A) The overall conversion of A is 71% when connected in series. B) the overall conversion of A is 20.25%.
a. If the two identical flow reactors are directly connected in series, the overall conversion of A can be calculated by using the formula for a reversible first-order reaction in a plug flow reactor:
X = 1 - (1 - X1)(1 - X2)
where X is the overall conversion of A, X1 is the conversion of A in the first reactor, and X2 is the conversion of A in the second reactor.
Since the reaction is reversible, the conversion of B in the first reactor can be calculated as 1 - X1 = 0.45.
Using the equilibrium constant K = 5.8, the concentration ratio of B to A at equilibrium can be calculated as [B]/[A] = K/(1 + K) = 0.85.
Therefore, the concentration of A in the outlet stream of the first reactor can be calculated as CA1 = CA0(1 - X1) = 0.55 CA0, and the concentration of B can be calculated as CB1 = CA0(0.45 + 0.85X1) = 0.9025 CA0.
In the second reactor, the concentration of A in the inlet stream is CA2 = CB1 = 0.9025 CA0, and the equilibrium concentration of B to A is still 0.85.
Therefore, the conversion of A in the second reactor can be calculated as X2 = (CA2 - 0.85CA0)/(0.15CA0) = 0.47. Substituting these values into the formula for overall conversion, we get:
X = 1 - (1 - 0.45)(1 - 0.47) = 0.71
Therefore, the overall conversion of A is 71%.
b. If the products from the first reactor are separated by appropriate processing and only the unconverted A is fed to the second reactor, the overall conversion of A can be calculated as the product of the conversion in each reactor:
X = X1 X2 = 0.45 x 0.45 = 0.2025
Therefore, the overall conversion of A is 20.25%.
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list the components of a typical Foundation drainage system and their functions.
Explanation:
In this series, the professionals at the B.O.L.D. Company will take you through the process of building a custom home in the Greater Cincinnati – Northern Kentucky area. From plan and lot selection, to mortgage approval, to the actual construction, we’ll take you behind-the-scenes each week for an inside look at a different part of the process.
which type of brake lining is typically used on light-duty vehicles?
two technicians are discussing what could be wrong with a hydraulically controlled automatic transmission/ transaxle that does not shift out of first gear regardless of vehicle speed. Technician A says that a defective governor could be the cause. Technician B says that a weak pump could be the cause.
Technician B says that a weak pump could be the cause. Tech a technician is correct.
What does an automatic transmission contain?The torque converter, hydraulic pump, planetary gears, clutches, and brakes are important components of the automatic transmission. The torque converter delivers engine power to the transmission input shaft and hydraulic pump. The planetary gears are arranged in a series, one after the other.
What is automatic transmission's purpose?An automatic transmission's primary function is to provide a wide range of output speeds while allowing the engine to operate within its limited speed range.
Question incomplete:
Two technicians are discussing what could be wrong with a hydraulically controlled automatic transmission/transaxle that does not shift out of first gear regardless of vehicle speed. Technician A says that a defective governor could be the cause. Technician B says that a weak pump could be the cause. Which technician is correct?
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A stone masonry crew consists of seven masons and three laborers. The hourly wage rate for mason is
$42.50/hr and laborers cost $20.90 / hr including the burden labor cost. If the mason and labor burden cost to the employer is $9.13/hr and $6.12/hr respectively. Find what is the weighted average all-in wage rate for the crew?
According to the information we can infer that the weighted average all-in wage rate for the stone masonry crew is $39.14/hr.
How to calculate the weighted average all-in wage rate?To calculate the weighted average all-in wage rate, we need to consider both the number of masons and laborers in the crew and their respective wage rates.
Given:
Number of masons (n1) = 7Number of laborers (n2) = 3Wage rate for masons (w1) = $42.50/hrWage rate for laborers (w2) = $20.90/hrTo calculate the weighted average all-in wage rate, we use the formula:
Weighted average = (n1 * w1 + n2 * w2) / (n1 + n2)Substituting the given values into the formula, we get:
Weighted average = (7 * $42.50/hr + 3 * $20.90/hr) / (7 + 3)= ($297.50/hr + $62.70/hr) / 10= $360.20/hr / 10= $36.02/hrHowever, we need to consider the burden labor cost as well. Adding the burden labor cost to the weighted average, we get:
Weighted average all-in wage rate = Weighted average + burden labor costWeighted average all-in wage rate = $36.02/hr + $6.12/hr= $42.14/hrSo, the weighted average all-in wage rate for the stone masonry crew is approximately $39.14/hr.
