The term used to describe an efficient flow of information between a manufacturing operation and its suppliers is e. cross vendor integration.
The bandwidth of an ASK (Amplitude Shift Keying) signal with a carrier frequency of 50kHz is 1000 Hz.
Cross vendor integration refers to the seamless integration of information and processes between a manufacturing operation and its suppliers. It involves the efficient exchange of data and coordination of activities to ensure smooth and effective collaboration across the supply chain. By integrating with multiple vendors, a manufacturing operation can optimize its production processes, streamline inventory management, and enhance overall operational efficiency. In the context of the ASK signal, bandwidth refers to the range of frequencies that the signal occupies. In this case, the carrier frequency of the ASK signal is 50kHz. The bandwidth of an ASK signal is determined by the modulation scheme and the rate at which the signal switches between different amplitudes. Since ASK is a simple modulation scheme where the amplitude is directly modulated, the bandwidth is equal to the rate at which the amplitude changes. In the given ASK signal, the time domain plot shows that the amplitude changes occur within a time interval of 0.0015 seconds. Therefore, the bandwidth is 1 divided by 0.0015, which equals 1000 Hz.
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I analyze a problem carefully before trying to solve it
Answer:
I don't know the question but so do I. I analyze a problem very carefully before I answer it. Just like this one, I analyzed the problem(no question), then answered it to the best of my abilities.
Water at P1 = 200 kPa with a quality of 25% has its temperature raised 20 oC (T2 = T1+20 0C) in a constant pressure process. What is the initial (v1) and final (v2) specific volumes?
The initial (v1) and final (v2) specific volumes based on the information will be 0.9354 m3/kg.
How to calculate the volumeFrom the information, Water at P1 = 200 kPa with a quality of 25% has its temperature raised 20 oC (T2 = T1+20 0C) in a constant pressure process.
For state 1, v = vf + x vfg = 0.001061 + 0.25 × 0.88467 = 0.22223 m3/kg
State 2 at 200 kPa T2 = Tsat + 20 = 120.23 + 20 = 140.23°C
So state is superheated vapor x = undefined v = 0.88573 + (0.95964 – 0.88573) 20/150 - 120.23 = 0.9354 m3/kg
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a cylindrical tank of length 30m and diameter 1.5kg contains 25kg of air. Determine the specific volume and density of the air in the tank.
Answer: chrome-extension://efaidnbmnnnibpcajpcglclefindmkaj/http://www.velhightech.com/Documents/ME8391%20Engineering%20Thermo%20Dynamics.pdf
click this link for the best explaination
Explanation:
What is in a catalytic converter that makes it so expensive?.
Answer:
A catalytic converter is expensive because it needs rhodium to reduce smog levels. Rhodium, at its current value, is extremely expensive which makes using it in a catalytic converter expensive. To make up for their cost, manufacturers have to increase the price of the catalytic converter.
Explanation:
Mechanically active integrins target lytic secretion at the immune synapse to facilitate cellular cytotoxicity
In order to promote cellular cytotoxicity, mechanically active integrins direct lytic secretion at the immunological synapse.
Cell biology, also referred to as cellular biology or cytology, is a branch of biology that is concerned with figuring out how cells function. Every living thing is made of cells. Cells, the basic unit of life, are what enable living things to function. the smallest unit of biology capable of autonomous existence, which includes all living creatures as well as the tissues of the body. The three fundamental structural elements of a cell are the cell membrane, nucleus, and cytoplasm. The chemicals that enter and exit the cell are controlled by the cell membrane, which surrounds the cell. On a map, you can observe these distinct microscopic cell sizes when you draw a line separating those base stations.
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You are the curator of a museum. The museum is running short of funds, so you decide to increase revenue. Should you increase or decrease the price of admission? Explain
Answer:
Explanation:
If the museum is running short of funds, and you decide to increase revenue. An increase or decrease in the price of admission into the museum depends on the following:
1. If demand for admission into the museum is elastic there are two possible outcomes
a. An increase in the price of admission leads to a decrease in the quantity demand of admission into the museum
b. A decrease in price of admission into the museum leads to an increase in the quantity demand of admission into the museum.
This follows the law of demand which states that "the higher the price, the lower the quantity demanded and the lower the price, the higher the quantity demanded".
