The internal pressure of the rock formation causes fluid to return to the surface through the wellbore,the fluid is called as flowback.
When the infusion interaction is finished, the internal pressure of the rock arrangement makes liquid re-visitation of the surface through the wellbore. This liquid is known as both "flowback" and "created water" and may contain the infused synthetics in addition to normally happening materials like saline solutions, metals, radionuclides, and hydrocarbons. The flowback and created water is regularly put away on location in tanks or pits before treatment, removal or reusing. Generally speaking, it is infused underground for removal. In regions where that isn't a choice, it could be dealt with and reused or handled by a wastewater treatment office and afterward released to surface water.
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Wavelength
(meters)
Radio Microwave Infrared
10
102
10-5
About the size of...
Visible Ultraviolet
5x106
10
X-ray Gamma Ray
10-10
10 10-12
www www
tt
214 à & f &
Buildings Humans Honey Bee Pinpoint Protozoans Molecules Atoms Atomic Nuclei
A. visible light
C. gamma rays
According to this chart, which form of electromagnetic
radiation has the longest wavelength?
B. ultraviolet light
D. radio waves
Please help 30 points and will mark brain thing
The form of electromagnetic radiation with the longest wavelength according to the chart is radio waves, which have a wavelength of \(10^{5}\)meters. So, the correct answer is D. radio waves.
What is Wavelength?
Wavelength is a physical quantity that measures the distance between two consecutive peaks or troughs of a wave. It is usually denoted by the Greek letter lambda (λ) and is measured in units of length, such as meters (m), centimeters (cm), or nanometers (nm). In other words, wavelength is the distance over which a wave repeats itself.
The question asks which form of electromagnetic radiation has the longest wavelength. Based on the chart, the answer is D. radio waves. Radio waves have wavelengths of about 10 meters to \(10^{5}\) meters, which is much longer than the wavelengths of visible light, ultraviolet light, X-rays, and gamma rays. In fact, radio waves are about the same size as buildings, while gamma rays are about the same size as atomic nuclei.
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A tennis ball moves 22 meters southward, then 12 meters northward, then 16 meters southward, and finally 34 meters northward
The resultant displacement of the tennis ball is 8 m northward.
What is displacement?
The displacement of an object is the change in the position of the object. The displacement of an object describes the shortest point between the final and initial position of an object.
The displacement of the tennis ball is calculated as follows;
d = (12 m north + 34 m north) - (22 m south + 16 m south)
d = (46 m north) - (38 m south)
d = 8 m northward
Thus, the resultant displacement of the tennis ball for the given motion is 8 m northward.
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The compete question is below:
A tennis ball moves 22 meters southward, then 12 meters northward, then 16 meters southward, and finally 34 meters northward. find the resultant displacement of the tennis ball.
After every movement in north and south direction multiple times, the displacement of the tennis ball is 8 meters in north direction.
What is displacement?The definition of displacement is the modification of an object's position. It has a direction and magnitude and is a vector quantity. It is shown as an arrow that travels from the initial location to the conclusion.
According to the question, the tennis ball moves 22 meters in south direction then it moves towards north and travels for 12 meters again it turns to south and covers 16 meters and at last it covers 34 meters in the north direction.
d = (12 m + 34 m ) north direction - (22 m + 16 m ) south direction
d = 8 meters in north direction.
Hence, the total displacement done by the tennis ball is 8 meters in the north direction.
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A student has 2 identical metal cubes.Each with a volume of 20 cm .The first cube has a mass of 80 g and the second cube has a mass of 120 g .Which cube has the higher density
How can the intensity of a sound be changed without changing the pitch
Answer:
Sound waves are greatly affected by the medium in which they travel, not just in terms of speed, but also in terms of loudness and tonal quality. Just think of the variation in loudness and sound quality of different acoustic guitars which may use the same strings, but the sound is greatly affected by the different media in which it travels, including the wood, sound cavities, even the varnish on the instrument.
Explanation:
Which part of the following graph shows the object going at the fastest speed?
Distance
5
4-
in km
2-
1-
A А
0
6 5 10 15 20 25 30 35 40 45
Time in minutes
O Ato B
B to C
C to D
A to B and C to D are going equal speeds
Answer:
more point plzzzzz... eeeeeeeee
A to B in the graph shows the object going at the fastest speed.
In a distance-time graph, the gradient of the line is equal to the speed of the object. The greater the gradient (and the steeper the line) the faster the object is moving.
