What term refers to changing the design of existing code?

Answers

Answer 1

The term that refers to changing the design of existing code is "refactoring." Refactoring is a process in software development where the internal structure or design of code is modified to improve its readability, maintainability, and performance, without altering its external behavior. This practice ensures that the code is well-organized, easier to understand, and more efficient, making it simpler for developers to work with and modify in the future.

Refactoring is an essential part of software development, as it allows programmers to identify and rectify potential issues, reduce code duplication, and optimize the overall design. This, in turn, helps in preventing technical debt and ensuring that the software remains adaptable and scalable to meet changing requirements.

Common refactoring techniques include renaming variables or methods to convey their purpose more clearly, simplifying complex code structures, and breaking down large functions into smaller, more manageable pieces. Refactoring can be done manually or with the assistance of automated tools, which can help identify areas of improvement and apply the changes systematically.

In conclusion, refactoring is a crucial aspect of software development that focuses on changing the design of existing code to enhance its overall quality and maintainability, without affecting its functionality. By regularly reviewing and refining code, developers can keep their

software efficient, modular, and easy to work with, ensuring its longevity and adaptability to evolving needs.

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Related Questions

the coil polarity in a waste spark system is determined by the direction in which the coil is wound (left hand rule for conventional current flow) and cant be changed. for example if a V8 engine has a firing order of 18436527 and number one cylinder is on compression which cylinder would be on the exhaust stroke?

Answers

A V-8 engine that posses a firing order of 18436572 with number 1 cylinder on compression, the cylinder which would be on the exhaust stroke is number: A. 6.

What is an injector?

An injector can be defined as a mechanical device that is designed and developed for the introduction of fuel into the internal combustion system of an engine, especially under pressure.

The types of fuel injection system.

In Engineering, there are two (2) main types of fuel injection system and these include the following:

Simultaneous fuel injection.Sequential fuel injection.

What is a sequential fuel injection?

A sequential fuel injection is typically designed and developed to spray fuel into the internal combustion system of an engine based on the firing order that is configured within it by the manufacturer.

As a general rule, one of the two-paired spark plugs within the internal combustion system of an engine is always designed to have a negative polarity while the other spark plug is designed to have a positive polarity always.

In this context, we can infer and logically deduce that a V-8 engine that posses a firing order of 18436572 with number 1 cylinder on compression, the cylinder which would be on the exhaust stroke is number 6.

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Complete Question:

The coil polarity in a waste-spark system is determined by the direction in which the coil is wound (left-hand rule for conventional current flow) and can't be changed. for example, if a v-8 engine has a firing order of 18436572 and number 1 cylinder is on compression, which cylinder will be on the exhaust stroke?

A. 6

B. 4

C. 8

D. 2

specimen m (1008 steel) has an astm grain size number of 8, specimen n (1008 steel) has an astm grain size number of 7, specimen p (1008 steel) has an astm grain size number of 5, specimen q (1008 steel) has an astm grain size number of 4 . which specimen has larger number of grains?

Answers

Specimen P (1008 steel) has a larger number of grains compared to the other specimens.

How does the ASTM grain size number relate to the number of grains?

The ASTM grain size number provides a measure of the average grain size in a metal specimen. The higher the grain size number, the smaller the average grain size. In other words, a larger grain size number corresponds to a smaller number of grains in a given area. Therefore, since Specimen P has the lowest ASTM grain size number of 4, it indicates a larger number of grains compared to Specimen Q (grain size number 4), Specimen N (grain size number 7), and Specimen M (grain size number 8).

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a risk that happens when populations severely overextend the carrying capacity of their environment.
A) RESOURCE GROWTH
B) CATASTROPHIC COLLAPSE
C)DEMOGRAPHIC TRANSITION
D)INCREASED POPULATION GROWTH

Answers

B is the right answer

A phenomenon that occurs when the functions of many physical devices are included in one other physical device
ie - a smart phone has many different functions called_______

Answers

A phenomenon that occurs when the functions of many physical devices are included in one other physical device is called convergence.

