Is it possible to view Event Log files from a dead machine? If so, how?

Answers

Answer 1

Yes, it is possible to view Event Log files from a dead machine. However, it requires some technical expertise and specialized tools.

First, the hard drive from the dead machine needs to be removed and connected to another functioning computer. Then, the user can use software tools such as Windows Event Viewer or third-party tools like EventLog Inspector to view the Event Log files stored on the hard drive. These tools can extract and analyze the log files to provide insights into the system's behavior leading up to the failure. It is important to note that this process can be time-consuming and complicated, and it is recommended to seek the help of a professional if unsure of the steps involved. In summary, while it is possible to view Event Log files from a dead machine, it requires technical expertise and specialized tools.

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Related Questions

A data analyst prepares to communicate to an audience about an analysis project. They consider what the audience members hope to do with the data insights. This describes establishing the setting.
True
False

Answers

Assuming a data analyst prepares to communicate to an audience about an analysis project and considers what the audience members hope to do with the data insights, this describes establishing the setting: False.

What is data?

In Computer technology, data is any representation of factual instructions or information in a formalized and structured manner, especially as a series of binary digits (bits), symbols, characters, quantities, or strings that are used on computer systems in a company.

Who is a data analyst?

A data analyst can be defined as an expert or professional who is saddled with the responsibility of inspecting, transforming, analyzing, and modelling data with the sole aim of discovering useful information, providing insights, and creating informed conclusions, in order to support decision-making and create a completed report.

In Computer technology, audience engagement in data storytelling simply refers to a process that is typically focused on considering all of the issues that audience members hope to do and achieve with the data insights provided by a data analyst.

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The total power measured in a three-phase system feeding a balanced wye-connected load is 12 kW at a power factor of 0.6 leading. If the line voltage is 470 V, calculate the line current IL

Answers

To calculate the line current IL, we first need to determine the apparent power (S) in the system.

We know that the total power (P) is 12 kW and the power factor (PF) is 0.6 leading. Therefore,

P = S x PF

12,000 W = S x 0.6

S = 20,000 VA

Next, we can use the equation for apparent power to calculate the line current:

S = √3 x VL x IL

Where √3 is the square root of three (1.732) and VL is the line voltage (470 V).

Substituting the values we know:

20,000 VA = 1.732 x 470 V x IL

IL = 26.4 A

Therefore, the line current IL is 26.4 A.

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How many cables enter the 2-gang wall switch box located next to the side garage door?

Answers

Answer:

According to the National Electric Code Paragraph 404 section 2, the cables entering into the 2-gang wall must be 4 in number and it must be fitted with a neutral conductor terminal as well.

Cheers

A school bus with its flashing red signals on has stopped on a non-divided highway; you must?

Answers

In a case whereby a school bus with its flashing red signals on has stopped on a non-divided highway then  you must stop until the signal lights are no longer flashing and all passengers have cleared the roadway.

What is the function of red light in traffic rules?

The function of red light in traffic rules is to tell the other road user that they should stop for a while to tell them thaqt there is a danger.

It should be noted that In a case whereby a school bus with its flashing red signals on has stopped on a non-divided highway then  you must stop until the signal lights are no longer flashing and all passengers have cleared the roadway.

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A chemist mixed two substances together: a colorless liquid with a strong smell and a white solid with no smell. The substances' repeating groups of atoms are shown above on the left. After they were mixed, the chemist analyzed the results and found two substances. One ending substance had the repeating group of atoms shown above on the right. Is the ending substance the same substance as the colorless liquid? What happened to the atoms of the starting substances when the ending substances formed? Be sure to explain your answers to both of these questions.

Answers

Answer:

[a]. It is the same substance as the colorless liquid with a strong smell.

[b]. the substance with colorless liquid with a strong smell and a white solid with no smell are being used up to produce the ending substance had the repeating group of atoms shown above on the right and the other ending substance.

Explanation:

Atoms are referred to be the smallest units of a substance although it can be sub-divided into smaller units such as proton, neutron and electron. When atoms combines in group they form a molecule.

From the question above it is seen that two substances were mixed together to give two ending substances that is:

substance A [ colorless liquid with a strong smell] + substance B[white solid with no smell] ---------> substance C[ repeating group of atoms shown above on the right] + substance D.

The ending substance that is, substance C is the same substance as substance A which is the colorless liquid with a strong smell.

