Devices on a network are identified by which of the following?
Ethernet cable
ISPs and IP addresses
Username and IP addresses
MAC address and IP address

Answers

Answer 1

Devices on a network are identified by the MAC address and IP address.

MAC address stands for Media Access Control address. It is a unique identifier assigned to a network interface controller (NIC) for use as a network address in communications within a network segment while an IP address is a unique numerical identifier assigned to each device on a network that uses the Internet Protocol for communication. ISPs (Internet Service Providers) provide the service of providing Internet access to customers.

They typically provide a modem or other networking equipment which allows devices to connect to the internet. Ethernet cables are used to connect devices to a network, but they do not identify the devices themselves. Similarly, usernames are used to identify individuals on a network, but they do not identify the devices themselves. Therefore, the correct answer is MAC address and IP address.

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Answer 2

In the networking field, MAC addresses and IP addresses play a crucial role. A MAC address is a unique identifier assigned to a network interface controller (NIC) for use as a network address in communications within a network segment.

An IP address is a numerical identifier assigned to each device connected to a computer network that uses the Internet Protocol for communication.In most cases, devices on a network are identified by their IP address and MAC address.

An Internet Service Provider (ISP) may assign a unique IP address to each device connected to the Internet. A MAC address, on the other hand, is assigned to each device's network interface controller (NIC) by the manufacturer. It is used to identify devices on a local network.The Ethernet cable is used to connect devices on a network, but it is not used to identify them. A username can be used to identify a user, but not necessarily a device. However, a username can be associated with a specific IP address, which can be used to identify a device.

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Related Questions

Unsafe sites may use your personal information for criminal activities.

Answers

Answer:

True ! Unsafe sites may use our personal information for criminal activities .

True ! Unsafe sites may use our personal information for criminal activities .

What are criminal activities?

"Criminal Activities" should be required pre-"The Hateful Eight" viewing for anyone who's either forgotten or taken for granted Quentin Tarantino's gifts as a filmmaker.

Director Jackie Earle Haley's "Criminal Activities" is the worst kind of Tarantino clone, one with no gas in the tank, and no clue about how to pull off Tarantino's swagger.

So much of "Criminal Activities," a dizzyingly convoluted hostage drama, feels like a grim hang-out comedy as scripted by undergrad college film students.

Therefore, True ! Unsafe sites may use our personal information for criminal activities.

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Consider the following Moore’s law growth pattern (since 1980) for the number of transistors inside a particular commercial microprocessor: N = 1920 x 10 0.1637(Y – 1980) where Y is the year and N is the number of transistors. Assuming sustained Moore’s law growth, what will be the number of transistors in a microprocessor in year 2025? Using the same expression, calculate how many years it will take for the transistor count to increase by 100x

Answers

Answer:

No. of transistors = \($4.1524 \times 10^{10}$\) transistors

Explanation:

Given that:

N = \($1920 \times 10^{0.163(Y-1980)}$\)

Y = 2025

N = \($1920 \times 10^{0.163(2025-1980)}$\)

N = \($4.1524 \times 10^{10}$\) transistors

Now at Y = 1980

Number of transistors N = 1920

Therefore,

\($1000 = 10^{0.163(Y-1980)}$\)

\($\log_{10} 1000=0.163(Y-1980)$\)

\($\frac{3}{0.163}=Y-1980$\)

18 ≅ 18.4 = Y - 1980

Y = 1980 + 18

   = 1998

So, to increase multiples of 1000 transistors. it takes 18 years.

What is the purpose of the network security authentication function?

Answers

The purpose of network security authentication function is to verify and authenticate the identity of users or devices attempting to access a network or system.

Why is network security authentication important for networks?

Network security authentication is important for networks to ensure that only authorized users or devices are granted access which helps to prevent unauthorized access and potential security breaches.

Authentication methods such as passwords, biometrics, and multi-factor authentication provide an additional layer of security to protect against unauthorized access. It also helps track and monitor user activity, allowing for better control and management of network resources.

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What are some of the advantages of working in preconstruction?

Answers

Answer:

Benefit #1: Creating a Big Picture View.

Benefit #2: Increased Buy-in.

Benefit #3: Avoiding Re-work.

Benefit #4: Keeps Project on Budget.

Benefit #5: Keeps Scheduling Goals on Target.

