Tech a says that electric power steering systems are much heavier than hydraulic pumps. tech b says that hydraulic pumps are more compact than electric pumps. who is correct?

Answers

Answer 1

Electric power steering system  are more compact than the hydraulic  pumps , both statement are wrong.

Since electro-hydraulic and electric power steering systems are lighter and more compact than conventional hydraulic power steering systems.The hydraulic power steering system is basically a closed loop system that uses pressurized hydraulic fluids for changing the wheel angle of the front wheels based on the steering angle. It consists of a hydraulic pump driven by  valves, belt, reservoir, cylinder, and a driver control mechanism, whereas Electric power steering is for highly automated  driving, it  has an electric motor that controls the vehicle  and provides enjoying  and  optimal steering feel, and electro-hydraulic power steering is  where an electric motor  drives the pump which  is controlled according to the needed assisting steering force, the delivery of the hydraulic pump is increase at very low  speed in order give a large amount of steering power.

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Related Questions

She varies the level of noise in the environment and records the blood pressure of each participant. In this experiment, the level of noise is the

Answers

It appears that subjective qualitative measurements are insufficient indicators to determine how noise affects cognitive function.

It is highly advised to use novel indicators, such as brain signal analysis and power spectral density analysis, while evaluating cognitive function while exposed to noise. It is recommended that more research be done on the impacts of additional psychoacoustic factors, such as tone and noise pitch (treble or bass) at high exposure levels. "Attention" refers to the active cognitive selecting process. Daily tasks include physical motions, emotional reactions, and perceptual and cognitive processes all heavily depend on attention. When processing of quantitative information is constrained, the attention system regulates behavior of people based on spatial and temporal aspects.

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a house that is losing heat at a rate of 35,000 kj/h when the outside temperature drops to 4°c is to be heated by electric resistance heaters. if the house is to be maintained at 25°c at all times, determine the re

Answers

Q(l) = 35,000 kj/h

T° = 4° c = 277k

T(H) = 298 k

given that house is to be maintained at 25° c at all times

hence internal energy is zero. du=0

now, using first law of thermodyanamics

dq= du+dw

dq= dw ( because du = 0)

hence, heat lost by house is equal to the work input for system

Q(l)= w (input)

w (input) =35,000 kj/hr

now, coefficient of performance for reversible heat pump = cop ( rev,hp)

cop ( rev,hp) = = 14.9

cop ( rev,hp) = Q(l)/w (input)

14.9 = 35,000/ (win)rev

(win)rev = 2349 kj/h ( reversible work input)

Irreversibility of process = I

I = (win) - (win)rev

I = 35000- 2349

I = 32651 KJ/hr

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A soccer ball was kicked toward the goal. The horizontal component of velocity was 22 m/s and the vertical component was 12 m/s. What is the magnitude of the resultant velocity of the soccer ball?.

Answers

The magnitude of the resultant velocity of the soccer ball is: 25.059 m/s

The formula for projectile motion that we will use to solve this exercise is:

vf= √[v(x)² + v(y)²]

Where:

vf=  final velocityv(x)=  horizontal component of velocityv(y)= vertical component of velocity

Information about the problem:

v(x)= 22 m/sv(y)= 12 m/svf=?

Applying the final velocity formula we have:

vf= √[v(x)² + v(y)²]

vf= √[(22 m/s)² + (12 m/s)²]

vf= √[484 m²/s² + 144 m²/s²]

vf= √[628 m²/s²]

vf= 25.059 m/s

What is projectile motion?

The projectile motion is the motion whose trajectory describes a parabola having a horizontal and a vertical component of motion.

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Angela runs 30 minutes every day, but her 5k race time is staying the same, and she is not having fun anymore. What should she do to improve?

Answers

She should add diversity to her exercise program to keep her from getting bored or lazy.

Because if you are not having fun with it anymore then you stop doing it.Your weekly exercise running mileage should drop the week before the event. Your training now mostly focuses on "saving up" rest so that your legs are prepared for the marathon.

