A solution of 0.625 g of argon dissolved in 150 g of water has a molality of 0.104 mol/kg.
The molality of a solution is defined as the number of moles of solute (in this case argon) per kilogram of solvent (in this case water).
To find the number of moles of argon in the solution, we need to first find the molar mass of argon, which is 39.948 g/mol.
0.625 g of argon / 39.948 g/mol = 0.0156 moles of argon
To find the number of kilograms of water in the solution.
150 g of water / 1000 g/kg = 0.15 kg of water
Now we can use the definition of molality to find the molality of the solution:
0.0156 moles of argon / 0.15 kg of water = 0.104 mol/kg
Rounded to the third decimal place, the molality of the solution is 0.104 mol/kg.
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What is the application of Newton's 1st 2nd 3rd law in real life?.
The application of Newton's 1st law is a) a cricket ball stops after going through some distance, for 2nd law is b) Force applied by the bullet on gun, for 3rd law is c) launching of a rocket from earth, respectively.
Newton's first law also known as the law of inertia. A balling rolling on the ground stops after some time due to the opposite force of friction working between the ball and the ground.
Newton's second law of force states that the rate of change of momentum of an object is equal to the force applied by the object. When a bullet is fired from a gun change in the momentum of the bullet generate the force that cause the bullet to be fired and to generate the recoil velocity in the gun.
Newton's 3rd law states the action-reaction relationship. When a rocket is launched from the earth, it applies a force on the ground that generate the enough reaction force that causes the rocket to generate orbital velocity.
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What’s the water vapor density if the maximum water vapor in air at this temperature is 20 grams/cubic meter? a device showing that at 22 degrees celsius the relative humidity is 58%.
a. 11.6%
b. 11.6 g/m3
c. 12.76%
d. 12.76 g/m3
The density of water vapor is 11.6 grams/cubic meter if the water vapor density if the maximum water vapor in air at this temperature is 20 grams/cubic meter.
All the related temperature and dew point calculated for the specified hour are used to calculate relative humidity. It is expresses as %.
Given data in the question can be formulated as that the maximum water vapor in air at this temperature is 20 grams/cubic meter at 22°C, that is, density of vapor at 100% humidity can be expressed as 20g/ at 22°C.
The device shows that at 22 degrees Celsius the relative humidity is 58%.
The water vapor density at that moment can be calculated as = 20g/ × 58%
= 11.6 g/ .
= 11.6 grams/cubic meter.
As per the according to the measurement of device, the water vapor density is 11.6 grams/cubic meter.
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The force of gravity by the Sun keeps the planets in orbit around it, but how do the planets affect the Sun?
They each pull equally hard, forcing the Sun to shift slightly. when the Sun's gravitational pull holds the planets in their orbits,
The average period of the solar cycles, including irradiance, sunspots, solar flares, radio flux, and polarity flip, is 11 Earth years. According to scientists, the Sun's internal processes and atmospheric interactions are what cause various solar activity. According to the authors, these behaviours and cycles also have an outside origin. Because planets need external constant loading to support their ongoing internal processes and dynamic systems. Here, the Sun's dynamical system and internal processes are activated by the planets' uneven gravitational fields, particularly by the biggest planet in the solar system, Jupiter, which has 67 moons and an orbital period of 11.856 years. As a result, distinct solar cycles are produced.
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The Kinetic energy of an apple is 6.00 joules. The apple is moving at a velocity of 3.00 m/s. What is the mass of the apple?)
Answer:
4/3 kg
Explanation:
KE = (1/2)mv^2
6=0.5*m*(3)^2
m=4/3
Is mass based on gravity?.
The gravitational force is altered more by an increase in the separation between the objects than by an equivalent increase in mass.
