a pipe with closed ends has an outer diameter of and wall thickness of . it is subjected to an internal pressure of and a torque of . determine the maximum normal stress and the maximum shear stress. neglect the localized effects of the end closure.

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Answer 1

The maximum normal stress is 900 MPa and the maximum shear stress is  1250 MPa neglecting the localized effects of the end closure.

Maximum normal stress = Internal Pressure x (Outer Diameter - Wall Thickness) / 2

                         = 1000 x (2 - 0.2) / 2

                         = 900 MPa

Maximum shear stress = Torque / (Outer Diameter x Wall Thickness)

                     = 500 / (2 x 0.2)

                     = 1250 MPa

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complete question.

a pipe with closed ends has an outer diameter of 2 and wall thickness of 0.2 m . it is subjected to an internal pressure of 1000 and a torque of 500 . determine the maximum normal stress and the maximum shear stress. neglect the localized effects of the end closure.


Related Questions

explain how lead and lag indicators are used in a quality program to develop measurement systems, and link your response with the use of a sweatt model, as discussed during week 4.

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A leading indicator anticipates future results and occurrences.

A trailing indicator evaluates whether the desired outcome was realised in the past.

Why lead and lag indicators used ?

In performance evaluation and management, the terms "leading indicator" and "lagging indicator" have come to be considered standard language. However, the line separating the two can occasionally be a little blurry; some indications, for example, are a little of both.

If managers want to develop a precise picture of performance, they must ensure that both types of metrics are in place and grasp the differences between the two.

A leading indicator anticipates future results and occurrences.

A trailing indicator evaluates whether the desired outcome was realised in the past.

The goal of leading indicators is future prediction. In economics, the phrase "leading indicator" refers to a quantifiable economic factor that shifts before the economy begins to exhibit a certain pattern or trend.

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TRUE/FALSE. circuit components that are connected in such a way that they provide different current paths are said to be connected in parallel.

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It's TRUE that circuit components that are connected in such a way that they provide different current paths are said to be connected in parallel.

What is Circuit?

A circuit in electronics is a complete circular path through which electricity flows. A basic circuit is made up of a current source, conductors, and a load. The term circuit can be used broadly to refer to any fixed path through which electricity, data, or a signal can travel.

How electronic circuits function?

In an electronic circuit, electrons exit the power source, travel along conductors, perform work in a load, and then return to the power source. The electrons flow in a circular path, which is why it is called a circuit. Ohm's Law describes the relationship between electrical flow and load. Electrons in a circuit travel from the negative side of the power supply to the positive side.

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A Frenkel defect is composed with which of the following? (a) A cation interstitial and a cation vacancy (b A cation interstitial and an anion interstitial (c) A catio (d) An anion interstitial and an anion vacancy

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A Frenkel defect is composed with A cation interstitial and a cation vacancy.

What is a Frenkel defect composed of?

A Frenkel defect, named after its discoverer Yakov Frenkel, is a particular kind of point defect in crystalline solids used in crystallography. The defect develops when an atom or smaller ion (often a cation) vacates its position in the lattice, leaving a vacancy, and then settles in the vicinity to produce an interstitial.

Ionic crystals with the Frenkel defect have an anion that is bigger than a cation. The solid crystal loses both the anion and the cation. The smaller ion cation typically breaks free from the original lattice structure.

straightforward interstitial defect An atom shifts from its usual lattice location to one of the interstitial sites, causing a specific type of point defect. In crystals with this flaw, the density of the crystal does not change. generally demonstrated by non-ionic solids.

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technician a states the mil lamp is required to come on any time a dtc is stored in an ecu. technician b says the mil light is required to come on any time there is a failure that could cause the emissions of the vehicle to exceed 1.5 times the emission standards for that vehicle. who is correct?

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Both technicians are correct as the statement made by both are true. Therefore, Option C is the correct option.

Who are technicians?

Technicians are knowledgeable professionals who work in almost every industry. They are asked to service, install, replace, and repair a variety of systems and equipment. They are adept in the relevant knowledge, abilities, and methods required by their line of work, which includes the automotive, maintenance, HVAC, and pharmaceutical industries.

