The bracket is subjected to the two forces shown. Express each force in Cartesian vector form and then determine the resultant force FR.a) Find the magnitude of the resultant force.b) Find coordinate direction angle α of the resultant force.c) Find coordinate direction angle β of the resultant force.d) Find coordinate direction angle γ of the resultant force.Express your answers to three significant figures.

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Answer 1

Each force in Cartesian vector form is (F1) ⃗ = (86.5 i + 186 j – 143k) N and (F2) ⃗ = (-220 i + 311 j + 220 k) N. The resultant force is (FR) ⃗ = (- 134i + 497j + 77k) N. a) The magnitude of the resultant force is 520 N. b) The coordinate direction angle α = 105. c) The coordinate direction angle β = 17.1. d) The coordinate direction angle γ = 81.5.

For a force vector (F,) ⃗  the direction angles made by vector with the x, y, and z are α, β, and γ and hence the Cartesian components of the vectors are given by:

Fx = F cos α

Fy = F cos β

Fz = F cos γ

The Cartesian vector form is given by: {Fx i + Fy j + Fz k}

According to the given data, (F1) ⃗ = 250N and (F2) ⃗ = 440N.

The factor vector (F1) ⃗ makes a 35 degree with xy plane. Hence, its projection on the xy plane will be F1 cos35. The projection makes a 25 degrees with the y-axis. Hence the y-component will be F1 cos35 cos 25 and x-component will be F1 cos 35 sin 25. Hence the  (F1) ⃗ in cartesian form is given by:

(F1) ⃗ = 250(cos 35 sin 25 i + cos 35 cos 25 j – sin 35 k) N

(F1) ⃗ = (86.5 i + 186 j – 143k) N

Likewise,

(F2) ⃗ = 440 (cos 120 i + cos 45 j + cos 60 k) N

(F2) ⃗ = (-220 i + 311 j + 220 k) N

Hence, the resultant force is given by:

(FR) ⃗= (F1) ⃗+(F2) ⃗

(FR) ⃗ = (86.5 – 220)i + (186 + 311)j + (-143 + 220)k

(FR) ⃗ = (- 134i + 497j + 77k) N

a) The magnitude of the resultant force is given by:

FR = √(Fx^2+Fy^2+Fz^2 )

FR = √((-134)^2+497^2+77^2 )

FR = 520 N

The coordinate direction angles are:

b) cos α = Fx/FR = -134/520

α = 105

c) cos β = Fy/FR = 497/520

β = 17.1

d) cos γ = Fz/FR = 77/520

γ = 81.5

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The Bracket Is Subjected To The Two Forces Shown. Express Each Force In Cartesian Vector Form And Then

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the pressure drop across a short hallowed plug placed in a circular tube through which a liquid is flowing through can be expressed as g

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The pressure drop across a short, hallowed plug in a circular tube through which a liquid is flowing can be expressed as: ΔP = KΔv^2,

where ΔP denotes the pressure drop, Δv is the velocity change of the fluid and K is a constant of proportionality that depends on the geometrical parameters of the tube and the fluid properties.

What doe sthe above equation shows?

The equation shows that the pressure drop is proportional to the square of the velocity change. The value of K can be determined experimentally or calculated using fluid dynamics models.

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The pressure drop is caused by various factors, including fluid viscosity, pipe roughness, diameter, and flow rate. The pressure drop across a pipeline is directly proportional to the fluid velocity.

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consider a naca 2412 airfoil with chord of 0.64 m in airstream at standard sea level conditions. the free steam velocity is 70 m/s. lift per unit span is 1254 n/m. using lift coefficient (cl) and drag coefficient (cd) data from figures below find: a. reynolds number of the flow over the airfoil. (3 points) b. angle of attack the airfoil is flying at. (3 points) c. drag force per unit span, in n/m. (6 points)

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The airfoil's flow has a Reynolds number of 3013.5 N/m2 and is flying at a 23.77° angle of attack.

A chord on an aero foil is what?