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list five pieces of personal safety equipment which must be in everyday use in the workshop
Answer:
safety glasses, hearing protection, respirator, work gloves, and work boots.
Explanation:
please give brainliest!! <3
An AC bridge has 4 arms. In arm AB, a 120 kilo-ohm resistor and a 47 microfarads capacitor are connected in parallel while arm BC has 330 microfarads capacitor. If arm AD has a 330 kilo-ohm resistor, calculate the value of the unknown capacitor and resistor in arm CD connected in series. (AC power is supplied through A and C while the detector is connected across BD)
The unknown capacitor in arm CD must have a value of 330 microfarads, and the unknown resistor must have a value of 100 kilo-ohms.
To solve the problem, use the following formula:
Cseries = C1 x C2 / (C1 + C2)
Where C1 is the value of the capacitor in arm AB (47 microfarads) and C2 is the value of the capacitor in arm BC (330 microfarads).
Therefore, Cseries = 330 microfarads.
Also, the total resistance of arms CD is the sum of the resistance of the resistor (R) and the reciprocal of the capacitive reactance of the capacitor (1/Xc).
Using the following formula:
Rtotal = R + 1/Xc
Where Xc = 1/2πfC,
f is the frequency and C is the capacitance.
For this problem,
Xc = 1/2π(50)(330 x 10-6)
=> 100 kilo-ohm.
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For the beam loaded as shown, assume linear elastic behavior and: (a) Determine the internal shear force V at a-a (b) Determine the shear stresses due to V at the junctions between the web and each flange (i.e. at B, C) in the web of the beam. (c) Determine the shear stress due to V at the neutral axis of the cross-section
(a) Determine the internal shear force V at a-aFor the simply supported beam loaded as shown, assume linear elastic behavior. We are to determine the internal shear force V at a-a. Free Body Diagram of the beam loaded as shown:
We can determine the internal shear force V at a-a from the equation of equilibrium at any section (to the left or right) of the section a-a. Consider the section X-X shown below:∑ Fy = 0VA - 10 + 20 - VB = 0Since the beam is symmetric and the loads are also symmetric about the middle of the beam, the two vertical reactions VA and VB will be equal. Thus:VA = VB = 15 kNTherefore the internal shear force V at a-a is V = VA = VB = 15 kN.
(b) Determine the shear stresses due to V at the junctions between the web and each flange (i.e. at B, C) in the web of the beam.For the simply supported beam loaded as shown, assume linear elastic behavior. We are to determine the shear stresses due to V at the junctions between the web and each flange (i.e. at B, C) in the web of the beam.The maximum shear stress due to V at any point in the web of the beam is given by:τmax = (VQ)/(Ib)where Q is the first moment of area of the part of the cross-section on either side of the point at which the shear stress is to be determined. For point B:
For point C:Therefore, the maximum shear stress at B is given by:τmax = (15 kN)(12.50 cm²)/(305.2 cm^4)τmax = 0.613 MPaSimilarly, the maximum shear stress at C is given by:τmax = (15 kN)(7.08 cm²)/(305.2 cm^4)τmax = 0.346 MPa(c) Determine the shear stress due to V at the neutral axis of the cross-sectionFor the simply supported beam loaded as shown, assume linear elastic behavior. We are to determine the shear stress due to V at the neutral axis of the cross-section. We know that the shear stress at the neutral axis of the beam is zero.Thus, the shear stress due to V at the neutral axis of the cross-section is zero.
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a) what would if we tried to further accelerate a
Supersonic fluid with a
diverging diffuser?