What is speed ?"The rate of change of position of an object in any direction. Speed is measured as the ratio of distance to the time in which the distance was covered. Speed is a scalar quantity as it has only direction and no magnitude."
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What is the resistance of a 150 W light bulb running on a 120 V circuit 
Answer:
96 Ω
Explanation:
Given:
U = 120 V
P = 150 W
Find: R - ?
\(r = \frac{ {u}^{2} }{p} \)
\(r = \frac{ {120}^{2} }{150} = 96 \: Ω\)
show the wave packet is normalized in coordinate space if its corresponding momentum space distribution is normalized.
The wave packet ψ(x) is normalized in coordinate space if its corresponding momentum space distribution ϕ(p) is normalized. The Fourier transform relationship between the wave function in position space (ψ(x)) and momentum space (ϕ(p) is ∫ |ψ(x)|² dx = ∫ 1 / (2πħ)² dx = 1
ψ(x) = ∫ ϕ(p) × e\(e^{(ipx/ħ)}\) dp / √(2πħ)
Where ħ is the reduced Planck's constant.
If the momentum space distribution ϕ(p) is normalized, then we have:
∫ |ϕ(p)|² dp = 1
To show that the wave packet ψ(x) is normalized, we need to evaluate the integral of its absolute square:
∫ |ψ(x)|²dx
= ∫ (∫ ϕ(p) × \(e^{(ipx/ħ)}\) dp / √(2πħ)) × (∫ ϕ(q) ×\(e^{(ipx/ħ)}\)dq / √(2πħ)) dx
= ∫ (∫ ϕ(p) ×\(e^{(ipx/ħ)}\) dp × ϕ(q) × \(e^{(ipx/ħ)}\) dq) / (2πħ)
Since the momentum space wave function ϕ(p) is normalized, we can rewrite the above integral as:
= ∫ (∫ ϕ(p) × ϕ(q) × \(e^{(i(p+q)x/ħ) dp dq)}\) / (2πħ)
Now, we can consider the inner integral:
∫ ϕ(p) × ϕ(q) × \(e^{^{(i(p+q)x/ħ) dp dq)}}\)
This is the inverse Fourier transform of the product of two momentum space wave functions, which corresponds to the convolution of the two functions.
Using the convolution theorem, we know that the Fourier transform of a convolution is given by the product of the Fourier transforms of the individual functions. Since ϕ(p) is normalized in momentum space, the Fourier transform of ϕ(p) is also normalized.
Therefore, the inner integral in the expression for ∫ |ψ(x)|² dx simplifies to:
∫ ϕ(p) × ϕ(q) × \(e^{(i(p+q)x/ħ) }\)dp = 1
Plugging this back into the expression for ∫ |ψ(x)| dx, we get:
∫ |ψ(x)|² dx = ∫ 1 / (2πħ)² dx = 1
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The max power of an elevator is 10,000 j/s. how much time would it take the elevator to lift 500 kg 40 meters?
The force here is 4900 N for 500 kg of lift. The work done being 196000 J for 40 meters. Then time is work done divided by time. Therefore, it will take 19.6 seconds.
What is power ?Power is the rate of work done or energy. The unit of power is J/s which is equal to one watt.
P = w/t.
where W = F. ds.
Given mass = 500 kg
F = mg = 500 kg × 9.8 m/s² = 4900 N.
displacement = 40 meters.
then work done W = 4900 N × 40 m = 196000 J.
Then,
power = work done/time
10000 J/s = 196000 J/t
t = 196000/10000 = 19.6 seconds.
Therefore, the time it required to take to lift the elevator is 19.6 seconds.
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5. Express the following quantities in their basic dimensions: a) Electric resistance (2), (R = V = q = 1xt) b) Universal Gas constant (J/K mol) 1
Answer:
a) Electric resistance: The basic dimensions of electric resistance are resistance (R) which has the dimension of [mass] x [length]^2 / [time]^3.
b) Universal Gas Constant: The basic dimensions of the Universal Gas constant (R) are [energy]/[temperature x amount of substance]. These dimensions can be expressed as [mass] x [length]^2 / [time]^2 / [temperature] x [amount of substance].
Explanation:
Question 1(Multiple Choice Worth 4 points) The star named Canopus has a declination of approximately –52°. Which of these statements is correct about Canopus? It is 52° above the celestial equator. It is 52° below the celestial equator. It is 52° to the left of the celestial equator. It is 52° to the right of the celestial equator.