Technician a says that when fuel is being dosed to a dpf, the unit is being passively regenerated. technician b says that when fuel is being dosed to a dpf, the unit is being actively regenerated. who is correct

Answers

Note that when Technician says that when fuel is being dosed to a DPF, the unit is being passively regenerated, and technician B says that when fuel is being dosed to a DPF, the unit is being actively regenerated, the one who is correct is technician B.

What is a DPF?

A diesel particulate filter (DPF) is an emissions control device that reduces the quantity of soot and other particles generated by diesel engines. It is a vital component of current diesel emissions control systems since it aids in the reduction of air pollution and the meeting of more stringent emissions requirements.

Note that the unit is actively regenerated when fuel is dosed to a DPF (diesel particulate filter).

Active regeneration entails injecting more fuel into the exhaust stream to raise the temperature of the DPF and burn off deposited soot. This operation is usually began when the DPF gets too clogged to efficiently filter out pollutants, and it is required to maintain the system's performance and efficiency.

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a designer requires a shunt regulator of approximately 20 v. two kinds of zener diodes are available: 6.8-v devices with r, of 100 and 5.1 -v devices with r, of 25 n. for the two major choices possible, find the load regulation. in this calculation neglect the effect of the regulator resistance r.

Answers

The load choices that are available in the question are:

three 6.8v zeners that would give 3 x  6.8-20 volts. This has the resistance of 30 ohms.The four 5.1 V zeners that would provide 4 x 5.1 20.4 volts. The resistance would be 100.

How to determine the load choices

a. The 6.8 Zener diode

what is required would be 3 zener diodes. These would be able to provide 3 x 6.8 = 20. 4 output

The resistance would be 3 x 10 ohms = 30 Ohms.

b. For the 5.1 v zener diode

The requirement here would be 4 zener diodes. This would have to provide 4 x 5.1 = 20.4 volts of output.

The resistance that it would have to give would be 4 x 25 = 100 ohms of resistance.

Therefore from the calculations that we have above we would have to conclude that the load regulation that is here without R would be

30 ohms for the case of a , while it would have to be 100 ohms for the case of b.

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will mark brainliest if correct
When a tractor is driving on a road, it must have a SMV sign prominently displayed.

True
False

Answers

Answer: true

Explanation:

What strategy may help a visual learner process data?

Answers

A strategy that may help a visual learner process data is a pie chart or histogram.

If an oncoming driver crosses into your path of travel, the space that is usually available for you to move your vehicle is.

Answers

Answer:

If an oncoming driver crosses into your path of travel, the space that is usually available for you to move your vehicle is to the right of your vehicle.

Explanation:

On many roads, there are areas on the sides of the road called the shoulder. The shoulder can be used for pulling over and stopping your vehicle due to emergencies.

If a driver crosses into your lane coming straight for you, the best thing to do is to pull over to the shoulder as fast as possible so to not turn left and hit incoming traffic.

A ladder of length l is leaning against a domed roof with a radius r. The base of the ladder is distance d from the base of the dome. The ladder begins to slide. Determine the IC at the moment the ladder slides if:

l = 2 m

r = 1 m

d = 0.5 m

And the x-y origin is centered at the left base of the ladder (point O).

A ladder of length l is leaning against a domed roof with a radius r. The base of the ladder is distance

Answers

The IC at the moment the ladder slides based on the lengths and other information given will be (0, 1.32)

How to calculate the IC?

From the information given, the calculation will be computed below:

l cos a = 1.5

cos a = 1.5/2

cos a = 0.75

a = 41.4°

ab = a/cos a = 1.5/cos41.4

ab = 1.5/0.75

ab = 2

b = 2 × sin 41.4

b = 2 × 0.66

b = 1.32

Therefore, the IC will be (0, 1.32).

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What are minerals made of?
NO LINKS PLEASE
A. Different substances
B. Liquid substances
C. Two or more substances
D. The same substance throughout

Answers

Answer:

the answer I know is A. different substances. hope this helps :).

Explanation:

just always study hard and God bless.

what is the advantage of mooring method? what is better compared to
the bottom tracking method?

Answers

Mooring and bottom tracking are two widely used methods to measure ocean currents. Although both methods have their advantages and disadvantages, mooring offers more advantages than bottom tracking.

