The radiation heat transfer rate between the two plates is 8.26 x 10^5 W. This is a significant amount of heat transfer, and it can have practical applications in various thermal systems.
To solve this problem, we need to first draw a radiation thermal circuit. The circuit consists of two parallel plates with emissivities of ε1 = 0.2 and ε2 = 0.7. The temperature of the first plate, T1, is 800 K, and the temperature of the second plate, T2, is 500 K. The view factor, F1-2, is given as 0.95.
The thermal radiation heat transfer rate between the two plates can be calculated using the following formula:
Q = σε1ε2A1A2F1-2(T1^4 - T2^4)
where Q is the thermal radiation heat transfer rate, σ is the Stefan-Boltzmann constant, A1 and A2 are the areas of the two plates, and T1 and T2 are the temperatures of the plates.
Substituting the given values, we get:
Q = (5.67 x 10^-8)(0.2)(0.7)(10^2)(10^2)(0.95)(800^4 - 500^4)
Q = 8.26 x 10^5 W
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The quantity of bricks required increases with the surface area of the wall, but the thickness of a masonry wall does not affect the total quantity of bricks used in the wall
True or False
Answer:
false
Explanation:
Apart from replacement and displament deep foundations,
1. whats a third soloution and
2 method of installation ,
3. advantages, disadvantages
4. how it is connected to the foundation, then describe the role this connection plays resisting forces (e.g. lateral restraint, and others)
Alternative deep foundation: helical piles. Installed with torque, ideal for limited access sites, vibration-free. Resist lateral forces.
What is the explanation for the above response? The third solution for deep foundations is the use of micropiles.Micropiles are typically installed using a drilling rig, and the process involves drilling a small diameter hole (usually less than 30 cm) into the ground and then filling it with a high-strength grout material, followed by the installation of a steel reinforcing element.Advantages of using micropiles include their ability to be installed in low headroom areas, the ability to be installed in difficult soil conditions, and their low noise and vibration during installation. However, their load carrying capacity is typically lower than that of traditional piles, and their installation can be more expensive than other deep foundation solutions.Micropiles are connected to the foundation through a pile cap or a concrete footing, which transfers the load from the structure to the micropiles. The connection between the micropiles and the foundation provides lateral restraint and resists forces such as wind and earthquake loads. The micropiles can also provide uplift resistance, as they are typically installed at an angle to increase their effective length and capacity.Learn more about deep foundations at:
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17. When shopping around for a bank, you should consider all of the following EXCEPT: *
. Bank fees charged
B. Services provided by the bank
C. The bank teller's level of education
D. Minimum Balance you have to maintain
Answer: C. The bank teller's level of education
Explanation:
When shopping around for a bank, some of the factors that an individual should consider include the fees charged by the bank, the services provided by the bank and the minimum balance that one must have in order to maintain the account opened.
One is not concerned with the bank teller's level of education. This is the concern of the management of the bank and the human resource department. It is the management that will determine the kind of person they want any for the position and the level of education he or she must have.
Therefore, the correct option is C.
name as much parts in a car that you know
Answer:
engine suspension brake and more
Explanation:
A steam boiler is used to heat the paper dryers in a paper mill. The boiler is located outside of the building. The steam pipes are insulated to keep the steam hot until it reaches the paper machine. Condensate is returned to the boiler in a separate line.
One winter, the paper mill decides to shut down the machine for a week during the holidays. The weather is very cold outside.
What should you do to prepare the boiler before leaving for the holidays?
A. Open Valve A to let the steam escape.
B. Open Valve B to shut off the condensate line.
C. Open Valve C to drain the condensate line.
D. Open Valve D to drain the boiler.
You should open Valve C to drain the condensate line to prepare the boiler before leaving for the holidays. The correct option is c.
What is a steam boiler?An energy-producing steam boiler heats water to produce steam, which in turn generates energy. To heat water, a steam boiler burns fuel. Steam is created when heat and water are combined.
The design, portability, tube types, fuel types, and pressure that steam boilers create define them. Since steam is gas, it fills the whole roll and disperses heat evenly when it condenses.