A chord line is a hypothetical straight line made between an aero foil's leading and trailing edges in the direction of the usual wind.

c=0.64m at sea level

V=70m/s at infinity

Lift per unit span is

L=1254N

The dynamic pressure is given as

Density of water at infinity p∞=1.23kg/m³

q=½p∞V∞²

q=½×1.23×70²

q=3013.5 N/m²

Now,

Lift coefficient is given as

Cl = L/qc

Cl= 1254 /(3013.5 × 2)

Cl= 0.83

Then, coefficient is given as

Cl=2πα

Where α is the required angle

α= Cl/2π

α = 0.83/2π

α=0.415rad

Now, 1 rad= 57.296°

Then, α=0.415rad =0.415×57.296°

α=23.77°

The angle attack is 23.77°

Or Cl can also be

Cl=2πSinα

Sinα=Cl/2π

Sinα=0.83/2π

Sinα=0.415

Then, α=arc sin(0.415)

α=7.24°

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geothermal energy is used to run large and complex power stations as well as small and relatively simple pumping systems. which of the following most accurately explains how geothermal energy is produced and utilized in these applications?

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The statement that accurately explains how geothermal energy is produced and utilized is the one that says that geothermal energy uses the natural insulating power of Earth to create temperature differentials that are used to heat buildings in the winter and cool them in the summer.

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Geothermal energy has been used for thousands of years. Geothermal heating (using hot springs water for heating) has been used for pathing since Paleolithic times, while space heating has been existing since ancient Roman times. Recently, geothermal power is used to generate electricity as well.

Attached below is a picture of a power plant that utilizes geothermal energy, the Nesjavellir Power Plant.

Your question seems incomplete. The completed version is most likely as follows:

Geothermal energy is used to run large and complex power stations as well as small and relatively simple pumping systems. Which of the following most accurately explains how geothermal energy is produced and utilized in these applications?

Geothermal energy uses heat from the Sun to raise the Earth's surface temperatures to a point where these applications can heat homes and buildings.Geothermal energy uses heat from the Sun to create atmospheric temperature gradients, which in turn power turbines to generate electricity.Geothermal energy uses the natural insulating power of Earth to create temperature differentials that are used to heat buildings in the winter and cool them in the summer.Geothermal energy cannot be tapped directly from heat generated by volcanoes or other geologically active areas.

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Particle motion DEPENDENT MULTI-PART PROBLEM - ASSIGN ALL PARTS NOTE: This is a multi-part question. Once an answer is submitted, you will be unable to return to this part. The acceleration of a particle is defined by the relation a= k (1-e-x), where k is a constant. The velocity of the particle V +9 m/s whenx3 m and it comes to rest at the origin. Problem 11.021.b -Obtaining velocity from a position-dependent acceleration by integration etermine the velocity of the particle when x=-2 m. he velocity of the particle is -13.58 m/s

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graphing calculator is recommended. If a rock is thrown upward on the planet Mars with velocity 14 m/s; its height in meters seconds later is given y = 14t 1.86t2. (Round your answers to two decimal places (a) Find the average velocity (in m/s) over the given time intervals_ [1, 2] m/s [1, 1.5] mls [1, 1.1] mjs [1, 1.01] m/s [1, 1.001] mls (b) Use your answers from part (a) to estimate the instantaneous velocity of the rock (in m/s) when t = 1 m/s

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A). The average velocity (in m/s) over the given time intervals is 7.94 m/s.

B). This value is the instantaneous velocity of the rock at t = 1 s, which is approximately 7.94 m/s.

The average velocity of the rock can be found using the formula: average velocity = (final position - initial position) / (final time - initial time).

