Compared to visible radiation, does infrared radiation have longer or shorter wavelengths and higher or lower energy per photon?

Answers

Answer 1

Infrared radiation has longer wavelengths compared to visible radiation, and lower energy per photon.

What are infrared radiation?

Infrared radiation (IR) is a type of electromagnetic radiation that is not visible to the human eye. It has a longer wavelength and lower frequency than visible light, and it is part of the electromagnetic spectrum that also includes radio waves, microwaves, visible light, ultraviolet radiation, X-rays, and gamma rays.

Infrared radiation is often associated with thermal radiation, which is the emission of electromagnetic waves from objects that are at a temperature above absolute zero. This is because infrared radiation is often emitted by objects that are warm, and it is this type of infrared radiation that is responsible for our ability to feel heat.

Infrared radiation has a wide range of applications, including in remote sensing, thermal imaging, and heating. For example, in remote sensing, infrared radiation can be used to observe and study the Earth and other celestial objects, as well as to detect and monitor changes in temperature, vegetation, and other physical properties. In thermal imaging, infrared cameras are used to detect heat signatures and create images based on temperature differences. In heating, infrared heaters use infrared radiation to heat objects and materials directly, rather than heating the air around them.

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Related Questions

Imagine a planet moving in a perfectly circular orbit around the Sun, such that its distance from the Sun never changes. What does Kepler's Second Law say about this planet's orbital speed? Given that, is this planet experiencing an acceleration? In selecting your answer below, be sure to choose the correct response (Yes or No) AND the correct reason for that response.
Choose one:
A. Yes. Although Kepler's Second Law demands that a planet in a perfectly circular orbit has a constant orbital speed, the planet is still traveling in a curved path and so it is changing its direction of motion all the time. Changes in direction require accelerations. just like changes in speed do.B. No. Kepler's Second Law demands that this planet has a constant orbital speed, and if the speed is not changing, then there can be no acceleration present.C. No. Planets orbit in the vacuum of space and so do not experience forces non accelerations.D. Yes. Kepler's Second Law demands that this planet is always changing its orbital speed (going faster at some times, slower at others), and change in speed requires an acceleration.

Answers

A. Yes. Although a planet in a perfectly circular orbit must have a constant orbital speed according to Kepler's Second Law, the planet is still moving over a curved path, which causes it to constantly change its direction of motion. Much like with speed changes, direction changes call for accelerations.

How does Kepler's first law explain something?

The Sun is one of the orbital foci, according to Kepler's first law, and all the planets have elliptical orbits around it.

What is Kepler's second law used to explain?

The planets' motion through space changes at a constant rate, according to Kepler's second law. Planets accelerate as they approach the Sun, according to the second law.

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Which one of the following statements is true concerning the electrostatic charge on a conductor?A) The charge is uniformly distributed throughout the volume.B) The charge is confined to the surface and is uniformly distributed.C) Most of the charge is on the outer surface, but it is not uniformly distributed.D) The charge is entirely on the surface and it is distributed according to the shape of the object.E) The charge is dispersed throughout the volume of the object and distributed according to the object's shape.

Answers

The true statement is, the charge is confined to the surface and is uniformly distributed. Option B is correct.

This is known as the "electrostatic shielding effect". When a conductor is charged, the charges will distribute themselves on the surface of the conductor, and the electric field inside the conductor will be zero. This is due to the fact that charges in a conductor will always rearrange themselves in such a way as to minimize the energy of the system, and having charges inside the conductor would increase the system's energy.

As a result, the charges on a conductor will distribute themselves on the surface, where they can spread out as much as possible and minimize their mutual repulsion.

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The total sound power, in decibels, from x objects each producing 50 decibels of sound power is given by the function f(x) = 50 + 10 log x. Suppose each of the x objects increases its sound power by 10 decibels, so that the new total sound power, in decibels, is given by the function g(x) = f(x) + 10.

Answers

The new total sound power, in decibels, when each of the x objects increases its sound power by 10 decibels, is given by the function g(x) =

60 + 10 log x.