When the substance A reacted with substance B, it gives substance C and D that is the ending substances are the products of the reaction between A and B.

Hence, the substance with colorless liquid with a strong smell and a white solid with no smell are being used up to produce the ending substance had the repeating group of atoms shown above on the right and the other ending substance.

What motivated software engineers to move from the waterfall model to the incremental or spiral model

Answers

Answer:

1. They needed to develop multiple components in software programs.

2. The ability to overlap the development to be more evolutionary in nature.

3. The need to be more risk-averse or the unwillingness to take risks led to the use of a spiral model.

Explanation:

Software development life cycle (SDLC) can be defined as a strategic process or methodology that defines the key steps or stages for creating and implementing high quality software applications.

In SDLC, a waterfall model can be defined as a process which involves sequentially breaking the software development into linear phases. Thus, the development phase takes a downward flow like a waterfall and as such each phase must be completed before starting another without any overlap in the process.

An incremental model refers to the process in which the requirements or criteria of the software development is divided into many standalone modules until the program is completed.

Also, a spiral model can be defined as an evolutionary SDLC that is risk-driven in nature and typically comprises of both an iterative and a waterfall model. Spiral model of SDLC consist of these phases; planning, risk analysis, engineering and evaluation.

What motivated software engineers to move from the waterfall model to the incremental or spiral model is actually due to the following fact;

They needed to develop multiple components in software programs. The ability to overlap the development to be more evolutionary in nature. The need to be more risk-averse or the unwillingness to take risks led to the use of a spiral model.

What is the preferred development environment

Answers

Answer:The preferred development environment can vary depending on personal preferences, the type of project, and the programming language being used.

Explanation:

A steel rod, which is free to move, has a length of 200 mm and a diameter of 20 mm at a temperature of 15oC. If the rod is heated uniformly to115 oC, determine the length and the diameter of this rod to the nearest micron at the new temperature if the linear coefficient of thermal expansion of steel is 12.5 x 10-6 m/m/oC. What is the stress on the rod at 115oC.

Answers

Explanation:

thermal expansion ∝L = (δL/δT)÷L ----(1)

δL = L∝L + δT ----(2)

we have δL = 12.5x10⁻⁶

length l = 200mm

δT = 115°c - 15°c = 100°c

putting these values into equation 1, we have

δL = 200*12.5X10⁻⁶x100

= 0.25 MM

L₂ = L + δ L

= 200 + 0.25

L₂ = 200.25mm

12.5X10⁻⁶ *115-15 * 20

= 0.025

20 +0.025

D₂ = 20.025

as this rod undergoes free expansion at 115°c, the stress on this rod would be = 0

Please show NEC article 310.10(H)

Answers

Conductors in Parallel is covered in 310.10(H). Often when working with higher ampacities, we find it to be cumbersome and expensive to keep increasing the size of the wire and conduit. The solution is often to use multiple runs that are connected to a common location on each end. Notice in the 2011 edition of the code that much of this section is highlighted gray, indicating new or revised text. The change here was that the previous code stated that you were permitted to parallel conductors 1/0 AWG and larger; however, it didn’t specifically prohibit you from paralleling smaller conductors, which was the intent and the way it was enforced in all my years of enforcement. However, that’s not what the actual language said, and ambiguous language cancause enforcement issues; therefore, in the 2011 code it was made clear that you are only allowed to parallel conductors 1/0 AWG and larger.

if both the ram air input and drain hole of the pitot system become blocked, the indicated airspeed will

Answers

If both the ram air input and drain hole of the pitot system become blocked, the indicated airspeed will: a) increase during a climb.

What is a ram air input?

A ram air input can be defined as an air intake system which is designed and developed to use the dynamic air pressure that is created due to vehicular motion, or ram pressure, in order to increase the static air pressure within the intake manifold of an internal combustion engine of an automobile.

This ultimately implies that, a ram air input allows a greater mass-flow of air through the engine of an automobile, thereby, increasing the engine's power.

In conclusion, indicated airspeed will increase during a climb when both the ram air input and drain hole of the pitot system become blocked.

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Complete Question:

If both the ram air input and drain hole of the pitot system become blocked, the indicated airspeed will

a) increase during a climb

b) decrease during a climb

c) remain constant regardless of altitude change

Under a subsection for geological hazards the buyer is encouraged to obtain an read the booklet

Answers

Answer:

Buyer is encouraged to obtain and read the booklet entitled "The Homeowners Guide to Earthquake Safety." In most cases a questionnaire within the booklet must be completed by Seller and the entire booklet given to the Buyer if the Property was built prior to 1960.

what is the thermal capacity of water (in btu/ft3∙°f) with the density of 62 lb/ft3 and the specific heat of 1 btu/lb∙°f?