To keep your legs fresh throughout the week, fit in two to three quick runs with a few quick pick-ups—short, snappy portions that get your legs working faster and get you ready for the faster tempo of the race. Take a day off to completely rest two days before the marathon. Do a quick exercise(20-minute) run with up to five 45-second pick-ups the day before the race to tone your legs.

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Question 12 an earth satellite has a speed of 7.5 km/s and a flight path angle of 10 degrees when its radius is 8000 km. what is the angular momentum (in km 2/s)?

Answers

-21.7 km²/s is the angular momentum (in km 2/s) of the earth's satellite.

What is a satellite?

An object that has been sent into orbit in space on purpose is known as a satellite or artificial satellite.Most spacecraft, with the exception of passive satellites, contain a means of generating power for the technology they carry, such as solar panels or radioisotope thermoelectric generators (RTGs).The majority of satellites also feature transponders, which are a type of ground station communication system.The most common satellites, tiny CubeSats, employ a standardized bus to reduce costs and labor. Satellites are made to be as light and durable as feasible due to the high expense of space launch.

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Two vectors of the same magnitude are added; one pointing east, one west. the magnitude of the resultant vector is :_________

Answers

Answer:

The magnitude of the resultant vector, two vectors of the same magnitude are added; one pointing east, one west is Zero.

Explanation:

Vector resolution is the process of identifying the magnitude and direction of a vector's components visually or trigonometrically. The magnitudes of the aforementioned vector are due to the fact that the vector sum of all forces must still be zero.

A resultant force can be found by adding two forces together. A single force can be resolved (divided) into two component forces that are at right angles to one another.

A vector quantity with magnitude and direction can be used to represent a force. The pulling force may be resolved using vector diagrams into a horizontal component acting to the right and a vertical component acting upwards (or forces acting in opposite directions).

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for the same percentage error in each of the three quantities, mass, diameter, and length, which would contribute the most to the error in the density

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For the same percentage error in each of the three quantities, mass, diameter, and length, mass would contribute the most to the error in the density.

A substance's density is defined as its mass per unit of volume. Density is most frequently represented by the symbol, however Latin letter D may also be used. The formula for density is mass divided by volume:

ρ = m / v

The error's absolute value is multiplied by 100%, divided by the accepted value, and then converted to a percent.

Since, the mass is directly related to density so the mass would contribute more to the error in density out of the three quantities, mass, diameter, and length.

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what is the index of refraction of a substance that has a critical angle of 68.4º when submerged in water (n

Answers

The refractive index of the substance for the critical angle 68.4° is found as 1.43400055

To find the index of refraction, the given values are:

Critical angle is 68.4°.

What is the refractive index?

The refractive index can be defined as the ratio of the speed of light in the medium to the speed in the vacuum.

The formula of the refractive index is as follows:

Where,

n is the refractive index

c is the velocity of light in a vacuum ( 3 × 108 m/s)

v is the velocity of light in a substance

The vacuum has a refractive index of 1. The refractive index of other materials can be calculated from the formula mentioned. Higher the refractive index, the higher the optical density and slower is the speed of light.

The refractive index of different media can be listed in the table below:

Material            Refractive Index

Air                          1.0003

Water                     1.333

Diamond                2.417

Ice                           1.31

Ethyl Alcohol         1.36

Now, finding the value of refractive index,

As the value of critical angle is given,  θ = 68.4°,

θc = Sin ⁻¹ ([tex]\frac{n2}{n1}[/tex])

Considering the given values, n2 = 1.3333

θc = θ = 68.4°

So, n1 = ( n Water) / ( sin θc)

          = 1.33333 / sin 68.4°

          = 1.43400055

Thus, n1 ca be found as,1.43400055

The refractive index of the substance for the critical angle 68.4° is found as 1.43400055

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What’s an example of potential energy? PLEASE HELP ILL CROWN YOU
A
Water behind a dam

B
A dart stuck in a dartboard

C
Plants using photosynthesis

D
A cow chewing grass

Answers

Answer: Its A its the best possible answer

Explanation:

its the best possible answer

Answer:

A. water behind a dam

Explanation:

today we were learning energy then our teacher told as so am sure am ryt

when a man returns to his well-sealed house on a summer day, he finds that the house is at 35°c. he turns on the air conditioner, which cools the entire house to 20°c in 30 min. if the cop of the air-conditioning system is 2.8, determine the power drawn by the air conditioner. assume the entire mass within the house is equivalent to 80

Answers

Answer:

The power drawn by the air conditioner assuming the entire mass within the house is equivalent to 800 kg cv= 0.72 kJ/kgK and c_{p}cp = 1.0 kJ/kgK is 1.71 kW

Explanation:

The entire amount of heat that needs to be removed from the house is given by the expression:

QL = mCvT

m = mass = 800kg

dT = 35-20oC

QL = 800 * (0.72 Kj/Kb.oC) * 15

QL= 8640Kj

To calculate the average rate of heat removal from the house, we use

QL = Ql/dt

QL = 8640Kj/30*60

QL = 4.8 Kw

The total power input to the AC is calculated by;

Win = QL/COP

Substituting in the given value

Win = 4.8 Kw/2.8

Win = 1.71 Kw

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you walk 6 meters to the east. then turn around and walk 4 meters west. find the distance travelled and find the displacement​

Answers

Answer:

ffghccvvghcgjvccvb

Explanation:

gmvfjbcgijcfub cjjcv

jhggjvchivvvhj

a speeding bullet the fastest commercially available rifle bullet claims a muzzle velocity of 4225 ft/s .

Answers

Complete Question

The fastest commercially available rifle bullet claims a muzzle velocity of 4225 ft>s.

(a) what is this speed in miles per hour

The fastest rifle bullet reportedly has a muzzle velocity of 4225 feet per second. This speed is equivalent to 2880.68274 miles per hour in miles per hour.

Given Data:

1 foot = 0.000189394 miles4225 feet = 0.000189394 × 4225 milesNow allow us to locate the space covered by way of the bullet in one secondDistance included via a bullet in 1 second = 0.000189394 × 4225 milesDistance traveled by means of a bullet in 1/3600 hour = zero.000189394 × 4225 milesNow let us find the gap included by way of the bullet in a single hourDistance protected with the aid of a bullet in 1 hour = 0.000189394 × 4225 × 3600 milesthe velocity of the bullet is 2880.68274 miles/hour.

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a rigid tank is divided into two equal parts by a partition. one part of the tank contains 2.5 kg of compressed l

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Complete question

A rigid tank is divided into two equal parts by a partition. One part of the tank contains 2.5 kg of compressed liquid water at 400 kPa and 60

60 ∘ C while the other part is evacuated. The partition is now removed, and the water expands to fill the entire tank. Determine the entropy change of water during this process, if the final pressure in the tank is 40 kPa.

Water expands to fill the entire tank. For a final pressure of 10 kPa, the final water temperature is 60°c and the tank volume is 2245.4.

The energy balance:

[tex]E_{in} -E_{out} =[/tex] Δ[tex]E_{system}[/tex]

So, therefore

0 = ΔU [tex]mm(u_{2} -u_{1} )[/tex]

[tex]u_{1} =u_{2}[/tex]

Water's characteristics are listed in tables A = 4 and A-6.

[tex]p_{1} = 600 kpa[/tex]

[tex]T_{1}[/tex] = 60°c

⇒ [tex]v_{1} = v_{f}[/tex]

⇒ 60°c = 0.001017

⇒ [tex]u_{1} =u_{f}[/tex]

⇒ 60°c = 251.16

Confirmed whether we receive quality between 0 and 1.

[tex]P_{2}[/tex] = 10kpa

[tex](u_{2}-u_{1} )[/tex]

We have [tex]v_{f}[/tex] = 0.001010,

v = 14.670

[tex]u_{f}[/tex] = 191.79,

[tex]v_{f}[/tex] = 2245.4

So, therefore, water expands to fill the whole tank. For a final pressure of 10 kPa, the very last water temperature is 60°c and the tank quantity is 2245.4.

