The limited approach boundary distance for an exposed fixed circuit part on a 480y/277-volt distribution panel is 3'6".
What is an exposed fixed circuit?An exposed Fixed Circuit part is, a bare conductor or another circuit component that is stationary and will not move. This is the most often used Limited Approach Boundary value. Exposed Movable Conductor - A bare conductor that can move (e.g., an overhead transmission line conductor).
The limited approach boundary distance for an exposed fixed circuit part on a 480y/277-volt distribution panel is 3 feet 6 inches, which indicates that persons and objects should not go any closer to live electrical parts than this distance in order to avoid electrical shock or another injury.
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How can I derive the Navier-Stokes Equation in the y direction?
Answer:
Let's flip the equations about the equal sign so what we have in the first equation is the sum of forces in the x-direction is equal to the mass times the acceleration.
in a device to produce potable water, humid air at 90 of, 29.7 in hg, and 95% relative humidity is cooled to 40 of at constant pressure. what volumetric flow rate of air into the cooler (ft3/min) is required to provide 10.0 gal/min of condensed water? (20 points)
The amount of water that flows through a specific surface in a unit of time is known as the volumetric flow rate. Or, to put it more simply, how quickly water moves through a pipe.
Volumetric flow rate is influenced by friction loss, water velocity, and pipe diameter. As is well known, volumetric flow determines how much space the molecules in a flowing gas occupy, while mass flow counts the number of molecules in the gas. Volumetric flow rates can significantly change in response to changes in pressure and/or temperature because gases are compressible and temperature has a large impact on them. Vacuum technology typically deals with three different types of flow: molecular flow, viscous or continuous flow, and the flow at their intersection.
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Which one of the following would appear as a thin line on a drawing?
A. Centerline
B. Cutting plane line
C. Short break line
D. Outline
Answer:
try b
Explanation:
which other factors do you need to consider when preparing to move gondolas?
The factors that you need to consider when preparing to move gondolas are:
Heightwidthlength color. How do you move a gondola?In choosing gondola one need to look at some factor in decisions such as height.
Know that it is good to consider the construction material and also the center wall configuration for its building also.
The factors that you need to consider when preparing to move gondolas are:
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An automobile having a mass of 1100 kg initially moves along a level highway at 120 km/h relative to the highway. It then climbs a hill whose crest is 80 m above the level highway and parks at a rest area located there. Use a reference with kinetic and potential energy each equal to zero for the stationary highway before the hill. Let g = 9.81 m/s^2.
For the automobile, determine its change in kinetic energy and its change in potential energy, both in kJ. For the automobile, determine its change in kinetic energy, in kJ.
a. -8594
b. -663.1
c. -6.63x10^5
d. 663.1
Answer:
\(-6111.11\ \text{kJ}\)
\(863.28\ \text{kJ}\)
Explanation:
m = Mass of automobile = 1100 kg
v = Velocity of car = 120 km/h = \(\dfrac{120}{3.6}\ \text{m/s}\)
h = Height of hill = 80 m
g = Acceleration due to gravity = \(9.81\ \text{m/s}^2\)
Change in kinetic energy
\(KE=\dfrac{1}{2}m(u^2-v^2)\\\Rightarrow KE=\dfrac{1}{2}\times 1100\times (0-(\dfrac{120}{3.6})^2)\\\Rightarrow KE=-611111.11\ \text{J}\)
Change in kinetic energy is \(-6111.11\ \text{kJ}\)
Change in potential energy is given by
\(PE=mgh\\\Rightarrow PE=1100\times 9.81\times 80\\\Rightarrow PE=863280\ \text{J}\)
The change in potential energy is \(863.28\ \text{kJ}\).
fraternity house with 40 occupants is considered a Group pancy. a. R-1 c. R-3 Reference b. R-2 d.
A fraternity house with 40 occupants is considered a Group A fraternity house with 40 occupants is considered a Group R-2 occupancy. The correct option is B.
What is a fraternity house?Fraternity and sorority housing in North America primarily refers to the residences or communities where members of these organizations live and socialize. Fraternity and sorority housing can serve as a place to live as well as a place to host social events, meetings, and community-oriented activities.
When there are 40 residents living in a fraternity house, it is referred to as a Group R-2 occupancy. Therefore, based on the information, the correct option is B.
