A circuit-switching scenario in whichNcs users, each requiring a bandwidth of 25 Mbps, must share a link of capacity 150 Mbps.
A packet-switching scenario withNps users sharing a 150 Mbps link, where each user again requires 25 Mbps when transmitting, but only needs to transmit 10 percent of the time.

What is the probability that a given (specific) user is transmitting, and the remaining users are not transmitting?

Answers

Answer 1

Answer:

0.09

Explanation:

Packet switching involves breaking a message into packets and sending them independently. Since the user only needs to transmit 10 percent of the time, the probability that a given (specific) user is transmitting = 10% = 0.1

The  probability that a user is not transmitting = 100% - 10% = 90% = 0.9

Therefore, the probability that a given (specific) user is transmitting, and the remaining users are not transmitting = 0.1 * 0.9 = 0.09


Related Questions

is a street the same as a avenue

Answers

they're essentially the same thing so i'd say yes

What is land administration and cadastral survey

Answers

Cadastral surveying is the sub-field of cadastre and surveying that specialises in the establishment and re-establishment of real property boundaries. ... A cadastral surveyor must apply both the spatial-measurement principles of general surveying and legal principles such as respect of neighboring titles.

Consider a condenser in which steam at a specified temperature is condensed by rejecting heat to the cooling water. If the heat transfer rate in the condenser and the temperature rise of the cooling water is known, explain how the rate of condensation of the steam and the mass flow rate of the cooling water can be determined. Also, explain how the total thermal resistance R of this condenser can be evaluated in this case.

Answers

Answer:

Q = [ mCp ( ΔT) ] \(_{cooling water }\)

(ΔT)\(_{cooling water}\) and  Q  is given

\(m_{cooling water}\)  = \(\frac{Q}{Cp[ T_{out} - T_{in} ] }\)

next the rate of condensation of the steam

Q = [ m\(h_{fg}\) ]\(_{steam}\)

  \(m_{steam} = \frac{Q}{h_{fg} }\)

Total resistance of the condenser is

R = \(\frac{Q}{change in T_{cooling water } }\)

Explanation:

How will the rate of condensation of the steam and the mass flow rate of the cooling water can be determined

Q = [ mCp ( ΔT) ] \(_{cooling water }\)

(ΔT)\(_{cooling water}\) and  Q  is given

\(m_{cooling water}\)  = \(\frac{Q}{Cp[ T_{out} - T_{in} ] }\)

next the rate of condensation of the steam

Q = [ m\(h_{fg}\) ]\(_{steam}\)

  \(m_{steam} = \frac{Q}{h_{fg} }\)

Total resistance of the condenser is

R = \(\frac{Q}{change in T_{cooling water } }\)

the construction industry has joined the ranks of other industries and now carries out business across national borders. in other words, the construction industry has become a(n)

Answers

the construction industry has joined the ranks of other industries and now carries out business across national borders. in other words, the construction industry has become a(n) globalized industry

The construction industry has become a globalized industry. It has expanded its operations beyond national boundaries, engaging in business activities across different countries. This shift towards globalization has opened up new opportunities for construction companies to undertake projects on an international scale, collaborate with foreign partners, and access global markets. It has facilitated the exchange of knowledge, resources, and expertise, leading to the growth and development of the construction sector worldwide. With increased cross-border business transactions, the construction industry has become an integral part of the global economy.

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Let X and Y be independent Bernoulli variables such that P(X = 1) = p, P(Y = 1) = q for some 0 ≤ p, q ≤ 1. Find P(X ⊕2 Y = 1)

Answers

Answer:

dddddddddddddddddddddddddddddddddddddd

Explanation:

engineering controls are devices such as self sheathing needles and sharps containers to block or eliminate the sharp risk.

Answers

Engineering controls are devices that block or eliminate sharps hazards, such as self-coating needles and sharps containers.

Standard precautions include hand washing and use of appropriate personal protective equipment (PPE) when contact with a patient's bodily fluids is anticipated. Engineering controls are devices that isolate or eliminate the risk of blood-borne pathogens from the workplace (OSHA, 2019a). Management of environmental hazards is part of policies to reduce the potential for the spread of blood-borne pathogens and other potential infectious agents.

