The electric field inside the dome of a highly-charged van de graaff generator is _________. Two Three Zero One

Answers

Answer 1

A van de Graaff generator that is strongly charged has zero electric field inside its dome.

What is van de Graaff generator?A Van de Graaff generator is a type of electrostatic generator that is used to produce high voltage electricity. It consists of a metal dome that is mounted on top of a hollow metal sphere, with a belt of insulating material running between the dome and the sphere. The dome and sphere are connected to a high voltage source, and as the belt moves between the dome and sphere, it picks up electrons and transfers them to the dome. This creates an electric charge on the dome, which can be used to generate high voltage electricity.Van de Graaff generators are commonly used in scientific research and educational settings to demonstrate the principles of electricity and electrostatics. They can produce voltage levels in the millions of volts range, and are often used to study the behavior of high voltage electricity and the effects it has on various materials.

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Related Questions

Springback in a sheet-metal bending operation is the result of which of the following (one best answer): (a) elastic modulus of the metal, (b) elastic recovery of the metal, (c) overbending, (d) overstraining, or (e) yield strength of the metal?

Answers

Springback in sheet-metal bending refers to the tendency of the metal to return to its original shape after being bent. This phenomenon occurs due to the elastic properties of the metal. In sheet-metal bending, the metal is subjected to plastic deformation, and this causes changes in the internal structure of the material. When the load is removed, the metal will tend to spring back to its original shape.

Option A is correct

The main factor responsible for springback is the elastic recovery of the metal, which refers to the ability of the material to regain its original shape after being deformed. The amount of springback depends on the elastic modulus of the metal, which is a measure of the stiffness of the material. In addition, overbending can also contribute to springback, as it causes the material to stretch beyond its elastic limit. Overstraining, on the other hand, can lead to permanent deformation and is not a major factor in springback. The yield strength of the metal is the point at which plastic deformation begins to occur, and it is not directly related to springback. However, it is important to consider the yield strength in sheet-metal bending operations, as exceeding this limit can lead to cracking or other defects in the material. In conclusion, the elastic recovery of the metal is the main factor responsible for springback in sheet-metal bending operations. Factors such as overbending and the elastic modulus of the metal can also influence the degree of springback. It is important to consider these factors when designing and executing sheet-metal bending processes to ensure that the final product meets the desired specifications.

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Springback is a common issue in sheet metal bending operations. It occurs when the metal tries to return to its original shape due to elastic recovery after being bent.

This can result in a deviation from the intended shape, which is undesirable. The elastic modulus, yield strength, overbending, and overstraining are all factors that affect the amount of springback, but the primary cause is the elastic recovery of the metal. This is because the metal undergoes plastic deformation during bending, which changes its shape permanently.

However, when the bending force is removed, the metal attempts to regain its original shape due to its elastic properties. To minimize springback, techniques such as overbending and bottoming can be used to account for the elastic recovery of the metal.

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Implement the following Matlab code:
x=zeros(10,128);
t1=[0:1/128:1-1/128];
z=cos(2*pi*2*t1);
x(1,:)=z;
x=reshape(x,1,1280);
figure(1);
plot(x)
Examine Figure 1 – what does it “look like”? Zoom in. Take the FFT of x and explain what you see.
Manipulate the FFT and perform the IFFT to create a signal which is a continuous (i.e. no interpolating zeroes) sinusoid in the “time” domain. Explain the amplitude of the sinusoid.

Answers

28384 *x soít cos estematema

The amplitude of the sinusoid is 28384 *x soít cos.

What is amplitude?

Amplitude is defined as the greatest deviation from equilibrium of a point on a vibrating body or wave in terms of displacement or distance traveled. In most cases, amplitude is calculated by looking at a wave graph and determining the height of the wave from rest. The strength or intensity of the wave is gauged by its amplitude.

