what will happen if the primary hydraulic brake circuit fails, due to a leak in a brake line, on a vehicle with a dual split master cylinder

Answers

Answer 1

If the primary hydraulic brake circuit breaks, the brake pedal will either feel spongy or drop to the floor.

In a hydraulic brake, pressure is transferred from the regulating mechanism to the braking mechanism using brake fluid, which commonly contains glycol ethers or diethylene glycol.

Using a handlebar lever and piston, Frederick George Heath (Heath Hydraulic Braking Co., Ltd.), Redditch, England, created and installed a hydraulic (water/glycerine) brake system on a bicycle in 1904. He was awarded patent GB190403651A for "Improvements in Hydraulic Actuated Brakes for Cycles and Motors," as well as enhanced flexible rubber hydraulic pipes later on.

A four-wheel hydraulic (oil) braking system for a motor vehicle was created and installed in 1908 by Ernest Walter Weight of Bristol, England. In December 1908, he applied for a patent in Great Britain (GB190800241A).

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Related Questions

(a) the section ab in this arrangement has a collar that is on a smooth rod. draw the fbd of this section to write down three equilibrium equations.

Answers

The fbd of this section to write down three equilibrium equations
Fx
= 0, Fy = 0, T = 0.

Where Fx = sum of all horizontal forces, Fy = sum of all vertical forces, and T = sum of all torques

What is horizontal force?
Horizontal
force is any force that is applied parallel to the ground. It is the force that is applied perpendicular to the direction of motion. Horizontal force can be generated by any object, whether it is moving or stationary.

It is a type of force that is caused by a physical interaction between two objects, such as friction between two surfaces. Common examples of horizontal force include pushing, pulling, and dragging objects.

In physics, horizontal force is measured in newtons and is represented by the letter “F”. Horizontal force can be used to change the motion of an object, such as accelerating, decelerating, or reversing the direction of motion. It can also be used to keep an object in equilibrium, or balance.

Therefore, horizontal force plays an important role in everyday life and physics.

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a security technician is conducting a forensic analysis. which of the following actions is most likely to destroy critical evidence?

Answers

A forensic investigation is being done by a security technician. Running processes may be interrupted, broken down, or stopped without preserving the data required to identify the intrusion.

What is forensic investigation?

The first steps you take during a forensic inquiry are appropriate for protecting the evidence. storing a copy of all audit logs and log files. You are required to write a report on acquiring evidence that includes information about court employees. Use a hashing technique to generate a checksum.

An incident or series of incidents brought on by a security policy violation that negatively impact a company's capacity to conduct regular operations. assists as necessary at criminal sites. helps gather, package, track, and transport evidence for investigators and others. instructs department staff on best practices and appropriate packaging techniques.

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7.3.2: replace abbreviation. assign decoded tweet with user tweet, replacing any occurrence of 'ttyl' with 'talk to you later'. sample output with input: 'gotta go. i will ttyl.' gotta go. i will talk to you later.

Answers

The decoded tweet should be assigned to the user tweet, and "TTYL" should be replaced with "speak to you later." Example of output from an input: "Gotta go." TTYL, I'll say. Python must be used to complete this.

Examples of abbreviations are given below.

A method of shrinking something, typically a word or phrase, or the shorter version itself, is called an abbreviation. Mr. is referred to by the abbreviation "Mr.," and NASA is referred to by the acronym "NASA" (hey, that's also an abbreviation).

What is the abbreviation's short form?

A medical instruction abbreviated as NPO stands for nil (or nothing) per (by) os (mouth), and may be composed of a group of letters or words taken from the full version of the word or phrase. For instance, the word "abbreviation" itself can be represented by the abbreviations "abbr," "abbrev," or "abbrev."

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water flows through a 6 m wide unfinished rectangular concrete channel with a flow rate of 3 m3/s. head loss can be considered negligible. consider the following scenarios: a. *** the channel is flowing at an upstream depth of 0.20 m when it encounters a 5 cm bump. what is the flow depth over the bump (y2)? does the free surface elevation (y2 z2) rise or fall? b. the channel is flowing at an upstream depth of 0.35 m when it encounters a 12 cm depression. what is the flow depth over the depression? does the free surface elevation rise or fall?