Engineering controls protect workers by eliminating hazardous conditions or creating barriers between workers and hazards. Examples include local exhaust ventilation to trap and remove airborne emissions and mechanical guards to protect workers.

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in cold climates, water pipes may freeze and burst if proper precautions are not taken. In such an occurrence, the exposed part of a pipe on the ground ruptures, and water shoots up to a height z2, of 52 m. Estimate the gage pressure of water in the pipe. The gage pressure of water in the pipe is determined to be kPa..

Answers

Answer:

Gauge Pressure = 408.3 KPa

Explanation:

The pressure inside the pipe can be given in terms of the elevation, by the following formula:

P = ρgΔz

where,

P = Absolute Pressure = ?

ρ = Density of Water = 1000 kg/m³

g = acceleration due to gravity = 9.8 m/s²

Δz = elevation = 52 m

Therefore,

P = (1000 kg/m³)(9.8 m/s²)(52 m)

P = 509.6 KPa

Now, for gauge pressure:

Gauge Pressure = P - Atmospheric Pressure

Gauge Pressure = 509.6 KPa - 101.3 KPa

Gauge Pressure = 408.3 KPa

A reinforced concrete column 600 mm diameter has 6 steel rods of 25 mm embedded in it and carries a load of 800 kN. Find the stresses in steel and concrete. Take E = 200GPa for steel and for concrete, E = 25 GPa. Also find the extension of column due to the load.

Answers

The stresses in steel and concrete are 1,631.29 MPa and 0.2535 MPa respectively.

The extension of column due to the load is 0.0017mm

How do we find the values of stresses?

To find the stresses in the steel and concrete, we need to use the principle of stress-strain proportionality. The formula for stress is:

Stress (σ) = Load (P) / Area (A)

The area of the steel rods is:

A = (π/4) * (25 mm)^2 = 490.87 mm^2

The area of the concrete is:

A = (π/4) * (600 mm)^2 = 314,159 mm^2

The stress in the steel is:

σ_steel = P / A = 800 kN / 490.87 mm^2 = 1,631.29 MPa

The stress in the concrete is:

σ_concrete = P / A = 800 kN / 314,159 mm^2 = 0.2535 MPa

To find the extension of the column, we need to use the formula for strain:

Strain (ε) = Extension (ΔL) / Original length (L)

We can use the principle of linear elasticity to find the extension of the column due to the load, which states that:

Stress = Young's modulus * Strain

We can use the formula of stress and strain to find the extension of the column:

ΔL = (PL)/(AE)

L = 600mm, P = 800kN and A =314,159 mm^2

ΔL = (80010^310^-360010^-3)/(314,1592510^9) = 0.0017 mm

So the extension of column due to the load is 0.0017mm

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Add a class called VotingMaching that contains: § A democratVotes of int type that defines the number of votes the Democrat candidate received. § A republicanVotes of int that defines the number of votes the Republican candidate received. § A no-arg constructor that set all candidates' tallies at zero, § The accessor methods (getters) for all data fields. § The method castDemocratVote(), which casts a single vote for the Democrat candidate. § The method castRepublicanVote(), which casts a single vote for the Republican candidate. § The method stuffDemocratBallot()that takes a numVotes of int, which increase the democratVotes by numVotes votes for the Democrat. 2 of 3 § The method stuffRepublicanBallot()that takes a numVotes of int, which increase the republicanVotes by numVotes votes for the Republican, § A getTotalVotes() that returns the total number of votes cast in the race. § A getDemocratVotePercentage() that returns the percentage of votes cast for the Democrat candidate. § A getRepublicanVotePercentage() that returns the percentage of votes cast for the Republican candidate in java

Answers

The Java code is given below:

Java Code

VotingMachine vm = new VotingMachine();

vm.voteDemocrat();

vm.voteDemocrat();

vm.voteRepublican();

vm.voteIndependent();

vm.countDemocrat(); // returns 2

vm.countRepublican(); // returns 1

vm.countIndependent(); // returns 1

vm.whoWon(); // returns “Democrat”

The VotingMachine class remembers and counts votes in a simple election with only parties, democrats and republicans.

The state of VotingMachine-objects is the current count (integers) of votes for democrats and republicans. In the initial state, both counters should be zero.