Answer:
It is 52° below the celestial equator.
Explanation:
The declination is the angle in degrees measured north (+) or south (-) of the an imaginary line called the celestial equator.
The celestial equator is a projection of the earth's equator on the celestial sphere. imaginary
The star named Canopus has a declination of approximately –52°.
Since the angle is negative, this shows that it is south or below the celestial equator and at 52° south of the celestial equator.
Thus, the star named Caponus is 52° below the celestial equator.
Answer:
the answer is 'it is 52° below the celestial equator.' :))
Explanation:
its the correct answer on the quizz,,, good luck!! :3
The process of converting alternating current into direct current is known as
A. modulation
B. amplification
C. detection
D. rectification
D. Rectification is the process of converting alternating current into direct current.
In many applications, particularly in electronics and power systems, the rectification process is a crucial phase. Rectification is a process that transforms AC voltage from a wall outlet into a DC voltage that may power electronic components in electronic gadgets. Rectification is a technique used in power systems to change the AC voltage coming from a power plant into a DC voltage that can be transferred across long distances with less power loss.
Half-wave and full-wave rectifiers are the two primary varieties. Only one half of the AC waveform is converted to DC in a half-wave rectifier, while both halves are converted in a full-wave rectifier. In comparison to a half-wave rectifier, a full-wave rectifier is more effective and results in a smoother output waveform.
In the field of electronics and power systems, rectification is an essential procedure. Many of the electrical equipment we use on a daily basis, including computers, televisions, and cellphones, couldn't be powered without rectification. Without the use of rectification, power networks would not be able to efficiently transmit power across great distances.
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When trying to simplify and find the equivalent resistance you should first simplify resistors in _ before simplifying those in _
The equivalent resistance for the parallel connected resistance will be
\(\dfrac{1}{R_{eq}}=\dfrac{1}{R_1}+\dfrac{1}{R_2}\)
What is resistance?
Resistance is a measure of the opposition to current flow in an electrical circuit. Resistance is measured in ohms, symbolized by the Greek letter omega (Ω)
Now if two resistances are connected parallel then the voltage on the resistances will be different and the same current will flow from both resistances.
\(V_{eq}=V_1+V_2\)
\(I_{eq}R_{eq}=I_1R_1+I_2R_2\)
Since \(I_{eq}=I_1=I_2\)
\(R_{eq}=R_1+R_2\)
Hence the equivalent resistance for the parallel connected resistance will be
\(\dfrac{1}{R_{eq}}=\dfrac{1}{R_1}+\dfrac{1}{R_2}\)
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examples for each different examples force affects
Explanation:
Examples for effect of force - example
1) Can change the state of an object(rest to motion/ motion to rest):For example, pushing a heavy stone in order to move it. 2) May change the speed of an object if it is already moving. ... 3) May change the direction of motion of an object.
Which statement about Earth’s core helps explain Earth’s magnetic field?
Earth's core is composed of iron and nickel is the correct statement about earth's core.
How earth's magnetic field is generated?Earth's magnetic field is generated by the solidification of the planet's liquid iron core. The cooling and crystallization of the core moves the surrounding liquid iron that creates powerful electric currents that generate a magnetic field.
So we can conclude that Earth's core is composed of iron and nickel.
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Which statements describe a situation in which work is being done? Check all that apply.
The diagram below illustrates the law of reflection
Which is the angle of reflection?
ОА
ОВ
Ос
OD
Answer:
Answer: B) The measure of angle B equals the measure of angle C.
Explanation:
hope this helps
When you wear a backpack, your center of gravity shifts in which direction? A. up. B. back. C. forward. D. up and back
When we wear the backpack, the center of gravity will go to the back and up direction.
A location established in relation to an object or set of objects is the center of mass. It represents the system's average location as weighted by each component's mass. The center of gravity for straightforward stiff objects with homogeneous density is found at the centroid.
Because the center of mass of any body is situated where the majority of the body mass is concentrated, when we wear a backpack, the center of mass shifts toward the up and back.
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A car drives 2 blocks north, then 3 blocks east, and finally 2 blocks south. What is the
displacement of the car?
A) 15 km
B) 3 km west
C) 3 km east
D) 7 km north
A stationary police officer directs radio waves emitted by a radar gun at a vehicle moving toward the officer. Compared to the emitted radio waves, the radio waves reflected from the vehicle and received by the radar gun have a.
