which non-traditional machining process was designed to machine hard (greater than rockwell 45c) and brittle workpieces such as glass, sapphire, alumina, ferrite, piezoceramics, quartz, silicon carbide, and technical ceramics.

Answers

Answer 1

Laser machining is the non-traditional machining process designed to machine hard and brittle workpieces.

The Benefits of Laser Machining Hard and Brittle Workpieces

In the modern world, the need for precision machining of hard and brittle materials has become increasingly important. This is because many products and components require a high level of accuracy and strength in order for them to function properly. As a result, many machining processes have been developed to meet these needs. One such process is laser machining, which has proven to be an efficient and cost-effective way of machining hard and brittle materials such as glass, sapphire, alumina, ferrite, piezoceramics, quartz, silicon carbide, and technical ceramic.

The benefits of laser machining hard and brittle workpieces are numerous. First, laser machining enables high precision due to the extremely focused nature of the laser beam. Because of this, laser machining can produce intricate shapes and patterns with very tight tolerances. This ensures that parts and components are made to exact specifications. Additionally, the use of a laser beam also eliminates the need for tooling, which can be expensive and time-consuming.

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Related Questions

Uses of nanotechnology in the aerospace engineering field

Answers

Answer:

The aerospace applications for nanotechnology include high strength, low weight composites, improved electronics and displays with low power consumption, variety of physical sensors, multifunctional materials with embedded sensors, large surface area materials and novel filters and membranes for air purification, ...

Explanation:

A homeowner consumes 260 kWh of energy in July when the family is on vacation most of the time. Determine the average cost per kWh for the month using the following residential rate schedule: Base monthly charge of $10.00. First 100 kWh per month at 16 cents/kWh. Next 200 kWh per month at 10 cents/kWh. Over 300 kWh per month at 6 cents/kWh.

Answers

Answer:

16.2 cents

Explanation:

Given that a homeowner consumes 260 kWh of energy in July when the family is on vacation most of the time.

Where Base monthly charge of $10.00. First 100 kWh per month at 16 cents/kWh. Next 200 kWh per month at 10 cents/kWh. Over 300 kWh per month at 6 cents/kWh.

For the first 100 kWh:

16 cent × 100 = 1600 cents = 16 dollars

Since 1 dollar = 100 cents

For the remaining energy:

260 - 100 = 160 kwh

10 cents × 160 = 1600 cents = 16 dollars

The total cost = 10 + 16 + 16 = 42 dollars

Note that the base monthly of 10 dollars is added.

The cost of 260 kWh of energy consumption in July is 42 dollars

To determine the average cost per kWh for the month of July, divide the total cost by the total energy consumed.

That is, 42 / 260 = 0.1615 dollars

Convert it to cents by multiplying the result by 100.

0.1615 × 100 = 16.15 cents

Approximately 16.2 cents

what is Geography? pliz help​

Answers

Answer:

hope it's helpful please like and Follow me

what is Geography? pliz help
what is Geography? pliz help

Answer:

Geography is the science that studies and describes the surface of the Earth in its physical, current and natural aspect, or as a place inhabited by humanity.

9. The highest voltage typically encountered on the job by a residential electrician is
volts.
A. 120
B. 600
C. 240
D. 480

Answers

Answer:

240

Explanation:

9. The highest voltage typically encountered on the job by a residential electrician isvolts.A. 120B.

The highest voltage typically encountered on the job by a residential electrician is C. 240 volts.

What is voltage?

Voltage is the measure of the difference in electrical power between two points in a circuit.

It is like the force that pushes electric charges in a circuit and is measured in volts (V) and affects how strong the electric current flows in a wire.

In many countries, the United States included, residential electrical systems often use a split-phase setup with a voltage of 120/240 volts.

This voltage is widely used for things like household appliances, lights, and other electrical needs in homes.