Therefore, the correct option is C. Open Valve C to drain the condensate line.
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In a series motor, the field electromagnet consists of A) a winding connected in parallel with the armature. B) a winding connected in parallel with the armature and a second winding connected in series with the armature. C) a winding connected in series with the armature. D) a winding connected in series with a separate dc power source.
Answer:
C) a winding connected in series with the armature.
Explanation:
In a series motor, an electromagnet is used as a stator to generate its magnetic field. The field coil of this stator are connected through a commutator in series with the rotor windings. This stator which is the armature windings will conduct AC even on a DC machine, due to the periodically reverses current direction (commutation) or due to electronic commutation (as in brushless DC motors).
.) If the charges attracting each other in the problem above have equal magnitude, what is the magnitude of each charge?
Answer:
Not seeing any other information, the best answer I can give is 2m.
Explanation:
M = magnitude
You see, if they have an equal charge, and you add them, it'd be 2 * m, or 2m.
What signal propagation phenomena causes the diffusion, or the reflection in multiple different directions, of a signal?
In the radio communication system, multipath is the propagation phenomenon that causes diffusion or reflection in multiple different directions of a signal.
Multipath is a propagation mechanism that impacts the propagation of signals in radio communication. Multipath results in the transmission of data to the receiving antenna by two or more paths. Diffusion and reflection are the causes that create multiple paths for the signal to be delivered.
Diffraction occurs when a signal bends around sharp corners; while reflection occurs when a signal impinges on a smooth object. When a signal is received through more than one path because of the diffraction or reflection, it creates phase shifting and interference of the signal.
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Consider an ideal ramjet engine flying at an altitude of 10,000 m (see local atmospheric conditions in appendix III of the textbook). The jet fuel used has a heat of combustion of 43,000 kJ/kg, and a stoichiometric fuel to air ratio of 0.06. The maximum temperature of the ramjet is 2600 K. Assume the specific heat ratio up to the combustion chamber is 1.4, and that the specific heat ratio through the rest of the engine (including the combustor) is 1.33. The specific heat at constant pressure for the gases in the combustor can be calculated using the following equation: C = R. 17-1 where R is assumed to be 0.287 kJ/kgk throughout the engine. Calculate the specific thrust and TSFC as a function of flight Mach number from a range of 1 to 6. Note that the fuel to air ratio can not be above the stoichiometric value (i.e. we can't burn more fuel than that at an equivalence ratio of unity). Some operating points may require a higher value off than the stoichiometric value to reach the temperature limit. Under this condition, f should be set to the stoichiometric value, and the combustor exit temperature T04 should be calculated from the energy equation. Otherwise, the maximum temperature is used and f is calculated from the energy equation. Using a procedure and an if/then/else approach might be ideal for this. Include the following plots: 1. Specific thrust (1) vs. Mflight 2. TSFC vs. Mflight 3. T04 vs. Mflight 4. Aexit/Athroat Vs. Mflight 5. 1th, Np, and no vs. Mflight TABLE 1 Geometric altitude S.I. units H, m TK P , N/m? p, kg/m3 . 4, m/s v, m/s po 0 1000 2000 3000 4000 5000 0 1000 1999 2999 3997 4996 288.150 281.651 275.154 268.659 262.166 255.676 1.01325 +5 8.9876 +4 7.9501 +4 7.0121 +4 6.1660 +4 5.4048 +4 1.00000 +0 8.87009-1 7.84618 -1 6.92042 - 1 6.08541 - 1 5.33415 - 1 1.2250 +0 1.1117 +0 1.0066 +0 9.0925 - 1 8.1935 - 1 7.3643-1 1.0000 +0 9.0748 -1 8.2168 -1 7.4225-1 6.6885 -1 6.0117 - 1 340.294 336.435 332.532 328.583 324.589 320.545 1.4607 -5 1.5813-5 1.7147-5 1.8628 - 5 2.0275 -5 2.2110 -5 6000 7000 8000 9000 10000 5994 6992 7990 8987 9984 249.187 242.700 236.215 229.733 223.252 4.7217 +4 4.1105 +4 3.5651 +4 3.0800 +4 2.6500 +4 4.66001 - 1 4.05677 -1 3.51854 -1 3.03979 - 1 2.61533 -1 6.6011 - 1 5.9002 -1 5.2579 -1 4.6706 -1 4.1351 - 1 5.3887 - 1 4.8165 - 1 4.2921 - 1 3.8128-1 3.3756 -1 316.452 312.306 308.105 303.848 299.532 2.4162 -5 2.6461 -5 2.9044-5 3.1957 -5 3.5251 - 5
H is the enthalpy of the gas, Hf is the enthalpy of the fuel, m is the mass flow rate of air, Vexit and Vinlet are the exit and inlet velocities.