(a) [1, 2] s: average velocity = (14(2) - 14(1) - 1.86(2^2) + 1.86(1^2)) / (2 - 1) = 4.14 m/s

[1, 1.5] s: average velocity = (14(1.5) - 14(1) - 1.86(1.5^2) + 1.86(1^2)) / (1.5 - 1) = 5.61 m/s

[1, 1.1] s: average velocity = (14(1.1) - 14(1) - 1.86(1.1^2) + 1.86(1^2)) / (1.1 - 1) = 7.31 m/s

[1, 1.01] s: average velocity = (14(1.01) - 14(1) - 1.86(1.01^2) + 1.86(1^2)) / (1.01 - 1) = 7.88 m/s

[1, 1.001] s: average velocity = (14(1.001) - 14(1) - 1.86(1.001^2) + 1.86(1^2)) / (1.001 - 1) = 7.94 m/s

(b)This value is the instantaneous velocity of the rock at t = 1 s, which is approximately 7.94 m/s.

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None of the provided constructors will change the values of the fields in the freshly created object.

public point()

{

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}

When a new instance of an object belonging to a class is produced, a function Object() { [native code] }, a specific kind of method, is invoked. It is employed to initialise the fields of the object and establish their starting values. Constructors cannot have void as a return type and must have the same name as the class. Java will automatically create a default function Object() { [native code] } for you in the absence of a function Object() { [native code] } for a class. The default function Object() { [native code] } is not constructed, though, if you define a function Object() { [native code] } in the class. It's possible to have numerous constructors in a class, known as overloaded constructors, each with a unique set of arguments. Based on the arguments supplied to the relevant function Object() { [native code] } during object creation,

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After an initial test run Mike determines that his pump does 240 J of work (W1). Calculate the amount of work (W2) in J that Mike would expect his pump to do if its volume were 3.5 times greater.

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The Pump has a 240 J of work in normal condition. The change in volume of work will decrease the work performance of pump,

Since water discharge is equal to volume: [tex]Q=\frac{V}{t}[/tex]

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Class 10 Genetic Engineering:

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new starif you follow the arc of the big dipper handle to the next bright star in the sky, you will finds appear to be formed in

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If you follow the arc of the big dipper handle to the next bright star in the sky, you will find Arcturus.

Arcturus is a giant, orange star located in the constellation Bootes and is the brightest star in the northern celestial hemisphere. If you follow the arc of the Big Dipper handle, you will eventually find Arcturus, which is considered one of the most prominent stars in the night sky. It is approximately 36.7 light-years away from Earth and has a luminosity that is approximately 110 times greater than our sun.

Arcturus is a type of star known as a K-type giant, which means it has exhausted the hydrogen fuel in its core and expanded to its current size. This star is also known for its high proper motion, which means it appears to move rapidly across the sky relative to other stars. Arcturus is considered a key star for navigation, as its position in the sky remains relatively constant and can be used as a reference point for astronomers and stargazers alike.

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Your question seems to be missing, but I suppose the question was:

"If you follow the arc of the big dipper handle to the next bright star in the sky, you will find _____."

Which of the following scientists is most directly responsible for ushering in the communications age in the 20th century?
Galileo
Newton
Maxwell
Michelson
Carnot

Answers

James Clerk Maxwell is most directly responsible for ushering in the communications age in the 20th century.

He developed a set of equations that described the behavior of electric and magnetic fields and their interactions with each other. These equations, known as Maxwell's equations, form the foundation of our understanding of electromagnetism and helped pave the way for many of the technological advancements in the fields of communications and electronics in the 20th century. The concept of electromagnetic waves, which Maxwell described in his equations, is the basis for our modern-day technologies like radio, television, and cell phone communication. Therefore, Maxwell's work is considered a cornerstone of the communications age and his contributions are greatly valued in the field of physics.

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determine the length of a hex head bolt for the following application: mounting hole size: 0.875 inch, mounting thickness including foot: 1.500 inches, plain washer thickness: 0.102 inch, lock washer thickness: 0.188 inch.

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The minimum length of the bolt required is 2.665 inches, plus an additional length for the hex head.

The length of a hex head bolt for a specific application can be determined by adding up the thicknesses of the different components that make up the assembly. In this case, the components include the mounting hole, the mounting thickness including the foot, the plain washer, and the lock washer.

