he inlet pipe to the pump is 6.0-cm diameter commercial steel, 8.5 m in length. the discharge line is also 6-cm diameter commercial steel, 60 m long. all four valves are fully open globe valves; all four elbows are regular 90o threaded elbows. a) determine the flow rate through the system, in gal/min.

Answers

Answer 1

The inlet pipe to the pump is 6.0-cm diameter steel, 8.5 m in length

What is diameter ?

Diameter is a straight line that passes through the center of a circle or sphere and whose endpoints are on the circumference or surface. It is the longest distance that can be measured within a circle or sphere and is also the longest chord of a circle or sphere.

Diameter is typically denoted by the letter d and is commonly used in mathematics, engineering, and science to measure the size of circles, spheres, and other round objects. It is also used to measure the size of various objects such as pipes, trees, and buildings.

a) The flow rate through the system is 0.0054 gal/min.

b) determine the total equivalent length of the system, in m. The total equivalent length of the system is 18.4 m.

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Related Questions

A particulate monitor has a power supply consisting of two batteries in parallel. Either battery is adequate to operate the monitor. However, since the failure of one battery places an added strain on the other, the conditional probability that the second battery will fail, given the failure of the first, is greater than the probability that the first will fail. On the basis of testing it is known that 7% of the monitors in question will have at least one battery failed by the end of their design life, whereas in 1% of the monitors both batteries will fail during the design life.
(a) Calculate the battery failure probability under normal operating conditions.
(b) Calculate the conditional probability that the battery will fail, given that the other has failed.

Answers

Answer:

yrt a

Explanation:

cse/eee 120 capstone design project home security gate controller project summary the goal of this project is to design a gate controller for a home security system. the project is now in the prototype stage, where a simplified version of the home security system will be built. the system operates in the following manner:

Answers

We created a program that alternates between the localization, steering, and navigation modules. The navigation module implements a routing algorithm and selects the global route.

What is program?

A program is described as a set of instructions that a computer executes to do a certain activity. Study programs are made to fit your specific learning needs and get you ready for more education, training, or work.

Navigation modules are defined as the interactions that let users move between, inside of, and outside of the various pieces of content in your app. Extra parts are frequently included in the modules to make the sensor easier to use.

Thus, we created a program that alternates between the localization, steering, and navigation modules. The navigation module implements a routing algorithm and selects the global route.

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A balanced three-phase inductive load is supplied in steady state by a balanced three-phase voltage source with a phase voltage of 120 V rms. The load draws a total of 10 kW at a power factor of 0.85 (lagging). Calculate the rms value of the phase currents and the magnitude of the per-phase load impedance. Draw a phasor diagram showing all tlme voltages and currents.

Answers

Answer:

Following are the solution to the given question:

Explanation:

Line voltage:

\(V_L=\sqrt{3}V_{ph}=\sqrt{3}(120) \ v\)

Power supplied to the load:

\(P_{L}=\sqrt{3}V_{L}I_{L} \cos \phi\)

\(10\times 10^3=\sqrt{3}(120 \sqrt{3}) I_{L}\ (0.85)\\\\I_{L}= 32.68\ A\)

Check wye-connection, for the phase current:

\(I_{ph}=I_L= 32.68\ A\)

Therefore,

Phasor currents: \(32.68 \angle 0^{\circ} \ A \ ,\ 32.68 \angle 120^{\circ} \ A\ ,\ and\ 32.68 -\angle 120^{\circ} \ A\)  

Magnitude of the per-phase load impedance:

\(Z_{ph}=\frac{V_{ph}}{I_{ph}}=\frac{120}{32.68}=3.672 \ \Omega\)

Phase angle:

\(\phi = \cos^{-1} \ (0.85) =31.79^{\circ}\)

Please find the phasor diagram in the attached file.

A balanced three-phase inductive load is supplied in steady state by a balanced three-phase voltage source

5. which describes the structure of this building? a. it uses barrel vault construction. b. it uses voussoir construction. c. it uses cantilever construction. d. it uses post-and-lintel construction.

Answers

Answer: Option d) post-and-lintel construction describes the structure of this building.

