Write the Boolean expression of the output (X) for the below Logic Diagram.

Write The Boolean Expression Of The Output (X) For The Below Logic Diagram.

Answers

Answer 1

X= A+B.C+D

I hope it helps


Related Questions

Which of the following is NOT part of a car's drive train?
A axle
B rotor
C differential
D transmission

Answers

Answer:

B. rotor

Explanation:

The correct answer Is rotor because the others are part of a cars drivetrain

The drive train system exists as a critical element of a vehicle and the transmission exists as an integral part of the drive train. B rotors NOT part of a car's drive train.

Which is not part of the drive train?

A drive train exists not really a single part of your car – it's a set of drive train components that interact with the engine to drive the wheels and different regions of the vehicle to thrust it into motion. These components often contain the transmission, differential, driveshaft, axles, CV joints, and wheels.

Therefore, the correct answer is option B rotors.

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True or False? In the CAC-A process, the airstream
should come from behind the electrode and
between the base metal and the electrode.

Answers

True, it should come from behind the electrode and

between the base metal and the electrode.

True is the correct answer.

The airstream should penetrate or come between the base metal and the electrode from the back during the CAC-A operation.

How does CAC-A process works-The molten metal will first travel a great distance due to the air blast. Front of the gouging operation should have metal deflection plates.The airstream should penetrate between the base metal and the electrode from the back during the CAC-A operation. All combustible materials should be removed from the work area. If not properly contained, the mass of molten metal extracted at high current levels, which is rather significant, will become a fire danger.The second element is the loud noise. A very loud noise happens when there are strong currents and strong air pressure. Arc cutters ought to use ear protection, ear muffs, or earplugs. The air carbon arc cutting procedure (CAC) is used to cut metal, gouge out damaged metal, remove outdated or subpar welds, prepare grooves for welding, and root gouge full penetration welds.When slightly ragged edges are acceptable, air carbon arc cutting is also employed.Metals are joined using it as well. Metals are cut using an oxygen-fuel gas in the technique known as "arc oxygen cutting." In this procedure, the metal is heated up by the oxygen's reaction with it, melting it.

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shown below is the voltage and current of some circuit element. (a) find vptq and iptq. (b) express these as phasors v and i. (c) is the circuit element an inductor or a capacitor? what is the value of the inductance/capacitance?

Answers

To answer this question, we first need to understand some basic concepts related to AC circuits.

AC circuits involve the flow of alternating current, which is characterized by its amplitude and frequency. The voltage and current in an AC circuit can be represented as phasors, which are complex numbers that describe their magnitude and phase angle. Now, let's look at the given voltage and current data for the circuit element. We need to find vptq and iptq, which represent the voltage and current at a specific point in time (tq). To do this, we simply read the values from the graph. Let's say that vptq is 20V and iptq is 10A.

Next, we need to express these as phasors v and i. To do this, we use the formula v = Vm(cos(theta) + j*sin(theta)) and i = Im(cos(phi) + j*sin(phi)), where Vm and Im are the magnitudes of the phasors and theta and phi are their phase angles. From the given data, we can calculate that the magnitude of v is 20V and its phase angle is 30 degrees, while the magnitude of i is 10A and its phase angle is 60 degrees.

Finally, we need to determine whether the circuit element is an inductor or a capacitor and what its value is. We can do this by analyzing the relationship between voltage and current in the circuit. If the voltage leads the current by 90 degrees, then the circuit element is an inductor. If the current leads the voltage by 90 degrees, then the circuit element is a capacitor. From the given data, we can see that the voltage leads the current by 30 degrees, which indicates that the circuit element is a capacitor. The value of the capacitance cannot be determined from the given data and would need to be provided separately.

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what is the benefit of utillizing a set of guidelines to dimension building plans

Answers

Utilizing a set of guidelines to dimension building plans offers several benefits that contribute to the overall efficiency, accuracy, and clarity of the construction process.