Convergence refers to the integration and consolidation of various functions or capabilities into a single device or platform. It is a phenomenon where technologies, previously separate and distinct, come together to provide multiple functionalities in one device or system. A prime example of convergence is the smartphone, which combines features such as phone calls, messaging, internet browsing, camera, music player, GPS navigation, and more.

By leveraging advancements in communication, computing, and multimedia technologies, convergence enables the convergence of multiple devices and services into a single, compact, and portable device. This convergence enhances convenience, efficiency, and accessibility by eliminating the need for separate devices and promoting seamless integration of functionalities, transforming the way we interact and engage with technology.

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Technician A says that a diode only allows current
flow in one direction? Technician B says a diode
simply regulates current flow in both directions.
(A) A only.
(B) B only
(C) Both A and B.
A
(D) Neither A nor B.

Answers

Answer:

c

Explanation:

because it depends on the base whether pnp or npn

Why do i pick the most exspensive hobbies
Airsoft and building pcs

Answers

Answer: You make more money

Explanation: A pc is like 2k+ to build so imagine all of the profits coming in from your business/work.

Hey everyone!

This question is hard.
What specific fluid goes in the windshield wipers? (I never drove a car before)
And how much to put in fluid ounces? (So you don't blow a car up)

Answers

Hello!
I’ve never driven either. But I’m pretty sure there is not really specific fluid you have to use. Just to name a few are Rain-X Bug Remover Windshield Washer Fluid, Prestone AS657 Deluxe 3-in-1 Windshield Washer Fluid.
For how much, there should be a little line or 3/4th of the way full.

Hope this helps!

Answer:

What specific fluid goes in the windshield wipers.

Distilled water

How much to put in fluid ounces?

There should be a tiny bit more than 3/4 of the way full.

The two main types of disc brake calipers are:
a. fixed and free
b. fixed and sliding.
c. free and sliding.
d. fixed and broken

Answers

Answer: b fixed and sliding

Explanation:

The charge entering the positive terminal of an element is q = 5 sin 4 π t mC while the voltage across the element (plus to minus) is v = 3 cos 4 π t V
(a) Find the power delivered to the element at t = 0.3 s.
(b) Calculate the energy delivered to the element between 0 and 0.6 s.

Answers

Answer:

a)123.37 mW

b) 58.75 mJ

Explanation:

a) The current (i) flowing through the terminal is given as:

\(i=\frac{dq}{dt} \\i=\frac{d(5sin(4\pi t)}{dt} =20\pi cos(4\pi t)\ mA\\\)

The Power delivered to the element (P(t)) is given as:

\(P(t)=v(t)i(t)= 3 cos(4\pi t)*20\pi cos(4\pi t)*10^{-3}\\P(t)=60\pi cos^2(4\pi t)*10^{-3}\\at \ t \ =\ 0.3s,\ the \ power\ delivered\ is:\\P(0.3) = 60\pi cos^2(4\pi *0.3)*10^{-3}=123.37mW\)

b)  the energy delivered to the element (W) between 0 and 0.6 s is given as:

\(W = \int\limits^0_{0.6} {P(t)} \, dt \\W=\int\limits^0_{0.6} {60\pi cos^{2}(4\pi t)} \, dt =58.75mJ\)

In the formula shown, k is a correction factor for nonideal mixing. In the worst case, k is usually estimated to be:_______. Cppm = KMRT/KQVPM * 10^6 (Select the best answer and then click 'Submit.) a. 0b. 0.1c. 0.5d. 1.0

Answers

Answer:

d. 1.0

Explanation:

Correlation identifies the relationship between two variables. In the given scenario there is strong relation between non ideal mixing. The correction factor can be between -1 to 1 depending on the intensity of the relationship and dependency. The non ideal mixing efficiency is highly dependent on the factors that govern it this means there is high intensity relation so the k is estimated to be nearly 1.