Technicians examine, analyze, and troubleshoot client systems and equipment. They perform tests and analyze the results to formulate sound advice on how to repair malfunctioning or damaged equipment. They will negotiate prices with suppliers and customers to obtain replacement parts when necessary during repairs.

Before beginning a job, they will offer time and material cost estimates as well as repair and replace damaged equipment. Some technicians draft reports, safety guidelines, and preventive maintenance schedules.

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let $o$ denote the centroid of triangle $abc$. let $m$ and $n$ be points on sides $ab$ and $ac$, respectively, so that $m$, $o$, and $n$ are collinear, and $am/mb

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The solution is 4/9≤r<1/2.The total area that is bounded by a triangle's three sides is referred to as the triangle's area.

Find the solution ?

The total area that is bounded by a triangle's three sides is referred to as the triangle's area.In essence, it is equal to 1/2 of the height times the base, or A = 1/2 b h.

AB→​=b→​,AC→​=c→​AM→​=λ(b→​)AN→​=μ(c→​)

Let G divides MN in the ratio K:1

So, K+1Kμ(c→​)+λ(b→​)​=3b→​+c→​​

⇒K+1Kμ​=31​K+1λ​=31​K=μλ​λ1​+μ1​=31​A.M≥G.M2λ1​+μ1​​≥λ1​.μ1​

​⇒λμ

​≥32​

Now, Area△ABCArea△AMN​=21​∣∣∣∣∣​(b→​)×(c→​)∣∣∣∣∣​21​λμ∣∣∣∣∣​(b→​)×(c→​)∣∣∣∣∣​​

=λμ

using λ1​+μ1​=31​

Ratio =3λ−13λ2​

which has a maximum value 21​

So option C is correct

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what's the maximum size branch circuit protection for a single motor load if the motor is 480v, 3 phase, 11a using non-time delay

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A 5-hp, 230V, single-phase motor's branch-circuit short-circuit protection (dual-element fuse) cannot be greater than 50A. A 25-hp, 460V, 3-phase synchronous motor's branch-circuit short-circuit protection (inverse-time breaker) must be greater than 70A.

What size branch circuit overcurrent protection is required for a motor?

For a single motor utilized in a continuous duty application, under 430.22, the motor branch-circuit conductors must have an ampacity of at least 125 percent of the motor full-load current rating.

What is the motor branch's maximum rating?

This gadget can withstand a maximum rating of 60A. It must be size down to 60A so as not to exceed the calculated 61A. The discussion of single motor computations and the Code is now complete.

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which one of the four types of chip would be expected in a turning operation conducted at low cutting speed on a brittle work material: (a) continuous, (b) continuous with built-up edge, (c) discontinuous, or (d) serrated?

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In a turning operation carried out at a slow cutting conditions on a brittle work material, discontinuous forms of chips would be anticipated.

what is speed?

An object's speed, also known as "v," is the amount by which its position changes over time or by how much it changes per unit of time, making it a scalar number. The instantaneous speed is the upper limit of the average speed as that of the duration of the time period approaches zero. The average speed of an item in a period of time is equal to the distance travelled either by object divided either by duration of the term. Velocity and speed are not the same thing.

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A rocket launches with a constant acceleration of a all the way to outer space, straight up. You are not sure what a is, but it is relative small (between 2 ft/s2 and 10 ft/s?). Ignore compressibility effects. The atmosphere follows a standard temperature and pressure profile (so you can compute the density ratio directly from 0). a. As a function of a, at what altitude will the rocket experience maximum dynamic pressure q? b. What is that pressure as a function of a? c. How does the answer vary with acceleration?

Answers

The abbreviation "Maximum dynamic pressure" is Max Q. It occurs when the rocket or spacecraft is under "maximum mechanical stress" during the launch.

Which simply means that the rocket is experiencing significant physical pressure as a result of traveling through the atmosphere's air at a very high speed. After the rocket has been launched for around 60 seconds and has reached an altitude of 11 km, Max Q occurs. Max Q for the Space Shuttle happens at a similar altitude, about. The maximum dynamic pressure, or Max Q, is reached when the dynamic pressure reaches its greatest level due to the increasing velocity.