Sinusoid is defined as a signal with sine wave characteristics. In the liver, spleen, and bone marrow, sinusoids and irregular tubules transport blood in place of venules and capillaries. The sine or cosine functions from trigonometry form the foundation of sinusoidal signals, which are periodic functions.

Thus the amplitude of the sinusoid is 28384 *x soít cos.

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4. A banking system provides users with several services:
(a) to check their accounts to see recent transactions and balances;
(b) to pay bills online;
(c) to buy and sell investments.
All of these services require a secure log-in. If the system crashes or the network
connection fails during a transaction, all the financial data must be left in a consistent
state.
a. Draw use case diagrams for these requirements. Use standard symbols and shapes. MS
Office Visio, Lucidchart, draw.io, Creately, Smartdraw or Figma are optional tools
b. Give the use case specification for paying a bill online.

Answers

A diagram showing a use case diagrams for these requirements is given in the image attached.

What is system Case diagram?

A use case diagram is known to be a kind of graphical illustration of a users in terms of their various possible association or interactions within any given system.

A use case diagram in banking can be used to prepare, depict and also to know all the functional requirements of the banking system.

Therefore, Give the use case specification for the banking system services and paying a bill online is given in the image attached.

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4. A banking system provides users with several services:(a) to check their accounts to see recent transactions
4. A banking system provides users with several services:(a) to check their accounts to see recent transactions
4. A banking system provides users with several services:(a) to check their accounts to see recent transactions


What is the impedance of an ideal parallel resonant circuit (no resistance in either branch)?

Answers

Answer:

  infinite

Explanation:

The impedance of an ideal parallel resonant circuit is infinite at the resonant frequency. The sum of the admittances of the branches of the circuit is zero.

a commercial refrigerator with r-134a as the working fluid is used to keep the refrigerated space at -35 c by rejecting waste heat to cooling water that enters the condenser at 18 c at a rate of 0.25 kg/s and leaves at 26 c. the refrigerant enters the condenser at 1.2 mpa and 50 c and leaves at the same pressure subcooled by 6 c. if the compressor consumes 3.3 kw of power , determine (a) the mass flow rate of the refrigerant, b) the refrigerant load, c) the cop, and d) the minimum power input to the compressor for the same refrigeration load.

Answers

At 1.2mpa pressure and 50c

What is pressure?
By pressing a knife against some fruit, one can see a straightforward illustration of pressure. The surface won't be cut if you press the flat part of the knife against the fruit. The force is dispersed over a wide area (low pressure).

a)Mass flow rate of the refrigerant
Therefore h1= condenser inlet enthalpy =278.28KJ/Kg
saturation temperature at 1.2mpa is 46.29C
Therefore the temperature of the condenser

T2 = 46.29C - 5
T2 = 41.29C

Now,
d)power consumed by compressor W = 3.3KW
Q4 = QL + w = Q4
QL = mR(h1-h2)-W
= 0.0498 x (278.26 - 110.19)-3.3
=5.074KW
Hence refrigerator load is 5.74Kg

(COP)r = 238/53
(Cop) = 4.490

Therefore the above values are the (a) mass flow rate of the refrigerant, b) the refrigerant load, c) the cop, and d) the minimum power input to the compressor for the same refrigeration load.

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If a refrigerator line must be brazed to a service valve, be sure to _______________.

Answers

If a refrigerator line must be brazed to a service valve, be sure to have a professional technician perform the service to ensure proper installation and prevent any damage to the refrigerator or injury to yourself.

If a refrigerator line must be brazed to a service valve, be sure to properly purge the system with nitrogen gas. This helps prevent oxidation, ensuring a clean and secure connection between the line and the service valve.

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Which device can connect many computers and sends packets out every port?

Answers

A device that can connect many computers and sends packets out of every port is known as Hub.

What is the name of a device that usually connects many computers?

The name of the device that usually connects many computers is known as a hub. It typically connects multiple computer networking devices together. It also acts as a repeater in that it amplifies signals that worsen after traveling long distances over connecting cables.

