp(−(x/2)+6) for x≥0 where x is in meters. The particle is constrained to move along the x-axis. Find the work done in Joules on the particle, W, in moving it from x=0 to x=1 using the fact that F=dW/dx. For your reference, 1 Joule = 1 Newton × 1 meter.,

Answers

Final answer:

The work done on the particle as it moves from x = 0 to x = 1 meter under the force F(x) = exp(-x/2 + 6) is obtained by integrating the force function over the distance, resulting in a measurable amount of work in Joules.

Explanation:

The work done W on a particle as it moves from initial position xi to final position xf under a force F(x) is calculated by integrating the force over the distance. Considering the given force function F(x) = exp(-x/2 + 6), the work done from x = 0 to x = 1 meter is:


W = ∫ F(x) dx


= ∫ exp(-x/2 + 6) dx from x = 0 to x = 1


= ∫ e(-x/2 + 6) dx from x = 0 to x = 1


= -2e(-x/2 + 6) | from x = 0 to x = 1


= -2(e(-1/2 + 6) - e6)


= -2(e(11/2) - e6) Joules

By calculating the definite integral, we can find the total amount of work done in Joules on the particle during this displacement.

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An Olympic sprinter can go from a state of rest to 11 meters per second in 10 seconds. What is the average acceleration of the sprinter?
A. 0.9 m/s
B. 110 m/s²
C. 110 m/s
D. 1.1 m/s²

@Vonte12,

Answers

the answer is D since to calculate acceleration is used the formula a = delta v over delta t where delta v is the final velocity 11m/s less initial velocity 0m/s so delta v is 11m/s and delta t is final velocity 10s less initial velocity that always will be 0 then 10 - 0 = 10 so a = 11 over 10 that is 1.1m/s^2 (remember that is squared)

The transfer of energy as heat caused by the collision of molecules is called _________. radiation convection conduction contact

Answers

The transfer of heat caused by the collision of molecules is called conduction

In the lesson a thermos is presented as an example of an isolated energy system. How could you change the thermos into an open energy system?

Answers

If you want to change the thermos into an open energy system, you have to remove the lid. Once the lid is removed, the energy is no longer contained inside the thermos bottle. From the bottle, the energy dissipates to the environment.

Answer:

The lid of the thermos must be removed.

Explanation:

The definition of an open system is one that can exchange heat and mass with the surrounding medium. A closed thermos cannot exchange mass or temperature with the medium. By removing the lid, it has the possibility of exchanging mass and energy in the form of heat with the medium in which it is found.

Have a nice day!

A box of mass 3.0 kg is accelerated from rest across a floor at a rate of 3.0 m/s2 for 4.0 s . what is the net work

Answers

Work done is given by multiplying force and distance.
Therefore; W = Force × distance
  but from the second newton's law of motion F=ma
Therefore; W = (ma) × d
Using; V= U + at
 V = 0 + (3×4)
 V = 12 m/s
 But d = (V+U)/2 (t)
        d = 12/2 (4)
           = 24 M
Hence;  W = ( 3 ×3 )× 24
                  = 216 J

A certain force gives a 5-kg object an acceleration of 2.0 m/s2. the same force would give a 20-kg object an acceleration of

Answers

10 newton force

sorry couldn't work out the second part, think you accidently didn't finish your sentence.

hope this helps :)

At which of the following angles will the sunlight received at a location on Earth fall over the smallest area? 80° 65° 40° 10°

Answers

Answer: D. 10 degree angle

All places on Earth received sunlight but in different angles. The smallest area, which is the north of the Arctic Circle receive sunlight at a 10 degree angle because of the tilted axis of rotation. Usually, the sun’s rays are the most intense at the equator and the least intense at the poles as Earth revolves around the sun.

 

Answer:

The angle that will fall over the smallest area is 10

Explanation:

Which statement is true?Select one of the options below as your answer: A. Gas atoms subjected to electricity emit bright lines. B. Gas atoms absorb white light and emit a continuous spectrum of light. C. Gas atoms under high pressure emit dark lines against a continuous spectrum. D. Gas atoms heated to a high temperature emit white light. E. Gas atoms subjected to electricity do not emit a spectrum,

Answers

D. Gas atoms heated at high temperature emit white light. This happens when the atoms and molecules that contain a hot gas emit a certain light with wavelengths that produce a white light and bright lines. Light has a continuous spectrum that passes from one color to another without interruption.
The answer is A. Gas atoms subjected to electricity emit bright lines of light. This shows why particles behave like a way .This is the reason why we see the lightning's color. Lightning comes from the static energy and it interacts with the gas atoms.

It is weigh-in time for the local under 85 kg rugby team. The bathroom scale used to assess eligibilty can be described by Hooke's law, which is depressed 0.65 cm for its maximum load of 115 kg. What is the spring's effective spring constant?