The original function is given as:

f(x) = 50 + 10 log x

When each of the x objects increases its sound power by 10 decibels, the new total sound power can be calculated as:

g(x) = f(x) + 10

= 50 + 10 log x + 10 (adding 10 to account for the increase in sound power of each object)

= 60 + 10 log x

Thus, the new function g(x) is given g(x) = f(x) + 10  which represents the total sound power in decibels produced by x objects each having a sound power of 60 decibels (50 decibels + 10 decibels increase). This function uses the logarithmic scale to calculate the total sound power, where each 10-fold increase in the number of objects corresponds to a 10-decibel increase in the total sound power.

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A fully charged capacitor initially has an air gap and is disconnected from the battery. A dielectric material is inserted between the plates
What happen to the free charge at surface of the capacitor plates and the total charge free and bound at the surface of the capacitor plates?

Answers

When a dielectric material is inserted between the plates of a charged capacitor, the free charge on the surface of the plates will remain unchanged, while the total charge (free and bound) on the surface of the plates will decrease.

What is dielectric material?

A dielectric material is an insulating material that can store electrical energy in an electric field. In other words, it is a material that has a high resistance to the flow of electric current and does not conduct electricity.

Dielectric materials are commonly used as insulators in capacitors, which are electronic components that store electrical energy in an electric field. When a dielectric material is placed between the plates of a capacitor, it increases the capacitance of the capacitor, allowing it to store more electrical energy.

Examples of dielectric materials include air, glass, ceramics, and certain plastics. The properties of a dielectric material, such as its dielectric constant, determine how effective it is at storing electrical energy in an electric field.

Overall, dielectric materials play an important role in many electrical and electronic devices, including capacitors, transformers, and other components that use electric fields to store and transfer electrical energy.

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The precise moment when visible light energy from the sun is captured and converted to chemical energy is called: ________

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The precise moment when visible light energy from the sun is captured and converted to chemical energy is called Photosynthesis.

Define Photosynthesis.

The process by which light energy is transformed into chemical energy in the form of sugars is known as photosynthesis. Using light energy, glucose (or other sugars) are created from carbon dioxide and water, with oxygen being released as a byproduct.

When a photochemically activated specific chlorophyll molecule of the photosynthetic reaction center loses an electron through an oxidation reaction, light energy is transformed into chemical energy. Water and carbon dioxide are converted by plants into a sugar called glucose using the power of the sun. Plants use glucose as a source of energy and to create other compounds like cellulose and starch.

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The fact that we always see the same face of the Moon tells us that the Moon (a) does not rotate. (b) rotates with the same period that it orbits Earth. (c) looks the same on both sides.

Answers

The correct option is B, The fact that we always see the same face of the Moon tells us that the Moon rotates with the same period that it orbits Earth.

The Moon rotates on its own axis in a process known as rotation. Like most celestial bodies, the Moon rotates in a counterclockwise direction when viewed from above its north pole. This means that as the Moon orbits the Earth, the same side of the Moon always faces us. This phenomenon is known as synchronous rotation, and it occurs because the Moon's rotation period is almost exactly the same as its orbital period around the Earth.

The Moon's rotation is not a perfect sphere, however, and it has a slight bulge at the equator. This is due to the gravitational pull of the Earth, which has caused the Moon to become slightly deformed over time. The Moon's axial tilt is also very small, which means that its poles are nearly perpendicular to its orbital plane.

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Complete the following sentence: The higher the frequency of an electromagnetic wave, the____ the wavelength. longer | shorter

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The wavelength of an electromagnetic wave decreases with increasing frequency.

What are frequency and wavelength?

The wavelength, which also refers to troughs, is the separation between two wave crests. The number of vibrations that span a particular area in a second is known as the frequency, which is measured in cycles per second (Hz) (Hertz).

What is the SI unit and wavelength?

The distance a wave may travel in one cycle is called its wavelength.. The SI unit for wavelength is the metre, and the wavelength sign is (m). One metre is the distance travelled by light travelling in a vacuum at a time of 1/(3 x 10) as a unit of speed and distance.

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Why are anions bigger than their parent neutral atom?