Help this is very hard and I don't get it

Answers

Answer:

yes it is very hard you should find a reccomended doctor to aid in your situation. But in the meantime how about you give me that lil brainliest thingy :p

Which of the following terms describes the path from an electrical source to a switch or plug?
transmitter
circuit breaker
raceway
breaker panel

Answers

Answer:

transmitter hope thus helped!

Explanation:

Raceway is the answer

"A raceway is an enclosed conduit that forms a physical pathway for electrical wiring."

what type of power source is used for gmaw

Answers

Answer:

The GMAW process commonly uses a constant voltage power source (GMAW-CV) that allows for a relatively constant welding voltage output over a range of welding currents. For GMAW-CV the welder selects the wire feed speed (WFS) on the wire feeder unit and an appropriate voltage on the welding power supply.

The GMAW process commonly uses a constant voltage power source

The UHRS platform is optimized for Edge/Internet Explorer only. You can still use your favorite browser, but keep in mind that you may experience technical issues when working on UHRS with a different browser than Edge or Internet Explorer.

UHRS is optimized for...

Answers

It is to be noted that all UHRS platforms are optimized for the popular kinds of internet browser applications.

What is a UHRS?

The Universal Human Relevance System (UHRS) is a crowdsourcing platform that allows for data labeling for a variety of AI application situations.

Vendor partners link people referred to as "judges" to offer data labeling at scale for us. All UHRS judges are bound by an NDA, ensuring that data is kept protected.

A browser is a software tool that allows you to see and interact with all of the knowledgeon the World Wide Web. Web sites, movies, and photos are all examples of this.

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Discuss the relation between the force exerted and pressure.

Answers

Answer:

When a force is exerted on an object it can change the object's speed, direction of movement or shape. Pressure is a measure of how much force is acting upon an area. Pressure can be found using the equation pressure = force / area. Therefore, a force acting over a smaller area will create more pressure

Explanation:

hope it will become helpful to you ☺️☺️

ur mum ur mum ur mum ur mum ur mum

A 75-kg piano is hosted on a crane and delivered throughout the window of a 6th story apartment (20 meters above ground). What is the potential energy of the piano?

Answers

Answer:

  14,700 J

Explanation:

PE = Mgh = (75 kg)(9.8 m/s²)(20 m) = 14,700 J

raw sugar cane is taken into a process to create sugar, which is essentially sucrose. the raw cane is approximately 16% sucrose, 63% water, and the rest fiber by mass. juice from the cane is extracted by passing the cane through a series of crushers. about 5% extra mass of water is added to the sugar cane prior to this step to help in the extraction process. the crushed cane and liquid juice is sent to a filter press that creates a cake that contains 4% of the weight of the cane juice, which has a composition similar to the overall non-fiber content of the raw cane. the filtrate is sent to an evaporator where enough water is evaporated to obtain a pale yellow juice that is 41% water. a

Answers

The juice is then sent to a crystallizer where it is cooled and seeded with sugar crystals. The crystals grow in size and are separated from the liquid by centrifugation.

What is a crystallizer?

Crystallizer is a type of signal-processing technology most commonly used in audio production. It is designed to add clarity and definition to audio signals by emphasizing the frequencies which are most important to the signal. It works by amplifying the signal in the frequency domain and adding a process of resonance so that certain frequencies are emphasized, giving a more defined sound. Crystallizer is particularly useful in mastering, where it can bring out details and clarity that would otherwise be lost. It can also be used to enhance percussion instruments, making them more present in a mix.

The crystals are then dried and screened to obtain the desired size of sugar crystals. The remaining liquid is sent to a vacuum pan where it is boiled and evaporated until it reaches a concentration of 65% sucrose. The syrup is then cooled and crystallized to obtain the final product, which is refined sugar.

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I'm so confused to this question
What is the difference between Science and Engineering? ​

Answers

Explanation:

Science is the body of knowledge that explores the physical and natural world. Engineering is the application of knowledge in order to design, build and maintain a product or a process that solves a problem and fulfills a need (i.e. a technology).

Answer:

Generally, Science is the study of the physical world, while Engineering applies scientific knowledge to design processes, structures or equipment.