Answers

The upstream depth of 0.35 m is too much to create the necessary pressure head that would keep the water surface level

What is surface level?

Surface level refers to the top or exposed layer of an object or area. It can be used in a variety of contexts, from describing the surface of the Earth, to the outside of a building, to the top layer of paint on a wall, to the top layer of a fabric. In all cases, the surface level is the first layer that is encountered. The surface level of an object or area can provide valuable information about its composition and characteristics, and can also be used to measure changes over time.

The flow depth over the bump (y2) will be 0.25 m, and the free surface elevation (y2 z2) will rise. This is because the bump causes the flow to accelerate, and the upstream depth of 0.20 m is not enough to create the necessary pressure head that would keep the water surface level, The flow depth over the depression (y2) will be 0.23 m, and the free surface elevation (y2 z2) will fall. This is because the depression causes the flow to decelerate, and the upstream depth of 0.35 m is too much to create the necessary pressure head that would keep the water surface level.

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How high can lumber be stacked?

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Lumber must be piled in a solid, self-supporting manner. Provided that timber must be handled manually is not stacked higher than 16 feet, lumber heaps cannot be more than 20 feet high.

All lumber should be stored in a secure, self-supporting manner. Before stacking used lumber, remove any nails. Using bracing that is firmly supported, stack and level lumber. If handling timber manually, limit stack height to 16 feet, and if utilising a forklift, limit stack height to 20 feet.

Materials in boxes should be banded or secured with cross-ties or shrink wrap. A more sturdy stack will be produced by interlocking boxes. Boxes can be supported by a pallet, which also makes moving them simpler.

To keep items safe, stack bags and bundles in rows that interlock one another. By stepping back the layers and cross-keying the bags at least every 10 layers, you may stack material that has been bagged.

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an element for sensing shear stress is positioned in a flat plate 1 meter from the leading edge. the element simply consists of a small plate, 1 cm x 1 cm, mounted flush with the wall, and the shear force is measured on the plate. the fluid flowing by the plate is air with a free-stream velocity of 30 m/s, a density of 1.2 kg/m3, and a kinematic viscosity of 1.5 x 10-5 m2/s. the boundary layer is tripped at the leading edge. what is the magnitude of the shear stress acting on the element?

Answers

The magnitude of the shear stress acting on the element is 1.76187 N/m².

What is shear stress?

Structures are broken by shear stress, which occurs along one or more planes. Although shear stress is frequently used in the study of physics, it is also occasionally used in other disciplines like engineering or geology. In engineering, shear stress is experienced by building materials, and in geology, it occurs on steep hills or mountains that could slide and cause landslides.

Shear stress is a force in and of itself, but it can also be viewed as a combination of forces. Shear stress, for instance, can be caused by a number of variables, including gravity pulling objects down a slope, the loss of frictional resistance provided by sand or rocks, or the lifting of heavy objects.

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does the interval suggest that 110 is a plausible value for the true average work of adhesion for uhpc adhered to steel?

Answers

110 is not a plausible value for the true average work of adhesion for uhpc adhered to steel

Part A)

Confidence Interval

Confidence interval = t a/2 * (sd/ Sqrt(n)) ± x

Where,

   x    = Mean

   sd   = Standard Deviation

   a    = 1 - (Confidence Level/100)

   ta/2 = t-table value

   CI   = Confidence Interval

Mean(x)=107.78

Standard deviation( sd )=1.076

Sample Size(n)=5

Confidence Interval = [ 107.78 ± t a/2 ( 1.076/ Sqrt ( 5) ) ]

=  [ 107.78 - 2.776 * (0.481) , 107.78 + 2.776 * (0.481) ]

=  [ 106.444,109.116 ]

Part B)

107 is a plausible value for the true average work of adhesion for UHPC adhered to steel, as the reason it lies in the range calculated in part A.

110 is out of bound

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a. explain the anisotropic and orthotropic behavior of some engineering material and compare it with the isotropic behavior. b. what is ductility and how it is measured? c. what is plastic-work and how it is calculated? d. explain true stress and true strain and find their relations with engineering stress and engineering strain. e. discuss different ways that you can manipulate the strength of metals.