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a helicopter blade spins at exactly 80 revolutions per minute. its tip is 4.00 m from the center of rotation.

Answers

The average velocity will be 1.30 x 10⁻² m/ s.

What is velocity?

Velocity is defined as the ratio of the distance moved by the object at a particular time. As a vector quantity, the velocity requires both the magnitude and the direction.

Given that a helicopter blade spins at exactly 80 revolutions per minute. Its tip is 4.00 meters from the rotational axis.

Use the formula to calculate the linear velocity.

V= d/t

V= velocity

d= distance

t= time

Here d will be the circumference of the blade

d= 2πr

We have:-

80 rev = 1min

1min/ 80= 60s/80

The average velocity will be calculated as below:-

Vavg= 2π( 10m ) / 80 x 60

Vavg= 0.01308 m / s

Vavg = 1.30 x 10⁻² m / s

Therefore, the average velocity will be 1.30 x 10⁻² m/ s.

The complete question is given below:-

A helicopter blade spins at exactly 80 revolutions per minute. its tip is 4.00 m from the center of rotation. What will be the average speed of the helicopter blade?

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At the position of the stop-light 4 s after the light had turned green. what is the slowest constant speed which the green car can maintain and still catch up to the blue car? answer in units o

Answers

The green car must travel at least 3 m/s in order to catch up to the blue car.

The blue automobile might go slower if the green car is moving faster than it is at the point where the distance between them equals 0. Furthermore, the green automobile will never catch up to the blue car if the blue car moves faster than the green car before they collide.

The blue car's speed as a function of time is given by v(T) = 0.3T. The equation for the position of the green automobile can be rewritten as g(T) = (T-5) *0.3T given the justification for the ideal speed. Set the equations to be equal to one another since we want the distance between the green and blue automobiles to be the same. (T-5) *0.3T = 0.15*T^2 Then, calculate T (T-5) *0.3T = 0.15*T2, where 0.3T2 - 1.5T equals 0.15T2 and 1.5T - 0.15T2 = 0. Our quadratic equation now has the values A = 0.15, B = -1.5, and C = 0.

To determine the roots, which are -4.5 and 10, use the quadratic formula. The interception will happen at T=10 because the number of 10 implies that it will, hence the velocity must be v(T) = 0.3T v (10) = 0.3*10 = 3 m/s. The green car must travel at least 3 m/s in order to catch up to the blue car.

The complete question is- A blue car pulls away from a red stop-light just after it has turned green with a constant acceleration of 0.2 m/s². A green car arrives at the position of the stop-light 7.5 s after the light had turned green. What is the slowest constant speed which the green car can maintain and still catch up to the blue car? Answer in units of m/s.

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An ideal heat engine absorbs 94.5 kj of heat and exhausts 78.8 kj of heat in each cycle. what is the efficiency of the engine?

Answers

The efficiency of the engine is 17%

The answers to this exercise do not depend on the engine being of the Carnot design. Any heat engine that intakes energy as heat (from, say, consuming fuel) equal to

[tex]|Q_{H} |=[/tex]=94.5kJ and exhausts (or discards) energy as

heat equal to [tex]|Q_{L} |=[/tex]78.8KJ

will have these values of efficiency ε and network W

(a) Equation 20-12 gives ε=1- [tex]|\frac{Q_{L} }{Q_{H} }|[/tex] =1-0.8338624339 =0.17 =17%

What exactly does a Carnot engine do?

Leonard Carnot proposed the Carnot engine, a theoretical thermodynamic cycle. It calculates the maximum possible efficiency of a heat engine during the process of converting heat into work and, conversely, working between two reservoirs.

Carnot cycle definition

An ideal reversible closed thermodynamic cycle in which the working substance undergoes four successive operations: isothermal expansion to a desired point, adiabatic expansion to a desired point, isothermal compression, and adiabatic compression back to its initial state.If we define the Carnot factor more broadly as the ratio of an active volume to total volume, the condition = 1/2 means that half of the volume is "active."

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a horizontal directed force of 252 n is needed to keep a 555-n box sliding on a level wooden floor at a constant speed. what is the coefficient of sliding friction μ?