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Which option identifies the tool best to use in the following scenario?
Theresa has just purchased a crib and needs to assemble it quickly. The crib came with instructions, but no tools, and she does not know what she needs. On all of the screws in her kit, there is a six-sided hole in the head.

an Allen wrench
a Phillips screwdriver
a flathead screwdriver
an adjustable crescent wrench
NEXT QUESTION

Answers

Answer:

an Allen wrench

Explanation:

it is hexagonal

what is the division of demand

Answers

Answer:Demand is the number of goods that the customers are ready and able to buy at several prices during a given time frame.Division of demand:Composite demand.Short-run and long-run demand.Price demand.Income demand.Competitive demand.Direct and derived demand.

engineers shall not affix their signatures to plans or documents dealing with subject matter in which they lack competence, but may affix their signatures to plans or documents not prepared under their direction and control where they have a good faith belief that such plans or documents were competently prepared by another designated party. T/F

Answers

True. engineers shall not affix their signatures to plans or documents dealing with subject matter in which they lack competence, but may affix their signatures to plans or documents not prepared under their direction and control where they have a good faith belief that such plans or documents were competently prepared by another designated party

This statement is in accordance with the NSPE Code of Ethics, specifically Canon 4 which states that "Engineers shall not affix their signatures to any plans or documents dealing with subject matter in which they lack competence, nor to any plan or document not prepared under their direction and control. However, engineers may sign and seal work done by others if they have a good faith belief that the work was done in a professionally competent manner."

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Calculate the moment Mo of the 160-N force about the base point O of the robot. The moment is positive is counterclockwise, negative if clockwise.

Assume F = 160 N, a = 560 mm, b = 350mm. c = 220 mm, theta = 58, and alpa= 11

Answers

Since the angle between the force and the perpendicular distance is less than 90 degrees (counterclockwise direction), the moment is positive. Therefore, the moment Mo is 42.22 Nm counterclockwise.

What is the explanation for the above response?


To calculate the moment Mo, we can use the formula:

Mo = F * d

where F is the force, and d is the perpendicular distance from the line of action of the force to the base point O.

First, we need to find the perpendicular distance from the line of action of the force to point O. We can use trigonometry to do this. Let's call this distance "h".

h = a * cos(theta) + c * cos(alpha)

h = 560 mm * cos(58) + 220 mm * cos(11)

h = 263.89 mm

Now we can calculate the moment Mo:

Mo = F * d

Mo = 160 N * 0.26389 m

Mo = 42.22 Nm

Since the angle between the force and the perpendicular distance is less than 90 degrees (counterclockwise direction), the moment is positive. Therefore, the moment Mo is 42.22 Nm counterclockwise.

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Find the thickness of the material that will allow heat transfer of 6706.8 *10^6 kcal during the 5 months through the rectangle heater made from copper whose dimensions are 450 cm by 384 cm. Outside and inside temperature are 30° C and 50° C respectively

Answers

Answer:

The thickness of the material is 6.23 cm

Explanation:

Given;

quantity of heat, Q = 6706.8 *10⁶ kcal  

duration of the heat transfer, t = 5 months

thermal conductivity of copper, k = 385 W/mk

outside temperature of the heater, T₁ = 30° C

inside  temperature of the heater, T₂ = 50° C

dimension of the rectangular heater = 450 cm by 384 cm

1 kcal = 1.163000 Watt-hour

6706.8 *10⁶ kcal  = 7800008400 watt-hour

I month = 730 hours

5 months = 3650 hours

Rate of heat transfer, P = \(\frac{7800008400 \ Watt-Hour}{3650 \ Hours} = 2136988.6 \ W\)

Rate of heat transfer, \(P = \frac{K*A *\delta T}{L}\)

where;

P is the rate of heat transfer (W)

k si the thermal conductivity (W/mk)

ΔT is change in temperature (K)

A is area of the heater (m²)

L is thickness of the heater (m)