A mooring is a stationary instrument array that is anchored to the seafloor and is used to track current speed, direction, temperature, salinity, and other oceanographic parameters over time. It contains a string of instruments that are installed at various depths, with each instrument measuring different oceanographic parameters. The mooring array transmits data to a surface buoy, which relays it to a shore station via satellite or radio.

The mooring is retrieved after a set time, and the data is analyzed. The speed and direction of the current can be determined by analyzing the data. This method is useful in measuring the surface and near-surface. Bottom tracking is not useful in areas where ships cannot go. Bottom tracking does not provide a long-term record of current speed, direction, and other parameters.

Bottom tracking requires the use of a ship, which can be costly and time-consuming. In conclusion, direction, temperature, and other parameters, does not provide a long-term record of current speed, direction, and other parameters.

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The wall is 15 ft high and consists of 2 x 4 in. studs, plastered on one side. On the other side there is 4-in. clay brick. Determine the average load in lb>ft of length of wall that the wall exerts on the floor.

Answers

Answer:

645 lb/ft

Explanation:

The height of the wall = 15 ft

For the 2 x 4 in. studs:

The minimum dead load for a 2 x 4 in. studs (from table 1-3) = 4 psf = 4 lb/ft²

Therefore for a 15 ft tall wall, the dead load for a 2 x 4 in. studs = 15 ft × 4 lb/ft² = 60 lb/ft

For the 4 in. clay brick:

The minimum dead load for a 4 in. clay brick (from table 1-3) = 39 psf = 39 lb/ft²

Therefore for a 15 ft tall wall, the dead load for a 4 in. clay brick = 15 ft × 39 lb/ft² = 585 lb/ft

Therefore the average load = load for the 4 in. clay brick + load for the 2 x 4 in. studs = 585 lb/ft + 60 lb/ft = 645 lb/ft

Write a sequence of shift instructions that cause ax to be sign-extended into eax. In other words, the sign bit of ax is copied into the upper 16 bits of eax. Do not use the cwd instruction

Answers

shl eax,16 (shift left)

sar eax,16 (shift arithmetic right)

Shifting the bits in the destination operand to the left (toward more significant bit positions) is what the shift arithmetic left (SAL) and shift logical left (SHL) instructions do.

When performing a division operation, the SAR instruction does not yield the same outcome as the IDIV instruction. While the "quotient" of the SAR instruction is rounded toward negative infinity, that of the IDIV instruction is rounded toward zero. This distinction is only noticeable for negative values. For instance, the result of dividing -9 by 4 using the IDIV instruction is -2 with a residual of -1.

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this is a multi-part question. once an answer is submitted, you will be unable to return to this part. an ideal cogeneration steam plant is to generate power and 8600 kj/s of process heat. steam enters the turbine from the boiler at 7 mpa and 500°c. one-fourth of the steam is extracted from the turbine at 600 kpa pressure for process heating. the remainder of the steam continues to expand and exhausts to the condenser at 10 kpa. the steam extracted for the process heater is condensed in the heater and mixed with the feedwater at 600 kpa. the mixture is pumped to the boiler pressure of 7 mpa.

Answers

This response is accompanied by the T-s or H-s graphic.

2. The steam extraction rate is 4.088 kg per second.

3. Steam leaving the boiler has a net power output of 1089.5 KJ/Kg.

4. The boiler's mass flow rate of steam is 16.352Kg/s.

5. The plant generates 11016.2KJ/s of net electricity.

6. 0.218 is the usage factor.

We must ascertain all of the system's thermodynamic coordinates in order to examine the issue. The optimal cogeneration steam plant technology can be seen in the second image that is attached to this response.

We may get the details for each point from a chart of the thermodynamic characteristics of water.

+ Steam from the boiler reaches the turbine at 7 MPa and 500 °C:

h₆=3410.56KJ/Kg

s₆=6.7993 KJ/Kg

As a result, this cogeneration steam system is suitable. s₆=s₇=s₈

At 600 kPa, one-fourth of the steam is removed from the turbine:

2773.74 KJ/Kg = h7(s7) (overheated steam)

+The remaining steam expands further and exhausts to the condenser at a pressure of 10 kPa.