The VotingMachine class has two method for reading the current state, getDemocratTally() and getRepublicanTally(), and three methods for altering the state, clear(), voteDemocrat() and voteRepublican(), with the following behavior:

getDemocratTally - returns the current number (an int) of democrat votes

getRepublicanTally - returns the current number (an int) of republican votes

voteDemocrat() - registers a(nother) democrat vote

voteRepublican() - registers a(nother) republican vote

clear - clears all the votes and returns to the initial state

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a two-terminal solid-state device that allows current to flow in both directions once breakover voltage is reached and so long as holding current remains high enough is a(n) _____.

Answers

A two-terminal solid-state device that allows current to flow in both directions once breakover voltage is reached and so long as holding current remains high enough is a Thyristor.

What is a thyristor?A thyristor is a solid-state device that works as a switch, rectifier, and voltage controller. Thyristors are used to regulate power and electronic signals, particularly in applications such as DC motor control, heating control, and AC power transmission. They are also used in light dimming and inrush current limiting circuits.

A thyristor can operate in various modes, including reverse blocking, forward blocking, and bidirectional. The term "thyristor" is a generic name for any device with a multilayer semiconductor structure similar to that of a diode and a controlled switch that can be turned on and off. The name "thyristor" comes from its use as a "solid-state" equivalent of the thyratron tube, a vacuum tube.

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Convert 25.3 feet to meters

Answers

heyy please let me know if it’s right or wrong but i believe it’s 7.711 meters have a good day !

2. A 20 H inductor and a 10 H inductor are connected in parallel. The total circuit inductance is
O A. 4.68 H
OB.3.68 H
OC. 2.45 H
O D. 6.67 H

Answers

Answer:

OB.3.68 is the answer btw please give thanks

Before taking off a plane travels at a speed of 1/4 km per second. The runaway is 5 km. How many seconds does it take the plane to get to the end of the runaway?

Answers

Answer:

1 5segundos

Explanation:

Assume that words has been initialized with one or more strings containing only lowercase letters. Which of the following code segments can be used to replace /* missing implementation */ so that findLastWord will work as intended?
A. int maxIndex = 0;
for (int k = 0; k < words.length; k++)
{if (words[k].compareTo(maxIndex) > 0){maxIndex = k;}}return words[maxIndex];
B. int maxIndex = 0;for (int k = 1; k <= words.length; k++){if (words[k].compareTo(words[maxIndex]) > 0){maxIndex = k;}}
return words[maxIndex];
C. int maxIndex = 0;
for (int k = 1; k < words.length; k++){if (words[k].compareTo(words[maxIndex]) > 0){maxIndex = k;}}
return maxIndex;
D. String maxWord = words[0];for (int k = 1; k < words.length; k++){if (words[k].compareTo(maxWord) > 0){maxWord = k;}}
return maxWord;
E. String maxWord = words[0];for (int k = 1; k < words.length; k++){if (words[k].compareTo(maxWord) > 0){maxWord = words[k];}}
return maxWord;

Answers

Code segment E can be used to replace /* missing implementation */ so that `findLastWord` will work as intended. In the `findLastWord` function, the goal is to find the word with the highest lexicographic order (i.e., the last word in alphabetical order). Let's analyze each code segment to determine which one correctly implements this logic.

A: This code segment is incorrect because `compareTo` expects a `String` argument, but `maxIndex` is an integer. Additionally, it compares the word with an index instead of comparing words directly.

B: This code segment is almost correct. However, the loop condition `k <= words.length` is incorrect because array indices start from 0. It should be `k < words.length`.

C: This code segment is incorrect because it returns the index of the word with the highest lexicographic order instead of the word itself.

D: This code segment is incorrect because it compares words using `compareTo` but assigns the index `k` to `maxWord` instead of the word itself.

E: This code segment is correct. It initializes `maxWord` with the first word in the array and iterates over the remaining words. It compares each word to `maxWord` using `compareTo` and updates `maxWord` if a word with a higher lexicographic order is found. Finally, it returns the word stored in `maxWord`, which will be the last word in alphabetical order. Therefore, code segment E is the correct choice to replace /* missing implementation */.