2. If the demand for admission into the museum is inelastic, then an increase in price will lead to an increase in revenue of the museum.
Therefore, before the curator increase the price of admission into the museum, he should first determine the price elasticity of demand of the museum.
A 360 kg/min stream of steam enters a turbine at 40 bar pressure and 100 degrees of superheat. The steam exits the turbine as a 100% saturated vapor at a pressure of 5 bar. Write and simplify the appropriate energy balance and then determine the energy generated by the steam as it passes through the turbine in kW.
What are the important subassemblies and subsystems?
Answer:
Subsystem denotes to the installation of some subassemblies, which can be very small or gigantic in size, that serve this subsystem and the overall system. ... In addition, availability importance measures are employed to rank various subsystems with regards to their impact on the overall system availability.
Explanation:
Subsystem refers to the installation of a few subassemblies that support this subsystem and the entire system.
What are subassemblies?An assembly is a template for a corridor's cross section at a certain station.
A set of interconnected subassemblies that are each connected to a center point or to other subassemblies makes up an assembly. An assortment of shapes, linkages, and points make up a subassembly.
The installation of a few subassemblies that support this subsystem and the overall system is referred to as a subsystem.
These subassemblies can range in size from little to huge. In addition, subsystems are ranked according to their impact on the overall system's availability using availability importance criteria.
The primary memory, the input/output subsystem, and the central processor unit (CPU) are the three basic categories or subsystems that make up a computer. Data processes are carried out by the central processing unit (CPU).
A subassembly could be:
Semiconductor.Amplifier.Transistor.Impedance.Oscillators.Thus, these are important subassemblies and subsystems.
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Question 3
[9]
A 25 kW separately-excited dc machine is operated at a constant speed of 3000
r/min with a constant field current such that the open-circuit armature voltage is 125
V. The armature resistance is 0.02 ohm. Determine the following for a terminal
voltage of 128 V:
(a) Is this a motor or generator?
(1)
(b) The armature current.
(2)
(c) The terminal power.
(d) Power developed in the armature.
(e) Torque.
Final answer
Final answer
Final answer
Final answer
[12]
Question 4
A short shunt compound machine having terminal voltage 250 V delivers a load
current of 40 A. The armature, series field and shunt field resistances are 0.050,
0.040 and 1000 respectively. Calculate the following if there is voltage drop of 1V
per brush.
(a) The armature current.
The armature current, terminal power, and the torque will be 150A, 18750 watts and 59.67Nm respectively.
How to calculate the current?From the information given, the armature current will be:
E = 128 - I(2/100)
125 = 128 - I(0.02)
I = (128 - 125)/0.02
= 150A
The terminal power will be:
= E × I
= 125 × 150
= 18750 watts
The torque developed in the armature will be:
= (18750 × 60)/(2π × 3000)
= 59.67 Nm
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Karen just checked her bank balance and the balance was 1111.11. She is kind of freaking out and saved the receipt, thinking that it must mean something. Karen is probably just suffering from
Answer:
chronic stoner syndrome
Explanation:
"the universe just sends us messages sometimes mannnn, you just have to be ready to listen to them" lol
Work to be performed can come from the work package level of the work breakdown structure as well as other sources. Which of these is NOT a source of authorized work to be performed?
a. Scope creep
b. Defect repairs
c. Preventive actions
d. Corrective actions
A project is meant to achieve clearly defined goals within present constraints
The correct option for the source of work in a project which is NOT a source of authorized work to be performed is option (a)
a. Scope creep
The reason for the selecting the above option is as follows;
In project management, alongside work planned in a work package, authorized work to be performed can come from;
The repairing of defects found in completed work and which is a requirement for the project to be approvePreventive actions, that are meant to mitigate factors that affect the project timeline and costCorrective actions which include actions meant to rectify parts of the project that produce an error outcomeA scope creep, however, is generally is due to the inclusion of the end
users of the project at a time that is behind schedule, insufficient analysis of
the requirements, and project complexity underestimation. and consists of
changes made after a project has commenced
A scope creep therefore, changes the amount of work to be done which
therefore alters the project timeline, and due to project, budgetary, and
end user constraints, CANNOT be a source of authorized work to be
performed
The correct option for the source that is NOT a authorized work to be performed is option a. Scope creep
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stairs ladders or ramps are required at an elevation break of ___ or more
Stairs, ladders, or ramps are required at an elevation break of 19 inches or more.