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Anions, which are negatively charged ions, are typically larger than their parent neutral atoms. This is because the addition of an electron to the outermost energy level of an atom results in an increase in the electron-electron repulsion, which causes the electron cloud to expand.

The negative charge of the electrons in an atom balances the positive charge of the nucleus in a neutral atom. Yet, the number of electrons rises when an atom gains an electron to form an anion, leading to a larger electron-electron attraction. The atomic radius rises as a result of the electron cloud dispersing in this way.

For instance, if a neutral chlorine atom obtains an electron to form a chloride ion, the additional electron moves into the atom's outermost energy level and strengthens the electron-electron attraction. As a result, the electron cloud widens, increasing the chloride ion's atomic radius relative to the neutral chlorine atom.

As a result of the presence of an additional electron, anions are typically bigger than their parent neutral atoms.

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which type of switch connects all devices in a rack to the rest of the network?

Answers

The type of switch that connects all devices in a rack to the rest of the network is called a "Top of Rack (ToR) switch".

What is a Tor switch?

Top of Rack (ToR) switch is a type of network switch that is typically installed in a data center or server room at the top of a server rack. The main purpose of a ToR switch is to provide high-bandwidth connectivity to the servers or other network devices within the rack and to connect them to the rest of the network.

ToR switches are commonly used in large-scale computing environments, such as cloud data centers, web hosting facilities and enterprise server rooms where they help to improve network efficiency and simplify network management.

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a 25.0 ohm resistor and 40.0 ohm resistor are connected are onneted in series, and attached to a battery. A current of 0.255 Amps flows through the circuit. what is the voltage of the battery? (unit = V)

Answers

The battery has a voltage of roughly 16.6 V.

How do you use a resistor to change 5 V to 3.3 V?

an easy downshifter with resistors. A resistive divider is the most basic step-down circuit that is feasible. Put the 5V output through a series of resistors and then tap the 3.3V logic input. An applied 5V input should result in a 3V output from a chain of 2.2k and 3.3k resistors.

When resistors are connected in series, the circuit's overall resistance is the sum of its component resistances:

R_total = R_1 + R_2 + ...

R_total = R_1 + R_2 = 25.0 ohm + 40.0 ohm = 65.0 ohm

The current flowing through the circuit is given as 0.255 Amps.

We can use Ohm's law to calculate the voltage of the battery:

V = I × R_total

Substituting the values, we get:

V = 0.255 A × 65.0 ohm ≈ 16.6 V

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Which power of a telescope might be expressed as "0.5 seconds of arc"?
A. resolving power.
B. the prism.
C. poor resolving power
D. magnifying power.

Answers

Answer:

A) resolving power would be most appropriate

1 deg = 1/360 of circle

1 min = 1 deg / 60

.5 sec = 1/120 min

P(ower) = 1 deg / (60 * 120) = 1.4E-4 deg

Resolving power = .00014 deg

Objects separated by .00014 deg

In radians 1 deg = 360 / (2 * π) = 57.3 deg / rad

.00014 deg * 1 rad / 57.3 deg = 2.4E-6 rad

S = R θ         separation where R is radius and θ  in radians

If we let R = 250,000 distance to moon then

S = 250,000 * 2.4E-6 = .6 mi

.5 sec of arc could resolve objects .6 mi apart on moon

How deep underwater should you dive to quadruple the atmospheric pressure at the surface? note: 1 m = 3. 28 ft.

Answers

The depth of underwater to dive to quadruple the atmospheric pressure at the surface is 30 meters.

For every additional 10 meters deeper one dives, there is increase in pressure on your body by 1 bar. Our bodies are subject to 3 atmospheres or bars of pressure at a depth of 20 meters and 4 bar/atm at 30m.

At sea level, the pressure of the air that surrounds us is equal to 1 bar, which is every so often referred to as 1 atmosphere. If one dive to just 10 meters deep and that pressure is doubled – because water is much denser than air, it applies a much greater compressive force on your body.

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what is a colloid osmotic pressure

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Colloid osmotic pressure is the oncotic pressure which is opposite to the hydrostatic blood pressure.

What is the colloid osmotic pressure?