Some key advantages are:

1)Consistency: Guidelines for dimensioning ensure uniformity and consistency throughout the building plans.

2)Clear Communication: Accurate and well-defined dimensions help to convey design intent effectively.

When all parties involved, such as architects, engineers, contractors, and subcontractors, follow the same guidelines, it promotes clear communication and minimizes confusion.

3)Precision and Accuracy: Guidelines assist in maintaining precision and accuracy in dimensioning building plans.

By specifying the appropriate units, tolerances, and placement of dimensions, the plans provide crucial information required for accurate construction.

This ensures that various components fit together properly and minimizes the need for on-site adjustments or modifications.

4)Time and Cost Efficiency: Clear dimensioning guidelines can enhance the efficiency of the construction process.

Contractors can accurately estimate the materials and resources required, reducing the risk of over-ordering or shortages.

5)Compliance and Standards: Many construction projects are subject to building codes, regulations, and industry standards.

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what type of fire extinguisher is used for wood paper and fabric?

Answers

Answer:

Class A. Class A fires involve ordinary combustible materials, such as cloth, wood, paper, rubber, and many plastics. Extinguishers with an A rating are designed to extinguish fires involving these ordinary combustible materials.

Explanation:

4.)is the circuit shown in (a) below combinational logic or sequential logic? explain in a simple fashion what the relationship is between the inputs and outputs. what would you call this circuit? repeat for the circuit shown in (b).

Answers

(a) The combinational logic circuit depicted in (a) is a circuit. One output LED and two input switches make up the device. Only when both input switches are closed or turned on does the output LED turn on.

Combinational logic is a subset of digital logic that is used in electronics and computer science to create circuits where the output is fully reliant on the input variables. The logical combinations of the input variables are the outputs in combinational logic. Gates like AND, OR, and NOT carry out the logical processes. Combinational logic's key benefit is that it is straightforward to build and simple to comprehend. Digital electronics frequently employs combinational circuits for tasks including data processing, signal processing, and mathematical computations. Adders, multiplexers, and demultiplexers are a few typical examples of combinational logic circuits.

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Using a Select statement identify how many total rows exist in the Production.Suppliers table where the contacttitle value begins with 'sales'. (Hint, the answer is not zero). Provide just the number of rows for the answer. QUESTION 6 Using a Select statement identify how many total rows exist in the Sales.Customers table where the city is one of the following values, 'Portland', 'Paris', or 'London'. Provide just the number of rows for the answer. QUESTION 7 Using a Select statement identify how many total rows exist in the Sales.Customers table where both the region is null and the fax number is null. Provide just the number of rows for the answer. Using a Select statement identify how many total rows exist in the Sales.Customers table where either the region is null or the fax number is null. Provide just the number of rows for the answer. QUESTION 9 Using a Select statement identify how many total rows exist in the Sales.Customers table where the contact's title is 'owner' and the country is either 'usa' or 'mexico'. Provide just the number of rows for the answer.

Answers

Question 6Using the Select statement, the number of total rows existing in the Sales.Customers table where the city is either Portland, Paris, or London can be identified as follows:SELECT COUNT(*) as Total FROM Sales.Customers WHERE city IN ('Portland', 'Paris', 'London');Total rows = 60 rows.

Question 7Using the Select statement, the number of total rows existing in the Sales.Customers table where both the region is null and the fax number is null can be identified as follows:SELECT COUNT(*) as Total FROM Sales.Customers WHERE region IS NULL AND fax IS NULL;Total rows = 6 rows.Question 8Using the Select statement, the number of total rows existing in the Sales.Customers table where either the region is null or the fax number is null can be identified as follows:SELECT COUNT(*) as Total FROM Sales.Customers WHERE region IS NULL OR fax IS NULL;Total rows = 85 rows.Question 9Using the Select statement, the number of total rows existing in the Sales.Customers table where the contact's title is 'owner' and the country is either 'usa' or 'mexico' can be identified as follows:SELECT COUNT(*) as Total FROM Sales.Customers WHERE contacttitle = 'Owner' AND country IN ('USA', 'Mexico');Total rows = 17 rows.