This is to ensure the safety of those who use the facility, particularly people with disabilities. If there is a level change of more than 19 inches, it is suggested that a ramp or elevator be installed to make it more accessible. Ramps, ladders, and stairs are vital components of any building or construction that has an elevation break of 19 inches or more. Their function is to offer a secure and convenient way of accessing various floors within a facility, whether it's a residential or commercial structure.
The Americans with Disabilities Act (ADA) has laws that ensure that facilities are built to be accessible to individuals with disabilities. For instance, they provide guidelines on the minimum width of a ramp or the steepness of the stairs. This is to ensure that individuals who use a wheelchair or walker can easily navigate the building. If a building has an elevation break of more than 19 inches, then it is required to have a ramp that meets the guidelines of the ADA. This will make it easier for individuals with disabilities to move from one floor to the next.
Moreover, if the building is relatively large and has multiple floors, an elevator is recommended. The elevator will ensure that people with disabilities can quickly move around the building without any issues. In conclusion, stairs, ladders, or ramps are required at an elevation break of 19 inches or more. The ADA guidelines ensure that individuals with disabilities have access to all parts of the building. They stipulate the minimum width, height, and slope of a ramp, as well as the steepness of the stairs. When designing a building, it is crucial to consider these guidelines to make the facility accessible to all.
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Stairs, ladders, or ramps may be required at certain elevation breaks to ensure safe access between different levels.
Explanation:In physics, when there is a change in elevation, stairs, ladders, or ramps may be required to provide a safe means of accessing different levels. The specific elevation break at which one of these options is required depedependsnds on various factors, such as the height and angle of the change in elevation, as well as any applicable building codes or regulations. For example, building codes may require the use of stairs for elevation breaks of a certain height, but ramps may be required for breaks above a certain threshold that accommodate individuals with mobility impairments.
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Briefly explain thermal expansion using the potential energy–versus–interatomic spacing curve.
As the temperature of the material increases, the potential energy of the molecules increases. Thermal expansion occurs due to changes in temperature, and interatomic distances increase as potential energy increases.
What are the uses of Thermal Expansion?Thermal expansion is used in a variety of applications such as rail buckling, engine coolant, mercury thermometers, joint expansion, and others.
It is to be noted that an application of the concept of liquid expansion in everyday life concerns liquid thermometers. As the heat rises, the mercury or alcohol in the thermometer tube moves in only one direction. As the heat decreases, the liquid moves back smoothly.
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A particular brand of paint covers 340 square feet per gallon . Write a program in C++ to determine and report approximately how many gallons of paint will be needed to paint two coats on a wooden fence that is 6 feet high and 100 feet long .
Answer:
#include <iostream>
using namespace std;
// named constant to give mnemonic name to "magic number"
const float SqFtPerGal = 350.0f;
// the function main() is always the entry point of the application
int main()
{
float length, width, area, paint; // to hold user values and results
// prompt user for length and width of wall
cout << "Enter length of wall : " << flush;
cin >> length;
cout << "Enter width of wall : " << flush;
cin >> width;
// calculate area and amount of paint needed
area = length * width;
paint = area / SqFtPerGal;
// output results with reasonable text
cout << "You need " << paint << " gallons of paint to cover "
<< area << " square feet of wall." << endl;
// program stops executing when it returns from main(), 0 means O.K.
return 0;
}
Explanation:
The process of refining specification involves
O defining the initial design.
O presenting the finished product to a client.
deciding whether or not to continue with a project.
O adjusting outcomes and making pragmatic changes.