If we tried to further accelerate a Supersonic fluid with a diverging diffuser, the pressure will decrease due to an increase in area. This can be described as :
dA/A = dP/ρV² (1-M²) for supersonic flow Mach Number, M: M > 11 - M² < 0 (dA/A) = -K (dP/ρV²)k = 1-M²
What is Supersonic Fluid?Supersonic flow fields have Mach numbers greater than one at every location. Supersonic flows are usually characterized by the presence of shock waves, which cause abrupt changes in flow characteristics and streamlines (in contrast to the smooth, continuous variations in subsonic flows).
Supersonic and subsonic relate to speeds that are faster or slower than the speed of sound, respectively. Supersonic means traveling faster than the speed of sound, which is 343.2 m/s (1,126 ft/s). Subsonic speeds are defined as anything moving slower than the speed of sound.
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The has to produce goods 2 quarters periods. The company has a regular time capacity and forecast demand that is stated state in table below per month. Overtime capacity is 50% of regular time capacity multiply by 1.5 per month. Overtime cost is regular time cost multiply by 1.5, backorder cost is 50% of the regular cost, inventory-holding cost is R5 per unit, and beginning inventory is zero.
The given problem is concerned with a company that has to produce goods for two quarters' period. The company has a regular time capacity and forecast demand, which is given in the table below per month.
We are required to determine the overtime capacity, overtime cost, backorder cost, inventory-holding cost, and the beginning inventory. Given data: Demand | Regular time capacity50 | 50Overtime capacity | 50% of regular time capacity × 1.5= 50% of 50 × 1.5= 25 × 1.5= 37.5 units per month Overtime cost.
Therefore, the overtime cost and backorder cost are zero. Inventory-holding cost= 50 units × R5 per unit= R250Therefore, the company needs to work at 100% of the regular time capacity and 74% of the overtime capacity to meet the forecast demand of 50 units per month for two quarters.
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the earliest known species in the genus homo is approximately __________ years old, whereas homo sapiens appears in the fossil record approximately __________ years ago.
The earliest known species in the genus Homo is approximately 2.8 million years old, whereas Homo sapiens, the modern human species, appears in the fossil record approximately 300,000 years ago.
The genus Homo encompasses several species of early humans, including Homo habilis, Homo erectus, Homo neanderthalensis (Neanderthals), and Homo sapiens (modern humans). The earliest known species within the Homo genus is Homo habilis, which emerged around 2.8 million years ago.
Homo sapiens, which represents the modern human species, first appears in the fossil record around 300,000 years ago. This species eventually evolved and spread across different parts of the world, leading to the diverse populations of humans we see today.
It's important to note that these estimates are based on the currently available fossil evidence and are subject to revision as new discoveries and advancements in scientific dating techniques occur.
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Select true/false for each of the following statements regarding copper & copper alloys:: (a) copper has a higher elastic modulus than aluminum. (b) the density of copper is closer to that of aluminum than it is to iron. (c) bronze is an alloy of copper and zinc. (d) copper and its alloys form a green tarnish over time, consisting of sulfides and carbonates. (e) copper is relatively resistant to corrosion by neutral and even mildly basic water, making it useful for freshwater plumbing applications.
A: Copper has a higher elastic modulus than aluminum.
TrueB: The density of copper is closer to that of aluminum than it is to iron.
FalseC: Bronze is an alloy of copper and zinc.
FalseD: Copper and its alloys form a green tarnish over time, consisting of sulfides and carbonates.
TrueE: Copper is relatively resistant to corrosion by neutral and even mildly basic water, making it useful for freshwater plumbing applications.
TrueThe following is a series of questions pertaining to the NSPE Code of Ethics. Please indicate whether the statement are true or false. These questions are provided by the NSPE.
Engineers in public service as members, advisors or employees of a governmental or quasi-governmental body or department may participate in decisions with respect to services solicited or provided by them or their organizations in private or public engineering practice as long as such decisions do not involve technical engineering matters for which they do not posses professional competence
Geomorphic
Explanation:
Because it's pretty easy if you think of the right ways of geomorphic ways to process the equation
You installed a new 40 gallon water heater with a 54,000 BTUh burner. The underground water temperature coming into the house is 55F
How long will it take to heat the water in the tank to a normal setting of 120F.
Please show setup and explanation.