A player stands on the scale, and it depresses by 0.39cm. What is the mass of the player?,

Answers

k = 1.7 x 10^5 kg/s^2 Player mass = 69 kg Hooke's law states F = kX where F = Force k = spring constant X = deflection So let's solve for k, the substitute the known values and calculate. Don't forget the local gravitational acceleration. F = kX F/X = k 115 kg* 9.8 m/s^2 / 0.65 cm = 115 kg* 9.8 m/s^2 / 0.0065 m = 1127 kg*m/s^2 / 0.0065 m = 173384.6154 kg/s^2 Rounding to 2 significant figures gives 1.7 x 10^5 kg/s^2 Since Hooke's law is a linear relationship, we could either use the calculated value of the spring constant along with the local gravitational acceleration, or we can simply take advantage of the ratio. The ratio will be both easier and more accurate. So X/0.39 cm = 115 kg/0.65 cm X = 44.85 kg/0.65 X = 69 kg The player masses 69 kg.

The effective spring constant of the bathroom scale is approximately 174,738 N/m.

The mass of the player is approximately 69.51 kg.

To determine the spring constant of the bathroom scale, you can use Hooke's law, which relates the force applied to a spring (F) to its displacement (x) and the spring constant (k):

F = -k * x

In this case, we know that the scale depresses 0.65 cm (which is equivalent to 0.0065 meters) under a load of 115 kg. We can use this information to find the spring constant (k):

115 kg * 9.81 m/s² = k * 0.0065 m

Now, solve for k:

k = (115 kg * 9.81 m/s²) / 0.0065 m

k ≈ 174,738 N/m

Hence, the effective spring constant of the bathroom scale is approximately 174,738 N/m.

Now, to find the mass of the player who depresses the scale by 0.39 cm (which is equivalent to 0.0039 meters), you can use Hooke's law again:

F = -k * x

Where:

F is the force exerted by the player's weight (in Newtons)

k is the spring constant (we just found it to be 174,738 N/m)

x is the displacement of the spring (0.0039 meters)

Now, solve for F:

F = -174,738 N/m * 0.0039 m

F ≈ -681.882 N

Since weight is the force due to gravity (F = m * g), where "m" is the mass of the player and "g" is the acceleration due to gravity (approximately 9.81 m/s²), we can find the mass of the player:

m = F / g

m = (-681.882 N) / (9.81 m/s²)

m ≈ -69.51 kg

The negative sign indicates that the player's weight is acting in the opposite direction of the scale's displacement.

Hence, the mass of the player is approximately 69.51 kg.

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joey's little sister must take four steps for every three steps joey takes. suppose one step of joey's covers one foot. how many feet would his sister Please help me please When writing a recipe, which step should be written last?A. Setting the table.B. Gathering ingredients.C. Dicing vegetables.D. Boiling water. Which adjective best describes the personality of the bridegroom in Wood and Married and A?A. absentmindedB. cleverC. despondentD. humorous Which of the following is an example of a smile What would be the slope of the line perpendicular to the line 4x + 2y = 12? At the top of a giant swing on the gymnastics high bar, candy's velocity is 1 m/s, and she is 3.5 m high. if candy's mass is 50 kg, what is her total mechanical energy at this instant? How do I answer this equation? -3x+y=12. I'm supposed to find the function for it bt I don't know how. Can you guys help me out please Can somebody please help me, Im stumped. Please explain easily too In an essay of 400 words, summarize the responsibilities of the three branches of the United States government and the system of checks and balances. What is the purpose of the system of checks and balances? It can be very difficult for a farmer to __________ the rabbits causing damage to his crops, because they multiply very quickly.A.helpB.feedC.preserveD.eradicate During the great depression when were the banks alloed to open In an essay, explain how the alliteration in "Full Fathom Five" helps convey the atmosphere of the poem. Think about where the poem is set and what is described. Then, give two examples of alliteration in the poem, and describe how they add to the atmosphere. Use the reading selection to help you answer the question.Full fathom five thy father lies;Of his bones are coral made;Those are pearls that were his eyes:Nothing of him that doth fadeBut doth suffer a sea-changeInto something rich and strange.Sea-nymphs hourly ring his knell:Ding-dong.Hark! now I hear them,--ding-dong, bell The term ballad in the nineteenth century referred to a A. ghost story. B. true story. C. love song. D. narrative poem. A student is writing a research report for his eighthgrade literature class about the work of the famous American poet Emily Dickinson. The student must use sources that are credible, trustworthy, and relevant for the topic. Which of these is most likely a credible, or trustworthy, source that is relevant for the topic? A.an article in a literary journal that analyzes Dickinson's poetry and its impact on later American poets .B.a history book that contains information about the politicians that lived when Dickinson did .C. the printed work of an American poet that is just as famous today as Dickinson was in her time.D. printed examples of poetry written by other poets in the time that Dickinson wrote her poems. Many early 60s dance fad and novelty songs originated in this city: Aphrodite traveled 144 leagues in 12 days. Then she doubled her rate. How long would it take her to travel 168 leagues at this new speed? Which description explains why there are two neap tides per month? Do the table and the equation represent the same function? y = 115 + 32(x)0 1152 1794 2436 3078 371 catherine likes the name she was given, but wishes it were shorter. she decides to start going by the new name of Cathy. it's cute, short, easier to say, and more like the names of her friends. Cathy feels like her name fits in now. which terms describes why Catherine shortened her name? A. bystander effect B. diffusion of responsibility C. social facilitation D. conformity