after servicing a hybrid car, the engine will not start. technician a says the wrong engine oil was installed. technician b says the wrong type of brake fluid was used. who is correct?

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Answer 1

According to Tech A, the axle housing tries to rotate in the opposite way as the axle shafts rotate in one direction to drive the wheels. As described by Tech B, this is torque steer.

Your thermostat should be located in the housing in the majority of autos. On some cars, the lower radiator hose will be connected to the thermostat housing. Consult your vehicle's service manual for more information if you need help locating your thermostat. A ring avulsion can happen to anyone wearing jewelry. You have an increased chance of getting a ring avulsion if you wear a ring and use your hands to operate machinery or other equipment.

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databases are designed to keep data and information about different types of data objects, including objects, events, ______ , and places.

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Events, places, people one of the four popular types of systems you can employ to manage your business data is a relational database management system.

What exactly is an object-based database?

A database system that can handle complex data objects or objects that resemble those used in object-oriented programming languages, is known as an object-oriented database (OOD). Every element in object-oriented programming (OOP) is an object.

Which locations house database objects?

Database objects in DB OptimizerTM are kept in Data Source Explorer as subnodes of specific, relevant databases. A table, view, or another database object may have an alias, which is a different name for it. Different databases include MySQL, SQL Server, MongoDB, Oracle Database, PostgreSQL, Informix, Sybase, and more.

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when a large number of single-phase loads are to be served from a 3-phase transformer bank, which low voltage winding connection is preferred? and why?

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Star connection is preferred in such cases as it allos the use of neutal conductor as an return path and complete the circuit for a large number of single-phase loads are to be served from a 3-phase transformer bank

Each set of primary and secondary windings of a three-phase transformer is coiled around one leg of an iron core assembly. In essence, it resembles three single-phase transformers connected at the core. These pairs of main and secondary windings will be combined into a single unit using either Y or connections. The emphasis of this section will be on the different permutations of ways that these windings can be joined to one another.

The winding connection choices are the same whether the winding sets share a common core assembly or whether each winding pair is a separate transformer.

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the inverted pendulum has a transfer function given by eq. (2.31 ), which is similar to a. use bode plot sketches to design a lead compensator to achieve a pm of . then verify and refine your design by using matlab. b. sketch a root locus and correlate it with the bode plot of the system. c. could you obtain the frequency response of this system experimentally?

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The following code implements a phase-lead compensator C(s) in frequency response form (where a and T are defined).

We can then interface it with a plant P(s) by using the following code:  C lead = (1+aTs)/(1+Ts). At high frequencies, the lead compensator gives phase lead. By doing this, the root locus is moved to the left, improving the system's stability and responsiveness. The phase lag provided by the lag compensator at low frequencies lowers the steady state error. The control system is marginally stable if the gain margin (GM) and phase margin (PM) are both equal to zero. The control system is unstable if the gain margin (GM) and/or phase margin (PM) are negative.

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the computations based upon the quantum mechanics model take longer and are more rigorous. t or f

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The computations based on the quantum mechanics model are more rigorous and take longer is true.

What is quantum mechanics model?The quantum mechanical model of atoms explains the three-dimensional position of the electron in such a probabilistic manner using a mathematical function known as a wavefunction, which is frequently denoted as. Orbitals are another name for atomic wavefunctions.Quantum mechanics is regarded as the most difficult branch of physics. Systems with quantum behavior do not follow conventional laws; they are difficult to see and feel, they can have contentious properties, they can exist in multiple states at the same time, and so on.As a result, quantum mechanical mathematical formulations are mathematical terms that provide a thorough explanation of quantum mechanics. This mathematical formalism relies heavily on linear spaces known as Hilbert spaces, which are a subset of functional analysis.

