What are the short eruptions of intense high-energy radiation from the sun's surface called? Corona Prominences Solar flares Sunspots

Answers

Answer 1
Short eruptions of intense high energy radiation from the Sun's surface are called solar flares. The appropriate answer is C. Solar flares usually does not last more than one hour. But during that time , the temperature of the solar flare region can be twice that of the rest of the sun's surface. Huge amounts of energy are released into space during a solar flare. 
Answer 2

The answer is Solor flare, this is because this is a sudden eruption of energy that is magnetic on or even near the surface of the star, the sun.

Hope this helps!


Related Questions

What causes convection in the Earth's mantle layer?

Answers

The mantle is heated in the core, where it is hotter it is more buoyant, whereas in areas where it is cooler it is less buoyant. This results inconvection cells in the mantle, and produces horizontal motion of mantle material close to the Earth surface.

What is the electric field at a position that is 1.6m East of a point charge of 7.2 x 10^-6C?

Answers

Final answer:

The electric field at a position 1.6m East of a point charge of 7.2 x 10^-6C can be calculated using Coulomb's Law. The electric field is 25.2 N/C.

Explanation:

The electric field at a position 1.6m East of a point charge of 7.2 x 10^-6C can be calculated using Coulomb's Law. Coulomb's Law states that the electric field at a point is directly proportional to the magnitude of the charge and inversely proportional to the square of the distance.

The formula to calculate the electric field is:

E = k * q / r^2

where E is the electric field, k is the electrostatic constant, q is the charge, and r is the distance.

Plugging in the values:

E = (9 x 10^9 Nm^2/C^2) * (7.2 x 10^-6C) / (1.6m)^2

E = 25.2 N/C

Therefore, the electric field at a position 1.6m East of the point charge is 25.2 N/C.

which best describes cosmic microwave background radiation

Answers

The cosmic microwave background (CMB) is electromagnetic radiation as a remnant from an early stage of the universe in Big Bang cosmology. In older literature, the CMB is also variously known as cosmic microwave background radiation (CMBR) or "relic radiation"

Answer:

radiation from the big bang

Explanation:

Explain how cognitive psychologists combine traditional conditioning models with cognitive processes.

Answers

Final answer:

Cognitive psychologists combined behaviorism's approach with cognitive processes by accounting for mental activities like thinking and reasoning as crucial factors in behavior. Cognitive learning emphasizes mental manipulation of information and complex language use, offering a richer perspective on learning beyond simple conditioning.

Explanation:

Cognitive psychologists have integrated traditional conditioning models with cognitive processes to form a more comprehensive understanding of human learning and behavior. Where behaviorists emphasized the role of the environment in shaping behavior through stimulus-response-reinforcement patterns, cognitive psychologists argue that cognitive processes like thinking, reasoning, and interpreting are crucial in how individuals act.

The notion of cognitive learning suggests that humans, and some other intelligent animals, are more adept at learning through the manipulation of information with their minds, such as imitating behavior, taking instruction, and utilizing complex language. This form of learning enables the formation of mental images, imagining changes, and anticipating consequences, which encompasses visual processing, memory, and sensory inputs.

Cognitive theory's application to therapy, most notably through the work of Aaron Beck, provided further evidence of its efficacy. This has helped cognitive psychology become a respected area within the study of personality and abnormal psychology. Cognitive approaches have furthered our understanding of behavior by considering the mental evaluation and interpretation of stimuli.

Five equal-mass particles (a–e enter a region of uniform magnetic field directed into the page. they follow the trajectories illustrated in (figure 1 . part a which particle (if any is neutral?

Answers

We have particle A which is curved to the left-hand side.
Particles B is slowly bent to the right side.
Particle C curves towards the right side.
Particle D is perpendicularly straight. 
The particle E bends towards the right side.
 Therefore D is showing none deflection then it is the part D which is neutral

Particle D is neutral

Further explanation

Magnetic fields can be generated by:

1. a moving charge 2. current element 3. straight electrical wire 4. electrical wire coiled

The charge of a moving electron experiences a magnetic force.