\(P = \frac{KA(T_2-T_1)}{L} \\\\L = \frac{KA(T_2-T_1)}{P}\\\\L = \frac{385(4.5*3.84)(50-30)}{2136988.6}\\\\L = 0.0623 \ m\)

L = 6.23 cm

Therefore, the thickness of the material is 6.23 cm

For the six-bit binary values given below, find the equivalent decimal values when the data is interpreted as unsigned integers or signed integers. 011010, 110001, 010011, 110010, 111001, 001111, 101011

Answers

For the six-bit binary values given below, the equivalent decimal values when the data is interpreted as unsigned integers or signed integers is given in the explanation part.

We'll translate the six-bit binary values into unsigned integers and signed integers in order to determine the equivalent decimal values.

Unsigned Integers: For unsigned integers, we can use the following formula to translate a binary number to its decimal equivalent:

Decimal Value = \((2^0 * Bit0) + (2^1 * Bit1) + (2^2 * Bit2) + (2^3 * Bit3) + (2^4 * Bit4) + (2^5 * Bit5)\)

Binary: 011010

Decimal (Unsigned): \((2^0 * 0) + (2^1 * 1) + (2^2 * 0) + (2^3 * 1) + (2^4 * 0) + (2^5 * 1) = 26\)

Binary: 110001

Decimal (Unsigned): \((2^0 * 1) + (2^1 * 0) + (2^2 * 0) + (2^3 * 0) + (2^4 * 1) + (2^5 * 1) = 49\)

Binary: 010011

Decimal (Unsigned): \((2^0 * 1) + (2^1 * 1) + (2^2 * 0) + (2^3 * 0) + (2^4 * 1) + (2^5 * 0) = 19\)

Binary: 110010

Decimal (Unsigned): \((2^0 * 0) + (2^1 * 1) + (2^2 * 0) + (2^3 * 0) + (2^4 * 1) + (2^5 * 1) = 50\)

Binary: 111001

Decimal (Unsigned): \((2^0 * 1) + (2^1 * 0) + (2^2 * 0) + (2^3 * 1) + (2^4 * 1) + (2^5 * 1) = 57\)

Binary: 001111

Decimal (Unsigned): \((2^0 * 1) + (2^1 * 1) + (2^2 * 1) + (2^3 * 1) + (2^4 * 1) + (2^5 * 0) = 15\)

Binary: 101011

Decimal (Unsigned): \((2^0 * 1) + (2^1 * 1) + (2^2 * 0) + (2^3 * 1) + (2^4 * 0) + (2^5 * 1) = 43\)

For signed numbers, we'll assume a 2's complement representation when converting a binary number to its decimal equivalent.

The formula below will be used to get the decimal value of the integer if the most significant bit (MSB) is 1, which denotes a negative number.

Decimal Value = -[(2's complement of the remaining bits) + 1]

Binary: 011010

Decimal (Signed): 26

Binary: 110001

Decimal (Signed): -31

Binary: 010011

Decimal (Signed): 19

Binary: 110010

Decimal (Signed): -30

Binary: 111001

Decimal (Signed): -23

Binary: 001111

Decimal (Signed): 15

Binary: 101011

Decimal (Signed): -21

Thus, the equivalent decimal values for the given binary values, are given here.

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while discussing the classification of the chevy volt, technician a says it can be called a plug-in hybrid. technician b says it can be called a parallel hybrid. who is correct?

Answers

Technician A is correct in saying that the Chevy Volt can be called a plug-in hybrid.

The Chevy Volt is classified as a plug-in hybrid electric vehicle (PHEV). PHEVs are powered by both gasoline and electricity, and they can be recharged by plugging them into an electrical outlet. This allows them to travel a certain distance on electric power alone before the gasoline engine kicks in. A parallel hybrid, on the other hand, uses both gasoline and electric power simultaneously to propel the vehicle. While the Chevy Volt has a gasoline engine, it primarily relies on its electric motor for propulsion and can be plugged in to charge its battery, making it a plug-in hybrid. Therefore, Technician A is correct in his statement.