What is mass?Mass is the measure of the amount of matter an object contains. It is measured in kilograms (kg) in the International System of Units (SI). Mass is also known as a measure of inertia, which is the resistance of an object to change its velocity or its direction. In other words, mass is the measure of an object's resistance to acceleration.
The specific thrust is the amount of thrust generated per unit mass flow rate of air through the engine. It can be calculated by the following equation:
T = m * (Vexit – Vinlet)
where m is the mass flow rate of air and Vexit and Vinlet are the exit and inlet velocities respectively.
TSFC
The TSFC is the amount of fuel consumed per unit of thrust produced. It can be calculated by the following equation:
TSFC = (mf/T) * (Vexit – Vinlet)
where mf is the fuel flow rate and T is the thrust generated.
T04
T04 is the temperature of the gases exiting the combustor. It can be calculated from the energy equation, which is given by:
H = Hf + m * (Vexit2/2 – Vinlet2/2) + mf * (Qf – Hf)
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What is the core domain for Accenture’s Multi-party Systems practice?
A. digital identity
B. employee retention
C. social networking
D. marketing responsiveness
Answer:
a
Explanation:
digital identity is the answer
The core domain for Accenture’s multi-party System is that of a digital identity. Ths that option A is correct.
What is a Multi-party System?A multiparty system is a shared data infrastructure within the individual and the organizations that drive the efficiency nf new business and lead to the formation of the revenue models. They include the blockchain and distribution database and include a variety of technology and other capabilities.
Find out more information about the multi-party systems.
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_____________ processes are actions that create physical solutions to problems.
a
Production Processes
b
Medical Processes
c
Agricultural Processes
d
Communication Process
Answer:
yes answer d is correct
Communication Process are actions that create physical solutions to problems. The correct option is d.
What is Communication Process?Human existence and organisational survival both depend on effective communication. It is a process of generating and disseminating thoughts, facts, opinions, and sentiments from one place, individual, or group to another. The Management function of Directing depends on effective communication.
The sending party, message encoding, channel selection, message receipt by the recipient, and message decoding are all aspects of the communication process.
Feedback is when the recipient communicates something back to the original sender. These procedures are actions that result in tangible fixes for issues.
Thus, the correct option is d.
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For a simple cubic crystal structure; the value of n = 1 since there is only one atom associated each unit cell.
Furthermore, for the unit cell edge length a = 2R and we have A = 74.5 g/mol & R = 0.145nm, using equation
Where the above conditions are given for the crystal structure referenced above, the density of the crystal structure is: 5.068 x 10⁻²¹ g/nm³.
The density of a crystal structure is the mass per unit volume of its unit cell. It is important for understanding the physical and chemical properties of materials. It is often used in material science and engineering to determine the quality and suitability of a crystal for various applications.
The equation for density is:
density = (A * n) / (a³ * Na)
where:
Given that:
n = 1,
a = 2R,
A = 74.5 g/mol,
R = 0.145 nm, and
Na = 6.022 x 10²³, we can substitute the values into the equation:
Density = (74.5 * 1) / ((2R)³ * 6.022 x 10²³)
Density = (74.5 * 1) / ((2 * 0.145)³ * 6.022 x 10²³)
Density = 74.5/ (0.024389 * 6.022 * 10²³)
Density = 74.5 / (1.46957 x 10²²)
Density = 5.068 x 10⁻²¹ g/nm³
Thus, the density of the crystal structure is: 5.068 x 10⁻²¹ g/nm³.