Explanation:

What is post-and-lintel construction ?

The post-and-lintel system is a straightforward building technique that utilizes both vertical and horizontal building blocks. Buildings have one storey because the verticals support the horizontals.

Importance of post-and-lintel construction :

It can hold a lot of weight, allowing structures to have more than one storey, as well as wider openings and windows.

Therefore, post-and-lintel construction describes the structure of this building.

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ou are not going to proceed safely in a fast-paced decision-making process when your ability to make those decisions is When your ability to make decision is slowed down

Answers

The ability to make quick and effective decisions is essential in a fast-paced environment. When this ability is slowed down, it can lead to negative consequences. By improving your decision-making abilities, you can increase your chances of success and thrive in any fast-paced setting.

It is important to note that decision-making is a crucial aspect of any fast-paced environment. However, when your ability to make decisions is slowed down, it can hinder your progress and cause delays. This can be due to various factors such as lack of experience, limited information, or cognitive overload.

It is important to identify the root cause of the issue and work towards improving your decision-making abilities. This can be achieved through training, seeking advice from experts, and developing a systematic approach to decision-making.

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What Is The First Thing A Device Does When It Connects To A Network? a. Sends A DHCP Request b. Packet Sends A DHCP ACK Packetc. Sends A DHCP Discover Packetd. Sends A DHCP Offer Packet

Answers

The correct response is a. Sends A DHCP Request. When a device wants to connect to a network with DHCP enabled, it first sends an IP address request. Since the device initially lacks an IP address, it adds its MAC address to the message it sends to look for a server.

Using the Dynamic Host Configuration Protocol, network devices are configured to communicate on an IP network (DHCP). The DHCP protocol is used by DHCP clients to ask DHCP servers for configuration data such as an IP address, a default route, and one or more DNS server addresses. A network management technique called DHCP (Dynamic Host Configuration Protocol) is used to dynamically assign an IP address to any device, or node, on a network so that it can interact via IP. Although it makes it more difficult to connect to legitimate devices, turning down a DHCP server can assist increase the security of your wireless network as a whole.

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installing conductive elements in or under a surface, connecting all the conductive elements together and bonding it to the electrical grounding system will reduce voltage gradients and establish an .

Answers

A unison PD on the surface

This is known as a conductive floor system. Conductive flooring is used in a variety of environments such as electronics manufacturing facilities, data centers, hospitals and laboratories.

There are several types of conductive floors that can be used, including conductive tiles, conductive epoxies, and conductive carpets. Material selection depends on the specific requirements of the application and the environment in which the flooring will be installed.

Installing a conductive floor system requires several steps. First, the surface should be prepared by cleaning and smoothing to ensure good adhesion of the conductive material. Then install a conductive element such as conductive tile or epoxy and connect it to the electrical grounding system. Finally, connect the conductive flooring to an electrical grounding system to ensure a uniform electrical potential across the surface.

Conductive flooring is an important part of an effective electrical grounding system and helps reduce the risk of electrical accidents and damage to sensitive electronic equipment. It is important to follow proper installation procedures and use quality materials to ensure the effectiveness and reliability of your conductive floor system.

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In a tension test of steel, the ultimate load was 13,100 lb and the elongation was 0.52 in. The original diameter of the specimen was 0.50 in. and the gage length was 2.00 in. Calculate (a) the ultimate tensile stress (b) the ductility of the material in terms of percent elongation

Answers

Answer:

a) the ultimate tensile stress is 66717.8 psi

b) the ductility of the material in terms of percent elongation is 26%

Explanation:

Given the data in the question;

ultimate load P = 13,100 lb

elongation δl = 0.52 in

diameter of specimen d = 0.50 in

gage length l = 2.00 inch

First we determine the cross-sectional area of the specimen

A = \(\frac{\pi }{4}\) × d²

we substitute

A = \(\frac{\pi }{4}\) × ( 0.50 )²

A = 0.1963495 in²

a) the ultimate tensile stress σ\(_u\)

tensile stress σ\(_u\) = P / A

we substitute

tensile stress σ\(_u\) = 13,100 / 0.1963495

tensile stress σ\(_u\) = 66717.766 ≈ 66717.8 psi

Therefore, the ultimate tensile stress is 66717.8 psi

b) ductility of the material in terms of percent elongation;

percentage elongation of specimen = [change in length / original length]100

% = [ δl / l ]100

we substitute

% = [ 0.52 in / 2.00 in ]100

= [ 0.26 ]100

= 26

Therefore, the ductility of the material in terms of percent elongation is 26%

Which claim does president Kennedy make in speech university rice ?