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A well-hydrated human body is made up of about _______ percent water.

Answers

Answer:

70%

Explanation:

Answer:


70%


Explanation:


A well-hydrated human body is made up of about 70% water :)


Hope that helps

Refrigerant-134a at 1 MPa and 100 C is to be cooled to 1 MPa and 28 C in a condenser by air. The air enters at 125 kPa and 25 C with a mass flow rate of 697 kg/min and leaves at 97 kPa and 58 C. Determine the mass flow rate of the refrigerant. Assume air has a constant heat capacity determined at room temperature. Report the mass flow rate of the refrigerant in kg/min with one decimal digit, for example 95.3 or 105.6.

Answers

I don’t know but it might be a lot

On a 'wear indicator type ball Joint, what does it mean when the grease fitting boss is flush with the base?

OA. The ball Joint requires lubrication

OB. The ball joint should be replaced

OC. The steering knuckle has loosened from the ball Joint

OD. Nothing, this is how they are when new

Answers

For a wear indicator type ball joint, when the grease fitting boss is flush with the base: B. The ball joint should be replaced.

What is a wear indicator?

A wear indicator can be defined as a type of technology that is designed to alert and warn a car owner or driver that the car's brake pad is needs a replacement.

Generally, a wear indicator is designed and fitted with a small boss. Thus, this small boss would continuously recede into its housing as wear occurs. However, when it recedes into the cover plate or flush with the base, it simply means that the ball joint should be replaced.

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If current flowing through a conductor is 10 mA. how many electrons travel through it in 10 s?​

Answers

6.25×10⁻¹⁸ electrons will flow through a copper wire.

What are electrons?

Electrons can be defined as the sum of atomic particles that is the career of negative charge, they are responsible for the chemical property of an element, the electrons are present in the shell.

Use formula ( I = ne/t )

Here,

number of electron

electron =1.6 x 10¯¹9 C

We have a relation between charge and current as

Charge = Current×time i.e

Q = i×t.

Now we have current = 10 amp & time = 10sec from given data.

Therefore charge Q = 10×1 = 100 coulombs.

Again we have a relation between charge and no of electrons

I.e no of electrons= total charge / 1.6×10⁻¹⁹

So, no of electrons = ( 100C/1.6×10⁻¹⁸ )

= 6.25×10⁻¹⁸ electrons.

Therefore, 6.25×10⁻¹⁸ electrons will flow through a copper wire carrying 10 amps current for 10 sec

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For proper function hydraulics systems need a reservoir of which of the following?
A.) Compressible fluid
B.) Non-compressible fluid C.) Non-compressible air

Answers

A. Compressible fluid

Think of brake fluid on a vehicle, compressed as one applies the break= pressure to expand brake cylinders in the wheels which compress the pads on the wheel brake rotors.

Release brake and fluid relaxes back into the reservoir/accumulator.

Create a story with nuclear engineer (not so long and not so short)

Answers

Answer:

I can't write stories well, but I can give character advice!

Explanation:

A really important thing is to make sure your characters act human. In a lot of stories, humans act... well, like aliens or superheroes.Come up with unique traits and descriptions (ex: 2 different colored eyes, spunky, bright orange hair)POV really matters! Choosing the wrong POV might make the character seem to flawed, or too perfect, so POV is one of the most important things in a story!Don't be afraid to make your main character stray from the usual, but make sure there's other characters that stand out, because it gets quite boring if there's only 1 unique character!