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A 5 MHz clock that generates a 0 to 5V pulse train with a 30% duty cycle is connected to input X of a two input OR gate that has a 20nS propagation delay. The clock also goes to an inverter with a 10ns propagation delay. The output of the inverter goes to the Y input of the OR gate.

a. Draw the circuit
b. Plot the output of the clock for two cycles. Show times and voltages.
c. Plot the output of the inverter in the same plot. Show times and voltages.
d. Plot the output of the OR gate in the same plot. Show times and voltages.

Answers

Answer:

Timing Diagrams 15 pts. A 10 MHz clock that generates a 0 to 5V pulse train with a 30% duty cycle is connected to input X of a two input OR gate that has a 20nS propagation delay. The clock also goes to an inverter with a 10 ns propagation delay. The output of the inverter goes to the Y input of the OR gate. a) Draw the circuit. 2 pts. b) Plot the output of the clock for two cycles. Show times and voltages. 5 pts. c) On the same page as part (b) plot the output of the inverter. Show times and voltages. 3 pts. d) On the same page as parts (b & c) plot the output of the OR gate. Show times and voltages. 5 pts.

which type of duration estimating technique is best if you have a quantitative data to work with, such as square footage?

Answers

In the context of project management, if you have quantitative data such as square footage, the parametric estimating technique is best suited for duration estimation.

Which duration estimating technique is best suited for quantitative data such as square footage?

In the context of project management, if you have quantitative data such as square footage, the parametric estimating technique is best suited for duration estimation.

Parametric estimating involves using historical data or statistical relationships to determine the duration of a task or project. By analyzing past projects or available data, you can establish a relationship between the square footage and the time required for completion.

This allows for more accurate and reliable estimates based on measurable parameters. Parametric estimating provides a systematic approach that leverages existing data to make predictions, making it a suitable technique when dealing with quantitative information.

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In literature it is stated that in controlling of a conical tank, PID fails to give fast response because of the non-linearity present in the system. What other type of the controlling methods proposed in the literature? Summarize 1 research article published in one of the peer-reviewed journals. Explain their approach briefly.

Answers

Model Predictive Control (MPC) is a control model of a conical tank.

MPC is a control method. It uses a mathematical model of the system to predict its future behavior and optimize control actions accordingly. It is known for its ability to handle non-linear systems effectively.

MPC formulates an optimization problem to determine the control actions that optimize a performance criterion, subject to system constraints. The control actions are computed over a finite time horizon, but only the first control action is implemented. The optimization problem is then solved again at the next time step, taking into account the updated system state.

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assume that a pitot tube is inserted into the test-section flow of the wind tunnel in problem 3.4. the tunnel test section is completely sealed from chapter 3 fundamentals of inviscid, incompressible flow 319 the outside ambient pressure. calculate the pressure measured by the pitot tube, assuming the static pressure at the tunnel inlet is atmospheric.

Answers

The Pitot tube measures air velocity directly by means of a pressure transducer which generates an electrical signal which is proportional to the difference between the pressure generated by the total pressure and the still air (static pressure).

Fluid flow velocity is measured using a pitot tube (pitot probe; /pito/ PEE-toh). It was developed in the early 18th century by a French engineer named Henri Pitot. and changed into its current form by a French scientist named Henry Darcy in the middle of the 19th century. It is frequently employed to establish the airspeed of aircraft,[3] the waterspeed of boats, and the flow velocity of liquids, air, and gases in industry

P0 = P2 + 12 V2z = 8.77 x 104 + 12 (1.23)(147)2 = 1.01 x 103 N/m2 p1 - P2 = w H = 1.33 x 104 N/m2 (1.33 x 105)(0.1) = 1.33 x 104 N/m2 p2 = P1 - P1 - 1.33 x 104 = 1.01 x 105

Note: As the flow in the tunnel is pulled directly from the open ambient surroundings and since an inviscid flow has no losses between the intake and the test section, it makes logical that the total pressure in the test section would equal one atmosphere.

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A pequin walks 10 feet in six second how far does the pequin wals in 45 seconds

Answers

Answer:

7.5 feet

Explanation:

45 divided by 6 is 7.5

Answer:

7.5 feet

Explanation:

45 divided by 6 is 7.5

What are the disadvantages of Mechanical Systems

Answers

Mechanical systems have some limitations which can pose challenges in terms of efficiency, maintenance and durability.