It is based on the mass and gravitational acceleration of the item. Mass is a fundamental, immutable feature. Weight depends on gravitational force, which is a force. The mass has a direct relationship with this force. The force of gravity will be stronger the more mass an item has. As a result, when we compare the distance traveled by objects of various masses, gravity is shown to be irrelevant. Air resistance, often known as drag, is a significant component of the force.
The slope tells us how much force, in newtons, is applied to each kilogram of mass. A thing's mass is a measure of how much matter there is in it. This is a physical trait that cannot be altered. Mass cannot be created or destroyed. The combination of mass and gravitational acceleration produces weight.
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Consider a projectile motion formed by inclined throw then answer the following. b) For which of the angle it takes more time in air?
Answer:Projectile motion is the motion of an object thrown (projected) into the air. After the initial force that launches the object, it only experiences the force of gravity. The object is called a projectile, and its path is called its trajectory. As an object travels through the air, it encounters a frictional force that slows its motion called air resistance. Air resistance does significantly alter trajectory motion, but due to the difficulty in calculation, it is ignored in introductory physics.
Explanation:
B)
A mineral scratches a piece of fluorite but cannot be scratched by a piece of glass. What is this mineral’s hardness?
Answer:
The mineral's hardness is greater than 4 but less than 5.5 on the Mohs hardness scale.
What percentage of sperm would be normal if nondisjunction occurs in meiosis II of spermatogenesis?.
Sister chromatids fail to separate if nondisjunction occurs during meiosis II. In this case, 50% of the gametes produced are normal haploid gametes, 25% have an extra chromosome, and 25% lack a chromosome.
Nondisjunction and premature separation of sister chromatids appear to be the two main nondisjunction mechanisms in human spermatogenesis during the first meiotic division, and both mechanisms contribute equally to the emergence of aneuploidy. The elevated disomy frequencies detected in spermatocytes II are significantly higher than those previously described in human spermatozoa, implying the existence of a postmeiotic checkpoint monitoring numerical abnormalities.
At the onset of puberty, spermatogonia in males undergo constant mitotic proliferation, and these primordial germ cells differentiate, undergo meiosis without arrest, and eventually form mature spermatozoa.
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How do I reduce network latency?.
You need to follow some steps in order to reduce Network latency and improve your network performance.
Follow steps below to ensure Network latency reduction:
Identifying the source of latency: The first step in reducing network latency is to identify where the latency is coming from. This can be done by running a network analysis tool or by monitoring the network for bottlenecks.
Optimizing network infrastructure: Once the source of latency is identified, it is important to optimize the network infrastructure to reduce latency. This can include upgrading network devices, such as routers and switches, to improve performance, and optimizing network protocols to reduce overhead.
Minimizing distance: The distance data has to travel is a major contributor to latency. Reducing the physical distance between devices can greatly reduce latency.
Here are some other steps:
Optimizing routing: The routing of data is another important factor in reducing latency. By optimizing the routing of data, it is possible to reduce the number of hops it has to take, thereby reducing latency.
Caching and Content Delivery Network (CDN): Caching frequently accessed data can reduce the time it takes to access that data, thus reducing latency. Using a Content Delivery Network (CDN) can also help to reduce latency by replicating content to servers that are closer to the user.
Quality of Service (QoS) Policies: Implementing Quality of Service (QoS) policies can help to ensure that important data is prioritized, thus reducing latency.
TCP Optimization: By optimizing TCP settings like window size, it is possible to increase the amount of data that can be transferred at once, reducing the number of packets sent and received, thus reducing latency.
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What is Newton's easiest law?.
The tendency of moving objects is to continue moving. The simplest Newton's rule, known as inertia, governs motion. With inertia, an item starts going in one direction and needs an equal or stronger force to stop.
According to Newton's first law, unless compelled by an external force to change its state, an object will remain at rest or in uniform motion along a straight line.
A body's propensity to resist modifications to its state of motion is known as inertia. There is no net force applied on the object if all external forces cancel one another out.
The object will keep moving at a steady speed if there is no net force acting on it.