Answers

Answer:  The United States must lead the space race to prevent future wars.

Explanation: Hope this helps

Answer:

The risk associated with entering the space race outweighs the possible benefits.

Explanation:

It's explaining it in the speech.

PLEASE HURRY!!!!
Which of the following can be inferred about Bill in the following scenario?

Bill has graduated and obtained a job as a geographer. He develops environmental models to analyze soil and water issues for a chemical company.

A) Bill studied environmental geography.
B) Bill earned a bachelor’s degree.
C) Bill earned a graduate degree.
D) Bill earned a certification in GIS technology.

Answers

I want to say your answer is C) Bill earned a graduate degree. I am so sorry if it is wrong! Hope this answer helps though! HAVE A GREAT REST OF YOUR DAY!!

suppose you are building a model to predict a person’s age based on their hair color, weight, hair length, and number of scars on their body. in this scenario, weight and hair color are examples of

Answers

When you are building a model to predict a person's age based on their hair color, weight, hair length, and number of scars on their body, weight and hair color are examples of features.

A feature is an attribute or aspect of an entity that is used to classify or describe it. Feature extraction is the process of identifying useful features from data to assist in data analysis and machine learning.

In machine learning, features are the input variables used to train a machine learning model to produce a prediction or output.

When you are working on building a model to predict a person's age based on their hair color, weight, hair length, and number of scars on their body, you are working with multiple features. In this case, weight and hair color are examples of features.


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draw afd,sfd and bmd of frame​

Answers

ok hahahhwjwkqowowlkwbwebekekoslslala

Answer:

uh, i dont understand?

Explanation:

Your job is to perform the steps of MapReduce to calculate a count of the number of squares, stars, circles, hearts and triangles in a dataset.Step 0: Store the dataset across 4 partitions in HDFS.
Note: we have already done one partition for you. Hint: Balance the load, but there is more than on possible "correct" partitioning.
Step 1: Map the data.
Hint: Mapping involves clustering like keys together. Show this in the visual placement of keys within a partition.
Step 2: Sort and Shuffle.
Note: as mentioned in lecture, you don't have to use the same number of nodes in this step as you did before. Let's use three instead. Hint: Balance the load.
Step 3: Reduce to calculate the final counts.
Hint: Fill in the blank lines to finalize the key-value pairs

Answers

Answer:

Explanation:

Step 0: Store the dataset across 4 partitions in HDFS.

Partition 1 (already done):

- Partition 1 contains a subset of the dataset.

Partition 2:

- Partition 2 contains another subset of the dataset, balancing the load across the partitions.

Partition 3:

- Partition 3 holds a portion of the dataset to distribute the data evenly.

Partition 4:

- Partition 4 stores the remaining part of the dataset, ensuring load balance across all partitions.

Step 1: Map the data.

In this step, we cluster similar keys together within each partition.

Partition 1:

- Map function clusters keys: squares, stars, circles, hearts, triangles.

Partition 2:

- Map function clusters keys: squares, stars, circles, hearts, triangles.

Partition 3:

- Map function clusters keys: squares, stars, circles, hearts, triangles.

Partition 4:

- Map function clusters keys: squares, stars, circles, hearts, triangles.

Step 2: Sort and Shuffle.

In this step, we sort and shuffle the data across three nodes while maintaining load balance.

Node 1:

- Receives and processes data from Partition 1, Partition 2, and Partition 3.

Node 2:

- Receives and processes data from Partition 1, Partition 2, and Partition 4.

Node 3:

- Receives and processes data from Partition 3 and Partition 4.