Answers

The thermal capacity of water can be calculated using the formula:

Thermal capacity = Density x Specific heat

Plugging in the given values, we get:

Thermal capacity = 62 lb/ft3 x 1 btu/lb∙°f = 62 btu/ft3∙°f

So, the thermal capacity of water with a density of 62 lb/ft3 and a specific heat of 1 btu/lb∙°f is 62 btu/ft3∙°f. This indicates the amount of heat that can be absorbed or released by a unit volume of water for a given temperature change.

To find the thermal capacity of water with a density of 62 lb/ft³ and a specific heat of 1 btu/lb∙°F, you can use the formula:

Thermal Capacity = Density × Specific Heat

Step 1: Identify the given values:
Density = 62 lb/ft³
Specific Heat = 1 btu/lb∙°F

Step 2: Plug the values into the formula:
Thermal Capacity = 62 lb/ft³ × 1 btu/lb∙°F

Step 3: Calculate the result:
Thermal Capacity = 62 btu/ft³∙°F

The thermal capacity of water in this case is 62 btu/ft³∙°F.

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The effective resistance of parallel resistors is always _____ than the lowest individual value.

a) more
b) less
c) no different than

Answers

Answer:

A

Explanation:

Answer:

the answer is a

Explanation:

it is a because thats what the answer is

After cutting a PVC pipe you should use a
to debure the pipe

Answers

Answer:

Deburring Tool

Explanation:

A deburring tool is used in order to debur the PVC pipes. They are mostly used for the plastic pipes.

After the PVC pipes are cut, there are burrs on the pipe surface. To remove these burrs, a deburring tool is used. It removes the burrs form the edges of the PVC pipes that results from grinding, cutting, milling, drilling, etc.

The deburring tools are made from high speed steels.

The figure below appeared three heat treatments processes of steel (A, B and C),

select only One and answer the following:

1- Named the heat treatment process.

2- The temperature range of heating process.

3- The cooling process method.

4- The aims of process.​

Answers

Answer:

b

Explanation:

1. What's an object in your everyday life that has a lot of Kinetic Energy? How do you know it has a lot?

"Something that has a lot of Kinetic Energy is _____. I know this because..."


2.What's an object in your everyday life that has a lot of Potential Energy? How do you know it has a lot?

"Something that has a lot of Potential Energy is _____. I know this because..."

Answers

Answer:

. What's an object in your everyday life that has a lot of Kinetic Energy? How do you know it has a lot?

"Something that has a lot of Kinetic Energy is a plane and a baseball . I know this because the baseball gets energy to it when its thrown which is giving in kinetic energy".

2.What's an object in your everyday life that has a lot of Potential Energy? How do you know it has a lot? "an object that has a lot of potential energy is Water that is behind a dam. A car that is parked at the top of a hill. A yoyo before it is released. I know this because

the energy possessed by a body by virtue of its position relative to others, stresses within itself, electric charge, and other factors."

What is the core domain for Accenture’s Multi-party Systems practice?


A. digital identity
B. employee retention
C. social networking
D. marketing responsiveness

Answers

Answer:

a

Explanation:

digital identity is the answer

The core domain for Accenture’s multi-party System is that of a digital identity. Ths that option A is correct.

What is a Multi-party System?

A multiparty system is a shared data infrastructure within the individual and the organizations that drive the efficiency nf new business and lead to the formation of the revenue models. They include the blockchain and distribution database and include a variety of technology and other capabilities.

Find out more information about the multi-party systems.

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A company is considering a project with an initial cash outlay of $500,000. The discount rate is 10%. Projected cash inflows for the next 5 years are:
Year 1: $100,000;
Year 2: $200,000;
Year 3: $300,000;
Year 4: $400,000;
Year 5: $500,000.
Should the company invest in this project? Why? Show work.

Answers

The company should invest in this project since it's NPV is positive, which indicates that the project is expected to generate more value than the initial investment.

To determine whether the company should invest in this project, we need to calculate the net present value (NPV) of the project. The NPV compares the present value of the projected cash inflows to the initial cash outlay. If the NPV is positive, it indicates that the project is expected to generate more value than the initial investment and is considered favorable.