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a sand is tested in a direct shear test, under an effective normal stress equal to 380 kn/m2 , and fails at a shear stress equal to 237 kn/m2 . determine: a) effective stress friction angle b) how much shear stress could the soil carry if it was buried in a soil deposit at a depth of 10 m, with a soil unit weight

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The effective stress friction angle is equal to tan-1(0.62) = 34°., the soil can carry a maximum shear stress of 422 kn/m2

What is friction?
To walk without slipping, traction is provided by friction. In most situations, friction is advantageous. They do, however, offer a strong amount of opposition to the motion. Additionally, about 20% of an automobile's engine power is used to overcome frictional forces inside the moving parts. Let's go over some of these factors in the section that follows. The irregularities just on surfaces that are in contact are what cause friction. Therefore, these surface irregularities become entangled when one object is moving over the other, creating friction. The friction will be more noticeable and there will be more irregularities the rougher it is.

a) The effective stress friction angle of the sand is equal to the angle of internal friction, which is equal to the tangent of the shear stress over the normal stress, i.e. tanφ = 237/380 = 0.62. Therefore, the effective stress friction angle is equal to tan-1(0.62) = 34°.

b) The shear stress that the soil could carry if it was buried in a soil deposit at a depth of 10m can be estimated using Coulomb's equation for shear strength of soils, i.e. τ = c + σ' tanφ,
where τ is the shear stress,
c is the cohesion,
σ' is the effective normal stress and φ is the angle of internal friction.
Since, in this case the cohesion is assumed to be zero, the shear stress can be calculated as τ = σ' tanφ = 380 x tan34° = 422 kn/m2.
Therefore, the soil can carry a maximum shear stress of 422 kn/m2 if it is buried in a soil deposit at a depth of 10m and has a unit weight.

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the douglas dc-3 has a maximum velocity of 250 mi/h at an altitude of 7500 ft. each of its two engines provides a maximum of 1200 hp. its weight is 25,000 lb, aspect ratio is 9.14, and wing area is 987 ft2. assume the propeller efficiency is 0.8, and the oswald efficiency factor is 0.7. calculate the zero-lift drag coefficient for the dc-3.

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Power generated (propeller power) divided by power applied is how propeller efficiency is calculated (engine power).

The propulsion effectiveness of ships using screw propellers diminishes when additional propellers are added. For a properly positioned and well-designed single screw, it can range from 0.76 to 0.80 or higher; for twin screws, it can range from 0.65 to 0.72; and for quadruple screws, as those used by huge liners and warships, it can range from 0.60 to 0.64. Theoretically, a single blade propeller with a big diameter and moderate rotation is the most effective propeller. Think Ospreys or helicopters in this case. Both times, propellers with a larger diameter and slower rotation rates than those seen on a standard fixed-wing aircraft are employed.

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What are the 4 properties of the genetic code?

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The genetic code is crystal clear. Every codon only specifies one amino acid (or start or stop). The genetic code repeats itself. The majority of amino acids are encoded by several codons.

Chromosomes contain genes. A linear array of linked genes is located along chromosomes. Map distances are (approximately) cumulative on a per-person basis. Codons, which are units of three nucleotides, are used to segment this sequence. The four nucleotides included in mRNA — A, U, G, and C — can be combined in a total of 64 distinct ways since codons are three-letter structures. We will go over three main guidelines: A codon's base order must correspond to the direction of translation system, The code doesn't overlap. A fixed reading frame is used to read the code.

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these services are needed by the operating system to function properly, and should not be disabled question 11 options: mission-critical smtp dependency critical

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Following up with information on product updates and new features provided by Microsoft to safeguard your own clients and online services,   (TLS) protocol version 1.0 in software was created on top of MOS.

What does a computer's operating system do?

The computer's operating system (OS) controls all of the hardware and software. It carries out fundamental duties such as processing input and output, managing files, memory, and processes, and managing peripheral devices like disk drives and printers.

The importance of the operating system

The most crucial piece of computer software is the operating system. It manages the hardware, software, memory, and processes of the computer. The CPU, memory, and storage of the computer are all used by several programs that are often running at once.

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How have changes in the media and modern technology most changed how candidates campaign?Candidates often spend less on advertisements and more on polling.Candidates must explain their positions well in written newspaper articles.Candidates often effectively use social media to reach voters.Candidates must be able to give convincing in-person speeches.

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Answer:

The changes in media and modern technology have had a significant impact on how candidates campaign. One of the most significant changes is the increasing use of social media by candidates to reach voters. This has made it easier for candidates to directly engage with voters and share their message without having to rely on traditional forms of media, such as television and print ads.

Additionally, the rise of online news sources and the ability for individuals to access information instantly on their phones has made it important for candidates to be able to clearly and concisely explain their positions in written articles. This has led to a greater emphasis on messaging and communication strategies in campaigns.