According to the context of this question, a hub usually connects multiple computers together in a Local Area Network (LAN). All types of information are generally processed or sent to the hub is then sent through each port to every device in the network. It is noted that all types of devices are definitely connected to a network hub and share all available bandwidth equally.

Therefore, a device that can connect many computers and sends packets out of every port is known as Hub.

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Mid-State Medical Center wishes to upgrade their in-house MRI to a 3 Tesla magnet, which gives sharper pictures and should reduce the time it takes to complete a procedure. You have gathered the following details on the potential investment: The cost to buy and install the new scanner is $1.3 million. The scanner is expected to last seven years and it should have a salifinge Supplies per scan will total $100 per scan in year 1 and increase 3% per year. Maintenance will be a fixed $120,000 per year in the first year and increase 3.5% per year. Calculate the cash flows associated with this proposed project.

Answers

Mid-State Medical Center is considering upgrading their in-house MRI to a 3 Tesla magnet. The cost to buy and install the new scanner is $1.3 million. The scanner is expected to last seven years, and it should have a salifinge Supplies per scan total of $100 per scan in year 1 and increase 3% per year.


Maintenance will be a fixed $120,000 per year in the first year and increase 3.5% per year.To calculate the cash flows associated with this proposed project, let's first calculate the annual expenses:Year 1: Supplies per scan = $100 * 1 scan = $100Maintenance = $120,000Total expenses in Year 1 = $1,420,000Year 2: Supplies per scan = $100 * 1.03 = $103Maintenance = $120,000 * 1.035 = $124,200Total expenses in Year 2 = $1,426,200Year 3: Supplies per scan = $100 * 1.03^2 = $106.09
Maintenance = $120,000 * 1.035^2 = $128,944.70Total expenses in Year 3 = $1,434,944.70Continuing on with this same pattern, the total cash flows (expenses) associated with this proposed project will be:$1,420,000 + $1,426,200 + $1,434,944.70 + ... + (7th year total)

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What time ----–- the train arrve? ​​

Answers

I think it’s TIME FOR U TO GET A WATCH !!! lol I’m jk jk I believe it arrives at 12:33

A/an _______________ is a bootable image of the operating system that will run from bootable media without requiring that the OS be installed on the local computer

Answers

A live operating system, also known as a live OS, is a type of operating system that is designed to run directly from a bootable media such as a CD, DVD, USB drive or an external hard drive.

This means that the live OS can be used to test an operating system without altering the contents of the local hard drive, or to provide a temporary operating system environment for troubleshooting or recovery purposes. Live operating systems are often used by system administrators, IT professionals, and computer enthusiasts who need to perform system maintenance or data recovery tasks. They are also useful for individuals who need to use an operating system that is not installed on their computer, or for those who are testing a new operating system before deciding whether to install it on their computer. Live operating systems typically include a graphical user interface, a range of applications, and tools for system administration, data recovery, and troubleshooting. Some examples of popular live operating systems include Ubuntu Live, Fedora Live, Knoppix, and Tails. Overall, live operating systems provide a flexible and convenient way to use an operating system without installing it on a local hard drive.

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The following true stresses produce the corresponding true plastic strains for a brass alloy: True Stress (psi) True Strain 49300 0.11 61300 0.21 What true stress is necessary to produce a true plastic strain of 0.25

Answers

Answer:

64640.92 psi

Explanation:

True stress ( psi )       True strain

49300                          0.11

61300                           0.21

Determine the true stress necessary to produce a true plastic strain of 0.25

бT1 = 49300

бT2 = 61300

бT3 = ?