Oncotic pressure is the colloid osmotic-pressure. It is a form of osmotic pressure which is induced by the proteins, notably the albumin protein, in a blood vessel's plasma which causes a pull on the fluid back into the capillaries in the body. Participating colloids displace the water molecules, thus creating a relative water molecule deficit with the water molecules moving back into the circulatory system in the body within the lower venous pressure end of capillaries.

Colloid osmotic-pressure has the opposing effect of both the hydrostatic blood pressure pushing water molecules and the small molecules which are out of the blood into interstitial spaces within the arterial end of the capillaries and interstitial colloidal osmotic pressure. These interacting factors can determine the partition balancing of extracellular water between the blood plasma and outside the blood stream.

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the dependence of the rate constant on temperature is expressed by which equation?
a. The arrhenius equation
b. The de broglie equation
c. The vanât hoff equation
d. Temperature has no effect on the rate constant

Answers

a. The Arrhenius equation

What is  Arrhenius equation?

The Arrhenius equation is a mathematical expression that describes the relationship between the rate constant of a chemical reaction and temperature. The equation states that the rate constant of a reaction is proportional to the frequency factor (A), which is related to the activation energy (Ea) and the absolute temperature (T) according to the following formula:

k = Ae^(-Ea/RT)

where:

k is the rate constant,

A is the frequency factor,

Ea is the activation energy,

R is the gas constant, and

T is the absolute temperature.

The Arrhenius equation is a useful tool for predicting the effect of temperature on the rate of a chemical reaction. By measuring the rate constant at different temperatures, it is possible to determine the activation energy of the reaction, which provides important information about the mechanism of the reaction. The Arrhenius equation is widely used in the fields of chemistry, biology, and material science to study the kinetics of reactions and to design and optimize processes that involve chemical reactions.

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The correct answer is a. The Arrhenius equation. The dependence of the rate constant on temperature is expressed by the arrhenius equation.

What is  Arrhenius equation?

The Arrhenius equation is a mathematical expression that describes the relationship between the rate constant of a chemical reaction and temperature. The equation states that the rate constant of a reaction is proportional to the frequency factor (A), which is related to the activation energy (Ea) and the absolute temperature (T) according to the following formula:

[tex]k = Ae^(-Ea/RT)[/tex]

where:

k is the rate constant,

A is the frequency factor,

Ea is the activation energy,

R is the gas constant, and

T is the absolute temperature.

The Arrhenius equation is a useful tool for predicting the effect of temperature on the rate of a chemical reaction. By measuring the rate constant at different temperatures, it is possible to determine the activation energy of the reaction, which provides important information about the mechanism of the reaction. The Arrhenius equation is widely used in the fields of chemistry, biology, and material science to study the kinetics of reactions and to design and optimize processes that involve chemical reactions.

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The following statements are all true. Which one counts as an "exception to the rule" in being unusual for our solar system? Venus does not have a moon. Jupiter has a very small axis tilt. The diameter of Earth's Moon is about 1/4 that of Earth. Saturn has no solid surface. The diameter of Earth's Moon is about 1/4 that of Earth.

Answers

The Earth's Moon, whose diameter is roughly 1/4 that of the Earth, stands out as exceptional for our solar system.

What system of the sun are we in?

Although there are more than 3,200 other stars in our galaxy with planets around them, only our planetary system is officially referred to be a "solar system" by astronomers. A star with planets surrounding it, the solar system is just one example of a planetary system.

How much longer will Earth exist?

When Earth's surface temperature rises four billion years from now, a runaway greenhouse effect will result, producing conditions that are more extreme than those on Venus right now and heating the planet's surface to the point of melting. By then, all life on Earth will have vanished.

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A plane is flying at a height of 1200 m and has 60,000,000 J of gravitational potential energy. Calculate the mass of the plane.​

Answers

Answer:

The mass of the plane is 5,096.8 meters

Explanation:

The formula for gravitational potential energy is

[tex]GPE=mgh[/tex]

Note:

[tex]GPE[/tex] is the gravitational potential energy in joules

[tex]m[/tex] is the mass in kilograms

[tex]g[/tex] is the acceleration due to gravity

[tex]h[/tex] is the height in meters

In this example we are given the height and the gravitational potential energy. Knowing that we can evaluate the mass.