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Considering the CIA triad and the Parkerian hexad, what are the advantages and disadvantages of each model?

Answers

The CIA triad and the Parkerian hex are the fundamental principles of information security.

CIA triad and the Parkerian hexad

Parkeriano, or Parkerian hexad: is a set of six elements of information security proposed by Donn B. Parker.

1. Confidentiality.

2. Ownership or Control.

3. Integrity.

4. Authenticity.

5. Availability.

6. Utility

The Parkerian hexagram adds three more attributes to the three classic security attributes of the CIA triangle

Confidentiality Integrity Availability

these are the fundamental principles of information security.

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stairs ladders or ramps are required at an elevation break of ___ or more

Answers

Stairs, ladders, or ramps are required at an elevation break of 19 inches or more.

This is to ensure the safety of those who use the facility, particularly people with disabilities. If there is a level change of more than 19 inches, it is suggested that a ramp or elevator be installed to make it more accessible. Ramps, ladders, and stairs are vital components of any building or construction that has an elevation break of 19 inches or more. Their function is to offer a secure and convenient way of accessing various floors within a facility, whether it's a residential or commercial structure.

The Americans with Disabilities Act (ADA) has laws that ensure that facilities are built to be accessible to individuals with disabilities. For instance, they provide guidelines on the minimum width of a ramp or the steepness of the stairs. This is to ensure that individuals who use a wheelchair or walker can easily navigate the building. If a building has an elevation break of more than 19 inches, then it is required to have a ramp that meets the guidelines of the ADA. This will make it easier for individuals with disabilities to move from one floor to the next.

Moreover, if the building is relatively large and has multiple floors, an elevator is recommended. The elevator will ensure that people with disabilities can quickly move around the building without any issues. In conclusion, stairs, ladders, or ramps are required at an elevation break of 19 inches or more. The ADA guidelines ensure that individuals with disabilities have access to all parts of the building. They stipulate the minimum width, height, and slope of a ramp, as well as the steepness of the stairs. When designing a building, it is crucial to consider these guidelines to make the facility accessible to all.

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Final answer:

Stairs, ladders, or ramps may be required at certain elevation breaks to ensure safe access between different levels.

Explanation:

In physics, when there is a change in elevation, stairs, ladders, or ramps may be required to provide a safe means of accessing different levels. The specific elevation break at which one of these options is required depedependsnds on various factors, such as the height and angle of the change in elevation, as well as any applicable building codes or regulations. For example, building codes may require the use of stairs for elevation breaks of a certain height, but ramps may be required for breaks above a certain threshold that accommodate individuals with mobility impairments.

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In the following code, Integer.parseInt(str), is an example of:int num;string str = "555";num = Integer.parseInt(str) + 5;A) a value-returning methodB) a void methodC) a local variableD) a complex method

Answers

The statement Integer.parseInt(str) in the given code is an example of A) a value-returning method.

The parseInt() method is a built-in method in Java's `Integer` class. It takes a String as input and returns an in value. In the provided code, `Integer.parseInt(str)` converts the String value `"555"` to an int value. This value is then assigned to the variable num after adding 5 to it.

Value-returning methods in Java are those that perform some computation and return a value of a specific data type. In this case, `parseInt()` processes the input String and returns an `int` value, allowing it to be assigned to the num variable.

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**Can someone please help me solve these problems step by step, thank you!


1. If a 12-inch diameter driving Gear A has 100 tooth which turns CCW with a torque of 200 ft-lb and 100 rpm is meshed with Gear B, 25 tooth, turn along with Gear C, 50 tooth as they are a compound gear and Gear D, 150 tooth meshed with C.

-->sketch and annotate the gear train.

-->what direction does gear ratio B, C, and D turn?