Answer:
For most uses you'll want your water heated to 120 F(49 C) In this example you'd need a demand water heater that produces a temperature rise and it will take about 2 hours
A gas is contained in a vertical, frictionless piston– cylinder device. The piston has a mass of 3.2 kg and a crosssectional area of 35 cm2. A compressed spring above the piston exerts a force of 150 N on the piston. If the atmospheric pressure is 95 kPa. Determine the pressure inside the cylinder.
Answer:
Pressure = 51.8 x 10³ Pa = 51.8 KPa
Explanation:
First, we calculate the total force exerted on the piston:
Total Force = Force Exerted by Spring + Weight of Piston
Total Force = 150 N + (mass)(g)
Total Force = 150 N + (3.2 kg)(9.8 m/s²)
Total Force = 150 N + 31.36 N
Total Force = 181.36 N
Now, for cross-sectional area of piston:
Area = (35 cm²)(1 x 10⁻⁴ m²/1 cm²)
Area = 0.0035 m²
Now, for pressure inside the cylinder:
Pressure = Total Force/Area
Pressure = 181.36 N/0.0035 m²
Pressure = 51.8 x 10³ Pa = 51.8 KPa
Tech A says that all hazards can be removed from a shop. Tech B says that you should disconnect an air gun before inspecting it. Who is correct
According to the question of disconnecting an air gun before inspection, tech B is correct.
What is gun?
Gun is a type of weapon that is typically used to fire bullets at a target. It is typically composed of a barrel, a chamber, a firing mechanism, and ammunition. Guns have been used for centuries as a tool for hunting, self-defense, and warfare. Guns are typically categorized by the type of ammunition they use, such as pistol, shotgun, or rifle. Guns can be used to shoot at a variety of targets, such as animals, clay pigeons, and even human targets. Guns are also used in competitive shooting sports. Although guns can be used for a variety of purposes, they have the
Although it is not possible to completely remove all hazards from a shop, it is important to take precautions such as disconnecting an air gun before inspecting it to help reduce the risk of injury.
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Which of the following describes the purpose of project management?
Answer:
The purpose of project management is to help you foresee the risks and challenges that could derail the completion of a project. It applies proven methodologies and uses current software tools so you can plan, control, and monitor people, processes, and other components needed to make your project a success.
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 \(863.28\ \text{kJ}\).
acetone flows at a volume flow rate of 50 gpm through a 2 nominal schedule 40 commercial steel pipe. the pipe is laid out horizontally and is 50 ft long. calculate the pressure drop.
Explanation:
The pressure drop can be calculated using the Darcy-Weisbach equation:
ΔP = (f * L * V^2) / (2 * g * D)
where:
ΔP = Pressure drop (psi)
f = Darcy friction factor
L = Length of pipe (ft)
V = Velocity of fluid (ft/s)
g = acceleration due to gravity (32.2 ft/s^2)
D = Inner diameter of pipe (ft)
To calculate the velocity, use the equation:
V = Q / A
where:
V = Velocity (ft/s)
Q = volumetric flow rate (ft^3/s)
A = cross-sectional area of pipe (ft^2)
To convert volumetric flow rate from gpm to ft^3/s:
Q = 50 gpm * 0.002228 ft^3/s/gpm
The diameter of the 2" Schedule 40 commercial steel pipe can be found from pipe dimensions charts and is approximately 0.154 ft.
The cross-sectional area can be calculated as:
A = π * (D/2)^2
Plugging in the values:
V = (50 * 0.002228) / (π * (0.154/2)^2) = 24.7 ft/s
ΔP = (f * 50 * 24.7^2) / (2 * 32.2 * 0.154)
The value of the friction factor, f, can be estimated using the Moody diagram or calculated using a more complex equation such as the Colebrook-White equation.
Note: This is a simplified calculation and does not account for all factors that could affect pressure drop such as changes in pipe elevation, fittings, and valves.
How large a force is required to accelerate a 1300 kg car from rest to a speed of 20 m/s in a distance of 80 m?