(This is wet steam with title X=0.8198; h8(s8)=2153.58 KJ/Kg.)

s1=0.64925KJ/Kg and h1(P=10Kpa)=191.83 KJ/Kg (condensed water).

Pumping this flow to 600KPa results in:

s₂=s₁

h₂(s₂)=192.585KJ/Kg

+The heater condenses the steam that was taken for the process heater.

h₃(P=600KPa)=670.42KJ/Kg (condensed water) (condensed water).

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locate the centroid of the shaded area between the two curves​

locate the centroid of the shaded area between the two curves

Answers

9514 1404 393

Answer:

  (x, y) = (5.76, 1 5/7)

Explanation:

The location of the centroid in the x-direction is the ratio of the first moment of area about the y-axis to the total area. Similarly, the y-coordinate of the centroid is the first moment of area about the x-axis, divided by the area.

For the moment about the y-axis, we can define a differential of area as ...

  dA = (y2 -y1)dx

where y2 = √(x/k2) and y1 = k1·x^3

The distance of that area from the y-axis is simply x.

So, the x-coordinate of the centroid is ...

  \(\displaystyle c_x=\frac{a_x}{a}=\frac{\int{x\cdot dA}}{\int{dA}}\\\\a_x=\int_0^{12}{x(k_2^{-1/2}\cdot x^{1/2}-k_1x^3)}\,dx=\frac{2}{5k_2^{1/2}}\cdot12^{5/2}-\frac{k_1}{5}12^5\\\\a=\int_0^{12}{(k_2^{-1/2}\cdot x^{1/2}-k_1x^3)}\,dx=\frac{2}{3k_2^{1/2}}\cdot12^{3/2}-\frac{k_1}{4}12^4\\\)

For k1 = 4/12^3 and k2=12/4^2, these evaluate to ...

  \(a_x=115.2\\a=20\\c_x=5.76\)

The y-coordinate of the centroid requires we find the distance of the differential of area from the x-axis. We can use (y2 +y1)/2 for that purpose. Then the y-coordinate is ...

  \(\displaystyle c_y=\frac{a_y}{a}\\\\a_y=\int_0^{12}{(\frac{y_2+y_1}{2}(y_2-y_1))}\,dx=\frac{1}{2}\int_0^{12}{(\frac{x}{k_2}-(k_1x^3)^2)}\,dx\\\\a_y=\frac{12^2}{4k_2}-\frac{k_1^212^7}{14}=\frac{240}{7}\\\\c_y=\frac{12}{7}\approx1.7143\)

The centroid of the shaded area is ...

  (x, y) = (5.76, 1 5/7)

locate the centroid of the shaded area between the two curves

Compute the corresponding angular measurements in the centesimal system for the
following angles which are in the Sexagesimal system
i. 125˚
ii. 12˚

Answers

The sexagesimal system angles for 125 is 2.18 and for 12 is 0.209

What is the sexagesimal system?

We know that 180 = π

Therefore,

(i) 125  = 125 *  π / 180

                         = 125 * 22/ 7 * 180

                         = 2750 / 1260

                          = 2.18

(ii) 180 = π

12 = 12*  π /180

   = 12* 22/ 7 *  180

    = 264/ 1260

  = 0.209

Therefore, The sexagesimal system angle for 125 is 2.18 and for 12 is 0.209.

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How does aggregation of project safety allow the project team to reduce overall safety to a value that is less than the sum of individual task safeties?

Answers

The aggregation of project safety allows the project team to reduce overall safety to a value that is less than the sum of individual task safeties by considering the interactions and dependencies among various tasks and safety measures.

When evaluating project safety, it is important to recognize that the safety of individual tasks or components alone does not necessarily guarantee overall project safety. The aggregation of project safety involves analyzing the interactions and dependencies among different tasks, processes, and safety measures to identify potential risks and vulnerabilities that may arise when these elements interact. By considering the interdependencies, the project team can identify opportunities to optimize safety measures and reduce overall safety risks. This approach allows for a more holistic perspective on safety, where synergies and efficiencies can be leveraged to enhance overall safety performance. It is through this aggregation and consideration of the project as a whole that the team can identify and implement measures to reduce overall safety risks to a level that may be less than the sum of individual task safeties.