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Full Question:
Although part of your question is missing, you might be referring to this full question:
For a simple cubic crystal structure, the value of n = 1 since there is only one atom associated each unit cell.
Furthermore, for the unit cell edge length a = 2R and we have A = 74.5 g/mol & R = 0.145nm, using equation, find the density of the structure.
A quiz contains 10 questions. There are four possible answers for each question.In how many ways can a student answer the questions on the test if the student can leave answers blank?
Answer:
Simple In one way. That is if he left it blank
Can someone tell me the equation to calculate the maximum load current?
I =1000 x s [ square root of three x v]
Explanation:
Answer:
To calculate full load current, divide the full load power by the product of the full load voltage times 1.723
Tech A says that when disconnecting the battery, the negative terminal should be disconnected first. Tech B says that baking soda and water will remove lead oxide from battery terminals. Who is correct
Both technicians are partially correct.
Tech A is correct that when disconnecting the battery, the negative terminal should be disconnected first. This is a standard safety precaution to prevent any accidental short circuits or sparks that could occur if the positive terminal were disconnected first. By disconnecting the negative terminal first, any accidental contact with metal tools or other conductive materials will not create a circuit.
Tech B is also partially correct that baking soda and water can remove lead oxide from battery terminals. Lead oxide can form on the terminals of a battery over time, reducing its performance and causing problems with starting and charging. Mixing baking soda with water to create a solution can help to neutralize the acidic lead oxide and make it easier to clean off the terminals. However, it's important to follow the appropriate safety precautions when handling batteries, including wearing gloves and eye protection and avoiding contact with any spilled battery acid or electrolyte solution.
In summary, both Tech A and Tech B are correct, but only in part. It's important to follow the appropriate safety guidelines and protocols when working with batteries to prevent injury or damage to the vehicle.
A steam power plant with a power output of 230 MW consumes coal at a rate of 60 tons/h. If the heating value of the coal is 30,000 kJ/kg, determine the overall efficiency of this plant.
Answer:
\(\eta =46\%\)
Explanation:
Hello!
In this case, we compute the heat output from coal, given its heating value and the mass flow:
\(Q_H=60\frac{tons}{h}*\frac{1000kg}{1ton}*\frac{1h}{3600s}*\frac{30,000kJ}{kg}\\\\Q_H=500,000\frac{kJ}{s}*\frac{1MJ}{1000J} =500MW\)
Next, since the work done by the power plant is 230 MW, we compute the efficiency as shown below:
\(\eta =\frac{230MW}{500MW}*100\% \\\\\eta =46\%\)
Best regards!
Is the impedance of the capacitor purely reactive, and how does it compare to the nominal value of the ideal capacitor? Why or why not is it purely reactive?
In an electric field, a capacitor is a device that stores electrical energy. It has two terminals and is a passive electrical component. Capacitance refers to a capacitor's effect.
What is the impedance of an ideal capacitor?An perfect capacitor has an infinite resistance. For all frequencies and capacitance levels, the reactance of a perfect capacitor, and consequently its impedance, is negative.A capacitor that has no resistance and therefore doesn't lose any energy while it's operating is the ideal capacitor. It just possesses capacitance. There is no dielectric loss in a perfect capacitor. High temperature stability characterizes the ideal capacitor.As capacitance and frequency increase, capacitive reactance falls. Impedance is the complete opposition that reactance and resistance give.Similar to inductors, the ideal capacitor is a totally reactive device with no resistive (power dissipative) effects whatsoever. Of course, nothing is so flawless in the actual world. Capacitors, however, have the advantage of often being more pure reactive componentsTo learn more about Ideal capacitor refer to:
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if both the ram air input and drain hole of the pitot system become blocked, the indicated airspeed will
If both the ram air input and drain hole of the pitot system become blocked, the indicated airspeed will: a) increase during a climb.