What are the specific drawbacks of mechanical systems?

Mechanical systems have inherent disadvantages as they tend to be less energy-efficient compared to newer technologies because they rely on mechanical processes that may generate friction and heat, leading to energy loss.

This systems require regular maintenance to ensure they continue to operate effectively and any malfunction can result in significant downtime and repair costs. They are also prone to wear and tear over time which can lead to reduced performance.

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If the goal is to power three-phase AC motors, what kind of power distribution panel would you want to use?

Answers

There are different kinds of Ac motors. If the goal is to power three-phase AC motor, the three-phase motor can be run from a single-phase power source.

It is possible to run a 3 phase motor on single phase power?

The act of running a three phase motor on single phase power is very possible. The thing one has to do is  to connect or wire the single phase power to the input side of the variable frequency drive that one has and then connect or wire the three phase power of one's motor to the output part of the drive.

Conclusively, A three phase system is known to be able to send a lot of power when viewed with the single phase system.  The three circuit conductors is known to have three alternating currents

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The component has an exponentially distributed reliability with a mean of 2000 hours what is the probability that it will fail after 3000 hours?

Answers

Answer:

ABCDEFGHIJKLMNOPQRSTUVWXYZ

What's the difference between Gaussian Mixture Model and K-Means?

Answers

Gaussian Mixture Model is a probabilistic clustering algorithm that assumes data points are generated from a mixture of Gaussian distributions, whereas K-Means is a non-probabilistic clustering algorithm that partitions data into K clusters based on minimizing the sum of squared distances.

The main difference between Gaussian Mixture Model and K-Means is that GMM allows for soft clustering, meaning that each data point is assigned a probability of belonging to each cluster, while K-Means only allows for hard clustering, where each data point is assigned to a single cluster.

Additionally, GMM can capture complex data distributions by modeling clusters as Gaussian distributions with different means and variances, while K-Means assumes that each cluster has a spherical shape and equal variance. Therefore, GMM can provide a more nuanced and flexible clustering solution but may be computationally more expensive than K-Means.

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A ceramic specimen with an elastic modulus of 300 GPa is under a tensile stress of 800 MPa. Will it fracture if its most severe flaw is an internal crack of 0.30 mm long with a tip radius of curvature in the amount of 0.0015 mm? Please justify your conclusion. (Hint: Compare the largest stress in the specimen around the crack to the theoretical strength which is roughly E/10).

Answers

Answer:

16Gpa < 30 Gpa

there would be no fracture

Explanation:

fracture can occur if the maximum strength at the top of the biggest flaw is more than the theoretical fracture

to get the theoretical strength =

e/10 = 300/10

= 30 Gpa

we get the magnitude at the buggest flaw

= 2σ√a/ρt

σ = 800

ρτ = 0.0015

a= 0.3/2

\(=2*800\sqrt{\frac{\frac{0.3}{2} }{0.0015} }\)

= \(=2*800*\sqrt{100} \\=2*800*10\\=16000MPa\)

= 16Gpa < 30 Gpa

the fracture is not going to happen given that the maximum strenght is smaller than the theoretical fracture strength.

What indicates that the charge on the CMOS battery could be getting low?

Answers

Answer:

Explanation:

There are several indicators that the charge on a CMOS battery could be getting low, including:

System time and date settings resetting after the computer is turned off.Incorrect time or date settings when the computer is turned on.CMOS checksum error messages appearing during boot up.Loss of BIOS settings.

It is important to note that the CMOS battery is responsible for maintaining the BIOS settings, including the date and time, even when the computer is turned off. When the charge on the battery gets low, these settings can become unstable or be lost, which can lead to the above symptoms.

Into which of the six kingdoms should the organism be placed? Construct a response to state your claim, use evidence, and support with reasoning. Include the list of common characteristics of the kingdom and why it does not belong in the other kingdoms in your justification.

Into which of the six kingdoms should the organism be placed? Construct a response to state your claim,

Answers

Answer: The organism is an amoeba belonging to the protist kingdom.