The formula for calculating the NPV is as follows:

NPV = ∑(CF / (1 + r)^n) - Initial Investment

Where:

- CF is the cash flow in each year

- r is the discount rate

- n is the year

Given:

- Initial cash outlay = $500,000

- Discount rate = 10%

- Cash inflows:

 - Year 1: $100,000

 - Year 2: $200,000

 - Year 3: $300,000

 - Year 4: $400,000

 - Year 5: $500,000

Let's calculate the NPV for the project:

\(NPV = ($100,000 / (1 + 0.10)^1) + ($200,000 / (1 + 0.10)^2) + ($300,000 / (1 + 0.10)^3) + ($400,000 / (1 + 0.10)^4) + ($500,000 / (1 + 0.10)^5) - $500,000\)

\(= > NPV = $(100,000 / (1.10)^1) + $(200,000 / (1.10)^2) + $(300,000 / (1.10)^3) + $(400,000 / (1.10)^4) + $(500,000 / (1.10)^5) - $500,000\)

\(= > NPV = $90,909.09 + $165,289.26 + $225,886.52 + $256,338.03 + $275,482.41 - $500,000\)

\(= > NPV = $513,906.31 - $500,000\)

=> NPV = $13,906.31

The calculated NPV for the project is $13,906.31. Since the NPV is positive, it indicates that the project is expected to generate more value than the initial investment. Therefore, the company should invest in this project.

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What problem solving strategies don’t gaurentee solutions but make efficient use of time

Answers

The strategy is Heuristics

When you hover over an edge or point, you are activating ____________ in SketchUp?
A. Zoom Focus

B. Inference Tools

C. Drawing Tools

D. Selection Filters

Answers

The correct answer is B
I remember this bc it is a question in my test from last week lol

I need a word problem for y=2x

Answers

The word problem for y = 2x is as follows.

"If y is the number of cakes produced by using 2 amounts of backing ingredients (x), find the number of cakes produced if x is 25."

What is a word problem?

A word problem is a mathematical exercise in scientific education in which substantial background information about the subject is conveyed in regular English rather than mathematical notation.

A word problem in mathematics is a math question expressed as one or more sentences that demand students to apply their arithmetic skills to a real-life setting.

This implies that in order to understand the word problem, students must be conversant with the terminology linked with the mathematical symbols to which they are used.

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a. will a detect the collision is dprop > l/r? why or why not?

Answers

Answer:

Explanation:

A. No, "A" will not detect the collision** based on the condition **dprop > l/r.

The condition dprop > l/r refers to the time taken for a signal to propagate across the link (dprop) being greater than the time it takes to transmit a packet (l) divided by the rate of transmission (r). This condition is used to determine if two packets will collide on a shared transmission medium.

However, "A" alone cannot detect collisions based on this condition. The reason is that "A" does not have access to the necessary information such as the propagation delay, packet length, or transmission rate.

Collision detection typically requires additional mechanisms such as Carrier Sense Multiple Access with Collision Detection (CSMA/CD) in Ethernet networks. CSMA/CD allows devices to listen to the transmission medium and detect if there is already ongoing transmission before sending their own packets. If a collision is detected, devices implement collision resolution procedures to handle the collision.

Therefore, "A" alone cannot detect collisions based on the condition dprop > l/r.

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whats an impact of the development of empires in mesopotamia

Answers

The development of empires in Mesopotamia had a significant impact on the region and the world as a whole. Mesopotamia was the cradle of civilization and the place where the first empires emerged. These empires were characterized by their highly organized and centralized systems of government, sophisticated legal codes, and complex economies.

The development of empires in Mesopotamia had several important impacts, including the spread of civilization, the advancement of technology, and the growth of trade and commerce. Mesopotamia was a melting pot of cultures, and the empires that emerged there played a vital role in the spread of civilization. They established trade routes that spanned the ancient world, and their technological innovations, such as the wheel and irrigation systems, had a lasting impact on human history. The development of empires in Mesopotamia also had a profound impact on the way we think about government and society.
These empires were characterized by strong central authority, and their legal codes and administrative systems set the standard for the rest of the world. In conclusion, the development of empires in Mesopotamia was a significant turning point in human history. It played a crucial role in the spread of civilization, the advancement of technology, and the growth of trade and commerce.