Step 3: Reduce to calculate the final counts.

In this step, we perform the final reduction to calculate the counts for each key.

Node 1:

- Reduce function calculates the count of squares: count_squares = _____.

- Reduce function calculates the count of stars: count_stars = _____.

Node 2:

- Reduce function calculates the count of circles: count_circles = _____.

- Reduce function calculates the count of hearts: count_hearts = _____.

Node 3:

- Reduce function calculates the count of triangles: count_triangles = _____.

By following these steps of MapReduce, we can calculate the final counts for squares, stars, circles, hearts, and triangles in the dataset.

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Select four items that an industrial engineer must obtain in order to practice in the field.

Answers

Industrial engineers devise efficient systems that integrate workers, machines, materials, information, and energy to make a product or provide a service.

Answer:

agriculture,defense,industry,science

Explanation:

Edg 2021

If a steel containing 1.13 wt%C is cooled relatively slowly to room temperature, what is the expected weight fraction of pearlite in the as-cooled microstructure?

Answers

If a steel containing 1.13 wt% C is cooled relatively slowly to room temperature, the expected weight fraction of pearlite in the as-cooled microstructure can be determined using the lever rule and the iron-carbon phase diagram.

The lever rule is a mathematical tool used in metallurgy to determine the proportions of different phases in a two-phase alloy. The iron-carbon phase diagram represents the phase transformations and stable phases that occur in iron-carbon alloys as a function of temperature and composition. In this case, the steel has a composition of 1.13 wt% carbon, which falls within the eutectoid region of the iron-carbon phase diagram.

When cooled slowly to room temperature, this steel will transform into a mixture of pearlite and proeutectoid cementite. To calculate the weight fraction of pearlite, the lever rule can be applied using the carbon content of the alloy (1.13 wt% C), the eutectoid composition (0.76 wt% C), and the proeutectoid cementite composition (6.67 wt% C). According to the lever rule, the weight fraction of pearlite in this steel would be approximately 0.85 or 85%.

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a threaded rod has 11 threads per inch how many threads are there in 16 inches of the rod

Answers

The number of threads in 16 inches of the rod is 176 threads

Calculation and Parameters

Given that:

1 threaded rod= 11 threads per inch

Therefore, to find the number of threads in 16 inches of the rod,

We would have to multiply and this is given below:

16 * 11= 176 threads

This answer is gotten because a threaded rod has 11 threads per inch and when there are 16 inches of rod, to find the number of inches, you would have to multiply the values together.

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The distribution of SAT scores of all college-bound seniors taking the SAT in 2014 was approximately normal with mean μ=1497 and standard deviation σ=322. A certain test-retake preparation course is designed for students whose SAT scores are in the lower 25%, percent of those who take the test in a given year. What is the maximum SAT score in 2014 that meets the course requirements?

Answers

Answer:

1279

Explanation:

We have the mean u = 1497

Standard deviation sd = 322

We find the x distribution using 25%

P(Z<z) = 0.25

Z = -0.675

From here we use the formula for z score

X = z(sd) + u

X = -0.675*322 + 1497

X = -217.35 + 1497

X = 1279.6

Which is approximately 1279

So we conclude that the maximum sat scores in year 2014that meets with the requirements of this course is 1279

Answer:

1831

Explanation:

What is the first step to performing hardware maintenance?
A Turn off the computer and remove its power source
B. Install anti-virus software.
C. Disconnect all the input and output devices
D. Disconnect the UPS and surge suppressor Save Answer

Answers

The first step to performing hardware maintenance is Turn off the computer and remove its power source.

What is hardware maintenance?
Hardware maintenance is the process of monitoring, inspecting, and repairing hardware components to ensure that they remain in good working order. It involves the regular inspection of computers, servers, printers, and other devices to identify and address any hardware-related issues in a timely manner. This type of maintenance is important for the longevity of hardware components and for the smooth functioning of a network. Regular hardware maintenance can help prevent costly repairs, system crashes, and data loss. It also helps to maximize the performance of the hardware, which can lead to increased productivity and efficiency. Common maintenance tasks include cleaning and dusting computer components, checking for any signs of damage or wear and tear, replacing defective parts, and running diagnostic tests.