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some fiber optic communication systems use laser amplification to boost the intensity of light pulses passing through an optical fiber. a short segment of laser amplifier fiber is spliced into the main fiber so that the light pulses must pass through the laser amplifier fiber on their way to their destination. the light emerging from the laser amplifier fiber is much brighter than it was when it entered. one interesting aspect of the light emerging from the laser amplifier fiber is that it

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In some fiber optic communication, the light emerging from the laser amplifier fiber is much brighter than it was when it entered. one interesting aspect of the light emerging from the laser amplifier fiber is that ithas the same color as the light entering the amplifier fiber.

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Fiber amplifiers are optical amplifiers that use optical fibers for laser gain. A glass fiber do*ed with rare earth ions such as erbium (EDFA = erbium-do*ed fiber amplifier), neodymium, ytterbium (YDFA), praseodymium, or thulium is typically used as the gain medium.

This active dopant is pumped (charged) with light from a laser, such as a fiber-coupled diode laser; in almost all cases, the pump light travels through the fiber core with the signal to be amplified. Raman amplifiers are a type of fiber amplifier that is not commonly used.

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draw the shear and moemnt diamgrams for the beam subjected to the concentrated loads. what are the values of the shear force and bending moment at x

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Since the beam is symmetrical, the support reaction will be same i.e. VA = VC = 100 kN. shear force is zero & bending moment is zero

Share force is SFaleft=0Staright

100KNSFbleft=100KNSFbright=100-200

=-100KNSFcleft=-100KNSFcright=0

Bending moment is BMa=0Bmb

=100*5

=500KNBMc

=100*10-200*5=0

All the forces operating on either side of the section are added together algebraically to form the shear force. The total of all the moment of the forces operating on either side of the section is called the bending moment, and it is calculated algebraically. For example, the pressure of air flow across an airplane wing is an example of shear force, which is a force operating in a direction parallel to a surface or cross section of a body. The term's use of the word shear alludes to the notion that a force of this kind may cut through a surface or other item that is under stress.

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What is the driving force for (a) heat transfer, (b) elec- tric current flow, and (c) fluid flow?​

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Answer:

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A box with two gases separated by an impermeable membrane is in an environment with temperature T. The membrane can move back and forth, but the gases cannot penetrate the membrane. We will assume that equipartition applies to both gases, but gas A has an excluded volume. . UA-? NAkT + constant . UB-aNBkT +constant Keep in mind that the total box volume is constant, so VA + VB = constant. equilibrium value of VA m

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The thermal effects caused by putting a cylindrical fiber in an inviscid, perfect gas that an auditory wave travels through are described.

The thermal effects caused by putting a cylindrical fiber in an inviscid, perfect gas that an auditory wave travels through are described. The thermal conductivities and heat capacity of the fibers and the gas are limited. There are established expressions for the temperature distribution in the material and the gas.

Pressure oscillations in the gas, which are brought on by an acoustic wave's passage, are what cause the temperature distribution. It has been discovered that a dimensionless parameter's relative value can help determine whether the solution should be based on exact or approximative equations. This parameter depends on the thermal conductivities, heat capacities, acoustic frequency, and fiber diameter of the gas and fiber.

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technician a says that some dc motors use brushes. technician b says that an ac synchronous motor uses a permanent magnet rotor. which technician is correct?

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When technician A claims that some dc motors employ brushes, technicians B and A both make the appropriate corrections. An ac synchronous motor, according to technician B, uses a permanent magnet rotor.

What applications do AC synchronous motors serve?

For applications where the load must be driven at a precise rate of speed and where it is preferred not to alter the motor speed using an AC speed control, synchronous fixed-speed gearmotors or motors are perfect (VFD).

Which two main rotor types are employed in synchronous generators?

The synchronous machine's rotating component is referred to as the rotor. It carries the twisting field. Salient Pole Rotor and Cylindrical Pole Rotor are the two sorts of rotors that are available in terms of construction.

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technician a says that rear gear trains are used on engines because they operate with less noise. technician b says that rear gear trains are used because they have less wear than a front gear train mechanism. who is correct?

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The amount of electrical energy a battery may produce depends on the size, weight, and active area of the plates, claims Technician B.

When a battery is fully charged, it should display 12.6 volts. A value of 12.4 volts, or roughly a charge of 75%, is satisfactory for further testing. Any electrical or electronic device that regulates voltage maintains a power source's voltage within acceptable ranges. The voltage regulator's job is to keep voltages within the range that the electrical equipment using that voltage is capable of withstanding. The hydrogen and oxygen gasses that were present when the battery was first charged are once again created from the water.

