Q1 .In Java ,Implement an anonymous class with interfaces of a sweetshop containing parameters like cost , name of the sweet and calories wherein all different kind of sweets should have different mechanism to calculate the Cost = length of the name of the sweet * (your own random value based on sweet name) + calories of the sweet
Q2. Implement a functional interface for the same question as Q1 and override the functionality using anonymous class ?

Answers

Answer 1

In Java, you can implement an anonymous class with interfaces for a sweetshop by creating a class that implements the interface and provides the necessary methods. Additionally, you can also implement a functional interface using an anonymous class by overriding the functionality of the interface's method. Both approaches allow you to customize the calculation of the cost based on the sweet's name and calories.

To implement an anonymous class with interfaces for a sweetshop, you can create an interface that defines the required methods such as getCost(), getName(), and getCalories(). Then, you can create an anonymous class that implements this interface and provides the implementation for these methods. Within the implementation of the getCost() method, you can calculate the cost using the formula mentioned in the question: length of the name of the sweet * (random value based on sweet name) + calories of the sweet.
For the second question, you can implement a functional interface by defining a functional interface with a single abstract method, such as SweetCalculator. You can then create an anonymous class that overrides this method and provides the custom functionality for calculating the cost based on the sweet's name and calories.
Both approaches allow you to define the calculation logic for the cost of sweets based on their name and calories. The first approach uses interfaces and anonymous classes to achieve this, while the second approach uses a functional interface and an anonymous class with overridden functionality. Both methods provide flexibility and customization in calculating the cost of different kinds of sweets in a sweetshop.

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Related Questions

Malia is working with aluminum wire. while working with this type of wire, she must remember to a. always use pressure-type terminals. b. avoid copper connectors. c. avoid solder-type lugs. d. apply antioxidation paste

Answers

Answer:

B

Explanation:

Aluminium doesn't rust unless exposed to copper for a duration of time.

might give brainliest

Complete the following sentence.
_______ is a communication system that is composed of images that represent words.

Answers

Answer:

Blissymbols

Explanation:

Blissymbols is a constructed language with hundreds of basic symbols that represent words.

Answer:

Blissymbols

Explanation:

Water flows steadily through the pipe as shown below, such that the pressure at section (1) and at section (2) are 300 kPa and 100 kPa respectively. Determine the diameter of the pipe at section (2), D, if the velocity at section (1) is 20 m/sec and viscous effects are negligible.

Answers

Answer:

The velocity at section is approximately 42.2 m/s

Explanation:

For the water flowing through the pipe, we have;

The pressure at section (1), P₁ = 300 kPa

The pressure at section (2), P₂ = 100 kPa

The diameter at section (1), D₁ = 0.1 m

The height of section (1) above section (2), D₂ = 50 m

The velocity at section (1), v₁ = 20 m/s

Let 'v₂' represent the velocity at section (2)

According to Bernoulli's equation, we have;

\(z_1 + \dfrac{P_1}{\rho \cdot g} + \dfrac{v^2_1}{2 \cdot g} = z_2 + \dfrac{P_2}{\rho \cdot g} + \dfrac{v^2_2}{2 \cdot g}\)

Where;

ρ = The density of water = 997 kg/m³

g = The acceleration due to gravity = 9.8 m/s²

z₁ = 50 m

z₂ = The reference = 0 m

By plugging in the values, we have;

\(50 \, m + \dfrac{300 \ kPa}{997 \, kg/m^3 \times 9.8 \, m/s^2} + \dfrac{(20 \, m/s)^2}{2 \times 9.8 \, m/s^2} = \dfrac{100 \ kPa}{997 \, kg/m^3 \times 9.8 \, m/s^2} + \dfrac{v_2^2}{2 \times 9.8 \, m/s^2}\)50 m + 30.704358 m + 20.4081633 m = 10.234786 m + \(\dfrac{v_2^2}{2 \times 9.8 \, m/s^2}\)

50 m + 30.704358 m + 20.4081633 m - 10.234786 m = \(\dfrac{v_2^2}{2 \times 9.8 \, m/s^2}\)

90.8777353 m = \(\dfrac{v_2^2}{2 \times 9.8 \, m/s^2}\)

v₂² = 2 × 9.8 m/s² × 90.8777353 m

v₂² = 1,781.20361 m²/s²

v₂ = √(1,781.20361 m²/s²) ≈ 42.204308 m/s

The velocity at section (2), v₂ ≈ 42.2 m/s

What is the result of 10/4? 1) 3 2) 2.5 3) 2.0 4) 2 What is 2
∗∗
3? 1) 3 2) 2 3) 8 4) 6

Answers

1) The result of 10/4 is 2.5.

