What is the type of radioactive decay represented by the equation above? A. Gamma B. Fusion C. Alpha D. Fission 40. Alberta uses clean coal technology. This means that the coal has a lower i content than coal in other parts of Canada, which results in reduced ii The statement above is completed correctly by the information in row olla sdf to ridW Row i A. sulfur greenhouse gas emissions acid deposition sulfur carbon greenhouse gas emissions acid deposition carbon B. C. D. 29. Which of the following graphs depicts the relationship between gravitational field strength and the mass of the International Space Station orbiting Earth? A. Field Strength (N/kg) C. Field Strength (N/kg) Mass (kg) Mass (kg) B. Field Strength (N/kg) D. Field Strength (N/kg) Mass (kg) CADLC 30. Which of the following sequences of colours represents the changing temperatu from the surface to the atmosphere of the sun? a A. Red, orange, yellow, blue B. Yellow, red, orange, blue C. Orange, yellow, blue, red D. Blue, yellow, orange, red 1. When a star undergoes a blue shift, the star is A. moving away from an observer B. moving towards an observer C. moving parallel to an observer D. stationary Mass (kg)
The sun is Yellow, red, orange, and blue. Therefore option B is correct.
The star is moving toward an observer. Therefore option B is correct.
39. The type of radioactive decay represented by the equation provided Gamma. Therefore option A is correct.
40. The statement is completed correctly by the information which states that the coal in Alberta has a lower carbon content than coal in other parts of Canada, resulting in reduced greenhouse gas emissions.
29. graph B depicts the relationship between gravitational field strength and the mass of the International Space Station orbiting Earth.
30. The correct sequence of colors representing the changing temperature from the surface to the atmosphere of the sun is Yellow, red, orange, and blue. Therefore option B is correct.
1. When a star undergoes a blue shift, it indicates that the star is moving toward an observer. Therefore option B is correct.
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T/F: using accelerated depreciation rather than straight line would normally have no effect on a project’s total projected cash flows but it would affect the timing of the cash flows and thus the npv.
The given satement (using accelerated depreciation rather than straight line would normally have no effect on a project’s total projected cash flows but it would affect the timing of the cash flows and thus the npv) is true because using accelerated depreciation would affect the timing of cash flows and thus the NPV.
How does accelerated depreciation impact cash flows and NPV?Accelerated depreciation, as opposed to straight-line depreciation, refers to a method of allocating the cost of an asset over its useful life, where higher depreciation expenses are recognized in the earlier years. In terms of a project's total projected cash flows, using accelerated depreciation would generally have no effect. This means that the total amount of cash inflows and outflows over the project's lifespan would remain the same, regardless of the depreciation method employed.
However, the timing of these cash flows is affected by the choice of depreciation method. With accelerated depreciation, larger depreciation expenses are recognized in the earlier years, resulting in lower taxable income during those years. This, in turn, reduces the taxes payable in the short term and provides a tax shield to the project. By deferring tax payments to later periods, the project's net present value (NPV) can be positively impacted.
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LAYERS OF THE EARTH THAT SURROUNDS AND PROTECTS US FROM DANGEROUS RAYS FROM THE SUN
A.Atmosphere B.Biosphere
C.Hydrosphere D.Lithosphere
What is one difference between an electromagnetic wave and a mechanical wave?
A.
A mechanical wave can travel through a vacuum. An electromagnetic wave must have a medium to travel through.
B.
An electromagnetic wave can travel through a vacuum. A mechanical wave must have a medium to travel through.
C.
An electromagnetic wave moves parallel to the direction of the wave's travel. A mechanical wave can move only perpendicular to the direction of the wave's travel.
D.
An electromagnetic wave moves perpendicular to the direction of the wave's travel. A mechanical wave can move only parallel to the direction of the wave's travel.
What happens when an unstable nucleus decays
Answer: Unstable nuclei spontaneously emit radiation in the form of particles and energy. This generally changes the number of protons and/or neutrons in the nucleus, resulting in a more stable nuclide. A nuclear reaction is a reaction that affects the nucleus of an atom.