The magnetic force (Lorentz) acting on a charge moving in a magnetic field is:

F = B i l sin α

F = magnetic force, N

B = magnetic induction, Wb / m²

i = electric current, A

l = length of conductor, m

α = angle between current and magnetic field

The path traveled by the charge over time is proportional to velocity (v = l / t), while the current I = q/t

so the magnetic force equation becomes

F = Bqv sin a

If we look at the picture, the particle enters the magnetic field perpendicularly so that the magnetic force functions as a centripetal force

F = Bqv sin 90 = m.ac (ac = centripetal acceleration)

[tex]\displaystyle Bqv=m\frac{v^2}{r}[/tex]

[tex]\displaystyle r=\frac{mv}{Bq}[/tex]

From this equation shows that the radius of the path of a particle is proportional to its linear velocity

From the picture also shows that particle D is not deflected in a magnetic field, so that the path moves straight, so the magnetic force = 0, can also show neutral charged particles because there is no magnetic force acting on it

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the average velocity

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resultant velocity

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velocity position

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Keywords: Centripetal force, linear velocity,  magnetic force, Lorentz

Within visible light, violet has the lowest frequency.
a. True
b. False

Answers

false it has the highest frequency

[tex]what is a jule in physics[/tex]

Answers

A joule is equal to the energy used to accelerate a body with a mass on one kilogram using one newton of force over a distance of one meter.

Famously formulated by Einstein's equation E = mc2, the principle of ______ - _______ equivalence states that the mass of a body is a measure of its energy content.

Answers

Correct Answer: mass-energy

Answer:

mass energy

Explanation:

How can you magnetize an item that is ferromagnetic?
heat it
spin it
rub it with a soft cloth
place it in a magnetic field

Answers

The answer is to place it in a magnetic field. Using an existing magnet, you can magnetize everyday household items that contain iron, cobalt or nickel, which are metals that exhibit the property of ferromagnetism. Ferromagnetism is a subatomic property of some metals created by the structure of the electron clouds around the atoms. When the electrons of the metals align in a particular way, the metal produces a magnetic field. 

Answer:

place it in a magnetic field

Explanation

Ferromagnetic materials are made up of small domains which are randomly oriented in it. Due to this random orientation of all domains they do not produce any magnetic field in its surrounding.

When we put ferromagnetic substance in external magnetic field then due to this all small domains in ferromagnetic substance will experience torque and try to align in the direction of external magnetic field.

Due to this alignment of all domains it produce it's own magnetic field in the direction of external magnetic field.

This phenomenon is known as magnetization.

So here correct answer would be

place it in a magnetic field

Which type of radiation has a negative charge? alpha beta gamma which type of natural radiation is pure energy? beta alpha gamma which type of natural radiation has the most massive particles? gamma alpha beta?

Answers

Beta particles are negatively charged. Electromagnetic Radiation is pure energy (Gamma). The largest particles are alpha.

The Beta particles are negatively charged. Electromagnetic Radiation is pure energy (Gamma). The largest particles are alpha.

What is radiation?

Atomic and subatomic particles as well as waves, such as those that characterize X-rays, heat rays, and light rays, move as a result of radiation. All staff is constantly being bombarded by radiation of both types, coming from both cosmic and terrestrial sources.

This page describes the properties and behavior of radiation and the stuff it interacts with. It also describes how energy is transferred from radiation to its surroundings.

There is a lot of focus on the effects of such an energy transfer on living things, including the typical effects on several biological processes (e.g., photosynthesis in plants and vision in animals).

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Explain how internal reflection plays an important part in the making of a rainbow.

Answers

In the formation of a rainbow, Total Internal Reflection occurs at the rear of the raindrop - the water-to-air interface. Therefore, in order for a rainbow to be visible, the angle of incidence at that interface must be greater than the critical angle.

Resistance in wires causes electrical energy to be converted to what form of energy? sound chemical energy nuclear energy thermal energy

Answers

Resistance in wires is transformed into thermal energy, you can observe this fact when you are charging your phone and feel the wire is quite hot. That is a result of the resistance. 

Final answer:

Resistance in wires causes electrical energy to be converted to thermal energy.

Explanation:

When electric current flows through a wire that has resistance, the electrical energy is not lost but transformed into another form. We observe this phenomenon according to the principle of conservation of energy. As charged particles or electrons move through a resistive medium such as a wire, they collide with the ions in the atomic lattice structure of the wire, which causes them to lose some of their kinetic energy. This lost kinetic energy gets converted into heat due to the frictional forces analogous to those experienced when a crate is pushed across the floor. These microscopic collisions generate heat, thus converting the original electrical energy into thermal energy. This process is known in physics as resistive heating, which is a fundamental concept in understanding the behavior of electric circuits and the impact of resistance within them.