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how to install ring floodlight cam without existing wiring
To install a Ring Floodlight Cam without existing wiring, follow these steps: Choose a suitable location, Purchase a battery-powered Floodlight Cam, Install the Ring app, Setup in the app, Mount the cam,
1. Choose a suitable location: Select a spot near your Wi-Fi router with a clear view of the area you want to monitor. Ensure it's within the range of your home's Wi-Fi network.
2. Purchase a battery-powered Floodlight Cam: Opt for the battery-powered version that doesn't require wiring.
3. Install the Ring app: Download and install the Ring app on your smartphone.
4. Setup in the app: Follow the app's instructions to add the device, create an account, and connect the Floodlight Cam to your Wi-Fi network.
5. Mount the cam: Use the provided mounting bracket to secure the camera in the chosen location.
6. Insert the battery: Insert the rechargeable battery into the camera.
7. Test the cam: Once installed, test the camera to ensure it's functioning correctly.
8. Configure settings: Customize settings like motion detection and alerts in the Ring app.
By following these steps, you can have a fully functional Ring Floodlight Cam even without existing wiring.
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Installation a2 An insulated rigid tank initially contains 1.4-kg saturated liquid
water and water vapor at 200°C. At this state, 25 percent of the
volume is occupied by liquid water and the rest by vapor. Now an
electric resistor placed in the tank is turned on, and the tank is
observed to contain saturated water vapor after 20 min. Determine
(a) the volume of the tank, (b) the final temperature, and (c) the
electric power rating of the resistor
nd demo of reaper in Mahindra Yuvo 575 DI tractor
Answer:
Explanation:
It appears that you are trying to solve a problem involving an insulated rigid tank containing saturated liquid water and water vapor. To determine the volume of the tank, you will need to know the mass of the liquid water and the mass of the water vapor. The mass of the liquid water can be calculated by multiplying the mass of the water and vapor mixture by the fraction of the mixture that is liquid water (1.4 kg * 0.25 = 0.35 kg). The mass of the water vapor can be calculated by subtracting the mass of the liquid water from the total mass of the mixture (1.4 kg - 0.35 kg = 1.05 kg).
To determine the final temperature of the tank, you will need to know the amount of heat added to the tank by the electric resistor and the specific heat capacity of the water and water vapor mixture. The specific heat capacity is a measure of the amount of heat required to raise the temperature of a substance by a certain amount. The specific heat capacity of water is 4.186 J/g°C, and the specific heat capacity of water vapor is 2.080 J/g°C.
To determine the electric power rating of the resistor, you will need to know the amount of heat added to the tank by the resistor and the time over which the heat was added. The power rating of the resistor is equal to the amount of heat added to the tank divided by the time over which the heat was added.
I hope this helps clarify the problem and provide some guidance on how to solve it. If you have any further questions or need additional help, please don't hesitate to ask.
8. If you push a 2000 N weight up a ramp with 400 N of force and you raise the weight 1 meter,
how long is the ramp?
A) 3 m
B) 5 m
C) 10 m
D) 20 m
17. File Class Description: Code Example: 18. Classes to read from and write to text files Description: Code Example: 19. Abstract Classes Description: Code Example: 20. Interfaces Description: Code Example: 21. JavaFx Description: Code Example:
17. The File class allows the user to create, rename, or delete files and directories.
18. Java's BufferedReader and BufferedWriter classes are useful in reading from and writing to text files.
19. Abstract classes in Java provide a mechanism to create a class hierarchy with some default behaviors, while allowing the subclasses to implement specific behavior.
20. Java's interfaces are used to achieve abstraction and implement multiple inheritance.
17. File Class Description
The File class is used for representing and manipulating file and directory paths.
The File class contains various methods for manipulating the directory or file specified by path.
Here is a code example:
File f1 = new File("C:\\Users\\UserName\\Desktop\\filename.txt");
The File class allows the user to create, rename, or delete files and directories.
18. Classes to read from and write to text files Description
Java's BufferedReader and BufferedWriter classes are used to read and write text files.
BufferedReader reads the text from a character stream, whereas BufferedWriter writes the text to a character stream.