Compared with a 1-kg block of solid iron, a 2-kg block of solid iron has the same select one:
a. mass.
b. volume.
c. weight.
d. all of these
e. none of these
The content of matter in a body is called mass. Weight can be defined as the amount of force required to accelerate an object with mass, while volume is the space occupied by the mass.
On comparing with 1-kg block of solid iron, a 2-kg block of solid iron, mass is different for both the blocks.
So (a) mass cannot be the correct option.
According to this formula ,\(Density = \frac{Mass}{Volume}\) , Density for both the blocks would be same, so volume will be different for both the blocks because of the different masses.
So (b) Volume cannot be the correct option.
Weight is mass dependent therefore
(c) weight cannot be the correct option
Since (a), (b), (c), are incorrect so (d) can not be the correct answer
Therefore on Comparing a 1-kg block of solid iron, with a 2-kg block of solid iron, (e) none of these would be same.
Correct option is (e)
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A block is pulled across a table by a constant force of 9.20 N. If the mass of the block is 2.30kg, how fast will the block be moving after 2.00 seconds? Assume negligible friction.
Answer:
\(8\:\text{m/s}\)
Explanation:
From Newton's 2nd Law, we have \(\Sigma F=ma\). Using this, we can find the acceleration of the object:
\(9.20=2.30a,\\a=\frac{9.20}{2.30}=4\:\mathrm{m/s^2}\).
Now that we've found the block's acceleration, we can use the following kinematics equation to find its final velocity after 2 seconds:
\(v_f=v_i+at,\\v_f=0+4(2),\\v_f=\boxed{8\:\text{m/s}}\)
*Assumption: The block is initially at rest and has a initial velocity of zero. Otherwise, the question is unsolvable.
The speedometer of a car moving to the east reads 100 km/h. It
passes another car moving to the west at 100 km/h. Do both cars
have the same speed? Do they have the same velocity?
The speedometer of the car moving towards shows 100 km/h which passes another car moving in the west with a speed of 100 km/h, so both cars have the same speed and velocity, but the resultant speed is 200 km/h.
What is Velocity?In terms of physics, velocity is a vector measurement of the motion's direction and speed. The rate of change in an object's position relative to a frame of reference and time is a more precise definition of velocity.
Simply put, the concept of velocity informs us of the rate at which an object is travelling in a specific direction. It indicates the rate of movement of an object.
There are several types of velocity :
Uniform velocityNon-uniform velocityInstantaneous velocityAverage velocityTherefore, both the cars are having same speed.
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Two cables support a 1100-lb weight, as shown. Find the tension in each cable. The tension of the cable on the right is pounds and the tension on the cable on the left is pounds. (Round to the nearest pound as needed.)
The tension in the cable on the right is 550 lbs, and the tension in the cable on the left is also 550 lbs when supporting the 1100-lb weight.
For determining the tension in each cable, consider the given weight of 1100 lbs. Since the weight is supported by two cables, assume that each cable shares an equal portion of the load.
Denote the tension in the cable on the right as \(T_1\) and the tension in the cable on the left as \(T_2\). Since the weight is balanced and the cables are vertical, the total tension in both cables should be equal to the weight.
Therefore, have the equation:
\(T_1 + T_2 = 1100 lbs\)
Since both cables share the weight equally, can set up another equation:
\(T_1 = T_2\)
By substituting the value of \(T_1\) from the second equation into the first equation:
\(T_2 + T_2 = 1100 lbs\\2T_2 = 1100 lbs\\T_2 = 550 lbs\)
Since \(T_1\) is equal to \(T_2\), can conclude that the tension in each cable is 550 lbs.
In conclusion, the tension in the cable on the right is 550 lbs, and the tension in the cable on the left is also 550 lbs when supporting the 1100-lb weight.
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A ladder 5.0 m long leans against a wall inside a spaceship. Fromthe point of view of a person on the ship, the base of the ladderis 2.2 m from the wall, and the top of theladder is 4.5 m above the floor. Thespaceship moves past the Earth with a speed of 0.95c in a direction parallel to the floor ofthe ship. Find the angle the ladder makes with the floor, as seenby an observer on Earth.