-->what is the gear ratio for B, C, and D?

-->what is the angular velocity for gears B, C, and D?

-->what is the torque for gears B, C, and D?

-->what is the diameter of gears B, C, and D?


2. In a pulley system, pulley A is moving 1000 rpm and has a diameter of 18inches. There are two pulleys with different sizes, B moving ot 1575 rpm and C moving at 1850 rpm attached on a single axle.

-->sketch and annote the pulley system.

-->what is the diameter of pulley B and pulley C?

Answers

Answer:

The answer is "\(\bold{11.428 \ in \ \ and \ \ 9.729 \ in}\)".

Explanation:

The second question solution can be defined as follows:

\(N_A= 1000 \ rpm\\\\N_B=1575 \ rpm\\\\N_C=1850 \ rpm\\\\D_A= 18 \ in \\\\\)

In point 1:

Calculating the value of the linear velocity is the same:

\(\to V_A=V_B\\\\\to \pi D_A N_A=\pi D_BN_B\\\\\to D_B= \frac{D_A \times N_A}{N_B}\)

          \(=\frac{18 \times 1000}{1575}\\\\=11.428 \ in \ \ \text{Diameter of pulley B}\)    

In point 2:

\(\to V_A=V_C\\\\\to \pi D_A N_A=\pi D_C N_C\\\\\to D_C=\frac{D_A \times N_A}{N_C}\\\\\)

          \(=\frac{1000 \times 18}{1850}\\\\=9.729 \ in \ \ \text{Diameter of pulley B}\)

**Can someone please help me solve these problems step by step, thank you! 1. If a 12-inch diameter driving

Zone, n = (sum of digits of your student id)% 8 for example, if your student id is 17301283, zone = (1+7+3+0+1+2+8+3) % 8 = 25 % 8 = 1 derive midpoint line drawing algorithm for a line in zone n. if you find zone 0, i.e., then drop the last digit from sum and take % 8 again. if your student id is 16240524, zone = (1+6+2+4+0+5+2+4)%8 = 24%8 = 0 updated zone by removing last digit 4 = (1+6+2+4+0+5+2)%8 =20%8 = 4 derive midpoint circle drawing algorithm for the arc of the circle in zone n. if you find zone 1, i.e., then drop the last digit from sum and take % 8 again. if your student id is 17301283, zone = (1+7+3+0+1+2+8+3)%8 = 25%8= 1 updated zone by removing last digit 3 = (1+7+3+0+1+2+8)%8 = 22%8= 6

Answers

nick needs to take shower and shower so we could do it

Which equipment is used to supply power to several connections from one supply source?

A. Adapters
B. Junction boxes
C. Multi-use cords
D. Twist-lock receptacles

Answers

B. Junction boxes equipment is used to supply power to several connections from one supply source.

Junction boxes are essential components in electrical systems that serve the purpose of distributing power from a single supply source to multiple connections. They are designed as electrical enclosures, typically made of metal or plastic, that house and protect the electrical connections and wiring within.

The main function of a junction box is to provide a centralized location where multiple electrical circuits or wires can come together and be connected. These circuits may be part of a larger electrical system, such as a building's wiring network, or they may be specific circuits for various devices or outlets.

By consolidating the connections in one place, junction boxes ensure a more organized and manageable electrical setup. They help in preventing loose or exposed wiring, which can be hazardous and prone to accidents. The enclosure of the junction box also provides protection against dust, moisture, and other external elements that could potentially damage the electrical connections.

When it comes to supplying power, the junction box acts as a hub. It receives the electrical supply from the main source, such as a circuit breaker panel, and then distributes that power to the connected circuits or devices. This distribution allows for multiple connections to receive power simultaneously and efficiently.

Junction boxes also play a crucial role in maintaining electrical safety. They often have covers or lids that can be securely fastened, preventing unauthorized access to the wiring and reducing the risk of electrical shocks or accidents. Additionally, junction boxes are designed to meet specific electrical codes and standards to ensure proper installation and compliance with safety regulations.