The time it takes for one wavelength to pass a fixed point is known as:

Answers

The time it takes for one wavelength to pass a fixed point is known as PERIOD.

In fact, the period is defined as the time it takes a wave to make one complete oscillation: since the wavelength is the distance between two consecutive points of the wave with same shape, it means that the time it takes for one wavelength to pass a fixed point in space is exactly the period.

Answer:

A

Explanation:

A light bulb burns out is a chemical or physical change ?

Answers

I'm pretty sure that it's a physical change, b/c the line in the bulb blows out. I could be wrong, but I'm like 99% sure I'm right lol. Hope that helps ;)

A 50kg child on a skateboard experiences a 75n force as shown what is the expected acceleration of the child?

Answers

A 50kg child on a skateboard experiences a 75n force, the expected acceleration of the child  is 1.5 meters/second squared
Using the formula: F=ma where:
F = Force in Newtons (75n)
m = mass in kilograms (50 kg)
a = acceleration in meters/second squared

F-ma
a = F/m
a = 75 / 50 = 1.5 meters/second squared

The acceleration of the 50kg child on a skateboard experiencing a 75N force can be calculated using Newton's second law of motion (F=ma). Plugging the given values into this equation, we get an expected acceleration of 1.5 m/s².

To calculate the expected acceleration of the child on the skateboard experiencing a 75N external force, we can employ Newton's second law of motion, which states that the acceleration of an object is equal to the net force acting on it divided by its mass (a = F/m).

In this case, the force (F) is 75N and the mass (m) of the child is 50kg.

Now by simply plugging the values into the equation we get a = 75N / 50kg = 1.5 m/s².

So, the expected acceleration of the child on the skateboard, given a force of 75N, is 1.5 m/s².

This result assumes no other forces are involved (like friction) and the force is applied in the direction of motion.

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Which listed property of alternating current is the MOST LIKELY reason it was chosen over direct current to provide electricity across the country?

Answers

The answer is The ability to carry power across long distances.  The movement of electrical current is constantly reversing direction.AC current reverses direction 60 times per second. It is very easy to adjust the voltage of AC using a device known as a transformer. Power companies can transmit power at extremely high voltage levels and then transform the voltage down to 120 volts inside the house. The ability to carry power across long distances was the most important advantage of AC over DC.

Answer:

d

Explanation:

can be transformed to different voltages

A formation of igneous rock on earth's surface is known as ______.

Answers

A formation of igneous rocks on earth's surface is known as extrusive igneous rocks.

The rocks originated from cooled and crystallized magma flown from the volcanic eruptions on planet surfaces is called igneous rocks. They are also called magmatic rocks due to their formation from magma.

A formation of igneous rocks on the earth's surface is known as extrusive, or volcanic igneous rocks.

How igneous rocks are formed?

They can be originated in the form of intrusive or extrusive manner. The lava from volcanic eruptions causes the deposition of cooled magma on Earth surfaces and that solidifies after sometimes resulting in the formation of extrusive igneous rocks.

The extrusive igneous rocks are formed near or above planet surfaces while the intrusive forms below the planet surface because magma cools slowly in intrusive igneous formation compared to fast cooling of extrusive rock formation.

Therefore, the appearance of igneous rocks on the earth's surface is known as extrusive igneous rocks.

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Which of the following is an inelastic collision?

Answers

I'm pretty sure B would be your answer. 

if 500 watts hit the surface of a solar panel every second and it generates 150 watts every second, how efficient is it?

Answers

The electrical efficiency is defined as the ratio between the useful power output and the total power input:
[tex]\epsilon = \frac{P_{out}}{P_{in}}[/tex]

In our problem, [tex]P_{out} = 150 W[/tex] (power generated by the solar panel) and [tex]P_{in} = 500 W[/tex] (power hitting the surface of the solar panel), therefore the efficiency of the panel is
[tex]\epsilon = \frac{150 W}{500 W}=0.3 [/tex]
which corresponds to 30%.
Final answer:

The efficiency of the solar panel is 30%. This is determined by dividing the power generated by the panel (150 watts) by the power that hits the surface of the panel (500 watts).