∈T1 = 0.11

∈T2 = 0.21

∈T3  = 0.25

note : бTi = k ∈Ti^h

∴ 49300 = k ( 0.11 )^h ----- ( 1 )

   61300 = k ( 0.21)^h ------ ( 2 )

solving equations 1 and 2 simultaneously

49300/61300 = ( 0.11 / 0.21 )^h

0.804 = (0.52 )^h

next step : apply logarithm

log  ( 0.804 ) = log(0.52)^h

h = log 0.804 /  log (0.52)

  =  0.33

back to equation 1

49300 = k ( 0.11 )^0.33

k = 49300 / (0.11)^0.33

 = 102138

therefore бT3 = K (0.25)^h

                        = 102138 ( 0.25 )^ 0.33  

                         = 64640.92

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

Develop a game, where user enters a small sentence 4-5 words long. user should think of a word in that sentence and your application should ask the starting letter and character length and display the word by searching it in the sentence.

make use of concepts of string class methods and enhanced for loop to perform this task.

Answers

A game can be developed using the string class methods and enhanced for loop, where the user enters a sentence, thinks of a word in that sentence, and the application asks for the starting letter and character length to display the word.

The application can use the 'split()' method to split the sentence into an array of words, and then use the enhanced for loop to search for the user's word by checking if it starts with the specified letter and has the specified length.

Once the word is found, the application can display it to the user.

Overall, this game can be a fun way for users to test their memory and string manipulation skills, while also showcasing the power of string class methods and enhanced loops in Java programming.

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Need help fast 50 points Project: Creating a Morphological Matrix
Assignment Directions

A systematic way to view common functionality of an object's structure and components is through a morphological matrix. You are going to utilize this method to analyze a common household device (from the list below or your own idea). First, create the left-hand column by deciding on the parameters that allow the object to function normally. For example, a pencil sharpener has a blade and a housing unit to support the system. Use the parameters to describe the system. If the pencil sharpener is hand operated, list the parameter of hand turning (either the pencil itself in a small unit or a handle in a wall-mounted device). The parameter column can include specific structures in the device, power sources, or any other information you learned in the lesson. The right-hand columns will include the current methods used by the device to complete the parameter, as well as any other options that would satisfy the parameter. You must create at least two other options for each parameter.

While the matrix provides valuable information for an engineer, it is typically more technological than a client or decision team needs. Therefore, you will also need to complete a one- or two-page analysis of the device, including the current parameter solutions and any recommended alterations to a design. Each recommendation must be supported by information in the morphological matrix.

Here are some ideas of household devices that you can analyze:

can opener
bathroom or kitchen scale
doorknob assembly
stapler
Assignment Guidelines

a completed morphological matrix
each parameter must have at least three solutions
a written analysis of the device with supporting details from the matrix
Submission Requirements

One to two pages double spaced

Proper grammar and vocabulary is required.

Answers

Answer:

The fundamental difference between effective and less effective matrix organizations is whether the tension between different perspectives is creative or destructive. While various processes, systems and tools can help, what matters most is what top leadership says and does and how that flows through the organization in shared targets, clear accountabilities, live team interactions and team-building transparency and behaviors.

Getting matrix management right is linked inextricably to an organization’s culture - the only sustainable competitive advantage. Key components of a culture can be grouped into behaviors, relationships, attitudes, values and the environment.

Environment and values: Each organization has its own environment, context and bedrock values. Everyone needs to know what matters and why. Don’t try to do anything else until you’ve got that set.

Attitude is about choices: An organization’s overall strategy drives choices about which of its parts will be best in class (superior), world class (parity), strong (above average), or simplified/outsourced to be good enough. These choices help determine the need for a matrix and how best to design it.

Relationships and behaviors: This is why organizations have matrices. The most effective of them best balance focus and collaboration. They allow leaders and teams to build differential strengths and then work together to make the best possible decisions and scale enterprises with a creative tension that they could not do on their own.

My colleague Joe Durrett has worked all sides of matrix organizations in marketing at Procter & Gamble, sales and general management at Kraft General Foods and CEO of Information Resources, Broderbund Software and Advo. He has seen matrices at their best and at their worst and offered his perspective for this article along with his partners John Lawler and Linda Hlavac. The 12 ways to make matrix organizations more effective were built on their ideas.