The mounting hole size is 0.875 inches, which is the distance between the surfaces being connected. The mounting thickness including the foot is 1.500 inches, which represents the thickness of the material to which the bolt will be attached.

The plain washer thickness is 0.102 inches, which is added to ensure even distribution of pressure on the mounting surface and to prevent damage to the surface during tightening. The lock washer thickness is 0.188 inches, which is added to prevent the bolt from loosening over time.

In total, the thicknesses of these components are 0.875 + 1.500 + 0.102 + 0.188 = 2.665 inches. Therefore, the minimum length of the hex head bolt required for this application is 2.665 inches.

It is important to note that this length does not include the length of the hex head itself. In most cases, an additional 0.25 to 0.375 inches is required for the length of the hex head.

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A block of white color is kept on a table. Suppose you are looking at this block through a glass which allows only red light to pass through it. What would be the color of the block as seen by you using the glass

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Answer:

red

Explanation:

The color of the block as seen by you using the glass would be red.

When white light passes through a red filter, only the red portion of the light is allowed to pass through. The other colors (blue, green, yellow, etc.) are absorbed by the filter. So, when you look at the white block through a red filter, you will only see the red portion of the light reflected off the block, making it appear red to your eye.

Answer:

Red only

Explanation:

The colour of the block as seen by you using the glass would be red.

how far (in m) is it from where they drop the rock to the bottom of the shaft? the speed of sound at the temperature of air in the shaft is 336 m/s. (round your answer to at least three significant figures. use g

Answers

The distance is equal to 2.28 km if rock is dropped to bottom of shaft when air temperature of shaft is given, if we round at least three significant figures.

The distance from where the rock was dropped to the bottom of the shaft can be calculated using the formula for free fall, which is the distance traveled by an object under the influence of gravity. Free fall is described by the equation:

[tex]d = 1/2 * g * t^2[/tex]

Where d is the distance traveled, g is the acceleration due to gravity ([tex]9.8 m/s^2[/tex]), and t is the time elapsed.

We can use the speed of sound to determine the time elapsed. The time elapsed is equal to the time it takes for the sound of the rock hitting the bottom of the shaft to travel back to the top of the shaft:

t = d / v

Where v is the speed of sound.

Substituting this into the free fall equation gives:

[tex]d = 1/2 * g * (d / v)^2[/tex]

Solving for d, we find:

[tex]d = (v^2) / (2 * g)[/tex]

Plugging in the given values of v = 336 m/s and g = [tex]9.8 m/s^2[/tex], we find that the distance is:

d = (336^2) / (2 * 9.8) = 336^2 / 19.6 = 44864 m / 19.6 = 2280 m

Rounding to three significant figures, the distance is approximately 2.28 km.

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Complete Question: How far (in metres) is it down the shaft from where they drop the rock? At the air's temperature in the shaft, the sound speed is 336 m/s. (Round your response to at least three decimal places. use g = 10

a 10-n block and a 1-n block lie on a horizontal frictionless table. to impart equal horizontal accelerations, we would have to push the heavier block with

Answers

We would need to apply 10 times as much force to the heavier block in order to impart equivalent horizontal accelerations.

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Weight = energy x gravity is the formula for relating mass and weight. This formula, which is also known as Newton's Second Law of Motion, states that force (or mass) is measured in Newtons (N), mass (m), and acceleration.

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a ball is thrown directly downward with an initial speed of 7.70 m/s, from a height of 29.9 m. after what time interval does it strike the ground

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The ball strikes the ground after 2.46 seconds.

The time interval can be calculated using the following equation:

t = [tex]\frac{2h}{g}[/tex]

where h is the height from which the ball was thrown (29.9 m), g is the acceleration due to gravity (9.8 m/s), and t is the time interval.

Substituting the values, we get:

t = (2 x 29.9 / 9.8) = (59.8 / 9.8) = [tex]\sqrt{6.1}[/tex] = 2.46s

So, the ball strikes the ground after 2.46 seconds.