A chemical process converts molten iron (III) oxide into molten iron and carbon dioxide by using a reducing agent of carbon monoxide. The process allows 10.08 kg of iron to be produced from every 16.00 kg of iron (III) oxide in an excess of carbon monoxide. Calculate the percentage yield of iron produced in this process.

Answers

Answer:

percentage yield = 63%

Explanation:

The yield efficiency or percentage yield measure the amount of products that are formed from a given amount of reactant. For a percentage yield of 100, all the reactants are completely converted to product. Mathematically, the percentage yield is given by:

\(percentage\ yield = \frac{Actual\ yield}{expected\ yield} \times 100\\Actual\ yield = 10.08kg\\Expected\ yield= 16.00kg\\\\\therefore percentage\ yield = \frac{10.08}{16.00} \times 100 = 63 \%\)

If the driver gear has 10 teeth and is moving at 10 RPMs (revolutions per minute), at what speed would the driven gear move if it has 20 teeth?

Answers

Answer:

  5 rpm

Explanation:

Each turn of the driver gear moves 10 teeth past the point of engagement with the driven gear. That is half of the 20 teeth on the driven gear, so it makes 1/2 turn for each turn of the driver.

In 1 minute, the driver makes 10 turns, so the driven gear makes 5 turns. Its speed is 5 rpm.

A gold vault has 3 locks with a key for each lock. Key A is owned by the

manager whilst Key B and C are in the custody of the senior bank teller

and the trainee bank teller respectively. In order to open the vault door at

least two people must insert their keys into the assigned locks at the same

time. The trainee bank teller can only open the vault when the bank

manager is present in the opening.

i) Determine the truth table for such a digital locking system (4 marks)

ii) Derive and minimize the SOP expression for the digital locking system

Answers

Answer:

see the attached truth tableOpens = AB + AC

Explanation:

i) In the attached truth table, TRUE means the respective key owner is present and their keys are inserted at the same time. The "Opens" column is TRUE when two owners are present, not including the case where the only two owners present are B and C.

__

ii) The second attachment is a Karnaugh map of the truth table. The circled terms are ...

  Opens = AB +AC

A gold vault has 3 locks with a key for each lock. Key A is owned by the manager whilst Key B and C are
A gold vault has 3 locks with a key for each lock. Key A is owned by the manager whilst Key B and C are

A logic circuit with 3 gates and 2 inputs. The circuit will be read from the final output to the inputs.

The final AND gate has two inputs, the gate has output R.
The first input to the final AND gate is the output from an OR gate.
The OR gate has two inputs.
The first input to the OR gate is P.
The second input to the OR gate is Q.
The second input to the final AND gate is the output from a NOT gate.
The NOT gate has one input.
The input to the NOT gate is Q.
input signals:

P = 0 and Q = 1
R = __________-

Answers

Answer:

  R = 0

Explanation:

The output R is the result of the function ...

  R = (P+Q)·Q'

This simplifies to ...

  R = PQ' + 0

  R = PQ'

The result R will be the AND of P=0 and Q'=(1-1)=0. Any AND function with a 0 input will have a 0 output.

  R = 0

air is compressed at 20 psi and 70 degrees f to 150 psia in a compressor. the compressor is operated sich that the air temperature remains constant. calculate the change in the specific volume of air as it passes through this compressor.

Answers

Change in the specific volume of air = -8.51 ft³/lbm

By using the ideal gas law:

n1 = 1 mole

p1 = 20psia

T1 = 70°F

n2 = 1 mole

T1 = T2 = 70°F

Δv = v2-v1

Change in the specific volume of air = -8.51 ft³/lbm

⇒ negative sign shows that gas was compressed during this process.

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air is compressed at 20 psi and 70 degrees f to 150 psia in a compressor. the compressor is operated

Why are most products the result of an innovation instead of an invention?

Answers

Answer:

they were updated rather than being created

Answer:

Invention is about creating something new, while innovation introduces the concept of “use” of an idea or method.

by indicial notation, show that the material derivative of the jacobian of the deformation gradient tensor can be determined by d/dt(j(y,t)

Answers

we have shown that the material derivative of the jacobian of the deformation gradient tensor can be determined by d/dt(j(y,t)) through indicial notation.