Explanation:

One good way to improve your gas mileage is to _____.

Answers

Keep your speed steady and within the speed limit

A tiger cub has a pattern of stripes on it for that is similar to that of his parents where are the instructions stored that provide information for a tigers for a pattern

Answers

probably in it's chromosomes

The rectifier is used to

Answers

Answer:

A rectifier is an electrical device used to convert alternating current to direct current.

Explanation:

Hope this helps! Shalom

which of the following is true for an npn bjt ? select one: a. the base current consists of mostly holes b. a p-type base is sandwiched between an n-type emitter and an n-type collector c. current flows primarily because of electrons injected into the base d. all of these e. current flows when either vbe or vbc are positive voltages

Answers

For an NPN , the base current is primarily made up .

Which of the following statements is accurate about a npn transistor's active region?

The potential difference between the collector and the base is always less than 0.4 V, and the base current and collector current are directly proportional to one another.

What are two defining characteristics?

Based on the types of the three main terminals, can be divided into NPN and PNP types. An NPN transistor is made up of two semiconductor junctions with a thin p-anode region, and a PNP transistor is made up of two semiconductor junctions with a thin n- cathode region.

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Simplify the following using K-Map
05
(a) Z (A,B,C,D) = (0,2,3,6,7,8,9,10,11,12,13,14,15)
(b) F(w.x.y.x) = {3,4,5,7,9,13,14,15)
!!

Answers

Answer:

b

Explanation:

5. A girl rolls a ball up an incline and allows it to return to her. For the angle and ball involved, the acceleration of the ball along the inclined is constant at 0. 25 g. Directed down the incline. If the ball is released with a speed of 4m/s, determine the distances s it moves up the incline before reversing its direction and the total time / required for the ball to return to the child's hand

Answers

The ball will take approximately 3.27 seconds to return to the child's hand.

How to solve for the time

First, let's determine the distance (s) the ball moves up the incline before reversing its direction.

Calculation for distance (s):

s = (0 - (4 m/s)²) / (2 * -0.25 * 9.81 m/s²)

≈ 3.26 m

Now let's determine the total time (t) required for the ball to return to the child's hand. We will need to calculate the time for the ball to go up and then down the incline.

Calculation for time (t):

t_up = (0 - 4 m/s) / (-0.25 * 9.81 m/s²)

≈ 1.63 s

t_total = 2 * t_up

≈ 3.27 s

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Mechanistic understanding of the temperature dependence of crack growth rate in alloy 600 and 316 stainless steel through high-resolution characterization

Answers

The temperature dependence of crack growth rate in Alloy 600 and 316 stainless steel can be understood through high-resolution characterization techniques that provide a mechanistic understanding.

In Alloy 600, the crack growth rate is influenced by several factors, including the presence of grain boundaries, precipitates, and intergranular carbides. High-resolution characterization techniques such as scanning electron microscopy (SEM) and transmission electron microscopy (TEM) can reveal the microstructural features that contribute to crack propagation. These techniques allow for the examination of crack paths, grain boundary interactions, and the identification of crack-tip processes such as dislocation activity, grain boundary sliding, and local plastic deformation. By studying the microstructural changes at different temperatures, the mechanisms governing crack growth in Alloy 600 can be elucidated.

Similarly, in 316 stainless steel, high-resolution characterization techniques can provide insights into the temperature dependence of crack growth rate. SEM and TEM analysis can help identify the presence of inclusions, precipitates, and dislocation structures that affect crack propagation. The influence of temperature on the formation and stability of oxide layers, such as chromium-rich passive films, can also be investigated. These techniques enable the observation of crack initiation sites, crack propagation paths, and the interaction of cracks with microstructural features, providing a mechanistic understanding of the temperature-dependent crack growth behavior in 316 stainless steel.