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you are hired by an optics manufacturer to design a high-precision mirror alignment system. the resolution for mirror displacements must be on the order of a few nanometers and these deflections must be driven by electrical voltages. which of the following materials properties would you consider most important when selecting a material for this system? you are hired by an optics manufacturer to design a high-precision mirror alignment system. the resolution for mirror displacements must be on the order of a few nanometers and these deflections must be driven by electrical voltages. which of the following materials properties would you consider most important when selecting a material for this system? thermal expansion coefficient electrical resistivity thermal conductivity piezoelectric coefficient

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An optics manufacturer commissions you to create a highly accurate mirror alignment system. Mirror displacements must have a resolution of a few nanometers, and these

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a 12v battery delivers 3.5A at 10.95. Determine the internal Resistence of cell.​

Answers

According to Ohms law, the resistance in a circuit is the ratio of its voltage to the current across the circuit. The resistance of the circuit with 12 v and 3.5 A current is 3.4 ohms.

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Therefore, the voltage through a circuit is directly proportional to the current and resistance through the circuit. As the resistance increases, current through the circuit decreases.

The voltage in the cell = 12 V

current I = 3.5 A.

then internal resistance R = V/I

R = 12/3.5 = 3.4 Ω

Therefore, the resistance in the cell is 3.4 ohms.

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The jet car is originally traveling at a velocity of 10 m/s when it is subjected to the acceleration shown. When t = 0, s = 0. Suppose that a1 = 5.5 m/s2 , a2 = -3.5 m/s2 , and t′′ = 15 s

Answers

a. The car's maximum velocity is 92.5 m/s.

b. The time t' when the car stops is 41.429 s.

The question is not complete. A similar question is in the attachment. A jet car has acceleration, so the car moves in a non-uniform motion. The formula to calculate the final velocity in non-uniform motion

v₂ = v₁ + at

v₁ = initial velocity (m/s)a = acceleration (m/s²)t = time (s)v₂ = final velocity (m/s)

Look at the picture. First part from t = 0 to t"

v₁ = 10 m/sa = a₁ = 5.5 m/s²
Acceleration is positive.
The velocity will increase according to time.t = t" = 15 s
At this time the maximum velocity will be reached.v₂ = v₁ + at
v₂ = 10 + (5.5 × 15)
v₂ = 10 + 82.5
v₂ = 92.5 m/s

Second part, from t" to t'

The initial velocity is the final velocity from the first part of acceleration.
v₁ = 92.5 m/sa = a₂ = - 3.5 m/s²
Acceleration is negative.
The velocity will decrease according to time.v₂ = 0 m/s
Because the car stops.v₂ = v₁ + at
0 = 92.5 + (- 3.5 × t)
0 = 92.5 - 3.5t
3.5t = 92.5
t = 92.5 ÷ 3.5
t = 26.429 st' = t" + t
t' = 15 + 26.429
t' = 41.429 s

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for general projectile motion, which of the following best describes the horizontal component of a projectile's acceleration? assume air resistance is negligible.

Answers

Assume there is little air resistance the acceleration of a projectile has no horizontal component.

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The object is moved downward from its position if gravity didn't exist as a result of the downward force and acceleration. A projectile maintains the same angular momentum because there are no horizontally forces acting on it, hence the force of gravity has no effect on the angular position of motion.

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The speed, which is larger than 115 m/s as expected, is a result of both vertical and horizontal velocity components. As seen in Figure 3.10, the velocity vector forms an aspect q with the horizontal: A crucial aspect of falling object.

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A roller coaster starts from rest at its highest point and then descends on its (frictionless) track. Its speed is 34 m/s when it reaches ground level. What was its speed when its height was half that of its starting point? 12 m/s 24 m/s 17 m/s 28 m/s

Answers

A roller coaster begins at its highest point, where it is at rest, & then drops on its frictionless track. When it reaches the bottom, it moves at a velocity of 34 m/s & 24 m/s when it is halfway up from its starting place.