2) The result of 2**3 is 8.

1) When dividing 10 by 4, we obtain a decimal result of 2.5. This is because 10 divided by 4 equals 2 with a remainder of 2. The remainder, expressed as a fraction, is 2/4, which simplifies to 0.5. Adding the whole number part (2) and the fractional part (0.5) together gives us the result of 2.5.

2) In the expression 2**3, the double asterisks represent the exponentiation operation. Therefore, 2 raised to the power of 3 is calculated as 2 * 2 * 2, which equals 8. The exponentiation operation denotes repeated multiplication of the base number (2 in this case) by itself, according to the power (3 in this case).

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___________________ is the primary classification trait used to explain how scientists divide rocks into the three classification groups.
answer choices
- Composition
- Formation
- Location
- Texture

Answers

TEXTURE and COMPOSITION.

Pleas help. The dimensions of this figure are changed so that the new surface area is exactly 12 what it was originally. What is the new surface area? Enter your answer as a decimal in the box. Answer. Yd²

Answers

This is 109 because you multiply by 59 because year by year I live this

A closed vessel of volume 80 litres contains 0.5 N of gas at a pressure of 150 kN/m2. If the gas is compressed isothermally to half its volume, determine the resulting pressure.

Answers

Answer:

The resulting pressure of the gas when its volume decreases is 300 kN/m².

Explanation:

Given;

initial volume of the gas, V₁ = 80 L

number of moles of the gas, n = 0.5 moles

initial pressure of the gas, P₁ = 150 kN/m² = 150 kPa

Determine the constant temperature of the gas using ideal gas equation;

PV = nRT

where;

R is ideal gas constant = 8.315 L.kPa/K.mol

T is the constant temperature

\(T = \frac{P_1V_1}{nR} \\\\T = \frac{150.kPa \ \times \ 80 .L}{0.5 .mol \ \times \ 8.315(L.kPa/mol.K)} \\\\T = 2,886.35 \ K\)

When the gas is compressed to half of its volume;

new volume of the gas, V₂ = ¹/₂ V₁

                                             = ¹/₂ x 80L = 40 L

The new pressure, P₂ is calculated as;

\(P_2V_2 = nRT\\\\P_2 = \frac{nRT}{V_2} \\\\P_2 = \frac{0.5 \times 8.315\times 2886.35}{40} \\\\P_2 = 300 \ kPa = 300 \ kN/m^2\)

Therefore, the resulting pressure of the gas when its volume decreases is 300 kN/m².

Consider a sphere with diameter of 10 mm, rho=3000 kg/m3 , k=20 w/mo C, C=1 kJ/Kg- o C and α=6.66*10-6 m2 /s, which is initially at 400o C. Then it is quenched in an air stream of 20 o C. Convection heat transfer coefficient, between air and the surface of the sphere, is h=10 W/m2 - o C. • Calculate the time required for the center of the sphere to reach 335 o C? • Now the sphere is moved to a large bath of water at 20 o C. The heat transfer coefficient between water and the surface of sphere is assumed to be 6000 W/m2 - o C. Estimate the time required for the center of the sphere to reach 50o C?

Answers

To calculate the time required for the center of the sphere to reach 335 o C, we need to use the following formula:

()=∞+(0−∞)−ℎ/

where T(t) is the temperature at time t, T0 is the initial temperature, T∞ is the temperature of the surrounding fluid, h is the convective heat transfer coefficient, A is the surface area of the sphere, m is the mass of the sphere, c is the specific heat of the sphere material, and t is time.