What is a ram air input?A ram air input can be defined as an air intake system which is designed and developed to use the dynamic air pressure that is created due to vehicular motion, or ram pressure, in order to increase the static air pressure within the intake manifold of an internal combustion engine of an automobile.
This ultimately implies that, a ram air input allows a greater mass-flow of air through the engine of an automobile, thereby, increasing the engine's power.
In conclusion, indicated airspeed will increase during a climb when both the ram air input and drain hole of the pitot system become blocked.
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Complete Question:
If both the ram air input and drain hole of the pitot system become blocked, the indicated airspeed will
a) increase during a climb
b) decrease during a climb
c) remain constant regardless of altitude change
TRUE/FALSE. most requirements analysts are recent software engineering graduates, due to their extensive study of requirements engineering.
FALSE. Due to their significant study of requirements engineering, the majority of requirements analysts are recent graduates of software engineering.
Engineering is the use of scientific concepts in the design and construction of equipment, structures, and other items including bridges, tunnels, roads, cars, and buildings. There are other more specialized fields within the engineering discipline, each of which focuses a stronger emphasis on particular areas of applied mathematics, applied science, and application types. There is a glossary for engineering. The Latin terms ingenui, which means "cleverness," and ingeniare, which means "to contrive, devise," are the origin of the English word engineering. Engineering is the creative application of scientific principles to design or develop structures, machines, apparatus, or manufacturing processes, or works utilizing them separately or in combination; or to construct or operate the same while fully cognizant of their design, according to the American Engineers' Council for Professional Development
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ule
5. Safety and environmental training is important in keeping employees safe and free from injuries and illness.
A True
B) False
Answer:
true
Explanation:
The statement "Safety and environmental training are important in keeping employees safe and free from injuries and illness" is definitely true.
What is Injury?Injury may be characterized as a circumstance of being damaged or injured due to any physical means. This activity impacts the overall health and fitness of an individual.
Employees are working in their respective fields on the basis of their educational background, skills, and interests. But the fact that is common to all forms of employees is safety and security.
This safety prevents the employees from being injured and ill with the help of some crucial safety and environmental training in their respective trades. This approach by their company is beneficial for maintaining the health of their employees as well as the growth of the company.
Therefore, the statement "Safety and environmental training are important in keeping employees safe and free from injuries and illness" is definitely true.
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In general, air-source heat pumps are sized to meet the building cooling load. True or False?
False. In general, air-source heat pumps are sized to meet both the building cooling and heating loads.
Air-source heat pumps are versatile systems that provide both cooling and heating capabilities for buildings. They utilize the outdoor air as a heat source during heating mode and as a heat sink during cooling mode. When sizing an air-source heat pump, it is essential to consider both the building's cooling load and heating load.
The cooling load refers to the amount of cooling required to maintain a comfortable indoor temperature during hot weather, while the heating load represents the amount of heat required to keep the building warm during colder periods. By properly sizing the heat pump to meet both the cooling and heating loads, the system can effectively provide year-round comfort. Oversizing or undersizing the heat pump can lead to inefficiencies, increased energy consumption, and reduced comfort.
Therefore, it is crucial to consider both cooling and heating requirements when determining the appropriate size of an air-source heat pump for a building.
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In fixed update which code snip it is better A or B ? Assume this code is on a player game object with an attached rigid body component. Justify your answer based on the material that was covered in lecture. Clearly state which one you choose. Provide a short paragraph to support your answer.
A) transform.position = (playerRigidbody2D.position + moveDir * speed * Time.fixedDeltaTime);
B) playerRigidbody2D.MovePosition(playerRigidbody2D.position + moveDir * speed * Time.fixedDeltaTime);
Code snippet B uses the playerRigidbody2D.MovePosition() function, which ensures smooth movements and accurate collision handling by directly affecting the Rigidbody of the player object.
In the case of Fixed update, it is suggested to use code snippet B rather than code snippet A. The reason for this is discussed below:
A) In code snippet A, we are directly assigning the value of the new position to the transform position. The issue with this method is that the Rigidbody is not directly affected by this code snippet.