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Explain on a structural basis the differences in the glass transition temperature of polyethylene ( =-140°C), polyvinylchloride (T-87 C), and polysityrene (Tg= 100 c)

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The "glass transition" temperature is the point at which it happens. For instance, low-density polyethylene has a glass transition temperature, or Tg, of about 100°C.

He claims that the fact that the Tg of PVC/CF composite is higher (86.7 °C) than the Tg of pure PVC (76.8 °C) indicates that there is a physical interaction between the polymer and the CF surface, which reduces chain mobility and free volume and increases Tg. Pressure and free volume. Increased surrounding pressure causes a decrease in free volume, which ultimately results in increased Tg. The glass transitioning temperature of polymers is also significantly influenced by other elements such as branching, alkyl chain length, bond interaction, flexibility of the polymer chain, film thickness, etc.

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what component (resistor, capacitor, inductor) should the output be taken across for the circuit above in problem 2 to be used as a band-pass filter and what capacitor and inductor values should be chosen from the list below to achieve the center frequency (frequency at which maximum response occurs) of the band-pass filter to be 108 rads/s?

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One can isolate or filter out specific frequencies that fall inside a given band or range of frequencies using a passive band pass filter.

One can isolate or filter out specific frequencies that fall inside a given band or range of frequencies using a passive band pass filter. With just one resistor connected in series with a non-polarized capacitor, the cut-off frequency or "c point" of a straightforward RC passive filter can be precisely controlled, and as we have seen, depending on which way around they are connected, either a Low Pass or a High Pass filter is produced.

These passive filters can be used in straightforward ways in audio amplifier circuits or applications like loudspeaker crossover filters or pre-amplifier tone adjustments. Occasionally, it's required to only transmit frequencies within a specific range that don't start at 0 Hz (DC).

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technician a says that power-split cvts use a torque converter. technician b says that power-split cvts use an electric transmission fluid pump. which technician is correct?

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Neither technician is correct.

What is torque-converter?

The torque converter is used in CVTs to transmit engine output. The torque converter, which functions like a clutch and is equipped with an ATF, is a crucial component of the vehicle for boosting torque and transmitting significant kinetic force during taking off.

Modern torque-converter autos are pushing as high as nine gears, modern twin-clutch systems have seven gears, and CVTs can create nearly unlimited ratios, making them the most fuel-efficient. Automatic transmissions can shift faster than the fastest manual drivers, but they can't accelerate as quickly.

One of the most crucial and underappreciated components of the car is the torque converter. It is essential to the operation of automatic transmission vehicles and plays a significant role in determining your fuel efficiency.

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synthetic oils used in turbine engines have advantages over petroleum based oils. two of these advantages are

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The two of these advantages of synthetic oils are improved thermal and oxidative stability. More desirable viscosity-temperature characteristics.

What is synthetic oil ?A lubricant called synthetic oil is made of chemical substances that have undergone artificial modification or synthesis. In addition to being made from alternative raw materials, synthetic lubricants can also be produced utilising chemically altered petroleum components rather than full crude oil. However, the majority of the underlying material is still crude oil, which is distilled before being physically and chemically altered. It will differ between producers and is typically a business trade secret how additives are actually made.In situations where operating temperatures are extremely high, synthetic oil is utilised in place of petroleum-refined oils. For instance, synthetic oils are necessary for aircraft jet engines but not for aircraft piston engines. In addition, synthetic oils are utilised in metal stamping to offer advantages over traditional petroleum- and animal-fat-based goods in terms of the environment and other factors.

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while examining a valve spring from an engine that is being overhauled, technician a says that valve springs should be checked for free length and cracks. technician b says the spring should be checked for compressed spring pressure, nicks, and straightness. who is correct?

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A thin calibrated plastic strip serves as a plastic gauge. It can be used to measure gaps and monitor bearing clearance.