[tex]GPE=60000000\\g=9.81\\h=1200\\[/tex]

[tex]60000000=m*9.81*1200[/tex]

[tex]\frac{60000000}{11772} =m[/tex]

[tex]m=5096.83996[/tex]

[tex]m=5096.8[/tex]

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Interference pattern? An electron beam is aimed at two closely spaced slits. The beam is attenuated to produce only one electron per minute.
Yes or No

Answers

"An electron beam is aimed at two closely spaced slits. The beam is attenuated to produce only one electron per minute is known as interference pattern." The answer is yes.

When an electron beam is aimed at two closely spaced slits, the electrons passing through the slits will interfere with each other, producing an interference pattern on a screen behind the slits. The interference pattern will be a series of bright and dark bands, where the bright bands correspond to constructive interference and the dark bands correspond to destructive interference.

When a beam of electrons is passed through two closely spaced slits, it creates an interference pattern on a screen behind the slits. This pattern results from the wave-like behaviour of electrons and the interference between the electrons passing through the two slits. The pattern appears as a series of bright and dark bands, where the position and intensity of the bands are determined by the relative phase of the electrons.

The interference pattern only becomes noticeable with a large number of electrons passing through the slits at the same time. If only one electron is passing through the slits per minute, the pattern will not be easily observable.

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What does the word Core mean?
a. The Sun's center
b. The layer of the Sun's atmosphere that looks like a halo during an eclipse.
c. The layer of the Sun's atmosphere that has a reddish glow.
d. Reddish loops of gas that link parts of sunspot regions.

Answers

The word Core means: The sun's center.

What is the core?

Depending on the context, the word "core" can indicate many different things, but when it comes to the Sun, it typically refers to option the Sun's center. The nuclear fusion reactions that take place in the Sun's core are where the energy for the star is produced. The core of the sun is the area where nuclear fusion processes occur, producing a huge quantity of heat and energy. The sun's core has the highest temperature, up to a whopping 27 million degrees Fahrenheit. Since the sun's energy is produced in the core and radiates outward to its surface and beyond, the core is known as the sun.

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HELP WILL MARK BRAINIEST fast plssss complete the whole worksheet plsss

Answers

1. D

2. B

3. D

No 4?

5. C

How does the plant roots perceive gravity?

Answers

The root cap, a specialised organ at the apex of the root, aids plants in understanding gravity.

Why is plants roots?

The portion of a plant that is underground and usually extends downward into the soil are called plant roots. The main job of the roots is to draw water and nutrients from the ground and anchor the plant in place. They are made up of a variety of specialised components, such as vascular tissue, root hairs, and caps on the roots.

Describe root cap?

At the root's tip, the root cap serves as protection for the growing tip since it penetrates the ground. The surface area that is available for absorption is increased by the root hairs, which are tiny, finger-like projections that protrude from the surface of the root.

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What are the monocular and binocular depth cues?

Answers

Monocular depth cues are visual cues that can be perceived with one eye, while binocular depth cues are visual cues that require both eyes to be perceived.



Monocular depth cues include:
- Relative size: Objects that are closer appear larger than objects that are farther away.
- Linear perspective: Parallel lines appear to converge as they get farther away.
- Interposition: Objects that are closer block the view of objects that are farther away.
- Texture gradient: The texture of an object becomes less detailed as the object gets farther away.
- Light and shadow: The way light falls on an object can give the impression of depth.

Binocular depth cues include:
- Retinal disparity: Each eye sees a slightly different image of an object, and the brain uses the difference between these images to judge the distance of the object.
- Convergence: The closer an object is, the more the eyes have to turn inward to focus on it.

Both monocular and binocular depth cues are important for perceiving depth and distance in the world around us.

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A 747 jetliner lands and begins to slow to a stop as it moves along the runway. How If its mass is 3.57?