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in a low pass filter, the cutoff frequency is affected only by the feedback resistor value not the input resistor group of answer choices true false

Answers

The statement "In a low pass filter, the cutoff frequency is affected only by the feedback resistor value, not the input resistor" is false.

What is a low pass filter? A low-pass filter is an electronic circuit that allows signals with frequencies lower than a certain threshold to pass through while filtering out signals with higher frequencies. The cutoff frequency is the frequency point at which the filter starts to attenuate the signal. The cutoff frequency can be changed by varying the value of the input and feedback resistors. In a low-pass filter, the cutoff frequency is determined by both the input resistor and the feedback resistor values. As a result, the given statement is false. The cutoff frequency in a low-pass filter is determined by the input and feedback resistor values. The formula for the cutoff frequency in a simple low-pass filter is given as :fc = 1 / (2 * π * R * C)where fc is the i cutoff frequency, R is the resistor value, and C is the capacitor value. In the given formula, both the resistor and capacitor  the cutoff frequency.

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John Smith, the chief engineer at Sunrise Hotel, is concerned with the air duct system passages that are clogged and need cleaning and do not allow the efficient passage of air to the guestrooms. This concern is related to
Select one:
a. solar load
b. infiltration load
c. unbearable load
d. ventilation load

Answers

John Smith, the chief engineer at Sunrise Hotel, is concerned with the air duct system passages that are clogged and need cleaning and do not allow the efficient passage of air to the guestrooms. This concern is related to the ventilation load.

What is ventilation load? Ventilation load refers to the amount of heat generated by a building's air-conditioning system or a building's occupants that is required to be removed by the ventilation system to maintain a comfortable indoor environment. It is a significant parameter that engineers use while designing a building's HVAC system. Heat gain, heat loss, moisture, and contaminants are all factors that can influence the ventilation load on a building. The ventilation system's primary function is to provide fresh air while removing stale air and pollutants. It is essential to provide a comfortable indoor environment while reducing energy consumption. Hence, the answer to the given question is ventilation load.

Ventilation load refers to the amount of heat, moisture, and contaminants that need to be removed or supplied by a ventilation system to maintain a comfortable and healthy indoor environment. In this case, the clogged air ducts are obstructing the flow of air, which hinders the ventilation process and prevents the efficient delivery of fresh air to the guestrooms. An efficient passage means that air can freely move through the ducts without any significant hindrances or blockages. Therefore, the concern raised by John Smith, the chief engineer at Sunrise Hotel, is specifically related to the ventilation load.

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For one-family dwellings, the service disconnecting means must have a rating of at least ___ amperes, 3-wire.

Answers

The rating of the service disconnecting means for a single-family home must be at least 100 amperes, 3-wire.Therefore, 100 amperes is the required minimum rating of service size for a one-family home.

What is the service's required minimum ampere rating?

NEC 230.79 (C) states that the rating of the service disconnecting mechanism for a one-family residence must not be less than 100 amperes, 3-wire.Therefore, 100 amperes is the required minimum rating of service size for a one-family home. In one enclosure, six switches or circuit breakers.Since the 1937 edition of the NEC, the number of switches or sets of circuit breakers that can be utilized as the service disconnecting mechanism to separate a building's premises wiring from the utility provider's conductors can range from one to six. The combined ratings of the circuit breakers, if the disconnecting method consists of more than one switch or circuit breaker, must not be less than the calculated load as established by Art. The 98 amp load for the single-family home will be supplied by a 100 amp electrical service.100 x 83 percent equals 83 amps.The bare minimum service conductor is this one. A revision made to the 2020 NEC mandates that an emergency disconnect be used in accordance with section 230.85.This disconnect is meant to allow emergency personnel to turn off the electricity to the entire house before entering to deal with the situation. Any combination of the following is authorized for the two to six service disconnecting means:separate enclosures, each with a method to disconnect the main service.a main service disconnecting mechanism built inside each panel board enclosure. All primary conductors of transformers that are not grounded must be disconnected using a disconnect.Unless the location of the disconnect is clearly written on the transformer and the disconnect is lockable, as is depicted in the Figure, it must be placed within sight of the transformer.

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as aircraft engines became more powerful and the pilots more skilled, the _______________ became the limiting factor aviation advances.

Answers

As aircraft engines became more powerful and pilots became more skilled, the structural integrity of the aircraft became the limiting factor in aviation advances. Here's a detailed explanation:

1. Engine Power: With the advancement of technology, aircraft engines have become more powerful, providing increased thrust and improved performance. More powerful engines allow for higher speeds, greater altitude capabilities, and improved maneuverability. As a result, the focus shifted from engine power limitations to other factors that could restrict further advancements.