Answers

a. Anisotropic materials display different properties when measured in different directions, whereas orthotropic materials display different properties when measured in three mutually perpendicular directions. Both anisotropic and orthotropic materials differ from isotropic materials, which display the same properties in all directions.

What is material?

Material is anything that exists in the physical world and can be used to create something. It can be in the form of a solid, liquid, or gas. Common materials include wood, metal, glass, plastic, rubber, paper, fabric, and stone. Materials can also be natural or synthetic, meaning they are either created by nature or created by humans. Materials are used in a variety of ways, from everyday items like clothing and furniture, to construction materials like brick and mortar, to electronic components. Materials are essential to our lives and the way we interact with the world around us.

b. Ductility is a measure of how much a material can be stretched, bent, or deformed before fracturing. It is usually measured using the percent elongation or percent reduction in area of a material specimen when it is subjected to a tensile test.

c. Plastic-work is the amount of work done by a material when it is deformed plastically. It is calculated by integrating the area under the engineering stress-strain curve.

d. True stress and true strain are measures of the actual stress and strain experienced by a material during a deformation. They are related to the engineering stress and strain by the factor of the cross-sectional area of the material specimen.

e. Different ways to manipulate the strength of metals include heat treatment, cold working, and alloying. Heat treatment involves heating and cooling the metal at specific temperatures to change its microstructure and strength. Cold working involves working the metal at a temperature below its recrystallization temperature to improve its strength. Alloying involves adding other elements to the metal to improve its strength.

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an electric water heater that uses a 10000 watt 120vac element will require a minimum overcurrent protection of

Answers

Answer: 83.333 amps

Explanation:

This can be calculated by dividing the wattage of the element (10,000 watts) by the voltage of the electrical supply (120 VAC), which gives a result of 83.333 amps. Overcurrent protection is used to prevent electrical circuits from carrying currents that are higher than their rated capacity, which can reduce the risk of electrical fires and other hazards.

Answer:

83.333

Explanation:

This can be calculated by dividing the wattage of the element (10,000 watts) by the voltage of the electrical supply (120 VAC), which gives a result of 83.333 amps.

What is SWL capacity?

Answers

SWL is the maximum safe load that a piece of lifting equipment may safely lift, move, hang, and lower to the ground without experiencing any issues. whose capacity is maximal.

The Normal Working Load (NWL), as it is commonly referred to, is the maximum safe force(SWL) that a piece of lifting equipment, lifting device, or accessory may apply to raise, suspend, or lower a specific mass without running the risk of breaking.

The maximum weight of a load that any piece of lifting equipment or accessory can safely support at any one moment is known as the "safe working load" of that piece of equipment or accessory.

In order to prevent overload, it is required by health and safety regulations that all makers of lifting accessories and equipment state the maximum safe operating load of their products. A piece of equipment that is overloaded may unintentionally release its burden or topple over, which might result in fatalities or serious injuries.

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a slab of insulating material has thickness 2d and is oriented so that its faces are parallel to the yz-plane and given by the planes x

Answers

a) Because there are no charges inside the slab's center, the electric field is zero according to Gauss's law.

What is an electric field?

Other charges exert forces on electric charges, such as the pushing apart or repelling of two positive charges. This is explained by claiming that an electric charge creates (or induces) an electric field all around it. Other nearby charges are then impacted by this electric field and are subject to forces.

Greater charges will be subjected to greater forces for a given electric field. The charge and the force are inversely related. The electric field strength, as defined by us, is

E = F/q

and as a result, the magnitude of an electric field is expressed in NC⁻¹, or newtons per coulomb of charge.

The direction of the electric field strength, which is a vector, corresponds to the direction that a positive charge would be forced to flow.

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21. which best describes the precondition of a method? it is an assertion that a. describe precisely the conditions that must be true at the time the method is called. b. initializes the parameters of the method. c. describes the effect of the method on its postcondition. d. explains what the method does. e. states what the initial values of local variables in the method must be.

Answers

The assumption that the parameters have values and are not null is an example of a precondition, which is a condition that must be true for your method code to function.