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A 2. 74 kg object and changes velocity by 16. 49 m/s in 16. 19 s. How large of a force acted on the object? Which choice represents the best formula to calculate this answer?
The force on the object is 0.822 N.
Forces affect the motion of objects. They can cause movement. You can also slow down, stop, or change the direction of objects that are already moving. We say that a force changes its velocity because it changes the speed or direction of an object. Remember that acceleration is a change in velocity. F= mdv / dt
So m= 2.74 kg and dv= 16.49-16.19 = 0.30.
If time is 1 second,
F=2.74*0.3
= 0.822N
Therefore, the force on the object is 0.822 N.
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Why do we use perpendicular distance in torque?.
We use the perpendicular distance in the Torque equation because it represents the distance that the force is applied from the axis of rotation.
Torque is a measure of the twisting force applied to an object, often used in mechanical engineering. It is defined as the product of the force applied and the perpendicular distance from the axis of rotation to the point where the force is applied. This perpendicular distance is also known as the lever arm.
A larger lever arm means that the force is applied farther from the axis of rotation, resulting in a torque of greater magnitude.
Additionally, using the perpendicular distance in the torque equation allows for the quantification of the torque generated by a force regardless of the direction of force. The torque would be the same if the force is applied in the opposite direction, as long as the lever arm is the same.
In summary, the use of the perpendicular distance in the torque equation allows us to quantify the twisting force applied to an object, considering force and distance from rotation axis. This information can be used to design and analyze mechanical systems, such as engines and gears, and predict how they will perform under different loads and conditions.
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The sum of the relative frequencies for all classes will always equal:
a. 1
b. the number of elements in a data set
c. the number of classes
d. a value between 0 to 1
The total of all classes' relative frequencies will always equal: (a) 1
What is frequencies ?A frequency is a measurement of how frequently a certain value, occurrence, or feature takes place. It is employed in a wide range of disciplines, including science, engineering, mathematics, and statistics. Frequency is often expressed as a number, percentage, or ratio. For example, a frequency chart might show the number of times a particular product was purchased over a certain time period. Frequency can also refer to the number of times a particular wave pattern occurs in a given time period. In physics and engineering, frequency is used to measure the number of cycles per second of a wave or periodic phenomenon. For example, a wave with a frequency of 440 hertz (Hz) has 440 complete cycles per second.
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Assume that you have a meter stick balanced on a pivot, and pile of additional masses that you can hang on the meter stick. What is the minimum number of additional masses that you need to hang from the meter stick in order to determine the mass of the meter stick itself?.
You will not need any mass to determine the mass of the stick to determine the mass of the meter stick itself.
What is center of mass of a system of particles?A place at which the entire mass of the object or all of the masses of a system of particles appears to be concentrated is considered the center of mass of a body or system of particles.
Only Newton's second law, that also states that an item's mass is equal to its force divided by its mass, may be used to calculate its mass of the object, such as the stick. It is clear that we are unable to determine both force and acceleration values of the stick depicted in the question above. However, by adding more masses on the stick, it is also difficult to determine its mass.
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What does Newton's third law states MCQS?.
Newton's third law states that there is always an equal and opposite reaction for every force.
Newton's third law states that for every force there will be equal reaction in the opposite direction. This law is beautifully used to launch a rocket in space. Rocket exerts a force on the earth to get the enough reaction force from the earth to generate the orbital velocity. The action-reaction law also takes place when we fire a bullet from a gun.
There are other law of Newton. First law is known as the law of inertia, whereas second law states that time rate of change of momentum of an object equal to the force exerted on the object.
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A book is sitting on the table at rest. The forces acting on the book include _______, and these forces are _______.
The forces acting on the book as it is at rest on the table include gravity pushing down and the table pushing up, and these forces are balanced.
What factors are influencing a book that is resting on a table?The book is under the influence of two forces. The downward force of the Earth's gravity and the upward force of the table's weight on the book are the two forces at play.