Answers

The coefficient of sliding friction μ is 0.45

Frictional force

The frictional force is a force that prevents an object from sliding. The formula for calculating the frictional force is expressed asl

Ff = μR

where

μ is the required coefficient of friction

R is the normal reaction

Given the following parameters

Ff = 252N

R = 555N

substitute

μ = Ff//R

μ = 252/555

μ = 0.45

Hence the coefficient of sliding friction μ is 0.45

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A lithium atom combines with a helium atom to make a new larger atom this is an example of

Answers

Answer

Fission.

Explanation:

Fission occurs when a neutron slams into a larger atom, forcing it to excite and split into two smaller atoms, also known as fission products.

Hope this helps u ; )

sketch a velocity -time graph for a body thrown vertically upward to a maximum height​

Answers

The velocity time graph for a body thrown vertically upward to a maximum height is given below:

What is velocity?

The pace at which an object's position changes as perceived from a particular point of view and as measured by a particular unit of time (for example, 60 km/h northbound) is defined as its velocity. Velocity is a fundamental concept in kinematics, the branch of classical mechanics that deals with the motion of bodies.

In order to be defined, the physical vector quantity known as velocity needs to have both a magnitude and a direction. Speed is a coherent derived unit whose quantity is measured in metres per second (m/s or m/s1) in the SI. Speed is the scalar absolute value (magnitude) of velocity (metric system). "5 metres per second," for example, is a scalar as opposed to "5 metres per second east," which is a vector.

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calculate charlie's displacement on his bicycle if he travels a constant velocity of 8km/h north for 30 minutes


a, 240 km north
b, 4 km north
c, 22 km north
d, 16 km north
e, 38 km north

pls help ​

Answers

Answer:

B 4km north

Explanation:

What happens to the time to complete a movement if angular velocity is increased?

Answers

The time to complete a movement if angular velocity is increased is Angular speed

Angular speed is the price of speed at which an object or a particle is rotating round a middle or a specific factor in a given time period. it's also referred to as rotational pace. Angular pace is measured in attitude in keeping with unit time or radians per second (rad/s). The fee of alternate of angular speed is angular acceleration. let us analyze in extra element approximately the relation among angular speed and linear pace, angular displacement and angular acceleration.Angular pace plays an eminent position within the rotational movement of an item. We already understand that in an item showing rotational movement all the particles circulate in a circle. The linear pace of each collaborating particle is without delay associated with the angular velocity of the entire item.those  become as vector products relative to each other. basically, the angular velocity is a vector amount and is the rotational speed of an object. The angular displacement of in a given period of time gives the angular velocity of that item.

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Two objects undergo simple harmonic motion on a
smooth table. Object B has twice the frequency and
twice the amplitude of object A. How does the
angular speed, maximum speed, and maximum
acceleration of object B compare to that of object
A? Object B has:

a. one-half the angular speed, one-fourth the
maximum speed, and one-sixth the maximum
acceleration of object A.
b. twice the angular speed, quadruple the
maximum speed, and six times the maximum
acceleration of object A.
c. twice the angular speed, twice the maximum
speed, and eight times the maximum
acceleration of object A.
d. twice the angular speed, quadruple the
maximum speed, and eight times the maximum
acceleration of object A.

Answers

The acceleration is maximum when the displacement of the object is maximum.

We understand that speed is most when y=zero, displacement is zero, and acceleration is zero, this means that the machine is in equilibrium. therefore, at a factor in simple harmonic motion, the maximum pace can be calculated by the usage of the formulation v=Aω. the rate may be most in easy harmonic movement, while the acceleration is zero.

The pendulum oscillating backward and forward from the suggested role is an example of easy harmonic movement. Bungee leaping is an example of simple harmonic motion. The jumper oscillates up and down in the present process SHM because of the pliancy of the bungee wire.

The maximum displacement of the bob from its implied role. OA or OB is called its amplitude. because the bob is at its lowest position on point O. Its potential power is minimal whilst its kinetic power is maximum.