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The transformation of potential energy into kinetic energy drives the motion of a roller coaster. The potential energy of the rollercoaster ride cars increases as they are propelled to the summit of the initial hill. Potential energy is transformed into kinetic energy as the cars fall.

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clcl express your answer in condensed form in order of increasing orbital energy as a string without blank space between orbitals. for example, [he]2s22p2[he]2s22p2 should be entered as [he]2s^22p^2.

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The electron configuration of Cl (chlorine) is [Ne] 3s^2 3p^5. The order of increasing orbital energy would be 3s, 3p. So the answer would be: [Ne]3s^23p^5

The arrangement of electrons within an atom is referred to as the "electronic configuration of an atom." With the help of the Aufbau principle, a sequence of energy levels for the electrons in an atom can be filled up or built up. In German, the word "aufbau" implies "building up."

According to this idea, orbitals are filled in a sequence of increasing energy. The lowest energy level is filled first. The higher energy levels are then filled one by one. Because it is the most stable, the atom is said to be in its ground state, sometimes referred to as the normal state.

The electron configuration of an element describes how its electrons are distributed throughout its atomic orbitals. Atomic subshells that contain electrons are placed in a series, and the number of electrons that each one of them holds is indicated in superscript for all atomic electron configurations.

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1.
Mechanical advantage is expressed in newtons squared.
True or false ?

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Mechanical advantage has no unit, Hence, the statement that Mechanical advantage is expressed in newtons squared is False.

What is a mechanical advantage?

A primary machine's mechanical advantage quantifies how much work goes into it and is used to manipulate the load. In other words, it is the ratio of a machine's input to output work. It has no units because it is the ratio of two identical quantities.

Mathematically, mechanical advantage = load/effort or work output/ work input

The higher the mechanical advantage of a machine, the more efficient will be the machine.

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following are the results of a sieve analysis. draw a particle-size distribution curve and determine cu

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In order to plot each sieve % on the distribution curve, you must divide the entire mass of the sample material by the weight that was either retained or that passed thru every sieve.

What does the sieving method's particulate size distribution mean?

As the asymmetric energy sieve method directly provides weight distribution, sieve methodology provides sieve diameter, which is determined as the micrometer of the globe that passes through the sieve aperture. By using the sieve process, particles of sizes between 50 and 1500 m are estimated.

Which two forms of particle size estimation are there?

Adaptive mien scattering and laser particulate analyzers are two of the primary categories of particle size analyzers. Particles in solutions are measured by dynamic light diffracted analyzers between 0.6 nm and For particle in a substance that are between 10 nm and 3 mm in size, analyzers are utilized.

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two stones are thrown vertically upward from the ground, one with three times the initial speed of the other. assume free fall.

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Stone speed is equal to three times stone speed if the stones are the same size. The stone will touch the earth in 10/3s, or 3.3 seconds because gravity will affect both stones equally during the fall.

When a stone is thrown vertically upward, what two forces are at work on the object?

Gravitational force acts downhill when a stone is propelled vertically, while muscular force or an applied force acts upward.

Why does a stone being hurled vertically upward lose speed?

Gravity tries to pull the stone down when it is thrown vertically upward, slowing down its motion. After a period, the velocity falls to zero as a result of this persistent downward drag.

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An experiment is performed using a sensitive ammeter attached to a length of conducting wire shaped into a coil. In the first trial, a bar magnet is quickly and repeatedly pushed into and pulled out of the space inside the coil. The reading on the ammeter indicates that the current is positive as the bar magnet moves forward into the coil. For the second trial, the connections between the ends of the coil of wire and the connections of the ammeter are reversed. The bar magnet is again quickly and repeatedly pushed into and pulled out of the space inside the coil. The reading on the ammeter shows that the current is again positive as the bar magnet moves forward into the coil. Which of the following is a correct claim about the second trial and indicates the Maxwell equation that provides the evidence? A. According to the Biot-Savart law, the poles of the magnet are aligned relative to the loop, the same as in the first trial. B According to Faraday's law, the poles of the magnet are aligned relative to the loop, the same as in the first trial. с According to Ampere's law, the poles of the magnet are aligned relative to the loop, the same as in the first trial. D According to Faraday's law, the poles of the magnet are reversed relative to the loop, as compared to the first trial.E According to Ampere's law, the poles of the magnet are reversed relative to the loop, as compared to the first trial.