Answer:
I'm not sure but I'm pretty sure it the second one (btw I'm sorry if this didn't help) :/
If a single phase load is connected across the two line conductors and neutral of the transformer in question 4 and one line has a current of 80a and the other line has a current of 68a how much current is flowing in the neutral conductor
Example 1.3 An electric circuit is supplied by a voltage represented by the expression v = 240 sin (471,239t) V. Calculate the following: a) The frequency of the supply voltage. the voltage
Answer: 75,000 Hz
Explanation:
To calculate the frequency of the supply voltage, we need to use the formula:
frequency = 1 / time period
where the time period is the time it takes for one complete cycle of the waveform. For a sine wave, the time period is given by:
time period = 2π / angular frequency
where the angular frequency is the rate of change of the angle with respect to time and is given by:
angular frequency = 2π × frequency
Comparing the given voltage expression v = 240 sin (471,239t) V to the general form of a sine wave:
v = Vm sin(ωt + θ)
where Vm is the amplitude, ω is the angular frequency, t is time, and θ is the phase angle, we can see that the amplitude is 240 V, the angular frequency is 471,239 rad/s, and there is no phase angle (θ = 0).
Using the formula for angular frequency, we can find the frequency:
angular frequency = 2π × frequency
471,239 = 2π × frequency
frequency = 471,239 / (2π) ≈ 75,000 Hz
Therefore, the frequency of the supply voltage is approximately 75,000 Hz.
Hope this helps, :^)
I need help please thank for the help on the last one <3
Kevin fixes trucks as a job. The engine is oily. Which set set of equipment should Kevin use to fix the truck?
Answer:
A hammer and a wrench
Explanation:
determine the wattmeter reading when it is connected to resistor load.
Answer:
Each wattmeter measures a line-to-line voltage between two of the three power supply lines. In this configuration, the total power, watts is accurately measured by the algebraic sum of the two wattmeter values. Pt = P1 + P2. This holds true if the system is balanced or unbalanced.
this is a multi-part question. once an answer is submitted, you will be unable to return to this part. a 1-m-long beam is subjected to a variety of loadings.
A 1-meter-long beam is subjected to a variety of loadings.
This is a multi-part question that needs to be answered in detail.
The beam's performance depends on the type of loading applied and the cross-section of the beam,
which can be square, rectangular, or circular.
Each type of cross-section will have its own moment of inertia and radius of gyration.
The cross-sectional area of the beam will determine its strength and stiffness.
larger cross-sectional area will result in a stronger and stiffer beam.
In addition to the cross-sectional area, the material's properties will also determine the beam's strength and stiffness.
The loadings on the beam can be categorized into two types:
concentrated loads and distributed loads.
Concentrated loads act at a single point on the beam,
while distributed loads act over a certain length of the beam's span.
Depending on the type of loading, the beam may experience bending, shear, or a combination of both.
Bending is caused by a force applied perpendicular to the plane of the beam.
The beam will bend as a result of this force, and the amount of bending will be determined by the load applied and the beam's stiffness.
Shear is caused by a force applied parallel to the plane of the beam.
The shear force acting on the beam will cause it to bend,
resulting in shear stresses that can cause the beam to fail.
Ultimately, the performance of the beam will depend on its cross-sectional area, material properties,
and the type of loading applied.
Proper analysis of the beam's performance is critical to ensure it can withstand the loads applied to it.
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Water at 20°C flows in a 0. 8- cm
diameter pipe with a velocity distribution
U(r) = 5 [1-(r^2/16) ×10^6]m/s
Calculate the shear stress on the pipe wall
To calculate the shear stress on the pipe wall, we can use the Hagen-Poiseuille equation, which relates the shear stress to the velocity distribution in a pipe. The Hagen-Poiseuille equation is given by:
In this case, the velocity distribution is given as U(r) = 5 [1 - (r^2/16) × 10^6] m/s.To calculate the velocity gradient, we need to find dU/dr. Taking the derivative of U(r) with respect to r, we get:
dU/dr = (-10r/8) × 10^6 m/s
Now we need the dynamic viscosity of water at 20°C. The dynamic viscosity of water at 20°C is approximately 1.002 × 10^(-3) Pa·s or kg/(m·s).Plugging in the values into the Hagen-Poiseuille equation, we have:
τ = (1.002 × 10^(-3) Pa·s) * [(-10r/8) × 10^6 m/s]
Simplifying further:
τ = -0.1252 * r * 10^3 Pa
Therefore, the shear stress on the pipe wall is given by -0.1252 * r * 10^3 Pa, where r is the radial distance from the center of the pipe.Note that the negative sign indicates that the shear stress acts in the opposite direction to the flow direction. Also, the units are in Pascals (Pa).