Rather, it is the transform of the player object that moves. This will lead to discrepancies and jittering when multiple objects collide. Therefore, it is not the best way to move an object around.
B) Code snippet B uses the playerRigidbody2D.MovePosition() function, which is better for moving objects with Rigidbodies.
This is because, when we use the MovePosition() function, we are moving the Rigidbody of the player object instead of its transform. This will result in smoother movements as the Rigidbody and the transform of the player object will be in sync while moving and colliding.
Therefore, this method is preferred for moving objects with Rigidbodies. Thus, we choose code snippet B for our purposes.
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In example 21. 17 in the textbook, if the dielectric constant of the slab that is slid between the plates of the capacitor had been 5 rather than 3. 3, what would have been the final voltage across the capacitor?.
Example 21.17 shows that a 3.3 μF capacitor is charged to 300 V and is then connected to a 5.6 μF capacitor through a switch S. The charge sharing between the two capacitors and the final voltage are to be determined.The original voltage across the 3.3 μF capacitor isQ = CV = (3.3 × 10-6 F)(300 V) = 0.99 mCWhen S is closed, the charge on each capacitor will be equal and given byQ = CV1 = CV2where V1 and V2 are the voltages across the 3.3 μF and 5.6 μF capacitors, respectively.
The equivalent capacitance of the two capacitors in series is
Ceq = (C1C2)/(C1 + C2)
= (3.3 × 10-6 F)(5.6 × 10-6 F)/(3.3 × 10-6 F + 5.6 × 10-6 F)
= 2.105 × 10-6 F
The final voltage across the capacitors is then
V = Q/Ceq
= (0.99 mC)/(2.105 × 10-6 F)
= 471.54 V
If the dielectric constant of the slab that is slid between the plates of the capacitor had been 5 rather than 3.3, the capacitance of the 3.3 μF capacitor would have increased by a factor ofκ = 5/3.3 = 1.5151
The original capacitance isC1 = 3.3 μFThe new capacitance is
C1' = κC1
= (1.5151)(3.3 × 10-6 F)
= 4.9983 μF
The equivalent capacitance of the two capacitors in series is
Ceq' = (C1'C2)/(C1' + C2)
= (4.9983 × 10-6 F)(5.6 × 10-6 F)/(4.9983 × 10-6 F + 5.6 × 10-6 F)
= 2.4289 × 10-6 F
The final voltage across the capacitors is then
V' = Q/Ceq'
= (0.99 mC)/(2.4289 × 10-6 F)
= 407.73 V
Therefore, if the dielectric constant of the slab that is slid between the plates of the capacitor had been 5 rather than 3.3, the final voltage across the capacitor would have been 407.73 V instead of 471.54 V.
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what is the division of demand
Optical discs store data using tiny pits and lands burned by a laser.
T / F
False. Optical discs store data using tiny pits and lands created by a laser, not burned. The laser beam alters the reflective properties of the disc's surface to encode the data.
Optical discs, such as CDs, DVDs, and Blu-ray discs, are created with a reflective layer and a protective layer on top. To store data on an optical disc, a laser beam is used to create microscopic pits and lands on the reflective layer. The laser focuses on specific areas of the disc, heating them to change their optical properties. The areas heated by the laser become the pits, while the unheated areas remain as lands.
When the disc is read, a laser beam is directed onto the surface, and a sensor detects the changes in reflection caused by the pits and lands. The sensor translates these changes into digital data that can be interpreted by a device, such as a CD or DVD player.
The pits and lands on an optical disc are arranged in a spiral track or concentric circles, forming a continuous sequence of data. By varying the length and spacing of the pits and lands, different patterns are created to represent the encoded data. This allows optical discs to store various types of information, including audio, video, and computer data.
Hence, optical discs use lasers to create pits and lands on a reflective surface, rather than burning the data onto the disc. This technique enables the discs to store and retrieve data accurately and reliably.
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a 25 mh inductor is connected across an ac generator that produces a peak voltage of 9.00 v .
The voltage across an inductor in an AC circuit depends on the frequency of the AC signal, as well as the inductance of the inductor.