Using the given values, we can calculate the time required for the center of the sphere to reach 335 o C:

A = πd^2/4 = 7.85x10^-5 m^2

m = ρV = (4/3)π(d/2)^3ρ = 1.178 kg

t = (1/α) ln[(T0 - T∞)/(T(t) - T∞)] = 79.26 seconds

To estimate the time required for the center of the sphere to reach 50 o C in the water bath, we use the same formula, but with a different value of h:

h = 6000 W/m^2-°C

T∞ = 20 °C

T0 = 335 °C

m = 1.178 kg

c = 1000 J/kg-°C (since C = 1 kJ/kg-°C)

T(t) = 50 °C

t = (1/α) ln[(T0 - T∞)/(T(t) - T∞)] = 242.18 seconds

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gearbox design calculation​

Answers

Answer:Gearbox design calculations involve a variety of factors, including the type of gearbox, the size and type of gears, the torque and speed requirements, the materials used, and the environmental conditions. The calculations also involve the selection of the appropriate gear ratios, the selection of the appropriate bearings, and the selection of the appropriate lubrication system. Additionally, the calculations must take into account the safety and reliability of the gearbox.

Explanation:

given the wheelbase of the car 138.8 inches, trackwidth 75 inches and loads on tires as follows. determine the longitudinal cg location in inches measured from the front wheel,

Answers

Wheelbase, trackwidth, and tire load data can be used to determine the longitudinal CG location. The distance in inches between the center of gravity and the front wheel.

Wheelbase, trackwidth, and tire load data can be used to determine a car's longitudinal center of gravity (CG) location. The distance between the centers of the front and rear wheels is known as the wheelbase, while the distance between the left and right tire centerlines is known as the trackwidth. The amount of weight on each of the four tires that are in contact with the ground is known as the tire load. The entire weight of the vehicle is divided by the wheelbase and trackwidth, and the resulting number is multiplied by the wheelbase to determine the longitudinal center of gravity (CG) location. The resultant measurement, taken from the front wheel, is the longitudinal CG location in inches.

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What are the Rivian automobile Key issues/circumstances and what
are the strategies are being considered? and what are the mission
and vision statements?

Answers

The company is considering strategies such as expanding production capacity, developing new vehicle models. Rivian's mission is to "keep the world adventurous forever" and the company's vision is to create a future where electric vehicles are the norm.

Rivian is addressing several key issues and circumstances in the automobile industry. One major issue is the need to expand production capacity to meet growing demand for electric vehicles. As the market for electric vehicles continues to evolve, Rivian aims to scale up its manufacturing capabilities to fulfill customer orders and remain competitive.

Another strategy being considered by Rivian is the development of new vehicle models. By diversifying its product lineup, Rivian can target different segments of the market and appeal to a broader range of customers. This includes expanding beyond the production of electric pickup trucks and SUVs to potentially include other vehicle types.

Enhancing its charging infrastructure is also a crucial consideration for Rivian. The company recognizes the importance of establishing a robust network of charging stations to support its electric vehicles. This includes both expanding the number of charging stations and improving their accessibility, ensuring that Rivian customers have convenient options for charging their vehicles.

Rivian's mission statement, "keep the world adventurous forever," reflects the company's commitment to building sustainable transportation solutions. It signifies Rivian's aim to create vehicles that enable people to explore and enjoy the world while minimizing their environmental impact.

The company's vision is to create a future where electric vehicles are the norm. Rivian envisions a world where electric vehicles powered by renewable energy sources dominate the automotive landscape, contributing to a more sustainable and cleaner future. In addition, Rivian seeks to integrate its vehicles with a sustainable ecosystem, promoting a holistic approach to transportation and environmental stewardship.

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If it is an animal then it is an organism convert it in first order logic

Answers

Answer:

This is not an engineering question.

Explanation:

I want to know about engines

Answers

Engines are mechanical devices that convert various forms of energy, such as chemical, thermal, or electrical energy, into mechanical work. They are commonly used in vehicles, machinery, and power generation systems.

Engines come in different types, including internal combustion engines (such as gasoline and diesel engines), steam engines, and electric motors. They play a crucial role in powering transportation and providing mechanical power for a wide range of applications.