The table pulls on the book with an equal amount of force to that which the book pulls on the table, in accordance with Newton's third law. The book remains at rest on the table as a result of the net force being zero.
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What is called momentum in physics?.
The 'quantity of motion' is another name for momentum.
The result of mass and velocity is momentum.
Momentum = mass times of velocity
momentum =mv
Momentum is characterizes as the intensity of a body's which is in motion. As momentum depends both on velocity and the direction of the body's motion, it is quantified by "mass velocity."
The word "momentum" is frequently used in sports. A squad which is moving front and has momentum which is difficult to stop. A team that is genuine moving forward and charging momentum will be challenging to stop. A physics phrase, momentum tells us the amount of motion that an item has.
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A highway curves to the left with radius of curvature of 26m and is banked at 17 degrees so that cars can take this curve at higher speeds. Consider a car of mass 1151 kg whose tires have a static friction coefficient 0.37 against the pavement. How fast can the car take this curve without skidding to the outside of the curve? The acceleration of gravity is 9.8 m/s^2. U (mu )= 0.37 theta = 17 degrees.
The car can take the curve at a speed of 35.89 m/s without skidding to the outside of the curve.
To calculate the maximum speed at which the car can take the curve, we need to first determine the maximum force of static friction that can act on the car. This can be calculated using the formula:
F_friction = friction coefficient * normal force
The normal force is equal to the weight of the car and can be calculated using the formula:
N = m * g (where m is the mass of the car and g is the acceleration of gravity)
So:
N = 1151 kg * 9.8 m/s^2 = 11,288.8 N
F_friction = 0.37 * 11,288.8 N = 4,162.96 N
Next, we need to determine the centripetal force required to keep the car moving in a circle of radius 26m. This can be calculated using the formula:
F_centripetal = m * a
Where a is the centripetal acceleration and can be calculated using the formula:
a = v^2 / r
So we have to find v:
v = sqrt(F_friction*r /m)
v = sqrt(4,162.96 N * 26 m / 1151 kg) = 35.89 m/s
So, the car can take the curve at a speed of 35.89 m/s without skidding to the outside of the curve.
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What are Newton's 1st 2nd and 3rd laws formulas?.
Three formulas of newton's law of motion are:- a) v = u + at, b) S = ut +0.5at² c) v² = u² + 2as
Newton's first law of motion defines the relation between final velocity(v) of an object after some time(t), if the initial velocity of the object is u and acceleration is a.
v = u + at
Newton's second law of motion is used to determine the distance(S) travelled by an object in accelerated motion for time(t), having an initial velocity u.
S = ut +0.5at²
Newton's third law gives the relationship between, final, initial velocities, acceleration(a), and the distance(s) travelled by the object.
v² = u² + 2as
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3. Sound travels through cold air at about
1,190 kilometers per hour. That means
that a sound can travel the length of three
football fields in about a second. Some
machines, such as jet planes, can travel
faster than sound. The world's fastest
train can travel 574.8 kilometers per
hour. How much faster would it have to
go to match the speed of sound in air?
It would need to go 685.2 km/h quicker to equal the sound speed in air.
briefly:-speed of sound at 0°= 331.5 m/s
Sound travels through cold air = 1,190 kilometers per hour
world's fastest train can travel= 574.8 kilometers per hour
match the speed of sound in air= 1,190*331.5/574.8.
= 685.2 km/h
A vacuum makes what kind of noise?Sound does not move in space at all. In the void of space, there is rarely any air. There is no sound in space because there is no air there, and sound is nothing more than air vibrating. If you were inside one, you wouldn't hear an explosion from another spacecraft.
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What is the full form of SI units Class 6?.
The International System of Units (SI unit) is a scientific method of expressing the magnitudes or quantities of significant natural phenomena. SI units include the kilogram, second, ampere, and kelvin, among others.