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a golf ball of mass 0.05 kg travels down the fairway with a velocity of 60m/s what is teh kinetic energy

Answers

The kinetic energy will decrease by 4J.

The energy an object has as a result of motion is known as kinetic energy in physics. It is described as the effort required to move a mass-determined body from rest to the indicated velocity. The body holds onto the kinetic energy it acquired during its acceleration until its speed changes.

first-order kinetic energy KE i\s =0.5×m×v

Final Kinetic Energy = 0.5 mV (K.E. 1/2 0.5(3355) =

2/2 KE difference = KE f-KE i

KE difference

Difference in KE = 1/4(925)

Difference in KE = -16/4 = 4J.

Consequently, kinetic energy will decrease by 4J.

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A boy heard the thunder 18.74998 seconds after the lightening of a storm which is at a distance 6km , so the speed of sound in air equals .....( Where the speed of light in air = 3000000)


I already checked the answer in the answer book it's velocity= 320 m/s but I don't understand how

If anyone can help me please do

Answers

If a boy heard the thunder 18.74998 seconds after the lightening of a storm which is at a distance 6km , so the speed of sound in air is 320m/s.

As we know that,

Speed = Distance / Time

Firstly we calculate the time taken by light to travel distance 6 Km.

Given,

Distance = 6Km

Speed = 3000000m/s

Time = D/ S

= 6000/ 3000000

= 0.002s

So, the time taken by light to reach the ground is 0.002s.

Now,

Time taken by sound to reach the ground = time taken by light + 18.749.

0.002 + 18.749

= 18.75

Now, t = 18.75

d = 6km

Speed = 6000/18.75

= 320m/s

Thus, we concluded that if boy heard the thunder 18.74998 seconds after the lightening of a storm which is at a distance 6km , so the speed of sound in air is 320m/s.

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If no heat is transferred during the following compression of a gas, what is the sign of w, and does internal energy of the enclosed gas increase, decrease, or remain constant?.

Answers

Answer: increase

Explanation:

increase of  compression make it hot

what is the geometric relationship between the force f and the cross-section area a under consideration?

Answers

The cross-sectional area A under consideration is parallel to the force F.

What do you mean by force?

An influence that can alter an object's motion is referred to as a force in physics. An object with mass can change its velocity, or accelerate, in response to a force by moving away from rest, for example. Intuitively, pushing or pulling can be used to describe forces. As a vector quantity, a force is one that has both magnitude and direction. It is expressed as a newton in the SI system (N). F is a symbol that stands for force (formerly P). The net force exerted on an object is equal to the rate at which its momentum varies over time, according to Newton's second law in its original version.

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In the metaphor of the bottle for theory of constraints, which part of the bottle represents the constraint?

Answers

In the metaphor of the bottle for theory of constraints, the part of the bottle represents the constraint is neck.

What is metaphor?

A metaphor is a figure of the speech that describes an object or action in a way that isn’t literally true, but helps explain an idea or make a comparison.

Here are the basics:

A metaphor states that one thing is the another thing. It equates those two things not because they actually are the same, but for the sake of comparison or symbolism and if you take a metaphor literally, it will probably sound very strange (are there actually any sheep, black or otherwise, in your family?). Metaphors are used in the poetry, literature, and anytime someone wants to add some color to their language

The uses of metaphor, and the official definition:

A word or phrase for one thing that is used to refer to the another thing in order to show or suggest that they are similar

An object, activity, or idea that is used as a symbol of the something else

Metaphors are a form of the figurative language, which refers to words or expressions that mean something different from their literal definition. In the case of metaphors, literal interpretation would often be pretty silly.

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In the metaphor of the bottle for theory of constraints, the part of the bottle represents the constraint is neck.

What is metaphor?

A metaphor is a figure of the speech that describes an object or action in a way that isn’t literally true, but helps explain an idea or make a comparison.