Although the approaches could do so, they are not required to. The precondition is what the procedure anticipates to function correctly. Making sure the precondition is true is the responsibility of the programmer calling the function. However, conscientious programmers also adhere to the following guidelines: Every effort should be made to identify precondition violations while writing a function. A predicate that must be true before entering a function is known as a precondition. It conveys how a function expects its arguments and/or object states to be.

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when a water-cooled chiller is operating normally, it can usually be left unattended, except for which component?

Answers

With the exception of the cooling tower, a water-cooled chiller may often be left unattended when it is functioning regularly.

One of the several sorts of chillers is one that uses water to cool the water used in projects, buildings for industry or home use, and then reintroduces the water into the process. In actuality, chillers move heat from one area that has to be kept at a certain temperature to another.

Water chillers, which are frequently used to cool goods and equipment, have a wide range of uses, including injection moulding, tool and die cutting, food and drink, chemicals, lasers, machine tools, semi-conductors, and more.

In contrast to air-cooled chillers, water-cooled chillers often require less replacement. They are less susceptible since they are not exposed to outside elements including rain, snow, ice, and heat.

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What is the limitation of wire rope?

Answers

If the total number of visible broken wires in any length of eight diameters exceeds 10% of the total number of wires, wire rope may not be utilised for the vessel's cargo gear.

If the rope exhibits other symptoms of significant deterioration, corrosion, or flaws. Working load limits usually have a substantial margin of safety since they are a portion of tensile strength. The working load limit for wire ropes is frequently set at 20% of tensile strength.

Since the service life of wire rope is limited, regular, exhaustive, and recorded inspections are necessary to spot component deterioration early on. The best strategy to identify, keep an eye on, and address wire fatigue problems is to carry out routine inspections as advised by the manufacturers. Physical inspections are the most reliable way to identify wire rope degradation, despite the availability of sensors like acoustic emission and electromagnetic.

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for a 64-kbyte, 2-way set associative cache, with 32-byte cache blocks, study the cache miss rate for the following loops, assuming:

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A computer has a 256 KByte, 4-way set, write-back, associative data cache with a 32 byte block size. Examine the cache miss rate for the following loops for a 64-kbyte, 2-way set associative cache with 32-byte cache blocks.

What is 64-kbyte?

The block size of 8 words is used to create a 16 KB 4-way set-associative cache memory unit. Miss rate is plotted against cache size and associativity level; as block size is increased past 64 bytes, miss rate increases. However, we currently have a 4-way set associative cache of 128 KB. Since cache lines are 32 bytes and each route is 32 KB.

The second-level cache has a total capacity of 2MBytes and is divided into 32-Byte blocks. It is a two-way set associative, write-back, write-allocate cache. The miss-rate analysis.

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.Consider a very long fin of rectangular cross section. The base of the fin is at 300°C while the surrounding temperature is 25°C. The thermal conductivity of the material is 210 W/m K. If the temperature at a distance 40 cm from the base of the fin should not reach 45°C determine the required convection heat transfer coefficient. The section of the fin is 3 mm x 15 mm.

Answers

The pace at which a material heat up by conduction via a certain unit area is known as thermal conductivity. In general, the rate of heat transfer increases with increasing thermal conductivity and vice versa.

What role of thermal conductivity in a material?

The property of a substance that directly relates to its capacity to transport heat is known as thermal conductivity (). Conduction is the process of transferring energy within a substance without the material itself moving.

Therefore, A crucial factor is thermal conductivity, since it determines temperature gradients both during material growth and inside of devices.

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A layer of padding is added to car dashboards because it can reduce some injuries during a collision. How does the padded dashboard make people safer?.

Answers

Answer:

If a crash were to happen it would help ease the impact and reduce the amount of traumatic head injury.

Explanation:

.Write a program that uses a void function void miles_to_km() to generate a kilometer
conversion table for all even kilometers from 2 miles to 62 miles. Use two decimal
places for kilometers.

Answers

Explanation:

rational

Step-by-step explanation:

The discriminant (d) of a quadratic equation ax^2 + bx + c = 0ax

2

+bx+c=0 is:

\boxed{\mathrm{d =} \ b^2 - 4ac}

d= b

2

−4ac

.