Here is a code example:
BufferedReader reader = new BufferedReader(new FileReader("file.txt"));
BufferedWriter writer = new BufferedWriter(new FileWriter("file.txt"));
Java's BufferedReader and BufferedWriter classes are useful in reading from and writing to text files.
19. Abstract Classes Description
Abstract classes are used when creating a class with certain default behavior that must be inherited.
Abstract classes are used to define the methods, but the implementation of the method is not defined in the abstract class.
Here is a code example:
abstract class A {public void print() {System.out.println("A");}}
Abstract classes in Java provide a mechanism to create a class hierarchy with some default behaviors, while allowing the subclasses to implement specific behavior.
20. Interfaces Description
An interface is a collection of abstract methods that can be used to achieve abstraction.
Interfaces are used to implement multiple inheritance.
Here is a code example:
interface A {public void print();}
Java's interfaces are used to achieve abstraction and implement multiple inheritance.
21. JavaFx DescriptionJava
FX is a platform-independent and lightweight framework for building Rich Internet Applications(RIA).
It is used to create desktop applications.
Here is a code example:
System.out.println("Hello, JavaFX!");
JavaFX is a lightweight framework that is used to create desktop applications.
It is platform-independent and can be used to create Rich Internet Applications(RIA).
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sketch the implementation of a stack algorithm assuming there is a bound, in any state of the execution, on the total difference between the number of pushes and pops to the stack.
The implementation of a stack algorithm with a bound on the total difference between the number of pushes and pops is relatively simple. First, we need to define the maximum difference between the number of pushes and pops as a constant value. This value will act as a threshold, and we will check the difference between the number of pushes and pops at every step of the algorithm.
Next, we will define a stack data structure with the standard push and pop operations. However, we will also include an additional check that ensures the difference between the number of pushes and pops does not exceed the threshold.For example, when a push operation is called, we will first check if the difference between the number of pushes and pops is less than the threshold. If it is, we will allow the push operation to execute normally. Otherwise, we will raise an exception indicating that the maximum difference has been exceeded.Similarly, when a pop operation is called, we will first check if there are any elements on the stack. If there are, we will allow the pop operation to execute normally. However, we will also check that the difference between the number of pushes and pops does not become negative. If it does, we will raise an exception indicating that the maximum difference has been exceeded.By implementing these additional checks, we can ensure that our stack algorithm maintains a bounded difference between the number of pushes and pops. This can be useful in situations where we need to ensure that our algorithm does not use too much memory or resources.For such more question on algorithm
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The implementation of a stack algorithm with a bound on the total difference between the number of pushes and pops is fairly straightforward.
When implementing a stack algorithm with a bound on the total difference between the number of pushes and pops, we need to keep track of the current difference at each step of the execution. This can be done using a variable, say "diff", that is initially set to 0.
When a push operation is performed, we increment the value of "diff" by 1. However, before actually pushing the item onto the stack, we need to check if the new value of "diff" exceeds the bound. If it does, we reject the push operation and throw an error message indicating that the stack is full.
Similarly, when a pop operation is performed, we decrement the value of "diff" by 1. Before actually popping the item from the stack, we need to check if the new value of "diff" is less than 0. If it is, we reject the pop operation and throw an error message indicating that the stack is empty.
If neither of these conditions is met, we can proceed with the push or pop operation as usual. In addition to checking the bound, we also need to implement the standard stack operations, such as initialization, checking if the stack is empty, and returning the top element.
Overall, the implementation of a stack algorithm with a bound on the total difference between the number of pushes and pops is fairly straightforward, but requires careful attention to the value of "diff" at each step of the execution.
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help protect the lower legs and feet from heat hazards like molten metal and welding sparks
Answer:
i think its called leggings thats wut my shop teacher told me
Explanation:
what was Johnson and Nixon's government response to Vietnam and how did this escalate tension between the government and some Americans
The government response to the Vietnam War under Presidents Johnson and Nixon, including the Gulf of Tonkin Resolution, increased troop deployment, intensified bombing campaigns, draft implementation, and anti-war protests, escalated tensions between the government and some Americans due to opposition, distrust, and controversy surrounding the war's handling and policies.
How did Johnson and Nixon's government respond to Vietnam and how did it escalate to tension between the government and some Americans?During the Vietnam War, both President Lyndon B. Johnson and President Richard Nixon implemented various government responses that escalated tensions between the government and some Americans.