Overall, the changes in media and technology have made it easier for candidates to connect with voters and share their message, but have also raised the bar for how effectively they must do so in order to be successful.

Explanation:

obd-ii regulations require all vehicle manufacturers to use the same names and acronyms for all electric and electronic systems related to the engine and emission control systems

Answers

This will make it easier for mechanics, service facilities, and repair facilities

What is mechanics?

Mechanics is a branch of physical science that deals with the study of motion, forces, energy, and their effects on objects. It seeks to explain and predict the behavior of matter and energy in the natural world. Mechanics can be divided into two main categories: classical mechanics and modern mechanics. Classical mechanics involves the study of motion, forces, and energy of macroscopic objects. It is based on the laws of motion, which were first formulated by Isaac Newton in the 17th century. Modern mechanics, also known as quantum mechanics, deals with the behavior of particles at the atomic and subatomic level. It is based on the principles of quantum theory, which was developed in the early 20th century. Mechanics is important to many other fields of science, such as engineering, chemistry, and materials science, and is used to develop and design a wide range of products and technologies.
Yes, all automakers are required to use the same names & acronyms for all electrical and electronic connecting devices to the engines and emissions control systems in accordance with OBD-II standards. This promotes consistency and comprehension among all automaker brands. On Board Diagnostics, or OBD-II, is the second generation or automotive diagnostic devices that is used to track the efficiency of the engines and emissions reduction systems. All automakers must utilize the same names or abbreviations for all electrical and electric systems connected to the engines and emission systems in order to adhere to OBD-II requirements. This will make it easier for mechanics, service facilities, and repair facilities to recognized any issues with the vehicles and make the required repairs.

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the line voltage in the united states is 120vac rms. the actual peak-to-peak voltage present on the line is:

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Thus, the peak mains voltage in the USA is around 120 × √2, or 170 volts. The voltage from peak to peak, which is twice this, is around 340 volts.

Assuming the source is a pure sine wave, peak values may be determined from RMS values using the method above, which indicates VP = VRMS × √2.

The maximum voltage value relative to zero volts is known as peak voltage, abbreviated as VP. Since it expresses the greatest value of the waveform, the amplitude is comparable to the peak value. In waveform analysis, the peak and amplitude values are more frequently employed than in AC electrical work.

The difference between the greatest and lowest voltage values in an AC circuit is known as peak-to-peak voltage (abbreviated as VPP). The peak-to-peak value in AC applications will be twice as high as the peak value. Peak-to-peak values are utilised less frequently with AC electrical operations and more frequently in waveform analysis or amplifier construction.

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kalpakjian and schmid, problem 8.131. a 20-mm-diameter drill is being used on a drill press operating at 300 rpm. if the feed is 0.125 mm/rev, what is the material removal rate? what is the mrr if the drill diameter is tripled? 5 points

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Remember that the original gage length of the specimen determines the percent elongation, which is defined by equation (2.6) on page 33.

Only the real and engineering necking strain as well as the true fracture strain may be determined. As a result, we are unable to determine the specimen's % elongation. We should also note that the elongation depends on gage length and increases with gage length. The starting and final gage lengths affect the specimen's % elongation. Regardless of the initial gage length, the specimen will uniformly (and permanently) lengthen as it is drawn until necking starts. The specimen will therefore always have a certain finite extension. However, take note that the contribution of localized elongation (also known as necking) will diminish as the specimen's gage length is raised.

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seismic hazard zone report for the seal beach 7.5-minute quadrangle, los angeles and orange counties, california

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This report summarizes the methods and information sources used to create the Seismic Hazard Zone Map for the Beverly Hills 7.5-minute Quadrangle in Los Angeles County, California.

What is a report?

A report is a particular type of writing that is structured around succinctly identifying and examining problems, occurrences, or conclusions that have actually occurred physically, such as events that have taken place within an organization or conclusions from a research investigation.

These things might also have something to do with things or problems that have been mentioned in a body of literature. A report informs the reader about all pertinent issues in a straightforward, impartial manner. Having a predetermined structure, independent sections, and coming to objective conclusions are the three characteristics that define report writing at its most fundamental level.