Explanation: The organism cannot be placed in the plantae kingdom because the organism does not contain a cell wall or chloroplasts. The organism also cannot be bacteria or Archaebacteria because it has a nucleus. The organism cannot belong to the fungi or animalia kingdom because it contains psedupodium.

the tank of the air compressor is subjected to an internal pressure of 96 psi (gauge). if the internal diameter of the tank is 31 in., and the wall thickness is 0.25 in., determine the stress components acting at point a. please complete this question on a separate piece of paper which you will upload at the end of this quiz. you may ignore the answer box for this problem.

Answers

At point A in the wall of the tank, the hoop stress (circumferential) is 41.26 MPa, and the longitudinal stress is 20.63 MPa.

How to solve for the stress

We can substitute the given values into these formulas. Note that pressure needs to be converted from psi to Pa (1 psi = 6894.76 Pa), diameter should be halved to get radius, and inches should be converted to meters (1 inch = 0.0254 m) for consistency in SI units.

p = 96 psi * 6894.76 Pa/psi = 662,617 Pa

r = 31 inch * 0.0254 m/inch / 2 = 0.3937 m

t = 0.25 inch * 0.0254 m/inch = 0.00635 m

Now calculate the stresses:

σθ = pr/t = (662,617 Pa * 0.3937 m) / 0.00635 m = 41,258,170 Pa = 41.26 MPa

σL = pr/2t = (662,617 Pa * 0.3937 m) / (2*0.00635 m) = 20,629,085 Pa = 20.63 MPa

So, at point A in the wall of the tank, the hoop stress (circumferential) is 41.26 MPa, and the longitudinal stress is 20.63 MPa.

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Express the following numbers in decimal:
(a) (11001.1011)
2

(b) (A3.C)
16

(c) (75.16)
8

(d) (ABCD)
16

Answers

(a)

11001.1011₂ = 1×2⁴ + 1×2³ + 1×2⁰ + 1×2 ⁻¹ + 1×2 ⁻³ + 1×2 ⁻⁴

… = 16 + 8 + 1 + 1/2 + 1/8 + 1/16

… = 411/16

(b) In base 16, we have A₁₆ = 10 and C₁₆ = 12, so

A3.C₁₆ = 10×16¹ + 3×16⁰ + 12×16 ⁻¹

… = 160 + 3 + 12/16

… = 2620/16 = 655/4

(c)

75.16₈ = 7×8¹ + 5×8⁰ + 1×8 ⁻¹ + 6×8 ⁻²

… = 56 + 5 + 1/8 + 6/64

… = 3918/64 = 1959/32

(d) B₁₆ = 11 and D₁₆ = 13, so

ABCD₁₆ = 10×16³ + 11×16² + 12×16¹ + 13×16⁰

… = 40960 + 2816 + 192 + 13

… = 43981

This occurs when a layer of water builds between the wheels of the vehicle and the road surface, leading to a loss of traction that prevents the vehicle from responding to control inputs.

Answers

Aquaplaning or hydroplaning by the tires of a road vehicle, aircraft, or other wheeled vehicle happens when a coating of water builds between the wheels of the vehicle and the road surface, leading to a failure of traction that controls the vehicle from responding to govern inputs.

What is Aquaplaning or hydroplaning?

Aquaplaning or hydroplaning by the tires of a road vehicle, aircraft, or other wheeled vehicle happens when a coating of water builds between the wheels of the vehicle and the road surface, leading to a failure of traction that controls the vehicle from responding to govern inputs. Aquaplaning, also understood as hydroplaning, is a situation in which standing water, slush, or snow, drives the moving wheel of an aircraft to lose contact with the load-bearing surface on which it stands rolling with the impact that braking action on the wheel stands not effective in decreasing the ground speed of the aircraft.

When driving on wet roads at increased speed, a wedge of water can create up between the tire and the road surface. The tire loses road contact, and the vehicle stands no longer responsive to steering. This phenomenon exists understood as aquaplaning or hydroplaning.

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noooo plssschvwekjshdjkshdjkshdjksahdk

Answers

Huh? Kffjkdkdodjenxkrkdkre

Answer:

chehdhfhfhd

Explanation:

fjrjshrhdhr

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