1. Johnson's Government Response:
Lyndon B. Johnson, who served as president from 1963 to 1969, significantly escalated U.S. involvement in the Vietnam War. His administration's response to Vietnam included:
a) Gulf of Tonkin Resolution: In August 1964, after reported attacks on U.S. Navy ships in the Gulf of Tonkin, Congress passed the Gulf of Tonkin Resolution. It granted President Johnson broad powers to take military action in Vietnam without a formal declaration of war.
b) Increased Troop Deployment: Johnson significantly increased the number of American troops deployed to Vietnam, reaching a peak of over 500,000 by 1968.
c) Intensified Bombing Campaign: The U.S. conducted an extensive bombing campaign, including Operation Rolling Thunder, which targeted North Vietnam to degrade the capabilities of the Viet Cong and North Vietnamese forces.
d) Draft and Anti-War Protests: The government's use of a draft system to enlist soldiers for the war led to widespread opposition and anti-war protests, such as the influential and controversial anti-war movement.
2. Nixon's Government Response:
Richard Nixon, who took office as president in 1969, continued U.S. involvement in Vietnam but pursued a policy of Vietnamization, which aimed to shift the burden of combat to the South Vietnamese forces. However, tensions between the government and some Americans continued to escalate:
a) Expansion of Bombing and Incursion into Cambodia: Nixon expanded the bombing campaign into neighboring Cambodia and authorized ground incursions, which drew intense criticism and fueled anti-war sentiments among Americans.
b) Secret Bombing Campaign and Pentagon Papers: The revelation of Nixon's secret bombing campaign in Cambodia and the release of the classified Pentagon Papers, which exposed the government's knowledge of the war's lack of progress, further eroded public trust in the government's handling of the war.
c) Kent State Shooting and Protest Crackdowns: In May 1970, the Kent State shootings occurred when National Guard troops killed four students during a protest against the U.S. invasion of Cambodia. This incident and subsequent crackdowns on protests further heightened tensions between the government and the American public.
Overall, the government responses to the Vietnam War under both Johnson and Nixon contributed to a growing divide and escalating tensions between the government and some Americans. The war's prolonged and controversial nature, along with issues such as the draft, protests, and government actions, fueled anti-war sentiments and widespread distrust in the government's decision-making.
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Fiscal policy defined
Fiscal policy is the use of government spending and taxation to influence the economy. It involves decisions made by the government regarding how much money should be spent on public goods and services, such as education, healthcare, and infrastructure, and how much revenue should be collected through taxes.
Fiscal policy is often used to promote economic growth and stability, such as during a recession when the government may increase spending to stimulate the economy. However, it can also be used to combat inflation by reducing government spending and increasing taxes.
Fiscal policy is defined as the use of government revenue collection (taxation) and expenditure (spending) to influence the economy. It is a tool utilized by the government to achieve economic objectives, such as promoting growth, managing inflation, reducing unemployment, and maintaining a stable balance of payments. Fiscal policy can be adjusted through changes in tax rates, government spending, and public debt management, depending on the economic goals and prevailing conditions.
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Multiple Choice question. Selected the correct answer.
10. Which of the following is NOT a metal used for producing exhaust manifolds?
A. Cast iron.
B. Aluminium.
C. Heavy-gauge sheet metal.
D. Stainless steel.
Answer:
C. Heavy-gauge sheet metal.
Explanation:
Exhaust manifolds are typically made from cast iron, aluminum, or stainless steel, which are strong and durable materials that can withstand the high temperatures and pressures found in vehicle exhaust systems.
Heavy-gauge sheet metal is a type of metal, but it is not typically used for this application because it may not have the necessary strength and durability.