The ladder makes an angle of approximately 39.3° with the floor, as seen by an observer on Earth.
Determine how to find the angle the ladder?To solve this problem, we can use the concept of length contraction in special relativity. From the perspective of the observer on Earth, the ladder is contracted along its length due to its high velocity relative to Earth. The contracted length of the ladder can be calculated using the Lorentz transformation formula:
L' = L * √(1 - (v²/c²))
Where L' is the contracted length, L is the proper length (5.0 m in this case), v is the velocity of the spaceship relative to Earth (0.95c), and c is the speed of light.
Plugging in the values, we have:
L' = 5.0 * √(1 - (0.95)²)
≈ 2.76 m
Now, we can use basic trigonometry to find the angle the ladder makes with the floor, using the contracted length and the given height:
tan(θ) = h / d
Where θ is the angle, h is the height (4.5 m), and d is the distance of the base of the ladder from the wall (2.2 m).
Plugging in the values, we have:
tan(θ) = 4.5 / 2.2
θ ≈ 63.1°
However, this is the angle as seen by the observer on the spaceship. To find the angle as seen by an observer on Earth, we need to take into account the length contraction. Since the ladder is contracted, the angle observed from Earth will be smaller. Using the contracted length of the ladder, we can calculate the angle as:
tan(θ') = h / d'
Where θ' is the angle observed from Earth, h is the height (4.5 m), and d' is the contracted distance of the base of the ladder from the wall (2.2 m).
Plugging in the values, we have:
tan(θ') = 4.5 / 2.2
θ' ≈ 39.3°
Therefore, the ladder makes an angle of approximately 39.3° with the floor, as seen by an observer on Earth.
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Which is an inertial reference frame (or at least a very good approximation of one)?
Earth is a good example of inertial frame of reference.
To find the answer, we have to know about the Inertial frame of reference.
What is Inertial frame of reference?In fact, an inertial frame of reference is one in which the law of inertia applies by definition. Whatever frame it is, it is not an inertial frame of reference if the law of inertia is broken in any manner. The Earth is a prime illustration of an inertial frame.Thus, we can conclude that, Earth is a good example of inertial frame of reference.
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1. The geologic time scale divides time into years and centuries, true or false
Answer:
The answer is "False"
Explanation:
The geologic time scale is the "schedule" for occasions in Earth history. It partitions time into named units of unique time called in descending order of duration "eons, eras, periods, epochs, and ages". The specification of those geologic time units depends on stratigraphy, which is the relationship and order of rock layers. The fossil structures that happen in the stones, nonetheless, give the central methods for setting up a geologic time scale, with the circumstance of the development and vanishing of far and wide species from the fossil record being used to outline the beginnings and endings of ages,, periods, and different stretches.
Geologic time is the broad time period involved by the geologic history of Earth. Formal geologic time starts toward the beginning of the Archean Eon (4.0 billion to 2.5 billion years back) and proceeds to the current day.
10) A 57-kg packing crate is pulled with constant speed across a rough floor with a rope that is at an angle of 37° above the horizontal. If the tension in the rope is 142 N, how much work is done on the crate to move it 6.1 m?
F=m*a
T = 142N
Work = Force x distance
distance = 6.1 M
Force = 142 x cos 37 = 113.4 N
W= 113.4N x 6.1M = 691.78 J
A student was preparing to perform a flute solo in an auditorium for the spring band concert. The teacher went to the back of the auditorium and discovered that the sound of the flute was going to need to be amplified for people in the back to hear the solo. The amplified sound produced
The amplified sound produced a clear, bright, and piercing sound that filled the auditorium.
What kind of sound was produced ?Amplification involves using electronic equipment, such as microphones and speakers, to increase the volume and projection of sound.
The amplification process not only made the sound of the flute louder but also improved its clarity and brightness. The use of high-quality microphones and speakers can accurately reproduce the tonal qualities of the flute, allowing for a faithful representation of the instrument's sound.