Lynx eat snowshoe hares, and snowshoes hears eat plants. Which term can be applied to the lynx in this food chain example? Primary consumer predator secondary consumer

Answers

Answer:

primary consumer because YES

Answer:predator and secondary consumer

Explanation:

Which technique improves system resource utilization by holding active programs in memory while the programs waiting for I/O completion or for an event to take place? a. Time-sharing b. Sequential execution c. Multiprogramming d. Multitasking

Answers

The correct answer is c. Multiprogramming  improves system resource utilization by holding active programs in memory while the programs waiting for I/O completion or for an event to take place

Multiprogramming is a technique that improves system resource utilization by allowing multiple programs to reside in memory at the same time. It involves the concurrent execution of multiple programs, where the CPU switches between programs as they wait for I/O operations or events to occur. By keeping multiple programs in memory and efficiently sharing the CPU, the system can make better use of available resources and increase overall system throughput.

Time-sharing, on the other hand, refers to the sharing of computing resources (such as CPU time) among multiple users or processes, allowing them to interact with the system concurrently.

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A 1.2 newton block is dropped A 1.2 Newton block is dropped downward from a tall cliff. What is the magnitude and direction
of the force of air friction on the block when it reaches its terminal velocity?

1.2 newtons upward
1.2 newtons downward
0.12 newtons upward
0.12 newtons downward

Answers

Answer:

1.2 Newtons upwards

Explanation:

because the friction is opposite of the magnitude.

Emerging technologies and practice for South African SMMEs

Answers

South African SMMEs can benefit from emerging technologies and practices in three key ways: digital transformation, e-commerce adoption, and cloud computing.

Digital transformation is crucial for SMMEs to stay competitive in today's fast-paced business landscape. By embracing digital tools and technologies, SMMEs can streamline their operations, enhance their productivity, and reach a wider customer base. This can be achieved through the implementation of digital marketing strategies, the use of customer relationship management (CRM) systems, and the adoption of automation and data analytics solutions. Digital transformation enables SMMEs to improve their efficiency, make data-driven decisions, and deliver better customer experiences.

E-commerce adoption is another significant opportunity for South African SMMEs. With the growing popularity of online shopping, establishing an e-commerce presence can help SMMEs expand their market reach beyond their local communities. This can be done by setting up an online store or leveraging existing e-commerce platforms. E-commerce enables SMMEs to sell their products or services 24/7, reach customers across the country (or even globally), and provide convenient and secure online payment options. It also opens doors to new marketing strategies, such as social media advertising and influencer collaborations, which can further boost sales and brand awareness.

Cloud computing offers SMMEs cost-effective and scalable solutions for their IT infrastructure needs. By moving their data storage, software applications, and computing power to the cloud, SMMEs can reduce their hardware and maintenance costs, improve data security and backup capabilities, and increase their overall agility. Cloud computing also enables SMMEs to access their business data and applications from anywhere with an internet connection, facilitating remote work and collaboration. Additionally, cloud-based services often come with built-in data analytics and machine learning capabilities, allowing SMMEs to derive valuable insights and optimize their business processes.

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in c the square root of a number N can be approximated by repeated calculation using the formula NG = 0.5(LG + N/LG) where NG stands for next guess and LG stands for last guess. Write a function that calculates the square root of a number using this method. The initial guess will be the starting value of LG. The program will com- pute a value for NG using the formula given. The difference between NG and LG is checked to see whether these two guesses are almost identical. If they are, NG is accepted as the square root; otherwise, the next guess (NG) becomes the last guess (LG) and the process is repeated (another value is computed for NG, the difference is checked, and so on). The loop should be repeated until the difference is less than 0. 005. Use an initial guess of 1. 0. Write a driver function and test your square root function for the numbers 4, 120. 5, 88, 36.01, 10,000, and 0. 25
PLEASE İN C PROGRAMMİNG

Answers

Answer:

Following are the program to the given question:

#include <stdio.h>//header file

double square_root(double N, double initialGuess)//defining a method square_root that takes two variable in parameters