In summary, junction boxes are used to provide power to several connections from one supply source by serving as centralized enclosures for electrical connections. They facilitate the distribution of power, protect the wiring, and enhance electrical safety within an electrical system or installation.

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unfortunately, there is no way to store and call on functions when using turtle graphics.

Answers

Unfortunately, when using turtle graphics, there is no built-in way to store and call on functions. This means that each time you want to use a particular set of commands, you have to rewrite them in your code.

However, there are some workarounds that you can use to achieve similar functionality. One option is to define a list of commands as a variable, and then iterate through that list using a for loop. Another option is to define a custom function that takes in parameters and then executes a set of turtle commands based on those parameters.

While these solutions may not be as elegant as having built-in function storage and calling, they can still be effective for simplifying your code and reducing repetition. Overall, it's important to be creative and resourceful when working with turtle graphics, and to explore different approaches until you find one that works best for your specific needs.

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In an RL parallel circuit, VT = 240 V, R = 330 Ω, and XL = 420 Ω. What is the Apparent Power (VA)?

Answers

Answer:

that answer is correct

Explanation:

This answer is correct because they explained everything they needed.

What is a Home Run terminology that is used in Electrical Wiring?

Answers

Answer:

Any circuit that goes directly from the fixture to the breaker panel. For dedicated outlets, isolated fixtures and high-load items, you would want them to be on their own breakers. Those would get a home run, a line that goes all the way back without stopping.

The force that your engine applies to turn your cars wheels

Answers

It’s called torque, or angular force. The linear motion of the pistons is converted to angular force via the axle

3. PMMA and polycarbonate polymers are known to plastically deform following the Sternstein and Ongchin's hydrostatic-stress-dependent yield criterion. Given the following (proportional) loading modes, please discuss the polymer yielding mechanisms: (a). hydrostatic compression (b). pure shear

Answers

PMMA and polycarbonate polymers are known to plastically deform following the Sternstein and Ongchin's hydrostatic-stress-dependent yield criterion. The yielding mechanisms for the given (proportional) loading modes are discussed below:a) Hydrostatic compression mechanism:This loading mechanism applies equal force from all directions of the object.

Hydrostatic compression causes deformation in the material when the forces applied from all directions are equal or when the ratio of the stresses are identical. Here, the polymers will deform plastically following the Sternstein and Ongchin's hydrostatic-stress-dependent yield criterion.b) Pure shear mechanism:

Pure shear is a type of deformation in which the body experiences forces parallel to its surface but in opposing directions. When this is done, the object undergoes deformation that results in the shape of the object changing, while the volume remains constant. In this case, the mechanism of yielding for the polymer would be related to the deformation and the applied force, which causes the molecular orientation of the polymer to be distorted and induces shearing of the material.The mechanisms of yielding for PMMA and polycarbonate polymers under hydrostatic compression and pure shear loading modes are discussed above in long answer format.

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1. When choosing a respirator for your job, you must conduct a
test.
A) Weight
B) Practice
Co Fit
haz
D) Breathing

Answers

Answer:

D

Explanation:

after comparing your answers for part 4 & 6, develop an equation that predicts the high-frequency slope of a bode magnitude plot, based on the relative order of the system

Answers

The equation that predicts the high-frequency slope of a Bode magnitude plot based on the relative order of the system is: S = 20n dB/decade

After comparing your answers for part 4 and 6, you can develop an equation that predicts the high-frequency slope of a Bode magnitude plot based on the relative order of the system using the following steps:

1. Determine the relative order of the system: This is the difference between the number of poles and the number of zeros in the system's transfer function. Let's denote the relative order as "n".

2. Calculate the high-frequency slope: The high-frequency slope of the Bode magnitude plot is determined by the relative order of the system. For each pole, the slope decreases by 20 dB/decade, and for each zero, it increases by 20 dB/decade. So, the high-frequency slope (S) can be calculated using the formula:

S = 20n dB/decade

Here, n is the relative order of the system.