Engines work based on the principle of converting energy from one form to another. In internal combustion engines, fuel is burned within the engine, creating high-pressure gases that push against pistons, generating mechanical work. This work is then used to power the vehicle or machinery. Steam engines, on the other hand, use the energy from steam to drive pistons or turbines. Electric motors convert electrical energy into mechanical energy using electromagnetic principles.Engines vary in size, complexity, and efficiency depending on their intended application. They require fuel or energy input and typically involve various components such as cylinders, pistons, valves, crankshafts, and cooling systems. Engine efficiency is an important consideration, as it determines how effectively the engine converts input energy into useful work while minimizing energy losses and waste heat.

Advancements in engine technology continue to improve efficiency, reduce emissions, and explore alternative fuel sources to address environmental concerns and promote sustainability. Overall, engines are vital devices that power various industries and contribute to modern society's transportation and power needs.

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which one of these reduce fraction?

Answers

How is I’m supposed to answer the question

a) Compute VL, iL, iZ and iR for the network of the figure if RL = 180 ohms.
b) Repeat part (a) if RL = 470 ohms.
c) Compute the value of RL that will establish maximum power conditions for the Zener diode.
d) Compute the minimum value of RL to ensure that the Zener diode is in the "on" state.

a) Compute VL, iL, iZ and iR for the network of the figure if RL = 180 ohms.b) Repeat part (a) if RL

Answers

a) Here, VL = 9v, IL = 50mA, Ir = 50mA for the network of RL= 180 ohms.

b) If RL = 470 ohms, then VL = 10v, IL = 21.276mA, Ir = 45.45mA

c) The value of RL that will establish maximum power conditions for the            Zener diode, R\(_{L_{(max)}}\) = 1.83 kΩ

d) The minimum value of RL to ensure that the Zener diode is in the "on" state R\(_{L_{(min)}}\) = 220 Ω

What is Zener diode?

A Zener diode is a particular kind of diode made to consistently permit current to flow "backwards" (with inverted polarity) when a specific reverse voltage, called the Zener voltage, is reached.

A wide range of Zener voltages, some of which are even variable, are used in the manufacture of Zener diodes. The reverse conduction occurs in some Zener diodes with sharp,  highly dopped p - n junctions and low Zener voltages; in these cases, the Zener effect, named after Clarence Zener, is caused by electron quantum tunneling in the small gap between the p and n regions.

Avalanche breakdown also occurs during the operation of diodes with higher Zener voltages, which have a more gradual junction.

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During a static governor adjustment, make sure that the speed control is in ________ ?

Idle position
Curb idle position
Transition speed
Fast or wide-open throttle position

Answers

Answer:

Fast or wide-open throttle position

1.What is three phase? why it is needed?
2. What is the condition to be balanced? Write down voltage equation of a balanced 3 phase voltage source and draw their phasor diagram.

Answers

1. We can see here that three phase refers to a type of electrical power transmission that uses three alternating current (AC) waveforms that are 120 degrees out of phase with each other. This is different from single-phase power transmission, which uses only one AC waveform.

What is voltage?

Voltage, also known as electric potential difference, is a measure of the electrical potential energy per unit of charge in an electrical circuit. It is defined as the amount of work required to move a unit of electric charge between two points in a circuit, typically measured in volts (V).

Three-phase power is needed because it allows for more power to be transmitted over a given amount of wire or cable. With three-phase power, the power is delivered in a more consistent manner, which means that there is less voltage drop over long distances.

2. In order for a three-phase system to be balanced, the three phases must have the same amplitude and be 120 degrees out of phase with each other. The voltage equation of a balanced three-phase voltage source is given by:

Vph = Vline / √3

where Vph is the phase voltage and Vline is the line voltage. The phasor diagram for a balanced three-phase system shows three sinusoidal waveforms that are displaced by 120 degrees from each other.

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(362-10(6) Electrical nonmetallic tubing and fittings shall be permitted to be _____ in a concrete slab on grade where the tubing is placed upon sand or approved screenings.

Answers

Answer: Electrical nonmetallic tubing, also known as ENT, is a type of conduit that is used to protect and route electrical wiring in residential and commercial buildings. It is made of a plastic material that is lightweight, flexible, and easy to install. When it comes to installing ENT in a concrete slab on grade, there are specific requirements that must be followed to ensure safety and compliance with building codes.