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According to Faraday's law, the poles of the magnet are reversed relative to the loop, as compared to the first trial. Option D

What is the Maxwell law of electromagnetism?

The Maxwell laws of electromagnetism are a set of four equations that describe the behavior of electric and magnetic fields and their interaction with charged particles. These laws form the foundation of classical electromagnetism and predict the behavior of electromagnetic waves, including light. The laws are named after the Scottish physicist James Clerk Maxwell.

From the Faraday's law, we know that it is the relative motion between the coil and the magnet that induces current.

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the load impedance in (figure 1) absorbs 2.5 kw and generates 5 kvar . the sinusoidal voltage source develops 7.5 kw . suppose that r

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I = I sin t, where I is the maximum current and I is the current at time t, can be used to describe a sinusoidal alternating current. Similarly, we can write v = V sin t for an alternating sinusoidal voltage.

How would one define sinusoidal?

A variable that is based just on sine function, a periodic value that oscillates smoothly between low and high values is referred to as a sinusoidal function. Since the cosine function is simply a horizontally shift of sine function, sinusoidal calculations can also be built on it.

Why is AC known as sinusoidal?

Periodic waveforms known as sine waves can be represented graphically using the sin or cosine trigonometric functions. Electrical circuits that receive "AC" voltages and currents, or sinusoidal waveforms that polarity alternates on each cycle.

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an ideal gas expands isothermally and reversibly to twice its original volume. which of the following statements are true?

Answers

The gas absorbs heat to its surroundings.

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a river flows with a uniform velocity v. a person in a motorboat travels 1.52 km upstream, at which time a log is seen floating by. the person continues to travel upstream for 91 min at the same speed and then returns downstream to the starting point, where the same log is seen again. find the flow velocity of the river. assume the speed of the boat with respect to the water is constant throughout the entire trip. (hint: the time of travel of the boat after it meets the log equals the time of travel of the log.) answer in units of m/s

Answers

The uniform velocity of the log relative to the river is 3.04 km/182 min = 0.017 km/min.

What is speed?

The pace and direction of an object or particle's movement are described by the vector quantity known as velocity. It consists of two elements: direction and speed.

motorboat is v + u

u is the speed

the person travels 1.52 km upstream

total distance covered by the motorboat is 1.52 km x (v + u).

The time taken by the person to travel upstream is 91 min. Therefore, the total time taken by the motorboat to cover the round trip (upstream + downstream) is 182 min.

total distance covered by the motorboat during the round trip is 3.04 km x (v + u).

the distance covered by the log during the round trip is also 3.04 km.

Therefore, the velocity of the log relative to the river is 3.04 km/182 min = 0.017 km/min.

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three objects are brought close to each other, two at a time. when objects a and b are brought together, they repel. when objects b and c are brought together, they also repel. which of the following are true? (select all that apply.)

Answers

Since all three objects a, b and c repel one another, they possess charges of the same sign.

Assuming all three objects are conductors, the electric charge, either positive or negative, will be evenly distributed throughout the object.

Opposite charges attract each other, while same charges repel. Object a and b repel when they are brought together, which means that both objects have the same charge. This is the same case with object b and c. This means that all three objects possess the same charge.

The multiple choices are most probably these:

A. Objects a and c possess charges of the same sign.B. Objects a and c possess charges of opposite sign. C. All three objects possess charges of the same sign. D. One object is neutral.E. Additional experiments must be performed to determine the signs of the charges.

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