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The full question is:
A student was preparing to perform a flute solo in an auditorium for the spring band concert. The teacher went to the back of the auditorium and discovered that the sound of the flute was going to need to be amplified for people in the back to hear the solo. The amplified sound produced ____________ that filled the auditorium.
a fragment of bone is discovered during an archaeological dig. the bone contains carbon-14 isotopes of the element carbon. the bone is approximately 23000 years old. calculate what proportion of the carbon-14 isotopes remains. give your answer to the nearest whole fraction. the half life of carbon-14 is 5730 years.
When a fragment of bone containing carbon-14 isotopes of the element carbon is discovered during an archaeological dig, and it is estimated to be approximately 23,000 years old, one can calculate the proportion of the carbon-14 isotopes that remains.
The half-life of carbon-14 is 5,730 years. Carbon-14 has a half-life of 5,730 years, which implies that half of the carbon-14 atoms will decay every 5,730 years. This property of carbon-14 may be used to determine the age of ancient artefacts and fossils. By determining the proportion of carbon-14 remaining in a sample, we may determine how old it is.According to the problem, the bone is around 23,000 years old. We can utilize the following formula to calculate the proportion of carbon-14 isotopes that remain: Proportion remaining = (1/2)^(number of half-lives)We can first calculate the number of half-lives that have occurred since the bone was alive. The number of half-lives is calculated as follows:Number of half-lives = (time elapsed) / (half-life)Number of half-lives = 23,000 / 5,730Number of half-lives = 4.016So the number of half-lives that have occurred since the bone was alive is 4.016. We can now use this number to calculate the proportion of carbon-14 isotopes that remains:Proportion remaining = (1/2)^(4.016)Proportion remaining = 0.105Therefore, the proportion of carbon-14 isotopes that remains is 0.105, or approximately 1/10 (to the nearest whole fraction).For such more question on Proportion
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the force vs. time graphs for two collisions are shown. which collision has the largest impulse?
Momentum is a product of the mass and velocity of particles in motion while impulse is the rate of change of the momentum of particles/objects when a force acts on the object.
The impulse of the collision in system A is twice the impulse of the collision in system B
Impulse is given as J = F.dt
In case of impulse 1,
it is F(1-0.5) = 4* 0.5 = 2 Ns
In case of impulse 2,
it is = 2(2.5 - 1.5) = 2Ns
We saw that, both the impulses are calculated to be 2Ns.
Therefore, both the impulses in the graph are same.
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A ball is projected 125 meters straight upward and then falls the same distance back to its starting point. Neglecting air resistance, its total time in the air is about.
The ball that is projected 125 meters straight upward has a total time in the air of: 10.1 s
The formulas for the vertical launch upward and the procedures we will use are:
y max = v₀²/(2*g)t max = v₀/ gt(of)=2*t maxWhere:
v₀ = initial velocityg = gravityy max = maximum heightt max = time to reach maximum heightt(of) = time of flightInformation about the problem:
g = 9.8 m/s²y max= 125 mv₀ = ?t max =?t(of) =?Applying the maximum height formula and clearing the initial velocity we get:
y max = v₀²/(2*g)
v₀ = √(y max * (2*g))
v₀ = √( 125 m * (2 * 9.8 m/s²))
v₀ = √( 125 m * 19.6 m/s²)
v₀ = √2450 m²/s²
v₀ = 49.497 m/s
Applying the maximum time formula we get:
t max= v₀ / g
t max= 49.497 m/s / 9.8 m/s²
t max = 5.050 s
Applying the time of flight formula, we get:
t(of) =2 * t max
t(of) =2 * 5.050 s
t(of) = 10.1 s
What is vertical launch upwards?In physics vertical launch upwards is the motion described by an object that has been launched vertically upwards in which the height and the effect of the earth's gravitational force on the launched object are taken into account.
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The time taken now is 10 s
What is the time taken?We know that in this case, the object was projected vertically upward and we know that in this direction the acceleration due to gravity is negative. Then the ball falls straight down to the ground. We have to use the equation of kinematics under gravity to approach the problem.