In order to show that the material derivative of the jacobian of the deformation gradient tensor can be determined by d/dt(j(y,t)) through indicial notation, let us start by first defining some of the notations used in this problem. Definitions:    Jacobian of a deformation gradient tensor: The Jacobian of a deformation gradient tensor is defined as the determinant of the deformation gradient tensor. It is denoted by J(y,t).Material Derivative: The material derivative of a given quantity, represented by f(y,t), is defined as:df(y,t)/dt = (∂f/∂t) + (v·∇)fwhere v is the velocity of the fluid (or in this case, the material)Gradient: The gradient of a given scalar function, represented by f(y,t), is defined as the vector of its partial derivatives with respect to its independent variables. It is denoted by ∇f.Indicial Notation: Indicial Notation is a notational method that is used to represent and manipulate vectors, tensors, and other geometrical objects in a concise and unambiguous manner. It is based on the Einstein summation convention, which states that any repeated index in a term of a tensor expression should be summed over all possible values of that index.Indicial Notation is used in this problem to represent the partial derivatives of the deformation gradient tensor with respect to its independent variables, which are the spatial coordinates of the material point being considered.Now, let us apply these definitions and notations to the problem at hand.To begin with, we have the following given information:Jacobian of the deformation gradient tensor = J(y,t)Material Derivative of the Jacobian of the deformation gradient tensor = d/dt(J(y,t))Our task is to show that the material derivative of the Jacobian of the deformation gradient tensor can be determined by d/dt(j(y,t)) through indicial notation.To do this, we will start by expressing the material derivative of J(y,t) using its definition, as follows:df(y,t)/dt = (∂f/∂t) + (v·∇)fwhere f(y,t) = J(y,t)Therefore,df(y,t)/dt = (∂J(y,t)/∂t) + (v·∇)J(y,t)Now, let us use the indicial notation to express the partial derivatives of the deformation gradient tensor with respect to its independent variables. For convenience, we will denote the deformation gradient tensor by F and its partial derivatives by Fi,j, where i and j represent the spatial coordinates of the material point being considered.Thus, we can write the following expression for J(y,t):J(y,t) = det(F) = F1,1F2,2F3,3 - F1,1F2,3F3,2 - F1,2F2,1F3,3 + F1,2F2,3F3,1 + F1,3F2,1F3,2 - F1,3F2,2F3,1Using this expression, we can now use the chain rule of differentiation to find the partial derivatives of J(y,t) with respect to its independent variables. Specifically, we have:∂J(y,t)/∂t = ∂det(F)/∂t = det(F)·tr(F^-1(dF/dt))where tr denotes the trace of a matrix, and F^-1 denotes the inverse of the deformation gradient tensor.Using the indicial notation, we can write this expression as:∂J(y,t)/∂t = J(y,t)·Fi,i^-1·Fi,j·dFj,i/dtwhere we have used the summation convention to sum over the repeated index i.Now, let us look at the second term in the material derivative of J(y,t), which involves the gradient of J(y,t) with respect to its independent variables. Using the expression we derived earlier for J(y,t), we can write:∇J(y,t) = (partial(J)/partial(x1), partial(J)/partial(x2), partial(J)/partial(x3))where x1, x2, and x3 denote the spatial coordinates of the material point being considered.Using the indicial notation, we can write this expression as:∇J(y,t) = (partial(J)/partial(xi))where i = 1,2,3Therefore, the gradient of J(y,t) with respect to its independent variables can be expressed as:∇J(y,t) = J(y,t)·Fi,i^-1·Fi,j·(partial(Fj,k)/partial(xi))Using the chain rule of differentiation, we can express this as:∇J(y,t) = J(y,t)·Fi,i^-1·Fi,j·(dFj,k/dxk)·(dxk/dxi)where we have used the summation convention to sum over the repeated index k.Now, substituting these expressions back into the material derivative of J(y,t), we get:d/dt(J(y,t)) = (∂J(y,t)/∂t) + (v·∇)J(y,t)= J(y,t)·Fi,i^-1·Fi,j·dFj,i/dt + J(y,t)·Fi,i^-1·Fi,j·(dFj,k/dxk)·(dxk/dxi)·vwhich is the desired result.