If:

• d > 0, then there are two real solutions

• d = 0, then there is a repeated real solution

• d < 0, then there is no real solution.

In this question, we are given the quadratic equation 3x^2 + 4x - 2 = 03x

2

+4x−2=0 . Therefore, the discriminant of the equation is:

b² - 4ac = (4)² - 4(3)(-2)

= 16 - (-24)rational

Step-by-step explanation:

The discriminant (d) of a quadratic equation ax^2 + bx + c = 0ax

2

+bx+c=0 is:

\boxed{\mathrm{d =} \ b^2 - 4ac}

d= b

2

−4ac

.

If:

• d > 0, then there are two real solutions

• d = 0, then there is a repeated real solution

• d < 0, then there is no real solution.

In this question, we are given the quadratic equation 3x^2 + 4x - 2 = 03x

2

+4x−2=0 . Therefore, the discriminant of the equation is:

b² - 4ac = (4)² - 4(3)(-2)

= 16 - (-24)

= 40

Since the discriminant, 40, is greater than zero, the quadratic equation has 2 rational solutions.

= 40

Since the discriminant, 40, is greater than zero, the quadratic equation has 2 rational solutions.

explain how an instrumentation amplifier is able to rpovide better cmrr compared to a regular difference amplifier

Answers

In comparison to a typical op-amp, an instrumentation amplifier has lower noise and a greater common mode rejection ratio.

When a differential signal needs to be amplified in the presence of a potential substantial common-mode input, such as significant electromagnetic interference, a high CMRR is necessary (EMI). Audio transmission via balanced lines for sound reinforcement or recording is one example.

When there is significant noise present, an instrumentation amplifier (IA) is utilised to give a lot of gain for very low-level signals. High gain, a large common-mode rejection ratio (CMRR), and extremely high input impedance are IAs' main characteristics.

We may raise the CMRR by either lowering common mode voltage gain or raising differential voltage gain; the greater the CMRR, the better the op-capacity amp's to reject unwanted noise and EMI. Emitter resistance RE should be raised to boost CMRR.

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To avoid carbon monoxide poisoning, use the heater or air conditioner in a parked car with the windows closed.T/F

Answers

Answer: false

Explanation:

because when you get in the car the cm will build up

g test the getcurrenttime() method by setting the hours and minutes of a clock variable to some values and calling the method. print the string return value to check whether you get the expected output.

Answers

Code for the getcurrenttime()method :

Program :

COleDateTime  time = COleDateTime::GetCurrentTime();

TIME_ZONE_INFORMATION timeZoneInformation;

DWORD dwTZ = GetTimeZoneInformation(&timeZoneInformation);

if(dwTZ == TIME_ZONE_ID_STANDARD || dwTZ == TIME_ZONE_ID_DAYLIGHT)

{

   SYSTEMTIME timeUTC

   dt.GetAsSystemTime(&timeUTC);

   SYSTEMTIME timeLocal;

   SystemTimeToTzSpecificLocalTime(&timeZoneInformation, &timeUTC, &timeLocal);

   dt = COleDateTime(&timeLocal);

}

else

{

   //error handling

}

The above program gives the current time use of getcurrenttime() method helps in giving the current time of the system

What is a getcurrenttime() method ?

getcurrenttime() method is used for the api to find the current date of the particular area some times it gives the time according to the GMT so we need to convert the time according to the time zone

The above method helps in getting the current time, time zone information gives the local time as well as the final time

CTime values are calculated using coordinated universal time (UTC), which is the same as Coordinated Universal Time (Greenwich Mean Time, GMT). For more information on how the time zone is determined, see Time Management.

Set the nDST parameter to 0 to indicate that standard time is in effect, a value greater than 0 to indicate that daylight saving time is in effect, or a value less than zero to have the C run-time library code determine whether standard time or daylight saving time is in effect. The field tm isdst is required. If not set, its value is undefined and the return value from mktime is unpredictable. If timeptr is a reference to a tm structure returned by a previous call.

Hence to conclude the getcurrenttime() method gives the present place time with respect to hours and minutes

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Question 1 a design team completes their high-fidelity prototype of a responsive website. They confirm that the designs represent the expected user experience. What else must they confirm before handing off designs to the engineering team? select all that apply.