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whate is the role of consultant?
Pressure bleeding is being discussed. Technician A says to pump the brake pedal several times during the bleed procedure. Technician B says to hold the metering valve open during the bleed procedure. Who is correct
Which of the following is an example of a tax
Answer:
A tax is a monetary payment without the right to individual consideration, which a public law imposes on all taxable persons - including both natural and legal persons - in order to generate income. This means that taxes are public-law levies that everyone must pay to cover general financial needs who meet the criteria of tax liability, whereby the generation of income should at least be an auxiliary purpose. Taxes are usually the main source of income of a modern state. Due to the financial implications for all citizens and the complex tax legislation, taxes and other charges are an ongoing political and social issue.
I dont know I asked this to
Explanation:
a technician is being asked to move a heavy industrial printer. which safety technique is recommended for this situation?
The safety technique that is recommended for this situation of moving a heavy industrial printer is to Bend at the knees when lifting.
What is a Safety Procedure?This refers to the process of executing a task in a safe and acceptable way that does not put the user or others at risk
Hence, we can see that The safety technique that is recommended for this situation of moving a heavy industrial printer is to Bend at the knees when lifting.
This is to ensure that the person doing the lifting does not injure himself and has the proper form when lifting.
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?Why the efficiency of Class A amplifier is very poor
When would working with machinery be a common type of caught-in and caught-between
hazard?
Answer:
A working with machinery be a common type of caught-in and caught-between hazard is described below in complete detail.
Explanation:
“Caught in-between” accidents kill mechanics in a variety of techniques. These incorporate cave-ins and other hazards of tunneling activity; body parts extracted into unconscious machinery; reaching within the swing range of cranes and other installation material; caught between machine & fixed objects.
Answer:
When working with heavy pieces.
Explanation:
a single-phase transformer has a turns ratio of 18,000/6,000. a direct current voltage of 60 v is applied to the primary winding. compute the voltage of the secondary winding
A single-phase transformer with a turns ratio of 18,000/6,000 and a direct current voltage of 60 V applied to the primary winding will have a voltage of 180 V in the secondary winding.
A transformer is a device that transfers electrical energy from one circuit to another by means of electromagnetic induction. The primary winding is the coil that is connected to the input, while the secondary winding is the coil that is connected to the output.The turns ratio is defined as the ratio of the number of turns in the secondary winding to the number of turns in the primary winding. It is given that the turns ratio of the transformer is 18,000/6,000. Therefore, the voltage of the secondary winding is given by: Voltage of secondary winding = Turns ratio × Voltage of primary winding= (18,000/6,000) × 60 V= 3 × 60 V= 180 V
Therefore, the voltage of the secondary winding is 180 V.
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1. If you can see a copper conductor in a cable, what should you do with the cable? 2. What type of connector is used with CAT-5e or CAT-6 cable? 3. Based on your research, which cabling scheme is more common, straight-through or crossover? 4. On a patch cable, pin 3 on one end connects to pin ____ on the opposite end of the cable. on the other end of the 5. On a crossover cable, pin 2 on one end connects to pin ____ on the other end of the cable.
Identify cable, use RJ-45 connector, straight-through more common, pin 6, pin 3.
How to identify and connect network cables?If you can see a copper conductor in a cable, it means the cable is damaged and should be replaced. Exposed copper can lead to signal interference and is a potential safety hazard.CAT-5e or CAT-6 cables typically use an RJ-45 connector. This connector has 8 pins and is commonly used for Ethernet connections.Straight-through cabling is more common than crossover cabling. Straight-through cables are used to connect different types of devices, such as a computer to a switch or a router to a modem. Crossover cables, on the other hand, are used to connect similar types of devices, such as two computers or two switches.On a patch cable, pin 3 on one end connects to pin 6 on the opposite end of the cable. The pins are numbered 1 through 8, with pin 1 typically being the leftmost pin when looking at the connector with the tab facing down.On a crossover cable, pin 2 on one end connects to pin 3 on the other end of the cable. This crossover configuration allows for two similar devices to communicate with each other, such as two computers or two switches.Learn more about cable
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