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Python 5.18 lab
5.18 lab: adjust values in a list by normalizing when analyzing data sets, such as data for human heights or for human weights, a common step is to adjust the data. this adjustment can be done by normalizing to values between 0 and 1, or throwing away outliers.
for this program, adjust the values by dividing all values by the largest value. the input begins with an integer indicating the number of floating-point values that follow.
output each floating-point value with two digits after the decimal point, which can be achieved as follows:
print('{:.2f}'.format(your_value))
ex: if the input is:
5
30.0
50.0
10.0
100.0
65.0
the output is:
0.30
0.50
0.10
1.00
0.65
the 5 indicates that there are five floating-point values in the list, namely 30.0, 50.0, 10.0, 100.0, and 65.0. 100.0 is the largest value in the list, so each value is divided by 100.0.

Answers

In the given student question, Python 5.18 lab 0.50 refers to a Python exercise involving a list with five floating-point values. The list contains the following values: 30.0, 50.0, 10.0, 100.0, and 65.0. The largest value in this list is 100.0.


To solve this exercise, you need to divide each value in the list by the largest value, 100.0. This can be accomplished using a loop or list comprehension in Python. Here's an example of how you can perform this task using a list comprehension:

```python
values = [30.0, 50.0, 10.0, 100.0, 65.0]
largest_value = max(values)
normalized_values = [value / largest_value for value in values]
```

After executing this code, `normalized_values` will contain the result of dividing each element in the original list by the largest value, 100.0. The resulting list will be `[0.3, 0.5, 0.1, 1.0, 0.65]`.

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the competitive battles among rival sellers striving for better market positions, higher sales and market shares, and competitive advantage suggest the rivalry force multiple choice is stronger when firms strive to be low-cost producers than when they use differentiation and focus strategies. is often weak when rivals have emotional stakes in business or face high exit barriers. is largely unaffected by whether industry conditions tempt rivals to use price cuts or other competitive weapons to boost unit sales. tends to intensify when strong companies with sizable financial resources, proven competitive capabilities, and respected brand names hurdle entry barriers looking for growth opportunities and launch aggressive, well-funded moves to transform into strong market contenders. is weaker when more firms have weakly differentiated products, buyer demand is growing slowly, and buyers have moderate switching costs.

Answers

tends to intensify when strong companies with sizable financial resources, proven competitive capabilities, and respected brand names hurdle entry barriers looking for growth opportunities and launch aggressive, well-funded moves to transform into strong market contenders.

A competitive analysis, also known as a competitor analysis, evaluates your company's performance in relation to other companies in your market providing equivalent products or services.

A competitor study identifies each participant's operational strengths, substantive shortcomings, product offers, market dominance, and missed opportunities, according to David Taffet, CEO of Petal, and focuses on finding market competitors positioned to intrude on your potential.

These are some ways competitor analyses aid in business improvement:

Determine your areas of strength and weakness.Recognize the environment you work in.Analyze the trends in your industry.Make plans for future expansion.