Here are the basics:

A metaphor states that one thing is the another thing. It equates those two things not because they actually are the same, but for the sake of comparison or symbolism and if you take a metaphor literally, it will probably sound very strange (are there actually any sheep, black or otherwise, in your family?). Metaphors are used in the poetry, literature, and anytime someone wants to add some color to their language

The uses of metaphor, and the official definition:

A word or phrase for one thing that is used to refer to the another thing in order to show or suggest that they are similar.

An object, activity, or idea that is used as a symbol of the something else

Metaphors are a form of the figurative language, which refers to words or expressions that mean something different from their literal definition. In the case of metaphors, literal interpretation would often be pretty silly.

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A ball is thrown with an initial speed of 20 m/s at an angle of 60° to the ground. If air resistance is negligible, what is the ball’s speed at the instant it reaches its maximum height from the ground?.

Answers

The speed of the ball when it reaches its maximum height from the ground is 5.02 m/s.

The initial speed of the ball = 20 m/s

Angle to the at which the ball is thrown = 60°

Gravity = 9.81 m/s²

Resistance of the air = 0.

The maximum height reached by the ball above the ground is,

[tex]H = \frac{u ^{2 }sin ^{2}θ} {2g}[/tex]

[tex]H = \frac{20 ^{2 }sin ^{2}60°} {2 \times 9.81}[/tex]

[tex]H = \frac{ 20 \times 20 \times \sqrt{3} }{2 \times 9.81 \times 2}[/tex]

[tex] = 17.6 \: m[/tex]

Thus, the maximum height reached by the ball above the ground is 17.6 m.

The flight time of the ball is,

[tex]t = \frac{2usinθ}{g} [/tex]

[tex]t = \frac{2 \times 20 \times sin60°}{9.81} [/tex]

[tex]t = \frac{2 \times 20 \times \sqrt{3} }{9.81 \times 2} [/tex]

[tex]t = 3.5 \: s[/tex]

Thus, the flight time of the ball is 3.5 s.

The speed of the ball when it reaches it reaches the maximum height from the ground is,

[tex]Speed = \frac{ Distance }{Time}[/tex]

[tex]Speed = \frac{17.6}{3.5} [/tex]

[tex]Speed = 5.02 \: m/s[/tex]

Therefore, the speed of the ball when it reaches its maximum height from the ground is 5.02 m/s.

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which of the following are the 2 postulates of relativity? (the other choices are consequences of relativity) a. the laws of nature are the same for all observers in uniform motion. b. the length of a moving object is not the same as when it is at rest. c. the speed of light is constant for all observers in uniform motion. d. two events that happen at the same time in one frame, can happen at different times in another frame. e. e

Answers

The correct answer is Option A and C.

The idea that the rules of physics are the same and can be expressed in their most basic form in all inertial frames of reference is the first postulate of special relativity. The assumption that the speed of light, or c, is a constant regardless of the source's relative motion is known as the second postulate of special relativity.

What are Albert Einstein postulates?

In all inertial reference frames, the rules of physics take the same form. Independent of the observer's speed, light moves across empty space at a specific speed (or source). The gravity formalism should be consistent with Newtonian gravity at low speeds.

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A constriction in a pipe reduces its diameter from 4.0 cm to 2.0 cm. where the pipe is narrow the water speed is 8.0 m/s. where it is wide the water speed is:_______
a. 2.0 m/s
b. 4.0 m/s
c. 8.0 m/s
d. 16 m/s
e. 32 m/s

Answers

Option a) 2.0m/s

So, where it is wide, speed is 2 m/s

Calculation

According to equation of continuity

A1V1 =A2V2

A1= [tex]\pi[/tex][tex](2*10^{-2}) ^{2}[/tex]

A2 = [tex]\pi (1*10^{-2}) ^{2}[/tex]

V2 = 8m/s

solving by the equation, we have

v1 = 2 m/s

Equation of continuity

An equation that describes the movement of a certain amount is known as a continuity equation or transport equation. It can be generalized to apply to any substantial quantity, but it is especially straightforward and effective when applied to conserved quantities.

Since mass, energy, momentum, electric charge, and other natural quantities all remain constant under the proper circumstances, continuity equations can be used to explain a wide range of physical events.

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