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observed from the exterior, a high neutral plane may indicate that the fire is in the early stages of development, or could indicate:

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A high neutral plane, as seen from the outside, may signify that the fire is only beginning to spread or it may be a sign of inadequate ventilation, overheated combustibles, or a low oxygen environment.

Describe ventilation.

The act of breathing, also known as ventilation, involves moving air into and out of the lungs in order to allow gas exchange with body's internal environment, primarily to expel carbon dioxide and draw in oxygen. All aerobic organisms require oxygen for cellular respiration, which uses carbon dioxide as a waste byproduct and obtains energy from the reaction of oxygen with proteins received form food. Air is introduced into the lungs during breathing, also known as "external respiration," when gas is exchanged in the alveolar through dispersion.

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PROBLEM т T 7 00 • Design a script to be implemented on the FPGA that solves the following problem: 5 6 3 4 ㅏ 2 Imagine a parking garage with a gate. The gate allows cars to enter: however, the driver must pay or have a permit for the gate to open. To eliminate car congestion in the garage, the driver can also know which floor to park in. Assuming there are two floors: first floor has 8 spots and second floor has 8 parking spots, design a script that will open the gate with input from weight sensors at the garage parking spots. If the garage is full the gate will not open. Conditions: • Parking must be filled in order to reduce congestion • display number of parking spot Display the floor to park Use seven seg Gate .

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1. Create a variable, let's call it "parking_spots". Set it to 16 (8 for each floor).

2. Create a variable, let's call it "current_floor". Set it to 1.

3. Create a variable, let's call it "max_floor". Set it to 2.

4. Create a variable, let's call it "open_gate". Set it to 0.

5. Create a loop that will run continuously.

6. Within the loop, read the input from the weight sensors.

7. If the weight sensor input is greater than 0, increment the "parking_spots" variable.

8. If the "parking_spots" variable is greater than 0, open the gate (set "open_gate" to 1).

9. If the "parking_spots" variable is 0, do not open the gate (set "open_gate" to 0).

10. Display the number of parking spots on the seven seg display.

11. If the "open_gate" variable is 1, open the gate and display the floor to

what do you mean by variable?

A variable is a symbolic name associated with a value that can be changed. In programming, a variable is a location in memory used to store a value that can be modified during program execution. Variables are often used to store user input, program results, and other values. Variables have a type, name, and value, which can be changed or updated during program execution. Variables are essential in programming as they allow us to store and manipulate data.

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what is the proper unit for gravitational potential energy?

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Answer:

The proper unit for gravitational potential energy is the joule (J). The equation for gravitational potential energy is U = mgh, where m is the mass of the object, g is the acceleration due to gravity, and h is the height of the object.

Explanation:

Answer:

Its the Joule

distances ( ftft ) from the left bank, corresponding depths ( ftft ), and velocities ( ft/secft/sec ), respectively, are given for a river discharge measurement. 0, 1.0, 0; 10, 2.4, 1.31; 20, 3.0, 1.54; 30, 2.7, 1.90; 40, 2.4, 1.95; 50, 3.0, 1.60; 60, 3.3, 1.71; 70, 3.0, 1.70; 80, 2.8, 1.54; 90, 3.2, 1.26; 100, 2.0, 0.58; 108, 2.2, 0.28; 116, 1.6, 0. part a what is the discharge rate?

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The steady current in amperes (A) that can be drawn from a battery with a specified capacity (Ah) over a specified time period is referred to as the discharge rate (h).

Battery specifications for CEGB power stations are typically at a 10-hour rate. A battery's rate of discharge in relation to its maximum capacity is measured using a C-rate. A 1C rate indicates that the battery will be completely discharged in an hour by the discharge current. This translates to a discharge current of 100 Amps for a battery with a 100 Amp-hour capacity. When measuring the discharge rate, engineers frequently use amp-hours, where I is the current in amps and t is the time in hours. Using figures like watt-hours, you can interpret battery capacity from this.

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What is the strength of 3/8 wire rope?

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Breaking Strength - 14,400 lb  is the strength of 3/8 wire rope it is taken directly from the standard strength table.

The capacity of a substance to endure a pulling or tensile force is known as breaking strength. Units of force per cross-sectional area are often used to measure it. In engineering, particularly in the disciplines of material science, mechanical engineering, and structural engineering, this idea is crucial.