Explanation:

According to section 362-10(6) of the National Electrical Code, ENT and fittings are permitted to be installed in a concrete slab on grade as long as the tubing is placed upon sand or approved screenings. This means that the tubing must be supported by a layer of sand or other approved material to prevent it from being crushed or damaged by the weight of the concrete.

When installing ENT in a concrete slab on grade, it is important to choose the right type of tubing and fittings for the job. ENT comes in different sizes and thicknesses, so it is important to choose the right size for the wiring being installed. Fittings such as couplings, elbows, and tees must also be selected carefully to ensure a proper fit and to prevent leaks.

Overall, installing electrical nonmetallic tubing in a concrete slab on grade requires careful planning and attention to detail. By following the guidelines set forth by the National Electrical Code and using high-quality tubing and fittings, electricians can ensure a safe and reliable installation that meets the needs of their clients.
Hi! I understand that you would like me to use the terms "Electrical," "tubing," and "200 words" in my response. Here is the answer to your question:

Electrical nonmetallic tubing (ENT) and fittings shall be permitted to be "encased" in a concrete slab on grade where the tubing is placed upon sand or approved screenings.

Step-by-step explanation:

1. Electrical: The term "electrical" refers to the system and components that involve the distribution and use of electricity. In this case, it specifically relates to the nonmetallic tubing and fittings used for electrical installations.

2. Tubing: In this context, "tubing" refers to the electrical nonmetallic tubing, which is a flexible conduit designed to protect and route electrical wiring within a structure. ENT is made from nonmetallic materials, such as PVC, and is often used in concrete slabs on grade.

3. Encased: The term "encased" means that the tubing and fittings are embedded or surrounded by the concrete slab, providing protection and support for the electrical system.

In summary, the code allows for electrical nonmetallic tubing and fittings to be encased within a concrete slab on grade as long as they are placed upon sand or approved screenings, ensuring proper installation and safety.

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Which do you think would cause the most destruction to the organisms in a food web: taking away the carnivores, taking away the herbivores, taking away the producers or taking away the decomposers? Use evidence from your Food Web diagram above to support your claim.

Answers

Answer:

Explanation:

I do not have access to your diagram but based on what I know, a food web cannot sustain itself without decomposers. They are the main guys who break down dead animals, plants into organic or inorganic nutrients which are needed by the primary producers to grow. So if decomposers are not there then producers cannot produce and thus herbivores cannot live and carnovers die out as well. Hope this makes sense.

Check out: https://www.nationalgeographic.org/encyclopedia/decomposers/

A food web cannot sustain itself without decomposers. They are the main components who break down dead animals, plants into organic or inorganic nutrients which are needed by the primary producers to grow.

What are decomposers?

Decomposers are living organisms like fungi and bacteria. These decomposers are heterotrophic which means they must take the nutrients and it cannot make its own food. Decomposers play an eminent role in an ecosystem because of their process of nutrition.

They break down the dead plants and the animals. These break down the waste of the organisms. They are very eminent for all the ecosystem. If these were not in the ecosystem, the plants cannot get essential nutrients, dead matter and waste would deposit. So the nutrients in them gets recycled back so that they can be used again.

When fish dies, there is nothing which is ingested and the bladder air starts to release, which causes the fish to sink to the bottom. After few days, the internal organs of the dead fish gets decomposed, after which a gas is formed.

Therefore, A food web cannot sustain itself without decomposers.

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Given i_1(t) = 15cos (2 pi middot 500t)mA, R_1 = 130 Ohm, R_2 = 220 Ohm, r = 270 Ohm, L_1 = 20mH. Present answer in Cartesian Coordinates j = squareroot (-1) Calculate the series load that will absorb maximum power from the circuit at terminals ab. Transform the circuit to the frequency domain, Z_load = Then, R_load = L_load =

Answers

To calculate the series load that will absorb maximum power from the circuit at terminals ab, we need to transform the circuit to the frequency domain and determine the values of impedance (Z_load), resistance (R_load), and inductance (L_load). The answer will be presented in Cartesian coordinates with j representing the square root of -1.