We now have that;
h = ut + 1/2gt^2
Considering the downward motion were g is positive u = 0 m/s
h = 1/2gt^2
t = 2h/g
t = √2h/g
t = √ 2 * 125/10
t = 5 s
Given that the time taken to go up is the same as the time taken to come down;
Total time spent in air = 2 (5 s) = 10 s
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Calculate the relative atomic mass of MgO
Answer:
MgO relative atomic mass is 40
Explanation:
Mg=24
O=16
(a) Where is the near point of an eye for which a contact lens with a power of +2. 95 diopters is prescribed?(b) Where is the far point of an eye for which a contact lens with a power of -1. 60 diopters is prescribed for distant vision?
Without the prescribed contact lens, person cannot see objects clearly beyond point. The contact lens helps correct vision, person to see distant objects clearly.
(a) The near point of an eye for which a contact lens with a power of +2.95 diopters is prescribed can be calculated using the formula: D = 1/f. Where D is the diopters and f is the focal length in meters. For a +2.95 diopter lens, f = 1/2.95 = 0.33898 meters or 33.9 cm. This means the near point for this eye is 33.9 cm from the contact lens, which is the distance at which the person can focus on nearby objects with the help of the prescribed contact lens.
(b) The far point of an eye for which a contact lens with a power of -1.60 diopters is prescribed for distant vision can also be determined using the D = 1/f formula. For a -1.60 diopter lens, f = 1/-1.60 = -0.625 meters or -62.5 cm. However, since the focal length is negative, it indicates that the person has myopia (nearsightedness), and the far point is a virtual point. The far point for this eye is at a virtual distance of 62.5 cm behind the eye.
Finding the equivalent focal length of the two lenses—a 10 d and a 15 d—will help us determine the combination's refractive power. The following formula can be used to determine the equivalent focal length of two lenses in contact:
1/f = 1/f1 + 1/f2
Where the focal lengths of the different lenses are f1 and f2. When we substitute the values for the two lenses' focal lengths, we obtain: 1/f = 1/10 + 1/15.
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How does the current in power lines compare to the current in wires in the home?
The current in power lines and the current in wires in the home are both measured in amperes (amps), but they differ in terms of their magnitudes.
Power lines carry high voltage and high current electricity, typically in the range of thousands of volts and amperes. This high voltage and current are required to transmit electricity over long distances efficiently. In contrast, the current in wires in the home is much lower, typically in the range of 10-20 amps, and the voltage is lower as well, typically around 120 volts. This lower voltage and current are sufficient to power most household appliances and electronics. It is important to note that the amount of current that flows through a wire depends on the resistance of the wire. Power lines have a much lower resistance compared to the wires in a home, which means that more current can flow through them without causing overheating or damage. In homes, wires are designed to handle a certain amount of current safely, and exceeding this limit can result in electrical fires and other hazards. In summary, power lines carry high voltage and high current electricity to transmit power over long distances, while wires in the home carry lower voltage and current to power household appliances and electronics.
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Shawn and his bike have a total mass of 43.8 kg. Shawn rides his bike 0.84 km in 17.4 min at a constant velocity. The acceleration of gravity is 9.8 m/s 2 . What is Shawn’s kinetic energy? Answer in units of J.
The kinetic energy of Shawn, if the he has a mass of 43. 8 kg is 14.18 J.
What is kinetic energy?This is the energy of a body due to its motion.
To calculate Shawn's kinetic energy, we use the formula below.
Formula:
K.E = m(d/t)²/2.......... Equation 1Where:
K.E = Shawn's Kinetic energym = Shawn's massd = Distance traveled by Shawnt = TimeFrom the question,
Given:
m = 43.8 kgd = 0.84 km = 840 mt = 17.4 min = 1044 sSubstitute these values into equation 1
K.E = 43.8(840/1044)²/2K.E = 14.18 JHence, Shawn's kinetic energy is 14.18 J.
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what type of image of the object will the convex mirror create? a virtual image behind the mirror. a real image in front of the mirror.
A convex mirror is a spherical mirror that curves outward, away from the observer. When an object is placed in front of a convex mirror, the image created is a virtual image behind the mirror.
The image formed is always smaller than the actual object size. The image formed by a convex mirror is always virtual and smaller than the actual object size.In a convex mirror, the reflection of the image is formed when the light rays diverge outwards, creating a virtual image behind the mirror. The image formed is always smaller than the actual object size. The image formed by a convex mirror is always virtual and smaller than the actual object size. It does not have a real image. In general, a virtual image is one that is not formed by the actual intersection of light rays but appears to be the result of their intersection by projection.