It is utilized at locations on crank or connecting rod bearings where a micrometer measurement cannot be made quickly. Compression braking, commonly referred to as engine braking, is a technique that can be applied to bigger commercial vehicles. The procedure is a little different, and a Jacobs brake (also known as a jake brake), which is designed specifically for diesel engines, aids in the procedure. Despite being sufficiently flat, bearings cannot be reliably measured with calipers; a micrometer is required. Although there are specialized micrometers available for measuring rounded interior surfaces, you are not required to own one.

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traditional hydraulic and pneumatic control systems are being replaced by what types of systems to save in weight?

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There is no proof that hydraulics is always more "efficient" in every circumstance, however it might be in some applications.

What would happen if a pneumatic system took the place of the hydraulic system? There is no proof that hydraulics is always more "efficient" in every circumstance, however it might be in some applications.It is "more efficient" to use hydraulics when:mobile tools for earth moving and construction .Presses for shaping metal,machinery for extrusion, especially plastics.Various lift types, such as elevators and platforms than pneumatic machineryAlternatively, pneumatics:work more quickly than hydraulics.yastmastmastmastmas, and can be utilized for applications requiring significantly higher precision.are significantly safer around processes involving food, drinks, and medicines.are safer in terms of substantially lower flammability and the risks of piping failures that go along with it.

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technician a says an electronically controlled power steering system provides power assistance when the engine stalls. technician b says an electronic rack eliminates the hydraulic pump and hoses. who is correct?

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The same power steering fluid is reportedly used by all models produced by the same manufacturer, according to technician A.

Which of the aforementioned electric power assist steering systems has the power assist unit?Depending on where the assist motor is located, there are four types of EPS. The direct drive type (D-EPS), the rack assist type, the pinion assist type, and the column assist type (C-EPS) are each of these (R-EPS). The steering column is the hub for the C-EPS type's power assist unit, torque sensor, and controller.When a driver is making a quick turn at a low speed, a power steering pressure switch will send a signal to the powertrain control module telling it to increase the engine speed. The same power steering fluid is reportedly used by all models produced by the same manufacturer, according to technician A.  

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a technician is sent out to service a spark type ignition system on a gas furnace. the main burners light, but the spark igniter continues to spark. after 60 seconds, the blower fan comes on and the burner goes out. the technician suspects a faulty:

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The burner extinguishes and the blower fan turns on after 60 seconds. The technician thinks there could be a broken pilot bi-metal.

Next, the main burner flame or the pilot  bi-metal flame are ignited by this igniter. to cool and saturate the flue gases while the furnace is running, the furnace draws air from the surrounding space. However, manufacturers have mostly switched to direct spark ignition or hot surfaces, and this method operates as follows: Thermostat heat request Control board conducts a safety inspection (limit switches, roll out switches). The inducer motor turns on. Powering the ignitor requires turning on the test power cable switch. The ends of the ignitor clip should be checked for sparks. Test the secondary coil below whether a spark appears. Indicator is faulty and has to be changed if spark does not leap the gap or jumps only sometimes.