Compared to the emitted radio waves, the radio waves reflected from the vehicle and received by the radar gun have a higher frequency.
What is the frequency?
Frequency is defined as the number of repetitions of a wave occurring waves in 1 second. Its unit is Hz. Frequency is given by the formula as,
A moving car is targeted by radio waves sent from a radar gun by a police officer standing still.
The radio waves reflected off the vehicle and picked up by the radar gun have a greater frequency than the radio waves that were transmitted.
A stationary police officer directs radio waves emitted by a radar gun at a vehicle moving toward the officer.
Compared to the emitted radio waves, the radio waves reflected from the vehicle and received by the radar gun have a higher frequency.
Hence the higher frequency is the correct answer for blanks.
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what is astrophysics?
Astrophysics is a branch of science inside physics aimed at understanding the universe and human civilization from its place within it.
What is the Astrophysics branch of science?Astrophysics can be defined as a branch of science that studies celestial bodies in the universe and all referred to physics and chemistry in space, which is fundamental to understanding the role played by human civilization in the universe.
Therefore, with this data, we can see that Astrophysics is a branch of science aimed at deciphering the place of human civilization in the universe and space.
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What does Newtons second law explain? (Stemscopes)
Answer:
hey!!
Newton's second law of motion, also known as the law of acceleration, explains the relationship between an object's mass, the applied force, and its resulting acceleration. The law states that the acceleration of an object is directly proportional to the net force acting on it and inversely proportional to its mass. Mathematically, Newton's second law can be expressed as:
F = ma
Where:
F represents the net force acting on the object,
m represents the mass of the object, and
a represents the acceleration produced by the force.
In simpler terms, Newton's second law states that the force acting on an object determines how much it accelerates. A larger force applied to an object will result in a greater acceleration, while a smaller force will produce a smaller acceleration. Additionally, if the mass of the object is increased, the same force will produce a smaller acceleration, and vice versa.
This fundamental law of motion helps us understand how forces and masses interact to produce motion. It is widely applicable and plays a crucial role in fields such as physics, engineering, and everyday life when studying the behaviour of objects in motion.
i hope this helps you :)
Why is the heliocentric model not correct
Answer:
Um, wrong.
Explanation:
The Helioentric model is correct. We orbit the sun. The GEOcentric model is incorrect. The Universe does not orbit the Earth. What are you learning?
Which statement about energy conservation BEST explains why a bouncing basketball will not remain in motion forever?
a The energy is used up and destroyed.
b The energy is transferred to light and potential energy.
c The energy is transformed to heat and chemical energy.
d The energy is transformed to sound and heat energy.
Answer:
d The energy is transformed to sound and heat energy.
Explanation:
Each time the basketball bounces, it makes sound waves, and dissipates energy in the form of heat in the material of the ball and the surrounding air. There is no light or chemical change involved.
Is the meter considered the base unit of the metric system?.
Answer:
metric system
The number of objects that have been observed to be orbiting in the kuiper belt is approximately.
The hundreds of thousands of icy bodies larger than 100 km have been observed to be orbiting in the Kuiper belt is approximately.
What is Kuiper belt?
The region beyond Neptune known as the Kuiper Belt is made up of countless stellar objects orbiting the sun. Solid methane, ice, and ammonia make up belt objects. The belt's orbit deviates from the orbital plane and can be inclined by up to 19 degrees. Scientists searched for Planet X as a possible explanation for the origin of the belt.
What is orbit?
An orbital is a region where it is possible to estimate the likelihood of finding any electron, whereas an orbit is a fixed path that electrons follow around the atom's nucleus.
The Kuiper Belt is thought to contain a trillion comets or more and hundreds of thousands of icy bodies bigger than 100 km (62 miles).
Therefore, there may be hundreds of thousands of icy bodies larger than 100 km have been observed to be orbiting in the Kuiper belt is approximately.
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Most minerals can be identified by easily observable physical properties. In order of most useful to least useful, the identifiable physical properties are
A) color, crystal form, hardness, cleavage, and density.
B) hardness, cleavage, density, crystal form, and color.
C) crystal form, color, hardness, cleavage, and density.
D) crystal form, hardness, cleavage, color, and density.