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You have accumulated several parking tickets while at school, but you are graduating later in the year and plan to return to your home in another jurisdiction. A friend tells you that the authorities in your home jurisdiction will never find out about the tickets when you re-register your car and apply for a new license. What should you do?

Answers

Answer:

pay off the parking tickets

Explanation:

In the scenario being described, the best thing to do would be to pay off the parking tickets. The parking tickets stay under your name, and if they are not paid in time can cause problems down the road. For starters, if they are not paid in time the amount will increase largely which will be harder to pay. If that increased amount is also not paid, then the government will suspend your licence indefinitely which can later lead to higher insurance rates.

Which of the following are examples of
engineering controls? Select all that apply.
.
Steps for removing used medical exam gloves
Washing stations
Biohazard waste containers
Spill clean up kits
Sharps containers

Answers

The examples of engineering controls is Biohazard waste containers and Spill clean up kits.

What is engineering controls?

An engineering controls is a workplace process that protect workers by removing hazardous conditions or by placing a barrier between the worker and the hazard.

An example of engineering controls is installation of exhaust ventilation to remove airborne emissions to shield the worker.

Hence, the examples of engineering controls is Biohazard waste containers and Spill clean up kits.

Therefore, the Option C and D is correct.

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What is the hardest part of engineering?

Answers

ANSWER:

Aerospace Engineering. ...

Chemical Engineering. ...

Biomedical Engineering.

EXPLANATION:

This is all i know but ... I hope this helps~

The highest strength carbon steels with some ductility have a microstructure described as: Group of answer choices

Answers


The microstructure formed during the rapid cooling of an iron containing from the temperature to room temperature is referred as martensite.

Answer:

Hello the options attached to this question is missing below are the options

a) Martensite

b) Pearlite

c) Bainite

d) Tempered martensite

answer : Tempered martensite ( d )

Explanation:

The Highest strength carbon steels with some ductility have a microstructure that is described as Tempered martensite

The microstructure that is formed when a martensite ( rapidly cooled ) is heated up to the temperatures of 500°C is the highest strength carbon steels with some ductility

What is the difference between digital instruments and decimal scaled instruments to measure

Answers

Answer Digital measuring instruments are self-contained devices that automatically present the value of the measured quantity on a digital display. And Decimal Scaled Instruments: Record all digits that you can certainly determine from the scale markings and estimate one more digit. I hope this Helped I´m new to this.

Explanation:

The 10-mm-diameter steel bolt is surrounded by a bronze sleeve. The outer diameter of this sleeve is 20 mm, and its inner diameter is 10 mm. If the bolt is subjected to a compressive force of P = 20 kN, determine the average normal stress in the steel and the bronze. E_{st} = 200 GPa, E_{br} = 100 GPa. E ss =200GPa,E bb =100GPa.

Answers

The average normal stress in the steel and the bronze is 5.110×10^7Pa.

What is stress?

The force applied to an item divided by its cross-sectional area is how stress is defined in engineering. The applied force must be known in order to calculate the internal stress of an item.

The object's cross-sectional area is further crucial. Stress is a measurement of an external force that is applied across an object's cross-section. The units of force per area for stress are N/m2 (SI) or lb/in2 (US). Pascals, sometimes known as Pa, is a frequent name for the SI units.

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TRUE OR FALSE 22. an optimal wind turbine installation is done on the side of roughness change that has the smoothest surface for most of the wind directions:

Answers

An optimal wind turbine installation is done on the side of roughness change that has the smoothest surface for most of the wind directions. (True)

What is a wind turbine?

A wind turbine is a machine that transforms wind's kinetic energy into electrical energy. Today, over 650 gigawatts of power are produced by hundreds of thousands of large turbines in wind farms, with 60 GW being added annually. In many nations, wind turbines are used to cut energy costs and lessen reliance on fossil fuels.

They are a significant source of intermittent renewable energy. According to one study, in comparison to photovoltaic, hydro, geothermal, coal, and gas energy sources, wind had the "lowest relative greenhouse gas emissions, the least water consumption demands, and the most favourable social impacts" as of 2009.