In summary, high-resolution characterization techniques such as SEM and TEM offer valuable insights into the temperature dependence of crack growth rate in Alloy 600 and 316 stainless steel. Through the examination of microstructural features, crack paths, and crack-tip processes, these techniques contribute to a mechanistic understanding of the underlying mechanisms governing crack propagation in these materials at different temperatures.

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can every cfl (without epsilon) be generated by a cfg which only has productions of the form a -> bcd or a -> a (with no epsilon productions)? explain why or why not.

Answers

The capability of CFGs to generate a wide variety of Languages is achieved by allowing various types of productions to be included in their rules.

Every context-free language (CFL) can be generated by a context-free grammar (CFG). However, not every CFL without epsilon can be generated by a CFG with only productions of the form A -> BCD or A -> a (with no epsilon productions). The main reason is that some languages may require a different form of productions to generate all possible strings.One key aspect of CFGs is that they can produce languages with an arbitrary degree of nesting, which allows them to capture the structure of a language effectively. However, limiting the grammar to only specific production forms like A -> BCD or A -> a might be too restrictive in some cases. For instance, a language with odd-length strings can't be generated by such a grammar, as the productions don't allow creating an odd number of terminal symbols.So, while it is possible for some CFLs to be generated by a CFG with only those production forms, it's not universally true for every CFL without epsilon. The capability of CFGs to generate a wide variety of languages is achieved by allowing various types of productions to be included in their rules.

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No, not every CFL without epsilon can be generated by a CFG which only has productions of the form a -> bcd or a -> a (with no epsilon productions). This is because there are some CFLs that require epsilon productions in order to generate all possible strings in the language. Epsilon productions are productions that have an empty string on the right-hand side, and they allow the CFG to generate the empty string. Without epsilon productions, the CFG would not be able to generate any strings with zero symbols.

For example, consider the language L = {a^n b^n | n ≥ 0}. This language is a CFL without epsilon, but it cannot be generated by a CFG which only has productions of the form a -> bcd or a -> a (with no epsilon productions). This is because the only way to generate the empty string is by using an epsilon production, and without epsilon productions, the CFG would not be able to generate any strings with zero symbols. Therefore, we need epsilon productions in order to generate all possible strings in this language.

In summary, not every CFL without epsilon can be generated by a CFG which only has productions of the form a -> bcd or a -> a (with no epsilon productions), as some languages require epsilon productions in order to generate all possible strings in the language.

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Select the correct answer.
What is the output of P.P( theres three lines over the second P) ?
A. P.P

B. P

C. P.P(one line over the second P)

D. P.P(one line over both ps)

Answers

A is the correct answer

which of the descriptions do not apply to cellular layouts?

Answers

The right response is C, as indicated by the question. Utilizable in repetitive procedures .

An explanation of the cellular production layout :

In batch production, production workstations and machinery are placed in a manner that facilitates the easy movement of parts and materials through the manufacturing operation with the least amount of transportation or delay.

Which are the four sorts of layouts?

Procedure, business model, hybridization, and fixed position are the four fundamental types of layouts. The fundamental traits of every one of these categories are examined in this section. Subsequently, we investigate at some of the primary categories' design specific requirements.

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The Complete Question :

Which of the descriptions below do NOT apply to Cellular layouts?

A - Grouped in a cell by similar work

B - Organized by Part Families

C - Useful in Repetitive processes

D - Help streamline inefficient Functional layouts

Which of the following was the most important group of engineers on the project described in the following scenario? The "Big Dig" in Boston, Massachusetts, redesigned the entire highway system in the city, moving roads underground in many areas. The "Big Dig* required the services of different types of engineers. computer engineers civil engineers manufacturing engineers electrical engineers​

Answers

Answer:

the answer is A

Explanation:

Answer:

A

Explanation:

This agency develops standards for pressure vessels and pressure relief valves, as well as the design, welding, and materials that may be used in pipeline construction.
Select one:
a. American Petroleum Institute
b. American Society of Mechanical Engineers
c. American Gas Association
d. National Fire Protection Association

Answers

Answer:

b. American Society of Mechanical Engineers

Explanation:

The "American Society of Mechanical Engineers" (ASME) is an organization that ensures the development of engineering fields. It is an accreditation organization that ensures parties will comply to the ASME Boiler and Pressure Vessel Code or BPVC.