{

double NG, LG = initialGuess,diff;//defining double variable

while(1)//use loop to calculate square root value

{

NG = 0.5 * (LG + N / LG);//using given formula

diff = NG - LG;//calculating difference

if(diff < 0)//use if to check difference is less than 0

diff = -diff;//decreaing difference

if(diff < 0.005)//use if that check difference is less than 0.005

break;//using break keyword  

else//defining else block

{

LG = NG;//holding value

}

}

return NG;//return value

}

int main()//defining main method

{

double ans, n,initialguess = 1.0;//defining double variable

n = 4;//use n to hold value

ans = square_root(n, initialguess);//calculating the square root value and print its value

printf("square_root(%lf) = %lf \n", n, ans);//print calculated value with number

n = 120.5;//use n to hold value

ans = square_root(n, initialguess);//calculating the square root value and print its value

printf("square_root(%lf) = %lf \n", n, ans);//print calculated value with number

n = 36.01;//use n to hold value

ans = square_root(n, initialguess);//calculating the square root value and print its value

printf("square_root(%lf) = %lf \n", n, ans);//print calculated value with number

n = 0.25;//use n to hold value

ans = square_root(n, initialguess);//calculating the square root value and print its value

printf("square_root(%lf) = %lf \n", n, ans);//print calculated value with number

printf("\nEnter a number: ");//print message

scanf("%lf", &n);//input value

ans = square_root(n, initialguess);//calculating the square root value and print its value

printf("square_root(%lf) = %lf \n", n, ans);//print calculated value with number

}

Output:

Please find the attachment file.

Explanation:

In this code, a method "square_root" is declared that takes two variable "N, initialGuess" in its parameters, inside the method a three double variable is declared.It uses the given formula and uses the diff variable to hold its value and uses two if to check its value is less than 0 and 0.005 and return its calculated value.In the main method, three double variables are declared that use the "n" to hold value and "ans" to call the method that holds its value and print its value.
in c the square root of a number N can be approximated by repeated calculation using the formula NG =

what is one thing you learned from reading the article, optimizing the nw off-shore wind turbine design, that you would like to apply to your turbine blade design?

Answers

Since their blades are bent, wind turbines provide lift. Low air pressure is produced by the side of the blade-shaped aerofoil that has the largest curve, while high air pressure is produced by the side that is beneath it.

Explain about the turbine blade design?

Due to the form of wind turbine blades, air molecules flowing across the downwind side of the blade move more quickly than those moving across the upwind side. An airfoil is a form that resembles a crooked teardrop.

Turbines can be made with a vertical or a horizontal axis. Their blades might be straight, curved, or rounded. An energy-producing turbine with a horizontal axis and three blades is most effective at producing power.

Most blades are constructed of epoxy or polyester reinforced with fibreglass. As reinforcement materials, we may alternatively utilise carbon fiber or aramid (Kevlar). These days, research is being done into the potential applications of wood compounds like wood-epoxy or wood-fiber-epoxy.

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when sizing beams, you should stick with 2x6 to 2x12 members because:

Answers

When sizing beams, you should stick with 2x6 to 2x12 members because they are readily available and easy to handle. You may have to consider larger size members when spans exceed the lengths that 2x6 to 2x12 can handle. In addition, larger size members may be required to support the load carried by a beam.

The size of beams used in construction varies depending on the span, the weight of the load it is going to support, the species of lumber used, and the spacing between joists.Consequently, larger beams may be necessary to support larger loads or spans. Furthermore, larger beams may be necessary to support the load carried by a beam. Typically, 2x6 to 2x12 is the most commonly used beam size due to their availability and ease of handling.

In summary, it's recommended that you stick to 2x6 to 2x12 beam sizes when sizing beams due to their ease of handling and availability. Nevertheless, when spans exceed the lengths that 2x6 to 2x12 can handle, larger size members may be needed.

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A tank contains 1767 kg of compound X. Each year, a fixed amount of 12 kg of the
compound leaks out of the tank. In addition, compound X also degrades to compound Y, at
a constant rate of 0.012 mass fraction per year (do not confuse mass fraction with percent).
After 7 years, how many kilograms of compound X remain in the tank?