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t/f : neptune has a highly tilted rotation axis, much like uranus, and very unlike saturn's.
This statement is True. Neptune has a highly tilted rotation axis, much like Uranus, and very unlike Saturn's. This means that Neptune's poles experience extreme seasons, with three long summers and three long winters in each Neptune year.
Additionally, the planet's magnetic field is also highly tilted, with the magnetic axis offset from the planet's center by about three-quarters of the planet's radius. Overall, these unique characteristics make Neptune an intriguing and complex planet to study. Neptune has a moderately tilted rotation axis, similar to Uranus, but not as extreme. Its axial tilt is around 28 degrees, whereas Uranus has a significant tilt of approximately 98 degrees. This is in contrast to Saturn, which has a relatively smaller tilt of about 27 degrees. Consequently, Neptune's tilt results in pronounced seasonal changes and weather patterns, as observed on Uranus, but to a lesser extent.
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If a velocity-time graph is horizontal, then acceleration is
a
zero.
b
positive
С
less than 1.
d
none of the above
If the velocity-time graph is horizontal, the acceleration is zero because the slope will be zero.
The coefficient of friction on a surface is 0.25. A box requires
100 N to slide it across the surface. What is the weight of the box?
Answer:
Explanation:
Let mass of box = m
weight = mg
limiting friction = μ mg , where μ is coefficient of friction
= .25 x m x 9.8 = 2.45 m
According to problem
2.45 m = 100
m = 40.816 kg
weight = 40.816 x 9.8 = 400 N .
NAME:
A room has a 60 Watt, a 100 Watt and a 150 Watt light bulb. How much does it
cost to use all the lamps for 2.5 hours at $0.08/ kWh?
E-60
Answer:
$ .0248 or 2.48 cents
Explanation:
60 + 100 + 150 = 310 watts
for one hour = 310 watt- hr or .31 kw- hr
.31 kw-hr * .08 / kw-hr = .0248
What are the differences and similarities of physical and chemical changes?
Answer:
A physical can be changed back to its original state. A chemical can not.
Explanation:
Answer:
Physical and chemical changes are similar because matter experiences a change in state. Physical changes are different because matter remains the same substance, just in a different state, whereas chemical changes change the matter
Explanation:
copied from the internet
Examine the Pythagorean theorem below. In this form you can find the length of the hypotenuse c) of a right triangle if you know the lengths of the two short sides (a &). Solve this equation for the short side b. If you need to indicate a square root in your answer, type it like this: root * (e + f) to mean the square root of the sum (e + f) . For example, the equation below can be typed as c = root (a^ ^ 2+b^ ^ 2)
Answer:
what is the number
Explanation:
Calculate the total work done (J) by a force given by: F = ( 3i
-6j) N to move an object a displacement given by: R = ( 8i +
6k) m
O a
- 12
Rb
18 i-48)
C C
C
24i - 36j
O d.
d
+ 24
Work done (J) by the force is 60i - 78j + 18k.
Given,
F = (3i - 6j) NR
= (8i + 6k) m – 12i – 18j + 24J
= F * dJ = (3i - 6j) * (8i + 6k – 12i – 18j + 24)J
= (3i - 6j) * (-4i - 18j + 6k + 24)J
= (-12i - 54j + 18k + 72i - 24j)J
= (60i - 78j + 18k)J
Work done (J) by the force is 60i - 78j + 18k.
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A gas dissolves in a liquid most rapidly when under _______ pressure.
High
A gas dissolves in a liquid most rapidly when under High pressure.
An example of a high pressure boiler is one that produces energy in thermal power plants that runs at 80 bars or more. They produce electricity by turning water into steam through thermal energy using water-filled tubes in a metal tank or enclosure, which is then utilized to power machinery. There is a higher likelihood of leaks occurring in the system if the boiler pressure is too high. The system won't function as well if the boiler pressure is too low, though. For your system to effectively heat your home, it is crucial to maintain the proper boiler pressure.
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