Explanation:

The efficiency of a solar panel can be calculated by dividing the output power by the input power. Here, the solar panel is receiving an input of 500 watts every second and generates 150 watts every second. Therefore, the efficiency is calculated as 150W / 500W = 0.3, or 30%. So, the solar panel is 30% efficient.

This efficiency is actually quite decent for a typical solar panel as most panels operate at around 15-20% efficiency. Factors impacting the efficiency include the amount and angle of sunlight, ambient temperature, and the type and configuration of the solar cells within the panel.

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On Earth, water can exist as a solid, a liquid, or a gas. Why?

Answers

Molecules in liquid don't all have the same energy, this is why water on Earth can exist as a solid, liquid or gas.

Explanation:

The Earth has perfect conditions which allows water to exist in all the three states. These conditions are:

1. Earth is in the Goldilocks zone around the Sun which results in an optimum temperature.

2. The atmosphere of the Earth maintains suitable temperature and pressure.

The presence of water in all the three forms helped the life to develop on Earth.

A sheet of aluminum (al) foil has a total area of 1.000 ft2 and a mass of 3.716 g. what is the thickness of the foil in millimeters (density of al = 2.699 g/cm3)?

Answers

The thickness of foil having total area of 1ft² and mass of 3.716g is 0.451 millimeters.

Given, that the aluminum foil has a total area of 1.000 ft^2 and a mass of 3.636 g.

To find the thickness of the foil, calculate its volume.

The volume of the foil can be determined by multiplying its area by its thickness. Since the area is given in square feet, we need to convert it to square centimeters.

To convert the area from square feet to square centimeters, we use the conversion factor:

1 ft = 30.48 cm.

So, the area of the foil is 30.48 cm².

Let's assume the thickness of the foil is 'd' centimeters. The volume of the foil can be expressed as 30.48 cm² * d cm³.

Using the density formula, we have: density = mass / volume. Rearranging the formula, we get: volume = mass / density.

Plugging in the values,  

Volume = [tex]3.716 g / 2.699 g/cm^3[/tex].

Volume = 1.376cm³

Equating the volume,

(30.48 cm)^2 * d = 1.376 cm^3.

Solving for 'd', we divide both sides of the equation by (30.48 cm)^2. This gives us:

[tex]d = 1.376 cm^3 / (30.48 cm)^2[/tex]

d= 0.0451 cm.

Finally, to express the thickness in millimeters, multiply 'd' by 10.

This gives the thickness of the foil as approximately 0.451 mm.

Therefore, the thickness of the aluminum foil is approximately 0.451 mm.

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Final answer:

To determine the thickness of aluminum foil with provided mass and area, the volume is first calculated by dividing the mass by the density of aluminum. Then, the area is converted from square feet to square centimeters, and finally, the volume is divided by the converted area to get the thickness in millimeters.

Explanation:

The thickness of a piece of aluminum (Al) foil can be calculated knowing its mass, area, and the density of aluminum. First, we need to find the volume of the aluminum, which can be done by dividing the mass by its density. Since the density is provided in g/cm³ and the mass in grams, we skip any conversion for these two. However, we have the area in ft² which needs to be converted to cm² (1 ft² = 929.0304 cm²).

To find the volume (V) in cm³, we use the formula V = mass / density. In this case, V = 3.716 g / 2.699 g/cm³ = 1.3764 cm³. Now, we convert the area from ft² to cm²: area = 1.000 ft² * 929.0304 cm²/ft² = 929.0304 cm². The thickness (T) in cm can now be found by dividing the volume by the area T = 1.3764 cm³ / 929.0304 cm² = 0.00148 cm or 0.0148 mm when converted to millimeters.

PLEASE ANSWER ASAP

Most scientists recommend reducing carbon dioxide emissions. Less carbon dioxide in the atmosphere would be expected to reduce the rate of global warming increase damage caused by acid rain decrease the number of biotic factors in ecosystems reduce destruction of the ozone layer

Answers

Reduce the rate of global warming

Explain where most of the mass of an atom is located. Also, explain why some particles that make up the atom do not contribute much to its mass.

Answers

Most of the mass of an atom is located in its nucleus.
That's where the protons and neutrons stay.