Answers

After 7 years, the amount of compound X that will remain in the tank can be calculated as follows:

Total amount of compound X initially = 1767 kg

Amount of compound X leaked out every year = 12 kg

Total amount of compound X leaked out in 7 years = 12 kg/year x 7 years = 84 kg

Amount of compound X that degrades to Y in one year = 0.012 x 1767 kg = 21.204 kg

Amount of compound X that remains after 7 years = 1767 kg - 84 kg - 7 x 21.204 kg
= 1486.172 kg (rounded to three decimal places)

Therefore, after 7 years, approximately 1486.172 kg of compound X will remain in the tank.

Which of the following is false about most machine learning models?


They require numbers or collections of numbers as input.


They are flexible enough to handle all issues you might see in your dataset (lack of data, incorrect data, etc)


They are trained by iteratively adjusting their parameters to minimize a loss function.


Once trained, their model parameters can be used to make new predictions in a process called a “model inference algorithm.”

Answers

The false statement about most machine learning models is that: B. they are flexible enough to handle all issues you might see in your dataset (lack of data, incorrect data, etc).

What is machine learning?

Machine learning (ML) is also referred to as deep learning or artificial intelligence (AI) and it can be defined as a subfield in computer science which is typically focused on the use of data-driven techniques (methods), computer algorithms, and technologies to develop a smart computer-controlled robot with an ability to automatically perform and manage tasks that are exclusively meant for humans or solved by using human intelligence.

Generally speaking, machine learning models are designed and developed to accept numerical data (numbers) or collections of numerical data (numbers) as an input.

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*sapnap teaching you how to drive*
"Skeppy and Badboyhalo are crossing the street, what do you hit?"
"Skeppy, I would never hurt Bad."
"whA- THE BRAKES YOU HIT THE BREAKS!!"
*Dream wheezing from the back*

Answers

Answer:

yes dream

Explanation:

Answer:

Me: "i would just hit you, sapnap. In the freaking face" LOL

a commercial refrigerator with r-134a as the working fluid is used to keep the refrigerated space at -35 c by rejecting waste heat to cooling water that enters the condenser at 18 c at a rate of 0.25 kg/s and leaves at 26 c. the refrigerant enters the condenser at 1.2 mpa and 50 c and leaves at the same pressure subcooled by 6 c. if the compressor consumes 3.3 kw of power , determine (a) the mass flow rate of the refrigerant, b) the refrigerant load, c) the cop, and d) the minimum power input to the compressor for the same refrigeration load.

Answers

At 1.2mpa pressure and 50c

What is pressure?
By pressing a knife against some fruit, one can see a straightforward illustration of pressure. The surface won't be cut if you press the flat part of the knife against the fruit. The force is dispersed over a wide area (low pressure).

a)Mass flow rate of the refrigerant
Therefore h1= condenser inlet enthalpy =278.28KJ/Kg
saturation temperature at 1.2mpa is 46.29C
Therefore the temperature of the condenser

T2 = 46.29C - 5
T2 = 41.29C

Now,
d)power consumed by compressor W = 3.3KW
Q4 = QL + w = Q4
QL = mR(h1-h2)-W
= 0.0498 x (278.26 - 110.19)-3.3
=5.074KW
Hence refrigerator load is 5.74Kg

(COP)r = 238/53
(Cop) = 4.490

Therefore the above values are the (a) mass flow rate of the refrigerant, b) the refrigerant load, c) the cop, and d) the minimum power input to the compressor for the same refrigeration load.

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Realiza las siguientes conversiones.