Determine the horsepower required to compress 1 lbm/min of ethylene oxide from 70 oF and 1 atm to 250 psia. The compressor has an efficiency of 75%. The molar heat capacity of ethylene oxide is given by Cp
Complete Question:
Problem 8 Determine the horsepower required to compress 1 lbm/min of ethylene oxide from 70 °F and 1 atm to 250 psia. The compressor has an efficiency of 75%. The molar heat capacity of ethylene oxide is given by
C_p=10.03+0.0184T C_p[=]Btu/lbmole- "F ; T[=] °F C,
Answer:
\(P'=0.377hp\)
Explanation:
From the question we are told that:
Initial Temperature T_1=70 F
Final Temperature \(T_2=250pisa =114.94F\)
Efficiency \(E=75\%=0.75\)
Generally the equation for Work-done is mathematically given by
\(W=\int C_pT\)
\(W=10.03(114.94-70 )+0.0184((114.94)^2-70^2 )\)
\(W=527.21btu/ibmole\)
\(W=11.982btu/ibm\)
Generally the equation for Efficiency is mathematically given by
\(E=\frac{isotropic Power}{Actual P'}\)
\(E=\frac{P}{P'}\)
Since
Isotropic Power
\(P=0.0167*11.982btu/ibm\)
\(P=0.2btu/s\)
Therefore
\(P'=\frac{0.2}{0.75}\)
\(P'=0266btu/s\)
Since
\(1btu/s=1.4148hp\)
Therefore
\(P'=0.377hp\)
An elevation is.... * 10 points a. A detailed description of requirements, composition and materials for a proposed building. b. A view of a building seen from one side, a flat representation of one façade. This is the most common view used to describe the external appearance of a building. c. The development of the last remaining lots in an existing developed area, the new development within an area already served by existing infrastructure and services, or the reuse of already developed, but vacant properties. d. The practice of creating structures and using processes that are environmentally responsible and resource-efficient throughout a building's life-cycle from siting to design, construction, operation, maintenance, renovation and deconstruction.
Answer:
b. A view of a building seen from one side, a flat representation of one façade. This is the most common view used to describe the external appearance of a building.
Explanation:
An elevation is a three-dimensional, orthographic, architectural projection that reveals just a side of the building. It is represented with diagrams and shadows are used to create the effect of a three-dimensional image.
It reveals the position of the building from ground-depth and only the outer parts of the structure are illustrated. Elevations, building plans, and section drawings are always drawn together by the architects.
5. According to the FMCSRs, you are qualified to operate a CMV if you:
A. are at least 15-years old.
B. have passed an IQ test.
C. have only one current CDL.
D. are currently disqualified from operating a motor vehicle.
Answer:
currently states that a person is qualified to drive a commercial motor vehicle if he/she “can read and speak the English language sufficiently to converse with the general public, to understand highway traffic signs and signals
So I think B
In this activity, you will conduct research on a famous work of architecture from the 1800s and write a report about the work and the architect who created it. You will then create an architectural drawing.
__________________________________________________________________________
Directions and Analysis
Task 1: Researching an Architectural Work of the 1800s
Use the Internet and other available resources to conduct basic research on architecture from the 1800s. Select a building designed by a significant (influential) architect from that period, and then write a paper about the building and architect. Make sure you include the following:
About the architect
basic biographical information
education
how the architect influenced society and design
About the building/work
main materials used
structural considerations
technology and tools used during construction
Answer:
can you explain how to do this
Explanation:
ANSWER FAST PLEASE!!! WILL MARK BRAINLIEST!!!!!!
Select the examples that best demonstrate likely tasks for Administration and Information Support workers. Check all that apply.
Elizabeth helps employees and managers negotiate employee pay.
Bart types information into a computer database.
Phuong works on a research project and creates a report for her boss.
Anton answers phone calls and greets guests who visit a company.
Nikki creates a company budget.
Bryce thinks of an idea for how to advertise a product.
Answer:
Phuong works on a research project and creates a report for her boss.
Answer:
B. Bart types information into a computer database.
C. Phuong works on a research project and creates a report for her boss.
D. Anton answers phone calls and greets guests who visit a company.
Need help hurry 20 Briefly describe an idea for a new product, while thinking mainly about its cost analysis. Depict what kinds of direct and indirect costs will be involved in its creation.
Answer: Contaminants can cause tremendous harm to a population; not only humans but entire local animal species can be devastated by poisonous drinking water. Crops and livestock can also be affected. Citizens can make prudent choices regarding natural resources and energy use. Scientists can research and create products that can reduce or eliminate unnecessary waste and pollution.