To calculate the voltage across the inductor, we need to use the formula for the impedance of an inductor in an AC circuit, which is: Z = jωL where Z is the impedance of the inductor, j is the imaginary unit, ω is the angular frequency of the AC signal (which is 2π times the frequency), and L is the inductance of the inductor. In this case, we can calculate the angular frequency as follows: ω = 2πf.
We can make some general observations about the voltage across the inductor. First, since the inductor has a non-zero impedance, there will be a voltage drop across it when it is connected to the AC generator. Second, the voltage across the inductor will depend on the frequency of the AC signal and the inductance of the inductor.
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What major financial flop led to the end of the Sega Dreamcast and ultimately caused Sega to stop making game consoles altogether?
1: The founder and CEO of Sega was found to be secretly skimming money off of the top of profits, leading to widespread distrust by the public and a sharp decline in sales until they ultimately had to shut down due to making no profit.
2: A small group of employees found a way to drain all of the Sega Corporation funding accounts and flee the country with all of the money, never to be heard from again.
3: A game called Shenmue, that cost more than $70 million to make, meant that everyone who owned a Dreamcast needed to buy two copies of the game just for Sega to make back the money they had spent to develop it-which didn't happen.
4: A game called Katamari Damacy that carried a virus that would infect any console that it was played on forced Sega to spend millions of dollars in refunds and bankrupted the company.
Answer:
The major financial flop that led to the end of the Sega Dreamcast and ultimately caused Sega to stop making game consoles altogether is:
3: A game called Shenmue, that cost more than $70 million to make, meant that everyone who owned a Dreamcast needed to buy two copies of the game just for Sega to make back the money they had spent to develop it-which didn't happen.
Explanation:
Shenmue, released on December 29, 1999, was created for Dreamcast by Suzuki. It was widely described as the most expensive video game ever produced. It had an estimated production and marketing cost of between US$47 and $70 million, according to the latest available data.
What does efficiency measure?
Answer:
Efficiency is defined as any performance that uses the fewest number of inputs to produce the greatest number of outputs. Simply put, you're efficient if you get more out of less.
Explanation:
which aspects of this building are typical of cistercian structures and representative of their lifestyle, but are not found in cluniac buildings?
Cluniac buildings lack the painting and other features that make cistercian constructions distinctive and indicative of their way of life.
The Cluniac buildings did not fully grow until St. Bernard and his associates joined the Order in 1112; from this time on, a new spiritual militia emerged to challenge the rules established by the Order of Cluny a century earlier. The Cistercian monastery started off as a modest location where the first monks from Molesme had gone to construct their meagre cottages where they pitifully lived and farmed their land. Over 60,000 monks quickly dispersed from the Cister abbey and established other Cistercian monasteries in Italy, Spain, and Central Europe shortly after. The Cistercian Order had 343 monasteries when St. Bernard passed away in 1153; by 1200, there were 694.
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6. A 20/240-volt, 3-wire service-drop passing over a public street shall have a minimum clearance from the final grade of how many feet? A. 10ft(3.0 m) B. 12ft(3.6 m) NEC : C. 15fl(4.5 m) D. 18f(5.5 m)
The minimum clearance from the final grade for a 20/240-volt, 3-wire service-drop passing over a public street is 18ft(5.5m).
So, option D is the answer.A service drop is defined as an electrical line that extends from a utility pole to a building's electrical meter. are three wires for a single-phase distribution and four wires for a three-phase distribution. The National Electrical Code (NEC) stipulates that service drops must be mounted high enough to prevent people and vehicles from coming into touch with them. The NEC also specifies the minimum distance from final grade for service drops to avoid contact with pedestrians and vehicles.So, in order to maintain the safety, NEC determines a minimum clearance of the service-drop from the final grade as follows:
The minimum clearance of the service-drop from the final grade is 18ft (5.5m). Therefore, option D is the correct answer. A minimum clearance of the service-drop from the final grade is 18ft (5.5m) for a 20/240-volt, 3-wire service-drop passing over a public street.
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