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#include #include #include "Savings.h" #include "Checking.h" using namespace std; pint main() { Checking* checking = new Checking(1); checking->setFirstName ("Alice"); checking->setLastName("Meacham"); checking->setAccountBalance (1000.00); checking->setoverdraftProtection(true); checking->display(); delete checking; Savings* savings = new Savings(2); savings->setFirstName("Bob"); savings->setLastName("Ferling"); savings->setAccountBalance(1003.00); savings->setInterestRate(5.00); savings->display(); return 0; 1 2 3 4 5 HNM COOO #include #include #include #include "Account.h" using namespace std; Account::Account(int accountNumber) { firstName = lastName = ". "; accountBalance = 0; this->account Number = account Number; 6 7 8 9 10 11 12 evoid Account::deposit(double amount){ accountBalance += amount; Ovoid Account::withdraw(double amount){ accountBalance -= amount; 1 W NPO 3a avoid Account::display(){ cout << "Balance: " « setprecision(2) « accountBalance << endl; cout << "Account: " « account Number << endl; cout << "First Name: " « firstName << endl; cout << "Last Name: " « lastName << endl; void Account::setAccount Number(int accountNumber){ this->accountNumber = accountNumber; 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 avoid Account::setAccountBalance (double accountBalance) { this->accountBalance = accountBalance; avoid Account::setFirstName(string firstName) { this->firstName = firstName; avoid Account::setLastName(string lastName) { this->lastName = lastName; string Account::getFirstName() { return firstName; 899 Ostring Account::getLastName(){ return lastName; 与会员专员后台 41 42 43 44 45 46 } pint Account::getAccountNumber(){ return accountNumber; } double Account::getAccountBalance(){ return accountBalance; 2 3 6 9 L1 UE W NOGUE W N OOOO JOU EWNE #ifndef ACCOUNT_H #define ACCOUNT_H #include using namespace std; class Account{ protected: int account Number; double accountBalance; string firstName; string lastName; public: Account(int accountNumber); void deposit(double amount); void withdraw(double amount); void display(); void setAccount Number(int account Number); void setAccountBalance (double accountBalance); void setFirstName(string firstName); void setLastName(string lastName); int getAccountNumber(); double getAccountBalance(); string getFirstName(); string getLastName(); 14 L5 16 L7 18 19 21 22 23 24 25 #endif 1 2 3 4 5 6 7 8 #include #include #include #include "Checking.h" using namespace std; Checking:: Checking(int accountNumber) : Account(accountNumber){ overdraftProtection = false; ноооо зол во мноооо оол EN NE 13 14 avoid Checking::display() { cout << "Balance: " « fixed << setprecision(2) « accountBalance << endl; cout << "Account: " « accountNumber << endl; cout << "First Name: " « firstName << endl; cout << "Last Name: " « lastName << endl; cout < "Overdraft Protection: "« (overdraft Protection ? "true" : "false") << endl << endl; void Checking :: setoverdraftProtection(bool overdraftProtection) { this->overdraftProtection = overdraftProtection; qbool Checking::getoverdraftProtection(){ return overdraft Protection; 21 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 и Ем оноооо ч ол Еw NE #ifndef CHECKING_H #define CHECKING_H #include #include "Account.h" using namespace std; class Checking : public Account{ private: bool overdraftProtection; public: Checking(int account Number); void display(); void setoverdraftProtection(bool overdraftProtection); bool getoverdraftProtection(); | }; #endif 1 2 3 Ц 5 HNMOOOH #include #include #include #include "Savings.h" using namespace std; Savings::Savings(int account Number) : Account(accountNumber) { this->interestRate = 0.0; 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 avoid Savings::display(){ cout << "Balance: " « fixed << setprecision(2) « accountBalance << endl; cout << "Account: " « accountNumber << endl; cout << "First Name: " « firstName << endl; cout << "Last Name: " « lastName << endl; cout << "Interest Rate: " « fixed << setprecision(2) « interestRate << endl << endl; Avoid Savings::setInterestRate(double interestRate) { this->interestRate = interestRate; çdouble Savings::getInterestRate(){ return interestRate; 0 VOU EWNE Q#ifndef SAVINGS_H #define SAVINGS_H #include #include "Account.h" ſusing namespace std; class Savings : public Account{ private: double interestRate; public: Savings(int accountNumber); Savings(); void deposit(double amount); void withdraw(double amount); void display(); void setInterestRate(double interestRate); double getInterestRate(); 10 11 12 13 14 15 16 17 18 #endif

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It is code wiritten for checking the Account Balance and checking the intrest rates of the amount and is saved in file name callled savings.cpp.

A file containing C code has the file extension.c, whereas a file containing C++ code has the file extension cpp. The C++ programming language, also known as "C with Classes," was developed by computer scientist  as an extension of the C programming language.  Widely used as an object-oriented programming language is C++. By giving the C programming language support for objects, Stroustrup created C++. The term "object-oriented programming language" refers to a language that supports object-oriented programming. Due to its statically typed syntax and quicker code compilation, C++ is faster than Python. Python is slower than C++ because it uses the interpreter and supports dynamic typing, which slows down compilation.

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Which of the following are fundamental intuitions behind collaborative filtering? A) Similar users will rate the items similarly B) Similar users will not rate the items similarly C) Similar items will be rated similarly Answer choices Select only one option Only A and BOnly B and C Only A and C Only A

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Option A is correct. Similar users will rate the items similarly are fundamental intuitions behind collaborative filtering.