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DESCRIPTION: Write a class named RetailItem that holds data about an item in a retail store. The class should have the following fields:
• description. The description field references a String object that holds a brief description of the item.
• unitsOnHand. The unitsOnHand field is an int variable that holds the number of units currently in inventory.
• price. The price field is a double that holds the item’s retail price.
Write a constructor that accepts arguments for each field, appropriate mutator methods that store values in these fields, and accessor methods that return the values in these fields. Once you have written the class, write a separate program that creates three RetailItem objects and stores the following data in them:
Description Units on Hand Price
Jacket 12 59.95
Designer Jeans 40 34.95
3 Shirt 20 24.95
and this one blow is my work so far,
import java.io.*;
import java.util.Scanner;
class RetailItem
{
private String description;
private int units;
private double price;
public RetailItem()
{
}
public RetailItem(String x, int y, double z)
{
description=x;
units=y;
price=z;
}
public void setDesciption(String x)
{
description=x;
}
public void setPrice(double z)
{
price=z;
}
void setUnits(int y)
{
units=y;
}
public int getUnits()
{
return units;
}
public String getDescription()
{
return description;
}
public double getPrice()
{
return price;
}
}
class RetailTest
{
public static void main(String [] args)
{
String str="Shirt";
RetailItem r1=new RetailItem ("Jacket",12,59.95);
RetailItem r2=new RetailItem ("Designer Jeans",40,34.95);
RetailItem r3=new RetailItem();
r3.setDescription(str);
r3.setUnits(20);
r3.setPrice(24.95);
System.out.println("__________________________________");
System.out.println("\tDescription\tUnits on Hand\tPrice");
System.out.println("__________________________________");
System.out.println("Item #1\t"+r1.getDescription()+"\t\t"+r1.getUnits()+" \t\t "+r1.getPrice());
System.out.println("Item #2\t"+r2.getDescription()+"\t\t"+r2.getUnits()+" \t\t "+r2.getPrice());
System.out.println("Item #3\t"+r3.getDescription()+"\t\t"+r3.getUnits()+" \t\t "+r3.getPrice());
System.exit(0);
}
}

Answers

class RetailItem:

  def __init__(self, description, units_in_inventory, price):

      self . description = description

      self . units_in_inventary = units_in_inventory

      self . price = price

This class has three attributes: `description`, `units_in_inventory`, and `price`. The `__init__` method is used to initialize these attributes with the values passed as arguments.

Now, to create three `RetailItem` objects and store the data in them, we can write a program like this:

# create three RetailItem objects

item1 = RetailItem (" T-shirt ", 10, 19.99)

item2 = RetailItem (" Jeans ", 5, 39.99)

item3 = RetailItem (" Sneakers ", 7, 79.99)

# print the data for each item

print("Item 1:" , item1. description, item1. units_in_inventory, item1. price)

print("Item 2:" , item2. description, item2. units_in_inventory, item2. price)

print("Item 3:" , item3. description, item3. units_in_inventory, item3. price)

In this program, we first create three `RetailItem` objects named `item1`, `item2`, and `item3`, with different values for their attributes. Then, we print out the data for each item using the print function.

Item 1: T-shirt 10 19.99

Item 2: Jeans 5 39.99

Item 3: Sneakers 7 79.99

This shows that the data has been successfully stored in the `RetailItem` objects and can be accessed and printed out as needed.

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who was the american inventor created the cotton gin; a machine that made the united states the cotton-production capital of the world.?

Answers

While Eli Whitney is primarily renowned as the inventor of the cotton gin, he was also the pioneer of the mass production process. In 1798, he figured out how to produce muskets by machine.

Who created the cotton gin and what purpose did it serve?

Contents. The cotton gin, created in 1794 by American-born inventor Eli Whitney (1765–1825), revolutionised cotton production by making the removal of seeds from cotton fibre much faster.

Who utilised the cotton gin initially?

Most often credited to Eli Whitney, who received the patent in 1794, the cotton gin is a machine that separates cotton fibres from the seeds.

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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...

Answers

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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.) If the charges attracting each other in the problem above have equal magnitude, what is the magnitude of each charge?

Answers

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.

Who is he where is he from

Who is he where is he from

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Answer:

Levi Ackerman  is the tritagonist of the anime/manga series Attack on Titan. He is a Captain in the Survey Corps , known to be the strongest soldier alive. He has a harsh and unsocial personality, but is well-regarded by his subordinates and he cares about their lives. Levi Ackerman spent his childhood in the Underground City. It was the slums of the Attack on Titan’s entire world

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