Crystal form, hardness, cleavage, color, and density. Option D
What are minerals?Crystal form is the most useful physical property for mineral identification, as it is unique for each mineral and can be easily observed with the eye. Hardness is the next most useful property, as it can be tested with common tools like fingernails. Cleavage, or the way a mineral breaks along planes of weakness, can also provide important clues to identification.
Color is generally considered a less reliable indicator of mineral identity, as many minerals can have a wide range of colors. Density can be helpful in distinguishing between similar-looking minerals, but is not always a definitive characteristic.
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need help asap, thank you !
In the absence of air resistance, a projectile launched at an angle of 33 above the horizontal will have the same range as a projectile launched at which of the following angles? O 38 O 57⁰ 0:45. 07
A projectile is launched at an angle of 33⁰ above the horizontal, then the projectile launched at an angle of 90 - 33 = 57⁰ will have the same range as the projectile launched at 33⁰. The correct option is (B) 57⁰.
In the absence of air resistance, a projectile launched at an angle of 33 above the horizontal will have the same range as a projectile launched at an angle of 57⁰.
The range of a projectile can be determined by using the range formula.
R = ((v^2 * sin(2θ))/g) Where
R is the range of the projectile,
v is the velocity of the projectile,
θ is the angle at which the projectile is launched, and
g is the acceleration due to gravity.
In the absence of air resistance,
the horizontal component of velocity of a projectile remains constant throughout the flight.
So, the range of a projectile depends only on its initial velocity and the angle at which it is launched.
If a projectile is launched at an angle θ,
the time of flight of the projectile can be calculated by using the following formula:
T = (2v * sin(θ))/g
The maximum height reached by the projectile is given by the formula:
H = (v^2 * sin^2(θ))/2gIf a projectile is launched at an angle θ, then the range of the projectile will be the same as the range of the projectile launched at an angle of (90 - θ).
So, if a projectile is launched at an angle of 33⁰ above the horizontal, then the projectile launched at an angle of 90 - 33 = 57⁰ will have the same range as the projectile launched at 33⁰.
Therefore, the correct option is (B) 57⁰.
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A 62kg physics student ran up the stairs in order to get to class on time. The vertical displacement from the ground to the top of the stairs was 5.3 meters and the student ascended the stairs in 4.2 seconds. What was the physics student's power output in watts (W)? (round answer to nearest 10th place) *
4 points
Answer:
766.7 watts
Explanation:
P=W/T
work= F*d
= F*5.3 m/4.2s
to student is working against gravity
so mgh= 62kg* 5.3m*9.8 m/s2= 3220.28 Nm
so that divided by 4.2 should be 766.7 watts
if my answer helps please mark as brainliest.
Which one is best for health? A) Boiled Seeds B) roasted seeds c) wet swollen seeds d)Sprouted seeds
Answer:
d.) "Sprouted seeds"Explanation:
Sprouted seeds - are the best for health.
I hope it helps! Please mark my answer answer as bräinliest (if my answer is correct). Thank You!
a weather balloon filled with he gas has a volume of 2.00x 103 m3 at ground level, where the atmospheric pressure is 1.000 atm and the temperature is 27 oc. after the balloon rises high above earth to a point where the atmospheric pressure is 0.340 atm, its volume increases to 5.00x103 m3. what is the temperature of the atmosphere at this higher altitude?
When the balloon rises high above earth to a point where the atmospheric pressure is 0.340 atm and its volume increases to 5.00 x 10³ m³, the temperature of the atmosphere at this higher altitude is approximately 255.1 K.
Using the combined gas law, we can determine the temperature at the higher altitude. The combined gas law is:
(P₁ × V₁) / T₁ = (P₂ × V₂) / T₂
Given:
P₁ = 1.000 atm (ground level pressure)
V₁ = 2.00 x 10³ m³ (ground level volume)
T₁ = 27°C + 273.15 (convert to Kelvin) = 300.15 K (ground level temperature)
P₂ = 0.340 atm (higher altitude pressure)
V₂ = 5.00 x 10³ m³ (higher altitude volume)
We want to find T₂, the higher altitude temperature:
(1.000 atm × 2.00 x 10³ m³) / 300.15 K = (0.340 atm × 5.00 x 10³ m³) / T₂
Solving for T₂:
T₂ = (0.340 atm × 5.00 x 10³ m³) × 300.15 K / (1.000 atm × 2.00 x 10³ m³)
T₂ ≈ 255.1 K
So, the temperature of the atmosphere at the higher altitude is approximately 255.1 K.
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