A line segment's exact midpoint is the point that lies halfway between its two endpoints. It is therefore the average of the two endpoints, which is the average of the two x- and y-coordinates. Discover the endpoints' coordinates. As a result, the electric field along OB at midpoint O is 5.4 106 N C1. (b) At mid-point O, a test charge in the amount of 1.5 109 C is positioned. Line OA is the direction of the force. This is due to the fact that the charge applied at point B repels the negative test charge whereas point A attracts it.

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tech a states that several types of superchargers are manufactured for use on vehicles. tech b states that the oldest version is the roots-style supercharger. who is correct?

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Available superchargers include blowers or "turbochargers" powered by engines. The turbocharger is the most popular way of supercharging these engines, with the exception of a few small engines.

Exhaust gas expansion is used by turbochargers to pump combustion air into an engine. Another innovation in internal combustion engines of the piston type that boosts performance is the supercharger. It is an air compressor that raises the pressure or density of air that enters the combustion chamber of an engine to facilitate heavy duty operation. The roots style supercharger is the oldest type of supercharger and was first used as an industrial air-moving device in the early 1900s.

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2. jasmone is a valuable material in the perfume industry and used in many soaps and cosmetics. suppose we are recovering this material from a water suspension of jasmine flowers by an extraction with benzene. the local mass transfer coefficient for jasmone in benzene is 3.0 x 10-4 cm/s. the local mass transfer coefficient of jasmone in the water is 2.4 x 10-3 cm/s. jasmone is 170 times more soluble in benzene than water (this is the partition coefficient). determine the overall resistance based on the water phase. write an expression for the correct driving force to be used with this resistance?(ans

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Overall resistance = (1/KD)(1/k water) = (1/(170))(1/2.4 x 10-3 cm/s) = 0.00588 cm/s

Driving force = (Conc. Benzene - Conc. Water)/Overall Resistance = (CB - CW)/0.00588 cm/s

What is resistance ?

Electrical resistance, or resistance to electricity, is a force that opposes the flow of current. It acts as a gauge for the difficulty of current flow in this way. Ohms () are used to express resistance values. Electrical will flow from to low when two terminals have an electron difference. That flow is countered by resistance. The current decreases as resistance increases. On the other hand, the current increases as the resistance decreases.

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Answer:

good question but i cant solve

bananas are to be cooled from 24 to 13 c at a rate of 215 kg/h by a refrigeration system. the power input to the refrigerator is 1.4 kw. determine the rate of cooling, in kj/min and the cop of the refrigerator. the specific heat of a banana above freezing is 3.35 kj/kg c

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The refrigerator receives a 9.8 kW power input. The proportion of electrical power consumption to heat dissipation is known as the Coefficient of Performance (COP).

It is the criterion used to assess the performance of the air conditioning system. It demonstrates the efficiency of heating and cooling systems. The following list of COP features includes:

The compressor power input to refrigeration output ratio is what determines this.

A rising coefficient of performance (COP) indicates that the cooling output will increase proportionately to the input of electricity. The ratio of electrical power consumption to heat dissipation is known as the Coefficient of Performance (COP). Any system's efficiency will improve with higher COP, and vice versa.

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8-33. Bar abc has a rectangular cross section of 300 mm by 100 mm. Attached rod db has a diameter of 20 mm. Determine the slope at a due to the loading. Consider only the effect of bending in abc, and axial force in db. E-200 gpa. D. O300 mm 20 kn 100 mm.

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Answer: the answer is in the photo

Explanation:

when choosing building-construction materials, what kinds of materials would you choose, all other things being equal? materials with a relatively small shear modulus materials with a relatively small bulk modulus materials with a relatively large bulk modulus any kinds, as long as the building is not too tall either materials with a large or a small bulk modulus

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when choosing building-construction materials i will chose a materials with a relatively large bulk modulus.

A substance's bulk modulus serves as a gauge of its compressibility resistance. It is described as the proportion between an increase in pressure that is infinitesimally small and the resulting relative decrease in volume.Any substance that may be utilized in construction is considered a building material. It frequently consists of wood, steel, concrete, cement, aggregates, bricks, clay, metal, and much more. In the past, humans have used nothing but pure bricks, wood, or straw. Wood, cement, aggregates, metals, bricks, concrete, and clay are among the most fundamental types of building materials used in construction. When choosing materials, it's important to take into account a variety of elements, including manufacture, durability, environmental effect, and specialized features for particular applications.

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