Answers

Prior to transferring designs to the engineering team, the design team must verify the following:

a. Design QA (Quality Assurance)

b. User flow

c. Individual screens

What exactly is a high-fidelity prototype?

The level of details and functionality incorporated into a prototype is referred to as the fidelity of the prototype.

In this sense, a high-fidelity prototype is an interactive computer-based depiction of the product that comes the closest to the final design in terms of details and functionality.

It is sometimes referred to as high-fidelity or hi-fidelity. High-fidelity refers to a level of comprehensiveness that enables in-depth analysis of usability issues and the drawing of inferences regarding user behavior.

The high-fidelity prototypes encompass both the user experience (UX) and user interface (UI) components of the product, including interactions, user flow, and user behavior.

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what cycle is composed of two isothermal and two constant-volume processes? group of answer choices the carnot cycle the otto cycle the stirling cycle the rankine cycle the ericsson cycle the dual cycle the diesel cycle the brayton cycle

Answers

Isothermal expansion, adiabatic expansion, isothermal compression, and adiabatic compression are the four processes involved.

However, they differ in the following processes: the Carnot cycle experiences two adiabatic processes in addition to the two heat addition processes, the Stirling cycle experiences two isochoric processes, and the Ericson cycle experiences two isobaric processes. The modified versions of the Carnot cycle are the Stirling cycle and the Ericsson cycle. Two reversible isothermal and two reversible constant volume (isochoric) processes make up a stirling cycle. and is equivalent to Carnot efficiency. Simply put, probability is the likelihood that something will occur. When we don't know how an event will turn out, we can discuss the likelihood or likelihood of several outcomes. Statistics is the study of events that follow a probability distribution.

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which aspects of this building are typical of cistercian structures and representative of their lifestyle, but are not found in cluniac buildings?

Answers

Cluniac buildings lack the painting and other features that make cistercian constructions distinctive and indicative of their way of life.

The Cluniac buildings did not fully grow until St. Bernard and his associates joined the Order in 1112; from this time on, a new spiritual militia emerged to challenge the rules established by the Order of Cluny a century earlier. The Cistercian monastery started off as a modest location where the first monks from Molesme had gone to construct their meagre cottages where they pitifully lived and farmed their land. Over 60,000 monks quickly dispersed from the Cister abbey and established other Cistercian monasteries in Italy, Spain, and Central Europe shortly after. The Cistercian Order had 343 monasteries when St. Bernard passed away in 1153; by 1200, there were 694.

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Project management software systems can be used to map out a project in different ways according to its complexity. Which of the following statements lists software results according to low-to- high project complexity?Multiple Choice flow chart, Gantt chart, PERT chart Gantt chart, flow chart, PERT chart flow chart, PERT chart, Gantt chart PERT chart, Gantt chart, flow chart

Answers

Lists software results according to low-to- high project complexity is flow chart, Gantt chart , PERT chart.

How are Flow, PERT and Gantt charts differet from each other?

Program (or project) evaluation and review method is abbreviated as PERT. A crucial statistical tool for project management that displays how a job or project is progressing. The PERT chart is a crucial tool for project managers since it shows them the direction in which the project is going and how long it will take to finish. The Gantt chart is a crucial subject in project management. It is a project management tool that enables the team members and project managers to monitor the development of the project. Because it displays the data in bar form, the Gantt chart may also be used as a statistical tool. A flowchart is a diagram that shows how a system, computer algorithm, or process works. They are frequently used in many different disciplines to examine, organize, enhance, and convey frequently complicated processes in simple, understandable diagrams.

Both flowcharts and Gantt charts are useful tools for project planning. However, each have unique purposes and applications when it comes to project execution. A flow chart can work on its own for short-term and minor projects, but a Gantt chart is preferable for complicated plans with a longer duration. PERT charts are helpful for extensive and complicated projects. For short, easy-to-understand tasks, a Gantt chart will be helpful.

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technician a says a vehicle may wander as a result of excessive negative caster. technician b says positive caster will result from excessive toe-in. who is correct?

Answers

Because severe negative caster might cause a vehicle to wander, and excessive toe-in will induce positive caster, both technicians a and b are right.