Explanation:
anxiety: a. is never normal. b. is common of many psychological disorders c. is identical to fear d. is a modern development, unlikely to have roots in human history
Answer:
B
Explanation:
Anxiety is very common especially nowadays but it's especially common in psychological disorders
A cylindrical 1040 steel rod having a minimum tensile strength of 865 MPa (125,000 psi), a ductility of at least 10%EL, and a final diameter of 6.0 mm (0.25 in.) is desired. Some 7.94 mm (0.313 in.) diameter 1040 steel stock, which has been cold worked 20% is available. Describe the procedure you would follow to obtain this material. Assume that 1040 steel experiences cracking at 40%CW
Answer:
procedure attached below
The material to be used will have a %Cw of 34.5%Cw which is < 40%Cw
Explanation:
Given data:
Minimum tensile strength = 865 MPa
Ductility = 10%EL
Desired Final diameter = 6.0 mm
20% cold worked 7.94 mm diameter 1040 steel stock
Describe the procedure you would follow to obtain this material.
assuming 1040 steel experiences cracking at 40%CW
attached below is a detailed procedure of obtaining the material
The material to be used will have a %Cw of 34.5%Cw which is < 40%Cw
The point of contact of two pitch circles of mating gears is called?
Answer:
the pitch point im pritty sure what is is
The point of contact of two pitch circles of mating gears is called the pitch point.
What is the pitch point?
A pitch point is where two pitch circles frequently come into touch. A common point of contact between two pitch circles of mating gears is called a pitch point. The pitch circle and is centered on the top of the teeth. Dedendum circle, also known as the root circle, is the circle traced through the base of the tooth.
The pressure angle, often known as the “tooth shape,” is the angle at which pressure from one gear's tooth is transferred to another gear's tooth. Pure rolling motion will occur at pitch point.
Therefore, it is pressure point.
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A reservoir rock system located between a depth of 2153m and a depth of
2383m , as the pressure at these depths is 18.200 MPa , 19.643 MPa
respectively the thickness of oil zone 103m, if the density of water is 1060 kg/m3
Determine the oil and gas density. what is the pressure at the depth of 2200m ?
what is the depth at which the pressure is 1900 MPa? Determine the gas-oil and
oil- water contact depth.
the input to a closed loop transfer function with open loop transfer function Gs= K(s+3)/S(s2+3s+2) consist of step and ramp function u(t)=2u(t)+t. determine the value of K such that the steady state error for the system Css =0.01
The value of K that makes the steady-state error of the closed-loop system equal to 0.01 for both step and ramp inputs is approximately K = 26.27.
What is the value of K?To determine the steady-state error of the closed-loop system, we first need to find the closed-loop transfer function.
The closed-loop transfer function of a system is given by:
Gcl(s) = Gs/(1 + GsHs)
where;
Hs is the transfer function of the feedback loop.For this problem, we have a unity feedback system, so Hs = 1.
Substituting Gs in the above equation, we get:
Gcl(s) = K(s+3)/(s³ + 3s² + 2s + 3K)
Now, we can use the final value theorem to find the steady-state error of the system for a step and a ramp input. The final value theorem states that the steady-state value of the output y(t) is given by:
lim s->0 sY(s) = lim t->∞ y(t)
For a step input u(t) = U0, the steady-state error is given by:
ess = lim s->0 s(1 - Gcl(s))U0
Setting ess to 0.01, we get:
0.01 = lim s->0 s(1 - K(s+3)/(s³ + 3s² + 2s + 3K))U0
Solving for K, we get:
K = 26.27
For a ramp input u(t) = Ut, the steady-state error is given by:
ess = lim s->0 s²(1 - Gcl(s))U0
Setting ess to 0.01 and substituting Gcl(s), we get:
0.01 = lim s->0 s²(1 - K(s+3)/(s³ + 3s² + 2s + 3K))U0
Solving for K, we get:
K = 27.86
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Which greenhouse gas is produced by commercial refrigeration and air conditioning systems?
carbon dioxide
Ofluorinated gas
O nitrous oxide
O methane
Answer:
B- Fluorinated gas
Explanation:
Answer:
B.) fluorinated gas
Explanation:
A good place to get hints about how to answer a response question could be
a.
Your teacher
c.
Both of these
b.
The rest of the test
d.
None of these
Please select the best answer from the choices provided
A
B
C
D
Answer:
I think its A
Explanation:
why is personal development necessary based activity success life and career
Hey guys can anyone list chemical engineering advancement that has been discovered within the past 20 years