The other particles that make up the atom are the electrons,
buzzing around in a cloud outside of the nucleus.  They hardly
contribute much to the atom's mass, because no atom has more
than roughly 100 of any one particle, but it takes more than 1,800
electrons to make as much mass as ONE proton or neutron !

what are 2 ways electromagnets are used

Answers

Electromagnets are used for various purposes but I fathom in this instance, the questioner is asking about how electromagnetics can be used to attraction or repulsion.
Example, electromagnets are used for attraction in cranes which attach them to containers in order to lift them.
Meanwhile, Maglev trains use electromagnets repulsive properties.

which term best describes the movement of waves and how they interact with one another?a.wave shape b.wave velocity c.wave behavior d.wave chemistry

Answers

C, wave behavior. Behavior determines which direction, how to interact etc

The correct choice is

c.wave behavior.

wave behavior consists of refraction , reflection , interference . refraction talks about the movement of wave when it travels from one medium to another. reflection talks about how wave return back to same medium where it came from after hitting a surface. interference deals with how waves interact with each other.

So correct choice is wave behavior.

Newton's Second Law of Motion states

A) for every action there is an equal and opposite reaction

B) a body will remain at rest unless acted upon by an unbalanced force

C) a body will move with uniform motion in a straight line, unless acted upon by an unbalanced force

D) the force acting on a body equals the rate of change of momentum

Answers

The answer is A. for every action there is an equal and opposite reaction
Newton's Second Law of Motion states for every action there is an equal/opposite reactions. Incorrect answer is b, c, and d. Correct answer is a. 
Hope it helped you.
-Charlie

Round your answers to one decimal place.this parallel circuit has two resistors at 15 and 40 ohms. what is the total resistance? ωif there is a 12 v battery in the circuit, what would the approximate current be? a

Answers

1) The equivalent resistance of two resistors in parallel is given by:
[tex] \frac{1}{R_{eq}}= \frac{1}{R_1}+ \frac{1}{R_2} [/tex]
so in our problem we have
[tex] \frac{1}{R_{eq}} = \frac{1}{15 \Omega}+ \frac{1}{40 \Omega}=0.092 \Omega^{-1} [/tex]
and the equivalent resistance is
[tex]R_{eq} = \frac{1}{0.092 \Omega^{-1}}=10.9 \Omega [/tex]

2) If we have a battery of 12 V connected to the circuit, the current in the circuit will be given by Ohm's law, therefore:
[tex]I= \frac{V}{R_{eq}}= \frac{12 V}{10.9 \Omega}=1.1 A [/tex]

10.9Ohms

1.1A i did it on Edge and it was correct

What energy transformation takes place when you climb a ladder?

Answers

The energy transformation takes place when you climb a ladder is Kinetic energy to the Potential Energy.

What is Kinetic and Potential Energy?The process we needed to do work is called energy. Energy can be classified in various forms like kinetic, potential, thermal, nuclear etc.The total energy of a system can be defined as by the addition of kinetic and potential energy of the system. When the object is in motion, then the energy can be described as the Kinetic energy.

Total energy = kinetic energy + potential energy

(If we make Kinetic energy the subject of the formula, we have)

kinetic energy = total energy - potential energy

When an particle is in motion then the energy of the object posses is called kinetic energy.

When energy is stored in an particle that is depending on its location is called potential energy.

Kinetic and potential energy can get transmuted into each other.

Therefore, when you climb a ladder, then the kinetic energy gets transformed into potential energy.

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Why is HIV difficult to treat? Check all that apply.

Answers

On top of this, HIV can even kill uninfected immune system cells, a phenomenon we are just beginning to understand. This is why HIV is named the “human immunodeficiency virus”. When the immune system is damaged, it is treacherously difficult for your body to fight against HIV or other opportunistic infections.

I HOPE IT HELPS 

Well there is not any answer choices so i'ma just tell you what i know about it.

Well the answer is:

A HIV uses the humans immune system to spread and multiply. The immune system is what tackles and kills viruses. With the HIV{ Which is a virus } using the virus killing system, its immune to what the immune system does to kill the HIV virus.

I hope this helps :D 
    

The potential difference in a simple circuit is 2 v and the resistance is 2 ω . what current flows in the circuit? answer in units of
a.

Answers

Hey

Potential Difference given is : 2V

Resistance is : 2 ohms

By Ohm's Law, one can easily utilize the relation :

[tex]v = ir[/tex]

Where, { v , i , r } are the potential difference, current and Resistance Respectively.


Hence,
[tex]i = \frac{v}{r} = \frac{2}{2} = 1a[/tex]

Hence, the Current is 1 Ampere
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