The BPVC is a standard being followed by ASME in order to regulate the different pressure vessels and valves. Such standard prevents boiler explosion incidents.

Technician A says that shock absorbers should be replaced in pairs.
Technician B says that gas shocks should be bled before installation.
Who is right?
O A only
O Bonly
O Both A and B
O Neither Anor B
Previous
Exact answer

Answers

Answer:

The correct choice is C

Explanation A:

Shock Absorbers are best replaced in pairs if the car is relatively old. For new cars, however, one may elect to do the replacements as the need arises given that the other part is not worn out yet.

Explanation B:

It also recommended to bleed shock absorbers by moving the piston rod up and down several times. The reason is that sometimes, whilst in a horizontal position the hydraulic fluid and the gas get mixed up. This dampens the ability of the device to absorb shocks until the vehicle has been bounced up and down several times.

Cheers!

mr. smith has allowed mrs. jones to run a sewer line through mr. smith's backyard so that mrs. jones has access to the city sewer system. this is an example of a(n):

Answers

Since Mr. Smith allowed Mrs. Jones to run a sewer line through Mr. Smith’s backyard so that Mrs. Jones has access to the city sewer system, this is an example of an: A. Easement.

What is an easement?

An easement can be defined as a contractual agreement between two or more parties, wherein an individual is granted an access to a real property (land) for a specific purpose and a specific amount of time without possessing it, in exchange for a fee.

This ultimately implies that, an easement refers to the right of a landowner to make use of another person's nearby real property (land) for a specific purpose and a specific amount of time.

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Complete Question:

Mr. Smith has allowed Mrs. Jones to run a sewer line through Mr. Smith’s backyard so that Mrs. Jones has access to the city sewer system. This is an example of a(n):

a. Easement

b. Encumberance

c. Estate for years

d. Title assurance

2-design a set of simple test programs to determine the type compatibility rules of a c compiler to which you have access. Write a report of your findings

Answers

When designing a set of simple test programs to determine the type compatibility rules of a C compiler to which you have access, it is important to consider the different data types that are used in C programming. An example of a set of test programs that can be used to determine the type compatibility rules of a C compiler:

Integer Test the compatibility of the C compiler with integer data types. It declares two variables of type int, initializes them with values, and then adds them together. The result is printed to the screen. If the program compiles and runs without any errors, then the C compiler is compatible with integer data types.

Floating-Point Test  the compatibility of the C compiler with floating-point data types. It declares two variables of type float, initializes them with values, and then adds them together. The result is printed to the screen. If the program compiles and runs without any errors, then the C compiler is compatible with floating-point data types.

By running the set of simple test programs described above, you can determine the type compatibility rules of a C compiler to which you have access. If any of the programs do not compile or run without errors, then you can determine which data types are not compatible with the C compiler and adjust your code accordingly.

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Technician A says that primary vibration is created by slight differences in the inertia of the pistons between top dead center and bottom dead center. Technician B says that secondary vibration is a strong low-frequency vibration caused by the movement of the piston traveling up and down the cylinder. Who is correct? O A. Neither Technician A nor B OB. Technician B O C. Both Technicians A and B D. Technician A​

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Neither technician Technician or  B is correct in the statement above.

What leads to primary vibration?

Vibration is a factor that is said to be caused by one or more other factors that occur together at any given time.

This can be due to actors such as imbalance, misalignment, wear and looseness and others. An imbalance  occurs due to  a "heavy spot" that is found inside a rotating component and it will lead to vibration when the unbalanced weight is said to rotates in circles round the machine's axis.

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