One of the most critical and often measured qualities of materials used in structural applications is the capacity to withstand breaking under tensile stress. Brittle materials require more breaking or tensile strength than ductile ones.

Tensile strength, fracture strength, and maximum tensile strength are further terms for breaking strength.

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(a) for a fe-0.4 wt% c alloy at 900 and 600c: (i) plot the constitution points on the phase diagram. (ii) identify the phases present, and find their compositions in wt%. (iii) if the temperature is slowly reduced from 900 to 600c, at what temperatures are phase boundaries crossed? identify the phases present after each boundary is crossed. (b) how does slow cooling from 900 to 600c differ for a fe-0.8 wt% c alloy?

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Alloy metals can exist in different phases. Phases are physically homogeneous states of an alloy. A phase has a precise chemical composition – a certain arrangement and bonding between the atoms.

This structure of atoms imparts different properties to different phases. We can choose the phase we want and use it in our applications. Only some special alloys can exist in multiple phases. Heating the metal to specific temperatures using heat treatment procedures results in different phases. Some special alloys can exist in more than one phase at the same temperature.

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

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

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

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

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

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a 440-v-rms (line-to-line voltage) three- phase induction motor runs at 1150 rpm driving a load requiring 15 nm of torque. the line current is 3.4 a rms at a power fac- tor of 80 percent lagging. find the output power, the power loss, and the efficiency

Answers

The output of power is 87.1%.

What is power?

powerd is the amount of the energy transferred or converted per unit.

we can write the formula for PIN. Is equal 200 or three. V L I l Cause Tita which is equal to do three multiplication 440 multiplication, 3.4, multiplication pointed. Which is equal to 207, 2 .92. W. The value of omega M is equal to n M Two pi by 60 which is equal to 1150. To pay by 50. Which is equal to 1 20 points. 03 radiant person can no I can write the value of Be out which is equal to be out, multiplication omega um which is equal to 15? multiplication 1 20.43 which is equal to 1806.45. What? So changing it in HP I just divided by 746. So they value each coming edge 2.42 HP as the output power. Now I will use the formula appeal is equal to be in minus P. Out to calculate the value up pillows for 2072 point 92 minus 1806 point would fight return simplification. I get evaluated. 2 6 6.5. W. No. And is equal to be out by PN Multiplication 100%. Which is equal to 1806 1806.45 by 207, Multiplication, 100%. Which is equal to 87.1% as the answer.

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what is the transfer function of the loaded filter? express your answer in terms of the variables r , l , rl , and s .

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Loaded, [tex]H_{Loaded}[/tex](s) = [tex]\frac{RR_{L} }{R+R_{L} } /(\frac{RR_{L} }{R+R_{L} }+SL)[/tex] = [tex]\frac{RR_{L}/L }{R+R_{L} } /(\frac{RR_{L} /L}{R+R_{L} }+S)[/tex] is the loaded filter's transfer function.

A graded filter that, by virtue of its weight and permeability, stabilises the foot of an earth dam or other construction when it is installed at the base of that structure.

Air filters with depth loaded are made to achieve precisely that. They add particles gradually to create air passageways, reducing constriction. You may save time and money by using filters that last longer thanks to them. The bigger particles are caught at the filter's beginning, while the smaller particles are caught as it gets closer. This is intended to avoid rapid surface loading, hence facilitating more airflow. This enables longer-lasting filtration as well.

On the other hand, surface loading filters catch every particle that is on its surface. No matter how big or little the particles are, it doesn't care.

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4.r-134a at 320 kpa and 40 c undergoes an isothermal process in a closed system until its quality is 45 percent. determine how much work and heat transfer are required per mass.