Excessive positive caster increases ride roughness or road shock as well as low-speed steering effort. On the other hand, too much negative caster makes the steering less stable at faster speeds and can even result in wander. Negative Caster - The caster is negative if the line slopes in the direction of the front of the vehicle. While driving straight ahead, negative caster will allow you to steer less around corners but may lead you to drift. The steer wheels will aggressively follow the road camber as a result of excessive caster, even to the point where the car is dragged down into depressions created by the road's traffic. This will make the car stray across the street, making it difficult for the driver to maintain control.

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Assume that two stars are in circular orbits about a mutual center of

mass and are separated by a distance a. Assume also that the angle of

inclination i and their stellar radii are r1 and r2.

(a) Find an expression for the smallest angle of inclination that will pro-

duce an eclipse. Hint: Refer to Figure 7. 8 of your text.

(b) If a = 2 AU, r1 = 10 R⊙, and r2 = 1 R⊙, what minimum value of i

will result in an eclipse?

Answers

Eclipsing stars have orbital planes that are parallel to the sky's plane. Since the length of ingress and the length of the eclipse rely on the disparity in the diameters of the stars

The orbital inclination over which eclipses can occur depends on the relative diameters of the stars, but in general, only a tiny percentage of the known binary systems will be observed to experience eclipses. The varying light has two functions. Since the length of ingress and the length of the eclipse rely on the disparity in the diameters of the stars, it enables the estimation of the respective radii of the stars. That is, if Δt1 is the total time between first and last contact, and Δt2 is the period of totality, assuming that the eclipse is annular or total, then.

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How do you calculate sling load?

Answers

Calculate the lifting capability and load on a sling leg as follows: To calculate the total minimum load on a sling leg, multiply the total weight of the load by the number of legs that are supporting it is sling load.

By using the sling angle factor chart below, you can calculate the load factor of sling load.

Add the minimal load on a sling leg to the load factor. The basket capacity needed to raise the weight safely is then calculated by multiplying that value by the number of legs.

For instance: Let's say a sling's two legs are to sustain a 2,000-pound weight at a 60° leg angle.

1,000 pounds total minimum weight on each leg of the sling is equal to 2,000 pounds split by two legs.

The related load factor for a 60° leg angle is 1.154, as seen in the chart below.

1,154 pounds is the result of multiplying the total minimum weight on each leg (1,000 pounds) by the load factor for a 60-degree angle.

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g the dc per-phase resistance is 14.5 ohms. the ac resistance is 1.5 times the dc value. calculate the per-phase synchronous impedance and per-phase reactance for the alternator. the synchronous impedance is to be calculated from the ratio of per-phase v (rated voltage, 208) to ia (short circuit) at the if required to produce rated v (208 volts) under open-circuit conditions.

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Synchronous impedance method (EMF method): The EMF method is another name for the synchronous impedance technique used to determine an alternator's voltage regulation.

The idea behind the synchronous impedance approach, also known as the EMF method, is to simulate a reactance in place of the armature reaction's effect. The synchronous impedance is constant when both the OCC and SCC are linear. When saturation begins above the O.C.C. knee point, the synchronous impedance reduces because the O.C.C. and S.C.C. are now becoming closer to one another. The idea behind the synchronous impedance approach, also known as the EMF method, is to simulate a reactance in place of the armature reaction's effect.

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What property of virtualization allows entire virtual machines to be saved as file that can moved or copied like any other file?

Question 2 options:
- Isolation
- Hardware Independence
- Partitioning
- Encapsulation

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Property of virtualization that allows entire virtual machines to be saved as file that can moved or copied like any other file is known as encapsulation

What is encapsulation?

Encapsulation is a way to restrict direct access to some elements of an object, so that the user cannot access state values ​​for all variables of a particular object. Encapsulation can be used to hide both data members and data functions or methods associated with an instantiated class or object. Encapsulation in programming has a few key benefits, such as:

Hiding data: Users will have no idea how classes are being implemented or stored. All that users will know is that values are being passed and initialized.More flexibility: Enables you to set variables as red or write-only. Easy to reuse: It's easy to change and adapt to new requirements with using encapsulation

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