4 Hm2 a Dm2=_______________

21345 Cm2 a M2=_____________

0,592 Km2 a M2=______________

0,102 M2 a Cm2=______________

23911 Km2 a Hm2=_____________

Answers

Answer:

a) 4 hectómetros cuadrados equivalen a 400 decámetros cuadrados.

b) 21345 centímetros cuadrados equivalen a 2,135 metros cuadrados.

c) 0,592 kilómetros cuadrados equivalen a 592000 metros cuadrados.

d) 0,102 metros cuadrados equivalen a 1020 centímetros cuadrados.  

e) 23911 kilómetros cuadrados equivalen 2391100 hectómetros cuadrados.

Explanation:

a) 4 hectómetros cuadrados a decámetros cuadrados:

Según las unidades de área y sus escalas utilizadas por el Sistema Internacional de Pesos y Medidas, un hectómetro cuadrado equivale a 100 decámetros cuadradps. Entonces, obtenemos el dato equivalente por la siguiente regla de tres simple:

\(x = 4\,Hm^{2}\times\frac{100\,Dm^{2}}{1\,Hm^{2}}\)

\(x = 400\,Dm^{2}\)

4 hectómetros cuadrados equivalen a 400 decámetros cuadrados.

b) 21345 centímetros cuadrados a metros cuadrados:

Según las unidades de área y sus escalas utilizadas por el Sistema Internacional de Pesos y Medidas, un metro cuadrado equivale a 10000 centímetros cuadrados. Entonces, obtenemos el dato equivalente por la siguiente regla de tres simple:

\(x = 21345\,cm^{2}\times \frac{1\,m^{2}}{10000\,cm^{2}}\)

\(x = 2,135\,m^{2}\)

21345 centímetros cuadrados equivalen a 2,135 metros cuadrados.

c) 0,592 kilómetros cuadrados a metros cuadrados:

Según las unidades de área y sus escalas utilizadas por el Sistema Internacional de Pesos y Medidas, un kilómetro cuadrado equivale a 1000000 metros cuadrados. Entonces, obtenemos el dato equivalente por la siguiente regla de tres simple:

\(x = 0,592\,km^{2}\times \frac{1000000\,m^{2}}{1\,km^{2}}\)

\(x = 592000\,m^{2}\)

0,592 kilómetros cuadrados equivalen a 592000 metros cuadrados.

d) 0,102 metros cuadrados a centímetros cuadrados:

Según las unidades de área y sus escalas utilizadas por el Sistema Internacional de Pesos y Medidas, un metro cuadrado equivale a 10000 centímetros cuadrados. Entonces, obtenemos el dato equivalente por la siguiente regla de tres simple:

\(x = 0,102\,m^{2}\times \frac{10000\,cm^{2}}{1\,m^{2}}\)

\(x = 1020\,cm^{2}\)

0,102 metros cuadrados equivalen a 1020 centímetros cuadrados.

e) 23911 kilómetros cuadrados a hectómetros cuadrados:

Según las unidades de área y sus escalas utilizadas por el Sistema Internacional de Pesos y Medidas, un kilómetro cuadrado equivale a 100 hectómetros cuadrados. Entonces, obtenemos el dato equivalente por la siguiente regla de tres simple:

\(x = 23911\,km^{2}\times \frac{100\,Hm^{2}}{1\,km^{2}}\)

\(x = 2391100\,Hm^{2}\)

23911 kilómetros cuadrados equivalen 2391100 hectómetros cuadrados.

Standards relating to technical drawing

Answers

Answer:

Borders, Dimensions Identified, Scale, Text Box with Date/Author/Title/Version Number

Explanation:

Technical drawings have many standards in order to maintain integrity and ensure that they can be used by engineers to produce what is mapped out in the drawing.

Every technical drawing needs to have borders and a text box with all information related to the drawing. This includes the date it was created, date it was updated, version number, title, and author.

Furthermore, each drawing should have necessary dimensions with a scale. At the same time, technical drawings should not be over-dimensioned or repetitive.

All of these things must be on a technical drawing to allow professional engineers to sign off on drawings.

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