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A single-phase H-bridge inverter employs a block modulation technique so as to produce
a 50% square wave output with a 50Hz fundamental frequency. The H-bridge is supplied
using a full-bridge diode rectifier, which is energized from a 120Vrms60Hz AC source. The
intermediate DC bus capacitor is set to be very large, and the H-bridge output load is a
pure resistor with R = 48Ω
A. Draw the circuit topology of this rectifier and H-bridge combination. Ensure that you
clearly label all circuit elements, including all sources, the switching devices, and all
passive elements
B. If the worst-case DC bus voltage ripple (∆V ) is specified as 10% of the rectified voltage,
determine the standard capacitance of the intermediate DC bus capacitor.
C. The modulation scheme is now reconfigured for DC-AC sinusoidal PWM utilizing
2-level switching.
The two phase-legs in the H-bridge inverter are switched at fs=7.567kHz
by comparing the sinusoidal reference against a triangular carrier waveform.
The sinusoidal reference has a frequency of fref= 500Hz and modulation depth of
M = 0.75.
Sketch operating waveforms for the inverter for two complete AC cycles
showing the carrier, sinusoidal reference, and gating signal for S1 and the unfiltered
switched voltage VAB across the load. Clearly indicate your assigned reference frequency
as well as the inverter output switching frequency in your waveforms.
D. The modulation scheme used in question (c) is now changed to a 3-level sinusoidal
PWM. Using the same sinusoidal reference as in question 5(c),
Sketch operating waveforms for the inverter for two complete AC cycles showing the carrier, sinusoidal
reference, and gating signal for S1 and the unfiltered switched voltage VAB across the
load. Clearly indicate your assigned reference frequency as well as the inverter output
switching frequency in your waveforms.
(e) Compare the modulation schemes used in question (c) and question (d) by examining
FFTs of the unfiltered switched voltage VAB. Comment on the differences observed
between the harmonic spectra of the two modulation schemes. What are the perceived
benefits of using one scheme over the other? Include FFTs of VABgenerated for both
2-level and 3-level modulation in your answer

Answers

For sign convention across the load, Terminals A and B are taken into consideration.

Thus, A is more positive during the time when S1 happened, but B is more positive during the time when S2 triggered. If the load is resistive, the voltage and current waveforms have the same shape.

When an RL load is present, neither the current waveform nor the voltage waveform will reach their peaks simultaneously.

When the load is capacitive dominant, the voltage will lag while the inductive dominant load will cause the current to lag.

When the voltage and current are not the same polarity, the damping current will travel through the feedback diodes. When the voltage is negative and the current is positive, diode D1 will conduct.

Thus, For sign convention across the load, Terminals A and B are taken into consideration.

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If a metal has a specific heat, then the metal could make an excellent material for cookware because.

Answers

Considering that the metal has a low specific heat, it could be a great material for cookware.

What are metals ?

Metals are substances that develop naturally beneath the Earth's surface. Most metals are shiny or lustrous. Because they are inorganic, metals are composed of materials that have never been alive.

In order to raise a body's temperature per unit mass, a certain amount of energy is needed, which is known as specific heat. It takes less energy to heat the cookware up when the specific heat is low. Cookware is made with the handles having a higher specific heat than the actual cooking portion, which is designed to have a low specific heat. Since the handles would take longer to get hot, the high specific heat at the handles ensures safety.

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What are some of the most complex building types to design?.

Answers

Strangely enough, the most complex building to design is the common house. I know, they’re like belly buttons, even if you don’t have one yourself, you know someone that has one, and you’ve certainly been in one.

A house has all the ingredients that you will find in far more complex buildings. On top of that, they are there in small quantities.

Nearly every house has a kitchen, bathroom, laundry and toilet. You will also find some of these in hospitals, hotels, parking stations, office blocks, sewerage works, defence facilities and so on.

The only difference is that in a house, there may only be one of these and it must be the right size, shape and position so that it is suitable for use. Even the doorways must be positioned correctly - to allow for ventilation, light, privacy , ease of access, safety and even feng-shui.

Each room must be the right size for its’ occupants and its’ usage. Bedrooms should have a window or some other method of providing natural light. Toilets and bathrooms should allow for privacy.

The materials that it is built of should be fit for purpose. The roof should provide shelter from the elements. The walls should be able to support the weight of the roof and provide shelter and security for the occupants. The floor should be stable and strong and able to support the activities that are carried out in the house.

On top of all that, it must look good - to somebody. It also must be comfortable to live in, otherwise the design is a fail. That doesn’t mean that it shouldn’t be cheap to build. A good designer designs with one eye on the asthetics, the other eye on the usage and utility and his hand firmly closed around the cheque-book.
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