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. Find the sum of the degrees of the vertices of each graph
in Exercises 1–3 and verify that it equals twice the number
of edges in the graph.

Answers

The sum of the degrees of all the vertices is given as 2e = 2(n-1) = 2n - 2.

If n-1 of the vertices of T had a degree of at least 2 we would get a contradiction.

Theorem: If T is a tree with n vertices, then the chromatic polynomial, P(T,x) = x(x-1)n-1.

What is a Vertix?

This refers to the point where two or more curves, lines, or edges meet and this is used in geometry.

The sum of the degrees of all the vertices is given as 2e = 2(n-1) = 2n - 2.

If n-1 of the vertices of T had a degree of at least 2 we would get a contradiction.

Theorem: If T is a tree with n vertices, then the chromatic polynomial, P(T,x) = x(x-1)n-1.

Hence, we can see that your question is incomplete, so I gave you a general overview to help you better understand the concept.

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The safety engineer uses a logging and monitoring system to track ____ from a project's start to its finish.
a. standards
b. objectives
c. hazards d. deliverables

Answers

Answer:

c. hazards

Explanation:

The safety engineer uses a logging and monitoring system to track hazards from a project's start to its finish.

1. ¿Cómo esta simbolizada la Cena en el Antiguo testamento?

Answers

Answer:

La Comunión o la Cena del Señor es el partir y comer el pan para simbolizar el cuerpo de Cristo partido por nosotros y beber vino para recordar la sangre que derramó por nuestros pecados.

Explanation:

While preparing to drive a HMMWV forward under normal conditions, in what position should you place the transmission and transfer case shift levers

Answers

Under normal conditions, you should place the transmission in overdrive (D) and transfer case in high range (H).

What is HMMWV?

HMMWV is an acronym for high-mobility multipurpose wheeled vehicle and it can be defined as a tactical wheeled vehicle that was designed and developed in 1989 for the US Armed Forces.

Under normal conditions, you should place the transmission in overdrive (D) and transfer case in high range (H) when preparing to drive a high-mobility multipurpose wheeled vehicle (HMMWV) forward.

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The thickness of the oil reservoir is 10cm, the production rate of oil is 100m3, the well radius is 10cm, the permeability of the reservoir is 1um2, the porosity is 0.2, the viscosity of the oil is 4mPa.S, the density of oil is 850kg/m3. If the flow regime can be considered as linear flow, can this flow in the reservoir satisfy Darcy's law?

Answers

Answer:

The thickness of the oil reservoir is 10cm, the production rate of oil is 100m3, the well radius is 10cm, the permeability of the reservoir is 1um2, the porosity is 0.2, the viscosity of the oil is 4mPa.s, the density of oil is 850kg/m3. If the flow regime can be considered as linear flow, can this flow in the reservoir satisfy Darcy's

when a weld is made on the side of the joint that the arrow touches, the symbol for that weld is shown below the reference line. true false

Answers

False. In welding symbols, the arrow is used to indicate the location and direction of the weld. It does not determine whether the weld is made on the side of the joint that the arrow touches or not.

The position of the weld relative to the joint is indicated by other elements in the welding symbol.

The reference line in a welding symbol represents the joint to be welded. It may be a straight line, an angle, or any other shape that indicates the configuration of the joint. The arrow is attached to the reference line and points towards the area where the weld is to be applied.

The welding symbol consists of various elements that provide specific information about the weld. These elements include the arrow, reference line, dimensions, welding processes, weld symbols, and supplementary symbols. Each element serves a particular purpose and helps communicate the requirements of the weld.

To determine which side of the joint the weld is made on, additional information is provided through the use of specific weld symbols or instructions placed above or below the reference line. These symbols or instructions indicate the desired weld location and can be positioned on either side of the reference line.

For example, a "Fillet Weld" symbol placed below the reference line indicates that the weld is to be made on the side of the joint opposite to the arrow. Similarly, a "Fillet Weld" symbol placed above the reference line indicates that the weld is to be made on the same side as the arrow.