Answers

So the speed 7.5 seconds later is 17.97m/s.

m = mass of the jetliner = 3.57 x 10⁵ kg

The initial speed of the jet is v1=27 m/s

Net Braking force=– 4.30 × 10⁵ N

To find v2

v2=Ft/m +v1

v2=( –4.30 × 10⁵ NN ×7.5 s/ 3.57 x 10⁵ kg) + 27m/s

v2=17.97 m/s

Definition of Mass

Mass was first discovered by Sir Isaac Newton through research on gravity and the inertial properties of objects he developed. Newton was an English physicist, mathematician, chemist, astronomer, natural philosopher, and theologian.

Mass can be interpreted as a measure of the number of particles contained in a substance or object. Mass is also one of the principal quantities that shows the size of the inertia of an object. Mass becomes an intrinsic property of an object, so that wherever the object is, the mass value will remain the same. If it is based on the effect of the object on the direction of motion, mass is classified as a scalar quantity (only has value).

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Suppose that two objects exert a gravitational force of 22 n on one another. What would that force be if the mass of one of the objects were doubled?.

Answers

The force of magnitude 22N will also be double to a magnitude of 44N when the mass of one of the bodies is doubled.

The gravitational force of any two bodies is given by,

F = GMm/R²

Where,

M and m are the masses of the bodies,

R is the distance between them and G is the universal gravitational constant.

Currently the force of gravitation between two bodies is given to be 22N.

Now, if one of the mass is doubled, let say M = 2M, so the new force will be,

F' = G(2M)m/R²

F' = 2GMm/R²

Putting F = GMm/R²,

F' = 2F

So, the force of gravitation between the two bodies will be doubled. So, the new force will be 44N.

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why do we never see the moon next to, say, polaris?

Answers

We never see the Moon next to Polaris (the North Star) because the Moon's orbit around the Earth is not aligned with the Earth's rotation axis. Instead, the Moon's orbit is inclined at an angle of about 5 degrees to the Earth's orbit around the Sun.

This means that the Moon appears to move across the sky along a path that is inclined at a similar angle to the Earth's equator. Polaris, on the other hand, appears to remain in a fixed position relative to the Earth's rotation axis. As a result, the Moon and Polaris appear to move along different paths in the sky and are unlikely to be seen next to each other.

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________ refers to the minimum amount of stimulus energy required to be detected 50% of the time.absolute thresholddifference thresholdjust noticeable differencetransduction

Answers

Absolute threshold refers to the minimum amount of stimulus energy required to be detected 50% of the time.

What is the absolute threshold?

An absolute threshold is the lowest intensity of stimulation that can be recognized at least half of the time. The phrase is frequently used in neuroscience and experimental research and can refer to any input detectable by the human senses, including sound, touch, taste, sight, and smell.

In a sound detention experiment, for example, researchers may play a sound at varied volumes. The absolute threshold is the lowest level that a person can hear.

It is crucial to remember, however, that at such low levels, people may only register the stimulation a portion of the time.

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_______ is a huge reddish loops of gas that often link different parts of sunspot regions.

Answers

Solar Prominence is a huge reddish loop of gas that often link different parts of sunspot regions.

What is a Solar Prominence?

A solar prominence is a large, loop-like structure of plasma that extends from the Sun's surface into its outer atmosphere. Prominences are often associated with sunspot regions and can span hundreds of thousands of kilometers. They are composed of charged particles, primarily hydrogen and helium, that are held in place by the Sun's magnetic field. The reddish color is due to the emission of light in the hydrogen alpha spectral line. Solar prominences are dynamic structures that can erupt and release huge amounts of energy into space, in the form of coronal mass ejections.

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.

1.is 15 second a scalar quantity or a vector quantity?why?
2.is 7 newton a scalar quantity or a vector quantity?why?

Answers

Answer:

Physics is a mathematical science. The underlying concepts and principles have a mathematical basis. Throughout the course of our study of physics, we will encounter a variety of concepts that have a mathematical basis associated with them. While our emphasis will often be upon the conceptual nature of physics, we will give considerable and persistent attention to its mathematical aspect.