What is SI units?The International System of Units, abbreviated SI in all languages and sometimes pleonastically as the SI system, is the modern version of the metric system and the world's most widely used measurement system. The SI is a coherent system of measurement that begins with seven base units: the second (symbol s, the unit of time), the metre (m, length), the kilogram (kg, mass), the ampere (A, electric current), the kelvin (K, thermodynamic temperature), the mole (mol, substance amount), and the candela (cd, luminous intensity).
Here,
The International System of Units (SI unit) is a scientific system for expressing the magnitudes or quantities of major natural phenomena. SI units include the kilogram, second, ampere, kelvin, and so on.
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What is low latency technology?.
A computer network with low latency is one that is built to quickly handle lots of data packets (latency).
These networks are intended to assist activities that require quick access to constantly changing data in close to real time. By moving processing work from the cloud to local devices, such laptops and smartphones, edge computing reduces latency for consumers. Consumers may increase the adaptability and affordability of their gadgets while still using them as dependable financial instruments by utilizing edge computing.
When compared to cloud services, which are concentrated on a single data center, data processing requires a more scattered network. It decreases latency and offers real-time response by removing the round-trip to the cloud. Edge computing, like an Internet of Things (IoT) device, controls compute and communication closer to where they will be utilized, which can speed up processing. Increased uniformity is a further advantage.
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It takes a train going 50 mph approximately _____ to stop safely.
A. 100 ft
B. 1/2 miles
C. 1 1/2 miles
D. 5 miles
It will take 3/2 miles approximately to stop the train safely, if the deceleration of the train is 833.33 miles/h² and initial speed of the train 50 mph.
Initial velocity of the train, u = 50 mph
Deceleration of the train, a = - 833.33 m/h²
Let the final velocity of the train, = v
By the third equation of motion, which related the final velocity, with initial velocity, acceleration ( or deceleration), and the distance covered between two velocities.
v² = u² + 2aS
v² = 50² + 2 × (-833.33) × S
0 = 2500 - 1633.33 ×S
S = 2500/1633.33
S = 1.5 miles
Hence option C is correct.
__ The given question is incomplete, the complete question is
"If the safe deceleration to stop a train is 833.33 m/h², then it takes a train going at 50 mph approximately ___ to stop safely.
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carlos is deciding if he will climb a mountain in a zigzag path or straight up the side, starting from rest and ending at rest. neglecting friction and disregarding other factors, will his potential and kinetic energy consumption be the same for both paths?
No, his potential and kinetic energy consumption will not be the same for both paths.
What is kinetic energy?Kinetic energy is a form of energy associated with the movement of objects or particles. It is the energy of an object in motion, and is equal to the work done to accelerate the object from an initial state of rest. Kinetic energy is a scalar quantity, meaning it has magnitude but no direction.
No, his potential and kinetic energy consumption will not be the same for both paths. Climbing a mountain in a zigzag path will require more energy than climbing straight up the side, because he will have to change his direction and velocity, requiring more energy for acceleration and deceleration. Furthermore, it will take longer to reach his destination, resulting in more energy expended.
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What are the three types of law of inertia?.
Rest, motion and direction are the three different types of inertia.
Inertia is defined as the property of a material to remain in the same straight line at rest or in uniform motion unless acted upon by an external force. Rest Inertia is the inability of an object to change its rest state by itself is called rest inertia. Directional inertia is the inability of the body to change the direction of motion on its own. The inertia of movement is the inability of the body itself to change its state of motion is called motion inertia. These are the different types of inertia.
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What is the wavelength of a wave traveling through a rope if the distance from one crest to the next is 1 m?
A. 0.5 m
B. 1 m
C. 3 m
D. 2 m
The distance between the first crest (or trough) and the following crest is known as a wave's wavelength (or trough). In this instance, the distance between each crest is specified as 1 m. The wave's wavelength is therefore 1 m.