Other weld symbols, such as "Groove Weld" or "Plug Weld," also provide specific instructions regarding the location and type of weld to be performed. These symbols are placed above or below the reference line and can be positioned on either side to indicate the desired weld location.

In summary, the location of the weld in relation to the joint is determined by the specific weld symbols or instructions placed above or below the reference line, not by the position of the arrow. The arrow in a welding symbol indicates the direction and location of the weld but does not determine the side of the joint where the weld is made.

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A horizontal force P is applied to a 130 kN box resting on a 33 incline. The line of action of P passes through the center of gravity of the box. The box is 5m wide x 5m tall, and the coefficient of static friction between the box and the surface is u=0.15. Determine the smallest magnitude of the force P that will cause the box to slip or tip first. Specify what will happen first, slipping or tipping.

A horizontal force P is applied to a 130 kN box resting on a 33 incline. The line of action of P passes

Answers

Answer:

SECTION LEARNING OBJECTIVES

By the end of this section, you will be able to do the following:

Distinguish between static friction and kinetic friction

Solve problems involving inclined planes

Section Key Terms

kinetic friction static friction

Static Friction and Kinetic Friction

Recall from the previous chapter that friction is a force that opposes motion, and is around us all the time. Friction allows us to move, which you have discovered if you have ever tried to walk on ice.

There are different types of friction—kinetic and static. Kinetic friction acts on an object in motion, while static friction acts on an object or system at rest. The maximum static friction is usually greater than the kinetic friction between the objects.

Imagine, for example, trying to slide a heavy crate across a concrete floor. You may push harder and harder on the crate and not move it at all. This means that the static friction responds to what you do—it increases to be equal to and in the opposite direction of your push. But if you finally push hard enough, the crate seems to slip suddenly and starts to move. Once in motion, it is easier to keep it in motion than it was to get it started because the kinetic friction force is less than the static friction force. If you were to add mass to the crate, (for example, by placing a box on top of it) you would need to push even harder to get it started and also to keep it moving. If, on the other hand, you oiled the concrete you would find it easier to get the crate started and keep it going.

Figure 5.33 shows how friction occurs at the interface between two objects. Magnifying these surfaces shows that they are rough on the microscopic level. So when you push to get an object moving (in this case, a crate), you must raise the object until it can skip along with just the tips of the surface hitting, break off the points, or do both. The harder the surfaces are pushed together (such as if another box is placed on the crate), the more force is needed to move them.

There is a proposal to replace the entire system with a single generator that has a reliability as good or better than the current one-year reliability. 6. What would be the required MTBF (in hours) for the new generator (assume exponential and 8760 hours/year)? 7. How many total test hours should be allocated for the new generator (assuming 1 failure is allowed) at 50% confidence? 8. Suppose the budget only supported 30,000 total test hours for the new generator. What is the demonstrated MTBF (ΘL) at 50% confidence if no failures were observed? Was the requirement demonstrated? Consider the original system diagram with Generator B as continuously operating (not in standby mode) with no load sharing. 9. What is the static relaibility of the system for this situation? 10. Convert the block diagram to a Fault Tree. Calculate the probability of the top-level event (system failure)?

Answers

The required MTBF (in hours) for the new generator (assuming exponential and 8760 hours/year) will be 8760 hours.

7. Total test hours should be allocated for the new generator (assuming 1 failure is allowed) at 50% confidence should be 688 hours.

8. The demonstrated MTBF (ΘL) at 50% confidence if no failures were observed will be 43,800 hours. Yes, the requirement was demonstrated.

9. The static reliability of the system for this situation can be determined by calculating the probability of no failure. The probability of no failure will be 0.85 * 0.95 * 0.98 * 0.99 = 0.764. Therefore, the static reliability of the system for this situation will be 0.764.10.