In order to find the series load that absorbs maximum power from the circuit at terminals ab, we need to transform the given circuit to the frequency domain. Given the values of i_1(t), R_1, R_2, r, and L_1, we can calculate the impedance (Z_load) of the load connected at terminals ab.

By analyzing the circuit and using the appropriate formulas and calculations, we can determine the values of Z_load, R_load, and L_load in the frequency domain. Z_load represents the impedance of the load, R_load represents the resistance of the load, and L_load represents the inductance of the load.

The calculations involve using the given values and applying the laws and principles of electrical circuits. By transforming the circuit to the frequency domain, we can determine the load parameters that maximize power absorption.

The resulting values of Z_load, R_load, and L_load will be presented in Cartesian coordinates, with j representing the square root of -1, as is common in electrical engineering calculations.

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2.) Technician A says that milky colored ATF could indicate a leaking transmission cooler in the radiator.
Technician B says that milky colored ATF could indicate the presence of leak detection dye.
Who is right?
OA. A only
OB. B only
OC. Both A and B
OD. Neither A nor B

Answers

I think a is the correct answer

Need help giving out brainlest

Need help giving out brainlest

Answers

Answer:

1,2,3,5

Explanation:

Not positive but i think so

The following statements are about the laminar boundary layer over a flat plate. For each statement, answer whether the statement is true or false.
1. At a given x-location, if the Reynolds number were to increase, the boundary layer thickness would also increase.
A. True B. False
2. As outer flow velocity increases, so does the boundary layer thickness.
A. True B. False
3. As the fluid viscosity increases, so does the boundary layer thickness.
A. True B. False
4. As the fluid density increases, so does the boundary layer thickness.
A. True B. False
5. The boundary layer equations are approximations of the Navier-Stokes equation.
A. True B. False
6. The curve representing boundary layer thickness as function of x is a streamline.
A. True B. False
7. The boundary layer approximation bridges the gap between the Euler equation and the Navier-Stokes equation.
A. True B. False

Answers

Answer:

1. B. False

2.  B. False

3. A. True

4. B. False

5. A. True

6. A. True

7. A. True

Explanation:

1. B. False

The relation of Reynolds' number, Reₓ to boundary layer thickness δ at a point x is given by the relation

\(\delta = \dfrac{x \times C}{\sqrt{Re_x} }\)

That is the boundary layer thickness is inversely proportional to the square root of the Reynolds' number so that if the Reynolds' number were to increase, the boundary layer thickness would decrease

Therefore, the correct option is B. False

2.  B. False

From the relation

\(Re_x = \dfrac{U_o \times x}{v}\)

As the outer flow velocity increases, the boundary layer thickness diminishes

3. A. True

As the viscous force is increased the boundary layer thickness increases

4. B. False

Boundary layer thickness is inversely proportional to velocity

5. A. True

The boundary layer model developed by Ludwig Prandtl is a special case of the Navier-Stokes equation

6. A. True

Given a definite boundary layer thickness, the curve representing the boundary layer thickness is a streamline

7. A. True

The boundary layer approximation by Prandtl Euler bridges the gap between the Euler (slip boundary conditions) and Navier-Stokes (no slip boundary conditions) equations.

g imagine you are using pulse-width-modulation (pwm) to output an analog voltage signal with your arduino (which can only output 0v or 5v). what duty cycle would you use to output 3v? group of answer choices 40% 2% 20% none of the other answers 60%

Answers

Pulse Width Modulation, or PWM, is a technique for getting analog results with digital means.

What duty cycle would you use to output 3v?

To get 3V from a microcontroller digital pin which can either be high at 5V or LOW at 0V, we need to use a PWM signal of 60% duty cycle .

The duty cycle controls the analog voltage in a very direct way; the higher the duty cycle the higher the voltage. In the case of the BASIC Stamp, the duty cycle can range from 0 to 255. Duty is literally the proportion of 1s to 0s output by the PWM command.

Duty cycle can take on values only between 0 and 1; therefore, the output voltage of a boost regulator is always higher than the input voltage.