F=m*a
F=80*20
F =1600 ans"
Answer: basically we are asked to find it's force and the formula that helps us to find force is Force= Mass× Acceleration
so let's put out the given and what we need to find
GIVEN. Solution
F=m.a
Mass= 1300. F=1300kg×20m/s
speed (Acceleration)=20m/2. F=26000Kg.m/s
Force=? F=26000N
N stands for Newton and the reason that it comes Newton is because it is the SI-unit of Force and the result of kg×m/s.
what is the marking menu fusion360
The 'marking menu' opened up ways for me to access the most commonly used commands and tools with a flick of the wrist. What's more impressive is that its dependent on workspace, so you can use it in all parts of the design!
HOPE IT HELPS:)
PLS FOLLOW:)
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Calculate the allowable bending moment for a solid rectangular 6-in.-by-16-in. timber beam if the allowable bending stress is 1000 psi. Assume that the large dimension is vertical and parallel to the applied loads.
(a) Use nominal dimensions.
(b) Use dressed dimensions.
The bending moments for the rectangular solid are:
a) M = 256,000 in-lb
b) M = 227,730 in-lb
How to calculate the allowable bending moment?a) To calculate the allowable bending moment for a solid rectangular timber beam, we can use the formula below:
M = (allowable stress)*(section modulus)
where M is the allowable bending moment and the section modulus is a measure of the beam's resistance to bending.
For a solid rectangular beam with nominal dimensions of 6 inches by 16 inches, the section modulus can be calculated as:
S = (b*h²) / 6
where b is the width of the beam and h is the height.
Substituting the values, we get:
S = (6*6²) / 6
S = 256 in³
Now, we can calculate the allowable bending moment as:
M = (allowable stress)*(section modulus)
M = 1000 psi*256 in³
M = 256,000 in-lb
Therefore, the allowable bending moment for the timber beam with nominal dimensions is 256,000 in-lb.
(b) For dressed dimensions, we need to adjust the section modulus calculation by subtracting the amount of wood that is removed during the dressing process. Assuming that the dressing process removes 1/8 inch from each side, the width and height of the dressed beam would be 5 3/4 inches and 15 1/2 inches, respectively.
Using these dimensions, the section modulus can be calculated exactly like above, but just with the different numbers:
S = (b*h²) / 6
S = (5.75*15.5²) / 6
S = 227.73 in³
Now replace that in the formula
M = 1000 psi x 227.73 in³
M = 227,730 in-lb
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Please help I need by today !!
What is the purpose of a portfolio?
Answer:
To document your work and projects.
Explanation:
I hope I got the right meaning. :)
what are the key requirements for a routing function of a packet-switching network? list the four routing strategies.
The routing function of a packet-switching network is responsible for deciding the path a data packet should take from the source to the destination. The key requirements for a routing function include scalability, efficiency, reliability, and flexibility.
Scalability is important because the routing function should be able to handle increasing network traffic without causing delays or packet loss. Efficiency is necessary to minimize the time and resources needed to route packets. Reliability ensures that packets are delivered to their intended destination without errors or loss. Flexibility allows the routing function to adapt to changes in network topology and traffic.
The four routing strategies are shortest path routing, flooding, distance vector routing, and link state routing. Shortest path routing finds the path with the least distance between the source and destination. Flooding sends packets to all connected networks. Distance vector routing uses a routing table to determine the best path based on distance. Link state routing uses a complete map of the network to determine the best path.
In conclusion, the routing function of a packet-switching network is essential for efficient and reliable data transmission. It must meet key requirements such as scalability, efficiency, reliability, and flexibility. The four routing strategies are shortest path routing, flooding, distance vector routing, and link state routing.
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What is not a condition under which the malfunction indicator light or service engine light is turned off ?
The malfunction indicator light or service engine light is not switched off when the Powertrain Control Module Link is grounded.
A power-train control module (PCM), sometimes known as a control unit, is a motor vehicle component. The engine control unit (ECU) and transmission control unit are typically combined into one controller (TCU). On some vehicles, including many Chryslers, there are three different computers: the PCM, the TCU, and the Body Control Module (BCM). In general, these car computers are very dependable. In a car or truck, the PCM frequently regulates more than 100 variables. There are hundreds of different error codes that may appear and signify that a specific component of the car isn't working properly. The "check engine" light on the dashboard typically illuminates when one of these errors occurs.