Probability of the top-level event (system failure) can be calculated by adding the probabilities of all the paths leading to the top-level event. The probability of the top-level event (system failure) will be:

P(system failure) = P(Gen A failure) + P(Gen B failure) + P(Gen C failure) + P(Tie Bus failure) * P(No load shedding) + P(Tie Bus failure) * P(Load shedding)

P(Gen A failure) = 1 - e^(-8760/30000) = 0.215

P(Gen B failure) = 0.85 * (1 - e^(-8760/18000)) = 0.37

P(Gen C failure) = 0.95 * (1 - e^(-8760/30000)) = 0.276

P(Tie Bus failure) = 0.98

P(No load shedding) = 0.99

P(Load shedding) = 0.01

P(system failure) = 0.215 + 0.37 + 0.276 + 0.98 * 0.99 + 0.98 * 0.01 * (1 - P(Gen A failure)) * (1 - P(Gen B failure)) * (1 - P(Gen C failure)) * P(Tie Bus failure)P(system failure) = 0.215 + 0.37 + 0.276 + 0.98 * 0.99 + 0.98 * 0.01 * (1 - 0.215) * (1 - 0.37) * (1 - 0.276) * 0.98P(system failure) = 0.9644

Therefore, the probability of the top-level event (system failure) will be 0.9644.

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When an airplane is rotating about the longitudinal axis (roll), the down going wing:A) generates a higher lift compared to the up going wing.B) creates a force to increase the roll rate.C) has a reduced angle of attack.D) creates a damping moments, which resists the rolling motion.

Answers

When an airplane is rotating about the longitudinal axis (roll), the down going wing (Option A) generates a higher lift compared to the up going wing.

When an airplane is rotating about its longitudinal axis, the phenomenon is called roll. During roll, the down-going wing moves faster than the up-going wing, which affects the airflow over each wing differently.

This results in different lift forces acting on each wing, leading to a change in the aircraft's bank angle. We need to understand the aerodynamics of roll. As the airplane rolls, the angle of attack of the wings changes.

The down-going wing experiences an increase in angle of attack, while the up-going wing experiences a decrease. This difference in angle of attack leads to a difference in lift forces acting on the wings.

The down-going wing generates a higher lift force compared to the up-going wing due to its higher angle of attack. This higher lift force creates a torque that causes the aircraft to continue rolling. Therefore, option A is correct.

In summary, during roll, the down-going wing generates a higher lift force compared to the up-going wing due to its higher angle of attack. This higher lift force creates a torque that causes the aircraft to continue rolling.

The difference in lift forces generated by the wings creates a damping moment that resists the rolling motion.

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How would you handle a situation where another team member was critical of your work?

Answers

If the criticism is constructive I would pay attention to it.

What lives at layer 3 (the network layer) of the OSI model?

Answers

Layer 3 of the OSI (Open Systems Interconnection) model, known as the network layer, is responsible for providing end-to-end communication between hosts in different networks.

The network layer is responsible for routing and forwarding data packets across different networks, as well as handling addressing and logical connectivity.

The main entities that live at layer 3 (the network layer) of the OSI model include:

Routers: Routers are network devices that operate at the network layer and are responsible for forwarding data packets between different networks. They use routing tables and protocols to determine the best path for data packets to reach their destination across multiple networks.

IP (Internet Protocol): IP is a network layer protocol that provides logical addressing and routing functionality. It is responsible for assigning unique IP addresses to devices on a network, and for routing data packets based on those IP addresses.

ICMP (Internet Control Message Protocol): ICMP is a network layer protocol that is used for sending error messages and operational information about network conditions. It is often used for diagnostic purposes, such as ping and traceroute, to check the connectivity and status of network devices.

Network Addressing: Layer 3 is also responsible for assigning and managing IP addresses, which are used to uniquely identify devices on a network.

Subnetting and VLANs: Layer 3 may also involve subnetting and VLANs (Virtual Local Area Networks), which are used for network segmentation and management to improve efficiency and security.

In summary, layer 3 of the OSI model includes routers, IP, ICMP, network addressing, and other protocols and technologies that are responsible for routing, addressing, and logical connectivity in a network.

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Cellular network towers are configured in such a way so that they avoid what type of problem?

Answers

avoiding OVERLAP issues

Answer:

They are configured this way to avoid overlap issues.

Explanation:

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