The motion of objects can be described by words. Even a person without a background in physics has a collection of words that can be used to describe moving objects. Words and phrases such as going fast, stopped, slowing down, speeding up, and turning provide a sufficient vocabulary for describing the motion of objects. In physics, we use these words and many more. We will be expanding upon this vocabulary list with words such as distance, displacement, speed, velocity, and acceleration. As we will soon see, these words are associated with mathematical quantities that have strict definitions. The mathematical quantities that are used to describe the motion of objects can be divided into two categories. The quantity is either a vector or a scalar. These two categories can be distinguished from one another by their distinct definitions:

Scalars are quantities that are fully described by a magnitude (or numerical value) alone.

Vectors are quantities that are fully described by both a magnitude and a direction.

The remainder of this lesson will focus on several examples of vector and scalar quantities (distance, displacement, speed, velocity, and acceleration). As you proceed through the lesson, give careful attention to the vector and scalar nature of each quantity. As we proceed through other units at The Physics Classroom Tutorial and become introduced to new mathematical quantities, the discussion will often begin by identifying the new quantity as being either a vector or a scalar.

Explanation:

A ball rolling down an incline has its maximum kinetic energy at A) the top. B) halfway down. C) three-quarters of the way down. D) the bottom.

Answers

Answer:

D

Explanation:

Kinetic Energy = 1/2 m v^2

  the ball will have its maximum v, (velocity), at the bottom thus this is where it will have maximum KE

A protein molecule in an electrophoresis gel has a negative charge. The exact charge depends on the pH of the solution, but 30 excess electrons is typical.
What is the magnitude of the electric force on a protein with this charge in a 1700 N/C electric field?
F = __________N

Answers

The magnitude of the electric force is 8.16 x 10⁻¹⁵ N

We solve by the formula:

q = 1.6 x 10⁻¹⁹ x 30

Solving gives:

F=Eq= 1,700 x 1.6 x 10⁻¹⁹C x 30

= 8.16 x 10⁻¹⁵ N

Definition of Electric Force

There are two types of forces, namely touching forces and non-touching forces. These two types of forces are divided according to the presence or absence of contact.

Touch force is a force that arises as a result of direct contact or physical contact with objects. In this type of force, the force cannot exist if the objects do not touch each other. Examples of this touch force are frictional force, muscle force and spring force.

The non-contact force is the force that arises due to the presence of a field around the object that is the source of the force with the surrounding objects. Even though the objects do not touch each other, the objects around the source of the force will feel the effect, for example the electric force, the magnetic force and the gravitational force.

Based on the explanation above, it can be concluded that the electric force is a force that is generated or generated by various objects that have an electric charge. Electric force can also be interpreted as a force generated by objects that have an electric charge in an electric field.

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A rock is kicked horizontally at 15 m/s from a hill with a 45 degree slope (figure below). How long does it take for the rock to hit the ground? Show work please.

Answers

The rock will travel in a parabolic path, with an initial vertical velocity of 0 m/s. Since the rock is kicked horizontally, we can ignore the effect of gravity on its horizontal.

What is the velocity ?

Velocity is the rate of change of an object's position from one point to another. It is a vector quantity that consists of both speed and direction. Velocity is usually expressed in meters per second (m/s) or kilometers per hour (km/h). The velocity of an object can be determined by dividing the distance traveled by the time it took to travel that distance. For example, if an object moves 100 meters in 10 seconds, its velocity is 10 m/s. Velocity is an important concept in physics, as it is a measure of how quickly an object is moving and can be used to calculate the energy of an object.

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Using Kinematics, The duration of the rock's impact with the ground  will be 2.16 seconds.

Describe kinematics.

the examination of motion without taking the mass or the motion's cause into account.

From a hill with a 45-degree slope, a rock is thrown horizontally at 15 meters per second.

We are aware that the following is the formula for the object's time of flight:

T=(2v sin )/g

where v denotes speed and denotes angle.

The time it takes for the rock to land will then be given as,

T = (2x15x45sin) / 9.81

T = (2 x 15 x 0.707) / 9.81

T = 21.21 / 9.81

T = 2.16 sec.

The duration of the rock's impact with the ground  will be 2.16 seconds.

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