2. Pilot Skills: As pilots gained more experience and expertise, they became capable of pushing the boundaries of aircraft performance. Skilled pilots were able to extract the maximum potential from the engines and maneuver the aircraft in more demanding flight regimes. However, this increased capability also highlighted the importance of aircraft structural integrity in handling the stresses and loads associated with high-speed flight, tight maneuvers, and increased forces.

3. Structural Limitations: The structural integrity of an aircraft refers to its ability to withstand the various forces and stresses encountered during flight. These forces include aerodynamic loads, such as lift, drag, and the loads resulting from maneuvers, turbulence, and high-speed flight. As aircraft engines became more powerful and pilots pushed the limits of performance, the structural components of the aircraft, including the airframe, wings, fuselage, and control surfaces, needed to be robust enough to handle these increased forces.

4. Material Strength and Design: To overcome the limitations of structural integrity, advancements in materials science and aircraft design became crucial. Stronger and lighter materials, such as advanced alloys, composites, and carbon fiber reinforced polymers, were developed to enhance the structural strength while reducing weight. Innovative design techniques, including computer-aided design (CAD) and finite element analysis (FEA), allowed for more efficient distribution of stresses and optimized structural configurations.

5. Safety and Certification: Ensuring the structural integrity of aircraft became a critical aspect of aviation safety. Regulatory bodies and certification agencies imposed strict standards and requirements to ensure that aircraft designs met the necessary safety criteria. Extensive testing, including stress testing, fatigue analysis, and load simulations, became necessary to obtain airworthiness certifications.

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explain wet and dry compression tests​

Answers

A wet compression test is similar to a dry compression test except it has the addition of oil placed in each cylinder. A wet compression test is done for two reasons: One or more cylinders has a reading of less than 100 psi on the dry compression test.

Brake lines are made of

Answers

Answer:

Braided brake lines are made up of an inner hose (made from Teflon) wrapped in stainless steel braiding. This is often then wrapped in a plastic coating (available in lots of colours) to offer a final level of protection. Break lines play an integral role within a hydraulic brake system.

Explanation:

Hope this helped, Please mark me brainliest!

Brake lines made for automotive use are manufactured from soft-steel sheets, coated with copper, and rolled over into a double-wall tube. They are then bonded at a high temperature and tin-plated to resist corrosion.

120 litres of water is discharge from container in 25 seconds. Find the rate of discharge in cumecs.if the discharge took place from pipe of diameter 50 mm. find the velocity flow​

Answers

Answer:

Rate of discharge in cumecs: 0.0048m³/s.

Velocity flow: 24m/s.

Explanation:

1. Find the rate of discharge in cumecs.

a. Convert from litres to m³.
120L*1000= 120000mL

120000mL=120000cm³

120000cm³/100³=0.12 m³.

b. Rate of discharge.

If  0.12 m³ where discharged in 25 seconds, the rate of discharge is:

0.12m³/25s = 0.0048m³/s.

2. Find the velocity flow.

Let's refer to the fluid mechanics equation that relates volume flow, area and velocity. This is the formula:

\(\frac{dV}{dt}=Av\); where the expression \(\frac{dV}{dt}\) is the volume flow rate (in m³/s); A is the cross-sectional area of the pipe (in m²), and v is the velocity flow (in m/s).

a. Solve the equation for v.

\(\frac{dV}{dt}=Av\\ \\(\frac{dV}{dt})/A=v\\ \\v=(\frac{dV}{dt})/A\)

b. Calculate the cross-sectional area of the pipe.

The cross-sectional area of the pipe is a circle. Hence, the formula of this area is:

\(A=\pi r^{2}\)

We'll have to convert the diameter to meters, because the formula for flow velocity needs the area in m². Let's go ahead and do that.

\(50mm/1000=0.05m\).

We were given the diameter, and the formula uses the radius, but the radius is just half of the diameter, therefore, we can substitute in toe formula like this:

\(A=\pi (\frac{0.05}{2} )^{2}=0.0020m^{2}\)

c. Substitute in the new expression for velocity flow and calculate.

\(v=(\frac{dV}{dt})/A\\ \\v=(\frac{0.048m^{3} }{1s})/(0.0020m^{2} )\\\\ v= 24m/s\)

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