What is the wavelength that traveling through a rope?It is important to note that the wavelength is not the same as the amplitude, which is the distance from the crest (or trough) to the center of the wave. The amplitude is a measure of the strength or intensity of the wave, while the wavelength is a measure of its spatial periodicity.Additionally, it is also important to note that the wavelength and frequency of a wave are inversely related. This relationship is described by the equation: v = fλ, where v is the velocity of the wave, f is the frequency, and λ is the wavelength.To learn more about wavelength refer:
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What is the formula for magnitude and direction?.
The formula for magnitude is ' |v| =√(x^2 + y^2) ' and the formula for direction is ' θ = arctan(y/x) '.
In Physics, the term magnitude answers 'how much? and the term direction answers 'which way?'. For instance, North is a direction and 5 meters is a magnitude. '5 meters' north is a vector quantity with both magnitude and direction.
Thus, for vector quantities, the formula to determine the magnitude to be used is |v| =√(x^2 + y^2), while to determine the direction the formula θ = arctan(y/x) is used.
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PLS HELP RN
A projectile is shot horizontally off a cliff at a speed of 20 m/s. It hits the ground 1.5 seconds
later.
At what horizontal distance from the cliff did the projectile travel?
15 is the horizontal distance from the cliff did the projectile traveled.
How can you determine the projectile's horizontal distance?In projectile motion, use the following formula to determine the horizontal distance:
Divide the gravity-induced acceleration (g) by the vertical height (h) multiplied by two.
You may calculate the horizontal distance by taking the square root of the step 1 result and multiplying it by the projection's initial velocity, u.
Using the Pythagorean Theorem, the slope length is determined by multiplying the rise and run distances, where the rise and run are the vertical and horizontal distances, respectively.
20/2 = 10 * 1.5 = 15.
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a 15 N force acts for 10 seconds on a 1 kg ball that is initially at rest what is the balls change in momentum
The change in momentum is a measure of how much an object's motion has changed. When a force acts on an object, it can make the object move faster or slower, or change the direction of its motion. The amount of this change is called the change in momentum.
In this case, a 15 N force acted on a 1 kg ball for 10 seconds, which means that the force was pushing or pulling on the ball for 10 seconds. This force caused the ball to change its motion and its momentum.
To find out how much the ball's momentum changed, we multiply the force by the time it acted on the ball. So in this case, 15 N (the force) x 10 s (the time) = 150 Ns (change in momentum).
It's important to note that the unit of impulse is Ns.
So, this ball's change in momentum is 150 Ns, it means that the ball's motion changed by 150 Ns due to the force that acted on it for 10 seconds.
Δp = F * t = 15 N * 10 s = 150 Ns
So, the ball's change in momentum is 150 Ns. This is also known as impulse, which is the product of force and time.
A ball i dropped from the top of a building. After 2 econd, it velocity i meaured to be 19. 6 m/. Calculate the acceleration for the dropped ball
As per the problem statement the acceleration of the dropped ball is 9.8 m/s^2.
What is acceleration?The pace at which a speed changes over time is called acceleration.It is the rate at which an object's speed, or velocity, changes. Depending on the direction of the change in velocity, acceleration can be either positive or negative. A positive acceleration indicates that the object is speeding up, while a negative acceleration indicates that the object is slowing down. Acceleration can be expressed using the equation a = (vf - vi) / t, where a is the acceleration, vf is the final velocity, vi is the initial velocity, and t is the time elapsed.
The acceleration of the dropped ball can be calculated using the equation a = (v-u)/t, where a is the acceleration, v is the final velocity, u is the initial velocity, and t is the time elapsed. In this case, u = 0 m/s (since the ball is dropped from rest), v = 19.6 m/s, and t = 2 seconds. Plugging these values into the equation, we get a = (19.6-0)/2 = 9.8 m/s^2, which is the acceleration of the dropped ball.
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