Answers

Work and heat transfer are required per mass IS 40.6 kJ/k, 130 kJ/k  for a r-134a at 320 kpa and 40 c undergoes an isothermal process in a closed system until its quality is 45 percent

A refrigerant experiences a problem with this query. a structured procedure in a closed system up until 45% quality in isothermal . We need to figure out how much heat transfer and effort are needed. Therefore, the equation Q equals two T provides the transfer for this keep. toward delta S. And the energy balance of a closed system is used to calculate the necessary work. E is that. The value of system will be e. Delta U will be equal to internal minus E out. Q less than w, out. He completed that portion, but we still need to calculate the entropy and internal energy one. They are all 1 34 a.when three 20 kilogramme paschals are given pleasure and the temperature is 40 °C. The entropy will thus be 1.452 kg jule paul, Casey kelvin according on table 8–13. and You will have an internal energy of 261.62 kg. What give you right now? We must ascertain the water and apple combination standards. Table 8 11. Temperature B should be set at 40°C and quality X should exactly equal 0.45. Entropy will then equal sf + X when taken as two from this point. the S F G. It will be equivalent to 0 39493 + 0.45 into 0.5 059 (zero point 39493). This will weigh 0.6-9-9 kilogrammes of juice. kz kelvin, please.The combined internal energy of the two of you will be Uf + X into U F G. which will be 107.39 plus 0.45 plus two = 107.39 + 0.45 + 2 = 43.61. It weighs 172 102 kg, Paul Casey. T into S one minus S two, which equals 313 into 1.452 minus 0.6 to 9 to zero, will now provide the heat transfer coefficient Q out. Thus, this will be 130 kZ. The amount of effort necessary will therefore equal U two less human plus Q out. It will be equivalent to 172.02 + 61.62 plus 13.1 in total. This comes out to 40.6.Recognize June But daisy and Q two out is equivalent to 1 30.2 kg Jewel park Az Joon Park Az, who weighs 40.6 kg, is the blue. So, here is the outcome.

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a steam power plant operating on the simple ideal rankine cycle is considered. the total net work produced by the cycle is 700 kj/kg, and the amount of heat input to the cycle is 3000 kj/kg. determine the thermal efficiency of this cycle.

Answers

The thermal efficiency of a simple  Rankine cycle operating on steam power is 23.3%.

The thermal efficiency of an engine is a measure of how efficiently it converts the energy in fuel into useful work output. It is calculated by dividing the work output of an engine by the energy input of the fuel. The higher the thermal efficiency, the more efficient the engine is at converting fuel into useful work.

The thermal efficiency of a simple ideal Rankine cycle operating on steam power is given by:

Efficiency = (Net Work Output/Heat Input) x 100

Efficiency = (700 kJ/kg)/(3000 kJ/kg) x 100

Efficiency = 23.3%

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How do I get my car to recognize my key?

Answers

Turn the ignition to the on position after inserting the key. Just the electronics, leave the engine off.

After 10 minutes and 30 seconds, switch off the light by turning the key. Restart the key, then wait another 10 minutes and 30 seconds before turning it off once more. Low batteries are the primary culprit, but shock can also make the fob forget its pairing. Check your car's user manual for the correct steps to reset most remote controls. The fob needs to be reprogrammed if resetting does not fix the issue. The ignition is the component of an automobile engine where fuel is ignited. The ignition is immediately disconnected by the gadget. single-word noun. The ignition is the area inside an automobile where you turn the key to start the engine.

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Declare and create a two-dimensional array of ints, plan, with 2 rows, and initialize the first row to 8, 20, 50 and the second row to 12, 30, 75.

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public class main {public static void main(String[] args){int[][] plan={{8,20,50},{12,30,75}};}}

What are the names of the two dimensions?

Geometrically speaking, 2-dimensional forms or objects are flat planar figures with two dimensions—length and breadth. Structures that are two-dimensional, or 2-D, have just two faces but no thickness. Two-dimensional objects include a triangle, rectangle, rectangle, and hexagon.

What is a two-dimensional example?

A form is said to be two-dimensional if it has length and breadth but no depth. Maths derives its forms (mathematical models) from real-world objects which have similar geometrical characteristics. One illustration of a two-dimensional form is a circle. Another illustration of a the double shape is a rectangle.

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a sheet of glass is inserted between an isolated charged parallel plate capacitor. whihc of the following is true

Answers

A sheet of glass is inserted between an isolated charged parallel plate capacitor. The following is true for the statement:

B. the potential difference across the capacitor decreases

What is parallel plate capacitor?

Electrodes and insulating material, or dielectric, are arranged to create parallel plate capacitors. There is a maximum amount of energy that a parallel plate capacitor can store before the dielectric fails. It is described as:

The parallel plate capacitor is a device that uses two parallel plates to connect across a battery to charge the plates and create an electric field between them.

