To overload an operator for a class, we need O 1) an operator 2) an operator function 2) a function 4) either a or borc

Answers

Answer 1

To overload an operator for a class, we need an operator and an operator function. The operator specifies the type of operation we want to perform, such as addition (+) or equality (==).

The operator function defines the behavior of the operator when applied to objects of the class. It is a member function of the class and typically takes one or two arguments, depending on the operator being overloaded. The operator function must be declared as a friend function or a member function of the class to access the private members of the class. By overloading operators, we can provide custom implementations for operators to work with objects of our class, allowing us to use operators with our own types in a natural and intuitive way.

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Related Questions

a pretimed four-timing-stage signal has critical lane group flow rates for the first three timing stages of 200, 187, and 210 veh/h (saturation flow rates are 1800 veh/h/ln for all timing stages). the lost time is known to be 4 seconds for each timing stage. if the cycle length is 60 seconds, what is the estimated effective green time of the fourth timing stage?

Answers

A pre-timed four-timing-stage signal has critical lane group flow rates for the first three timing stages of 200, 187, and 210 veh/h (saturation flow rates are 1800 veh/h/ln for all timing stages). The lost time is known to be 4 seconds for each timing stage. If the cycle length is 60 seconds,

In the given problem, it is known that the lost time for each timing stage is 4 seconds and that the cycle length is 60 seconds. The total time lost in the three timing stages is therefore\(3 × 4 = 12\)seconds.

The sum of the critical flow rates for the first three timing stages is \(200 + 187 + 210 = 597 veh/h\).The saturation flow rate for each timing stage is \(1800 veh/h/ln\).

There are 4 lanes, therefore, the saturation flow rate for 4 lanes will be \(4 x 1800 = 7200 veh/h\). Saturation flow rate - critical flow rate = unused time = \(7200 - 597 = 6603 veh/h\)

Now we must divide the unused time by 60 seconds to get the estimated effective green time.

\(6603 / 60 = 110.05 veh/s\)

Since\(110.05 veh/s\) is equivalent to \(6603 veh/min\)and the estimated effective green time is in minutes, we must divide by \(60.6603 / 60 = 110.05 veh/s\)

Therefore, the estimated effective green time of the fourth timing stage is approximately 110 seconds.

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hybrid vehicles use _______________ braking in addition to conventional brakes.

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Hybrid vehicles use regenerative braking in addition to conventional brakes.

Regenerative braking is a technology used in some vehicles that recovers energy from the braking process and stores it for later use. When a vehicle with regenerative braking brakes, the kinetic energy of the moving vehicle is converted into electrical energy by an electric motor or generator, which is then stored in a battery or capacitor.

The energy that is recovered during regenerative braking can be used to power the vehicle's electrical systems, such as the headlights and air conditioning, or it can be used to supplement the power provided by the vehicle's engine. This can lead to significant improvements in fuel efficiency and range, particularly in hybrid and electric vehicles.

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A robot with artificial intelligence would best be suited for

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it would most likely be suited for helping people with hard work or things they cannot accomplish

If I have 5 current carrying conductors in a raceway what percentage of ampacity from table 310.16 Through Table 310.19 Do I need to use

Answers

If diverse current-bearing conductors are integrated into a raceway, the ampacity of the conductors must be altered to accommodate the elevated amount of heat released due to their close contact.

How to explain the information

The recalculation factor relies on the kind of raceway, the number of victuals, and the caliber of the victuals.

As an illustration, per the National Electrical Code (NEC), if five flow conductors inhabit a metal tube, the adjustment portion for 90°C rated cables is fifty percent. This implies that the ampacity of the lines ought to be multiplied by 0.5 or thinned out by half.

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An evanescent field at angular frequency w = 10¹5 rad/s is created via total internal reflection at the interface between two different media with refractive index n1 and n2, where n1-4, and n2=2. The incident angle 0₁-80°. We can define the propagation direction of the evanescent field as the x-direction, and the z-direction is normal to the interface between the two media, and therefore the evanescent field wave function can be expressed as Ee(kxx+k₂z-t) (a) Should the incident light come from the medium with n1 or the medium with n2 to undergo total internal reflection? (b) is the evanescent field in the medium with n1 or the medium with n2? (c) Calculate the values for kx and kz in the medium in which the field is evanescent.

Answers

The incident light should come from the medium with n2 to undergo total internal reflection.