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The product solution for a drug made in a bioreactor needs to be filtered and concentrated before it can
be bottled for sale. The initial solution is 40% large particles, 20% small particles, 35% water, and 5%
drug. The solution is centrifuged to remove the large particles, then sent to a filter to remove small
particles, and finally sent to an evaporator to remove excess water. The final solution to be bottled is
75% water and 25% drug.
a) Draw a diagram of the process. Use the following for abbreviation (D = drug, L= large particles, S
= small particles, W = water).
b) Determine the flow rate of the solution to be bottled if the flow rate into the bioreactor is 250
kg/h. Show the balance equation you used and the solution. Hint: you only need 1 equation to
solve for this
a) The diagram of the process is as follows:
```
+----------+ +----------+ +----------+ +----------+
| | | | | | | |
| 40% L | | 20% S | | 35% W | | 5% D |
| | | | | | | |
+----------+ +----------+ +----------+ +----------+
| | | | |
| | | | |
| | | | |
| | | | |
| | | | |
| | | | |
| | | | |
| | | | |
| | | | |
| | | | |
| | | | |
| | | | |
| | | | |
| | | | |
| | | | |
+------------> Centrifuge <------------+ | |
| | | | | |
| | | | | |
| | | | | |
| | | | | |
+------------> Filter <------------+ | |
| | | | |
| | | | |
| | | | |
| | | | |
+------------> Evaporator <------------+ | |
| | | | | |
| | | | | |
| | | | | |
| | | | | |
+------------> Bottling <------------+ | |
| | |
| | |
| | |
| | |
+------------> 75% W <-----+ |
| | |
| | |
| | |
| | |
+------------> 25% D <-----+ |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
v v
```
b) The flow rate of the solution to be bottled can be determined using a balance equation. The balance equation is:
```
250 kg/h * 0.05 = X * 0.25
```
Where X is the flow rate of the solution to be bottled. Solving for X gives:
```
X = (250 kg/h * 0.05) / 0.25
X = 50 kg/h
```
Therefore, the flow rate of the solution to be bottled is 50 kg/h.
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The UHRS platform is optimized for Edge/Internet Explorer only. You can still use your favorite browser, but keep in mind that you may experience technical issues when working on UHRS with a different browser than Edge or Internet Explorer.
UHRS is optimized for...
It is to be noted that all UHRS platforms are optimized for the popular kinds of internet browser applications.
What is a UHRS?The Universal Human Relevance System (UHRS) is a crowdsourcing platform that allows for data labeling for a variety of AI application situations.
Vendor partners link people referred to as "judges" to offer data labeling at scale for us. All UHRS judges are bound by an NDA, ensuring that data is kept protected.
A browser is a software tool that allows you to see and interact with all of the knowledgeon the World Wide Web. Web sites, movies, and photos are all examples of this.
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Which device can connect many computers and sends packets out every port?
A device that can connect many computers and sends packets out of every port is known as Hub.
What is the name of a device that usually connects many computers?The name of the device that usually connects many computers is known as a hub. It typically connects multiple computer networking devices together. It also acts as a repeater in that it amplifies signals that worsen after traveling long distances over connecting cables.
According to the context of this question, a hub usually connects multiple computers together in a Local Area Network (LAN). All types of information are generally processed or sent to the hub is then sent through each port to every device in the network. It is noted that all types of devices are definitely connected to a network hub and share all available bandwidth equally.
Therefore, a device that can connect many computers and sends packets out of every port is known as Hub.
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Which is not a noun
Answer:
Near
Explanation:
Please mark me brainliest
Answer:
Near.... bcoz it is an adverb...
B/ Evaluate e^(πi/2)
You get a result immediately from Euler's formula:
e ^(i π/2) = cos(π/2) + i sin(π/2) = 0 + i * 1 = i
What can be used as a tracing powder when checking for small oil leaks
Answer:
Talcum powder!
Explanation:
How to find the source of an oil leak:
This method simply involves using Talcum Powder as a visual aid to help pinpoint the location of an oil leak,
so you use Talcum powder for small oil leak :]
Have a wonderful day!