The direction in which the positive test charge would flow is the definition of the electric field's direction. The body's limited ability to store electric charge is known as capacitance. Each capacitor has a specific capacitance. Two metallic plates with an area of A each, spaced apart by d, make up a typical parallel-plate capacitor.

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Suppose you have a pre-existing class Pokemon that represents characters in a game, The class has the following data and behavior. Your task is to modify the class to be Comparable by adding an appropriate compare To method. All defensive Pokemon are considered to be "less than" aggressive Pokemon An defensive Pokemon is considered to be "less than" another if it has a lower defense power An aggressive Pokemon is considered to be "less than' another if it has a lower sum of attack and defense power. If two Pokemon are both aggressive or defensive and have the same defense or attack + defense power, they are considered to be "equal " Your method should not modify any Pokemon object's state. You may assume the parameter passed is not null.

Answers

The class has the following data and behavior.

public class Pokemon implements Comparable<Pokemon>{

 private int defensePower;

 private int attackPower;

 private boolean isAggressive;

 

 public Pokemon(int defensePower, int attackPower, boolean isAggressive){

   this. defensePower = defensePower;

   this. attackPower = attackPower;

   this. isAggressive = isAggressive;

 }

 

 Override

 public int compareTo(Pokemon other) {

   if (this. isAggressive && !other. isAggressive) {

     return 1;

   } else if (!this. isAggressive && other. isAggressive) {

     return -1;

   } else if (this. isAggressive && other. isAggressive) {

     return other. attackPower + other. defensePower - this. attackPower - this. defensePower;

   } else {

     return this. defensePower - other. defensePower;

   }

 }

 

}

What is data?

Data is information that is organized and processed in order to be used in decision making, problem solving, and other processes. Data can take many forms, such as numbers, images, words, audio, and video. Data is often collected, stored, and analyzed in order to draw conclusions and make decisions. Data can also be used to track trends, identify patterns, and predict future out comes.

Data can be collected from a variety of sources, including surveys, interviews, observations, and digital devices. Data is an essential component of any organization, and it is used to inform decisions and drive strategies.

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if the old radiator is replaced with a new one that has longer tubes made of the same material and same thickness as those in the old unit, what should the total surface area available for heat exchange be in the new radiator to achieve the necessary heat exchange rate at the recommended temperature gradient?

Answers

First of all, we need to find the total surface area of the old radiator which is; 3/2* area of old radiator.

From the question that we have been given,

We can say that the Thermal conductivity is the same for both radiators.

We can use the following formula to get the surface area of the new radiator;

K = Q/A*ΔT

change in T =  ΔT

So, we can say the surface area for the new radiator is 3/2* area of the old radiator.

A heat exchanger

This is a heat transfer device, usually used to in transferring heat from one source to another and eventually to a working fluid. This heat exchangers are very vital in the cooling and heating processes. The fluids can be separated to avoid mixing. They are normally in many places such as, refrigeration, space heating, power plants etc.

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. a saturated clay specimen is tested in a uu triaxial compression test at a cell pressure of 5 psi. the measured undrained shear strength (su) is 30 psi. if the same specimen where to be tested under cell a pressure of 50 psi, what would the undrained shear strength be? explain.

Answers

The undrained shear strength (Su) is a function of the cell pressure being applied to the specimen.

What is specimen?
A physiological laboratory specimen kept by an institutional unit for research is known as a biological specimen (also known as a biospecimen). Such a specimen would be obtained through sampling in order to be reflective of any additional specimens obtained from the specimen's source. For research purposes, it is ideal for biological specimens to be preserved in a state that is comparable to that of freshly-collected specimens. The science of conserving biological specimens is still most active in the area of biobanking, where human biological specimens are kept in a type of biorepository known as a biobank.

Therefore, if the cell pressure is increased from 5 psi to 50 psi, we would expect the undrained shear strength to also increase. However, it is impossible to predict by how much the undrained shear strength will increase since the exact relationship between cell pressure and undrained shear strength is not known. Generally, an increase in cell pressure will increase the undrained shear strength, but the exact magnitude of the increase will depend on the soil type and other factors.

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