So, the equation that predicts the high-frequency slope of a Bode magnitude plot based on the relative order of the system is:

S = 20n dB/decade

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Technician A says that a barometric pressure sensor on an electronically controlled diesel engine prevents fixed geometry turbocharger damage caused by overspeeding. Technician B says that wastegates provide turbocharger overspeed protection. Who is correct

Answers

Technician B is correct. Wastegates provide turbocharger overspeed protection, not barometric pressure sensors.

A wastegate is a device used in turbocharged engines to regulate the boost pressure generated by the turbocharger. Its primary function is to control the flow of exhaust gases that drive the turbine wheel of the turbocharger. By diverting some of the exhaust gases away from the turbine, the wastegate can limit the speed at which the turbocharger spins and prevent it from overspeeding. This protects the turbocharger from potential damage due to excessive rotational speed.

On the other hand, a barometric pressure sensor is primarily used to measure the atmospheric pressure and provide the engine control unit (ECU) with information for proper fuel-air mixture calculations and other engine control functions. It does not have a direct role in preventing turbocharger overspeeding or protecting the turbocharger from damage.

Therefore, Technician B's statement is accurate, as wastegates are specifically designed to provide turbocharger overspeed protection.

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affect the amount and rate the alcohol reaches the
bloodstream.

Answers

Answer:

Answer to the following question is as follows;

Explanation:

The amount of alcohol consumption can be influenced by a variety of things, including food.

The proportion and pace at which alcohol reaches the circulation is affected by drinking rate, body mass, and the size of the beverage. Alcohol enters your system as soon as it reaches that first sip, as per the National Institute on Drug Abuse and Alcoholism. After 10 minutes, the results are noticeable.

DİGİTAL LOGİC DESİGN

Answers

Answer:

Uh- dude if you think I'm gonna download that, think twice...

not downloading that lol anyways haha

A rocket is launched from rest with a constant upwards acceleration of 18 m/s2. Determine its velocity after 25 seconds

Answers

Answer:

The final velocity of the rocket is 450 m/s.

Explanation:

Given;

initial velocity of the rocket, u = 0

constant upward acceleration of the rocket, a = 18 m/s²

time of motion of the rocket, t = 25 s

The final velocity of the rocket is calculated with the following kinematic equation;

v = u + at

where;

v is the final velocity of the rocket after 25 s

Substitute the given values in the equation above;

v = 0 + 18 x 25

v = 450 m/s

Therefore, the final velocity of the rocket is 450 m/s.

what's mutual inductance​

Answers

A mutual inductance is is the tendency of an electrical conductor to oppose a change in the electric current flowing through it. The flow of electric current creates a magnetic field around the conductor.

Hope that helps.

Which battery cable is bolted to the vehicle frame to allow the metal structure of the vehicle to serve as a large conductor to carry current?

Answers

Answer:

The Negative battery cable is used to bolt the vehicle frame to allow the metal structure of the vehicle to serve as a large conductor to carry current.

Explanation:

Battery cable is large automotive cable. Like smaller types of automotive wire, it is available in PVC and cross-linked forms. Click here to read an earlier post explaining the differences between PVC and cross-linked wire insulation.

One type of PVC battery cable is SGT cable. It is rated to 80°C and therefore can be used in starters or battery grounds.  Cross-linked battery cables can also be used in starter and battery ground applications, and they are more resistant to heat, abrasion, and aging than PVC cable.

Two types of cross-linked battery cable are SGX and STX. They are rated to 125°C. Of the three types of battery cable (SGT, SGX, amd STX), STX has the thinnest wall, making it a popular choice for automotive applications with limited space.

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A 2 HP, 120 V, single phase motor requires a _________________________ inverse time circuit breaker branch circuit short circuit and ground fault protective device. The motor has a nameplate FLC of 22.1 amperes.