The duty cycle is between 0 and 1. It can be 0 if the chopper switch is never on and it can be 1 when the chopper switch is always on. 9. If T is the time period for a chopper circuit and α is its duty cycle, then the chopping frequency is. a) Ton/α.

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Can someone help with this please?

Answers

Answer:

with what

Explanation:

a c-section specimen is designed to tolerate a stress-concentration factor for 1.75. calculate the allowable normal strength in the c-section if the material used to make the section has a yield strength of 84 kpsi.

Answers

The allowable normal strength in the c-section is 48000 pounds per square inch.

The allowable stress depends on both the factor of safety imposed on the object and the yield strength or stress at which an object will be permanently damaged. To calculate the allowable normal strength we can divide the yield strength by the factor of safety.

To determine the allowable normal strength output we can use this equation below:

The allowable normal strength = The number yield strength : A stress-concentration factor

The number yield strength is 84 kpsi.

Then convert kpsi to psi : 84 kpsi = 84000 psi

A stress-concentration factor is 1.75

The formula to find allowable normal strength output is:

84000 psi : 1.75 = 48000

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Select the correct statement(s) regarding IEEE 802.16 WiMAX BWA. a. WiMAX BWA describes both 4G Mobile WiMAX and fixed WiMax b. DSSS and CDMA are fundamental technologies used with WiMAX BWA c. OFDM is implemented to increase spectral efficiency and to improve noise performance d. all of the statements are correct

Answers

Answer:

d. all of the statements are correct.

Explanation:

WiMAX Broadband Wireless Access has the capacity to provide service up to 50 km for fixed stations. It has capacity of up to 15 km for mobile stations. WiMAX BWA describes both of 4G mobile WiMAX and fixed stations WiMAX. OFMD is used to increase spectral efficiency of WiMAX and to improve noise performance.

what document is the primary reference document when making ethical decisions?​

Answers

The one that has Ben cited the most and which most directly relates to the topic it is pertaining to.

The ambient temperature is 70° and the humidity is low. With the AC on, what should the high-side gauge pressure be?

Answers

The high-side gauge pressure can not be calculated as information given here is not sufficient. The correct option is C.

What is high-side gauge pressure?

The pressure of the refrigerant on the high side of the air conditioning system, which is the side of the system following the evaporator, is measured by the high-side gauge pressure.

The type of refrigerant used, the size and architecture of the AC system, as well as the surrounding temperature and humidity, all have an impact on the high-side gauge pressure in an air conditioning system.

Low humidity is typically regarded as advantageous for air conditioning systems since it lowers the quantity of moisture in the air, which can facilitate the system's ability to chill the air.

However, it is impossible to precisely calculate what the high-side gauge pressure should be under these circumstances without knowing more details about the particular AC system.

It is preferable to seek advice from a licensed HVAC expert or review the system's manufacturer's specs.

Thus, the correct option is C.

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Identify the 3 levels of braking that precede the need to lock up your wheels?.

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When it comes to driving a car, braking is a very important skill to have. Braking is the process of slowing down or stopping a moving vehicle. Knowing how to brake effectively can be the difference between avoiding a crash and causing one.

Below are the three levels of braking that precede the need to lock up your wheels:

1. Perception braking: This is the first level of braking that precedes the need to lock up your wheels. Perception braking refers to the driver's ability to recognize the need to brake in response to a situation. This type of braking is necessary when you notice a potential hazard on the road, such as a pedestrian, a cyclist, or another car. Perception braking requires that you react quickly to the situation and apply the brakes as soon as possible.

2. Controlled braking: The second level of braking that precedes the need to lock up your wheels is controlled braking. This type of braking requires that you apply the brakes firmly but smoothly. The idea is to slow down the vehicle without locking up the wheels. Controlled braking is essential when you are driving on a wet or slippery road surface, as it allows you to slow down the car without losing control.

3. Threshold braking: The third level of braking that precedes the need to lock up your wheels is threshold braking. This is the most advanced form of braking and requires a lot of skill and experience. Threshold braking involves applying the brakes to the point just before the wheels start to lock up. At this point, the driver eases off the brakes slightly to maintain traction and control. Threshold braking is the most effective form of braking in emergency situations, as it allows the driver to slow down the vehicle quickly without losing control.

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