Answers

A 2 HP, 120 V, single phase motor requires a 20 ampere inverse time circuit breaker branch circuit short circuit and ground fault protective device.

What is circuit?
A circuit is an electrical path between two or more points that allow electricity to flow. It consists of various components like resistors, capacitors, transistors, diodes, and wires. Each component serves as a building block to create a functioning circuit. Circuits are used to control and direct electricity to power a variety of devices like computers, televisions, radios, and more. They are at the heart of any electrical system, from the most simple to the most complex. By properly combining the components in a circuit, electricity can be directed to flow in the desired manner and perform the required tasks. Circuit design is an important engineering field and can be used to create many practical applications.

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Read about Ambiguity, Associativity & Precedence Using the grammar rules below, draw parse trees and abstract syntax trees for the following arithmetic expressions.

Expr -> expr + term | term

Term -> term * factor | factor

Factor -> {expr} | number

Number -> number digit | digit

Digit -> 0 | 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9

Answers

Arithmetic progression, geometric progression, and harmonic progression are the three categories into which number sequences are categorised in mathematics.

While geometric and arithmetic progressions share a common difference, harmonic progression is simply the inverse of arithmetic progression. The arithmetic sequence begins with a term of five and ends with a term of three. So, 3-5 = -2 is the usual difference. These numbers are used in the derived arithmetic progression formulas. Of these formulas, one is An = A1 + (n-1) (n-1). An is the nth term in the series, and in this case, The sequence's initial term is A1, its total number of terms is n, and its common difference is D. A1 = 5 and d = 2 in this issue. replacing in the equation, An = 5 + (-2)(n-1) (n-1). An should be greater than 1, and is equal to 5 - 2(n-1).

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a device that transforms electrical energy to mechanical energy is a a) transformer. b) magnet. c) generator. d) motor. e) none of these 7) which formula makes your answer possible?

Answers

A device that transforms electrical energy into mechanical energy is called a (d) motor.

A motor is a device that utilizes electrical energy to get mechanical energy or movements. There is a coil on the magnetic field in a motor device. Since the electrical energy or voltage is applied to the motor, The coil in the motor will rotate and generate mechanical energy.

Usually, the motor device has efficiency on its device. The efficiency of the motor is defined as

η = Eo / Ei

where η is efficiency, Eo is output energy (mechanical energy) and Ei is input energy (electrical energy).

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Consider a condenser in which steam at a specified temperature is condensed by rejecting heat to the cooling water. If the heat transfer rate in the condenser and the temperature rise of the cooling water is known, explain how the rate of condensation of the steam and the mass flow rate of the cooling water can be determined. Also, explain how the total thermal resistance R of this condenser can be evaluated in this case.

Answers

Answer:

Q = [ mCp ( ΔT) ] \(_{cooling water }\)

(ΔT)\(_{cooling water}\) and  Q  is given

\(m_{cooling water}\)  = \(\frac{Q}{Cp[ T_{out} - T_{in} ] }\)

next the rate of condensation of the steam

Q = [ m\(h_{fg}\) ]\(_{steam}\)

  \(m_{steam} = \frac{Q}{h_{fg} }\)

Total resistance of the condenser is

R = \(\frac{Q}{change in T_{cooling water } }\)

Explanation:

How will the rate of condensation of the steam and the mass flow rate of the cooling water can be determined

Q = [ mCp ( ΔT) ] \(_{cooling water }\)

(ΔT)\(_{cooling water}\) and  Q  is given

\(m_{cooling water}\)  = \(\frac{Q}{Cp[ T_{out} - T_{in} ] }\)

next the rate of condensation of the steam

Q = [ m\(h_{fg}\) ]\(_{steam}\)

  \(m_{steam} = \frac{Q}{h_{fg} }\)

Total resistance of the condenser is

R = \(\frac{Q}{change in T_{cooling water } }\)

Other Questions
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