(a) The incident light should come from the medium with n2 to undergo total internal reflection. Total internal reflection occurs when light travels from a medium with a higher refractive index to a medium with a lower refractive index and the angle of incidence exceeds the critical angle. In this case, since n2 is smaller than n1, the light should originate from the medium with n2 to experience total internal reflection at the interface.

(b) The evanescent field is present in the medium with n1. After total internal reflection, the incident light is completely reflected back into the medium with n1, and it does not propagate into the medium with n2. As a result, the evanescent field is confined to the medium with n1.

(c) To calculate the values of kx and kz in the medium where the field is evanescent, we can use the relationship between the wave vector (k) and the refractive index (n) in each medium. The wave vector in the x-direction (kx) and the wave vector in the z-direction (kz) can be expressed as follows:

kx = (w/c) * n * sin(0₁)

kz = [(w/c)^2 * \(n^2\) - \(kx^2\)]

where:

w = angular frequency of the evanescent field

c = speed of light in vacuum

n = refractive index of the medium

0₁ = angle of incidence

Given:

w = 10¹⁵ rad/s

n1 = 4

n2 = 2

0₁ = 80°

Using the above equations, we can calculate the values of kx and kz in the medium with n1:

kx = (10¹⁵ rad/s / 3x10^8 m/s) * 4 * sin(80°)

kz = [(10¹⁵ rad/s / 3x10^8 m/s) * 4^2 - kx]

After substituting the values and performing the calculations, we can determine the specific values of kx and kz in the medium with n1.

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Evaluate the intensity of solar radiation for 6 September 2021 , given solar constant ( Isc ) = 1800 W / m2

Answers

Answer:

The answer is "\(1802.1978 \ \frac{w}{m^2}\)"

Explanation:

The Solar radiation  reaches the earth surfaces is given by

\(I=Isc(1+0.033 \cos \frac{360.(n)}{365.25})\)

where n is number of days in years

n for 6 September 2021:

\(\to n= 31+28+31+30+31+30+31+31+6\\\\\to n= 249\)

\(\to I=Isc(1+0.033 \cos \frac{360 \alpha 249}{365.25})\\\\\to I=1800(1+0.033(+0.037))\\\\\to I =1800(1.001221)\\\\\to I=1802.1978 \ \frac{w}{m^2}\)

To measure an object accurately, what point on the ruler would you align with the object edge

Answers

Answer:

Along the zero to measure an object on a ruler

The zero to measure an object

Задание3 Напишите развернутый ответ на вопрос: «Почему непобедим тот народ, у которого «память корнями уходит в века?» (5-6 предложений)​

Answers

потому что они знают прошлое

A sewage lagoon that has a surface area of 10 ha and a depth of 1 m is receiving 8,640 m^3 /d of sewage containing 100 mg/L of biodegradable contaminant. At steady state, the effluent from the lagoon must not exceed 20 mg/L of biodegradable contaminant. Assuming the lagoon is well mixed and that there are no losses or gains of water in the lagoon other than the sewage input, what biodegradation reaction rate coefficient (d^-1) must be achieved for a first-order reaction?

Answers

The mass balance equation for the sewage lagoon can be expressed as:

Qin x Cin = Qout x Cout + V x R

Where:

Qin = influent flow rate = 8,640 m^3/d

Cin = influent concentration of biodegradable contaminant = 100 mg/L

Qout = effluent flow rate = Qin (since there are no losses or gains of water)

Cout = effluent concentration of biodegradable contaminant = 20 mg/L (maximum allowable concentration)

V = volume of lagoon = 10 ha x 10,000 m^2/ha x 1 m = 100,000 m^3

R = biodegradation reaction rate (kg/m^3/d) x density of water = k x Cin

Assuming a first-order reaction, the biodegradation rate can be expressed as:

R = k x Cin

Substituting the values in the mass balance equation and rearranging:

k = (Qin x (Cin - Cout)) / (V x Cin)

k = (8,640 m^3/d x (100 mg/L - 20 mg/L)) / (100,000 m^3 x 100 mg/L)

k = 0.0691 d^-1

Therefore, the biodegradation reaction rate coefficient that must be achieved for a first-order reaction is 0.0691 d^-1.

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A standard carbon resistor has a gold band to indicate + 5% tolerance. If its resistance is 3,500 , what are the upper and lower limits for its resistance? OA . 3495 - 3505 2 OB. 3300 Q - 3600 0 OC. 3325 N - 3675 OD 3450 - 35500​

Answers

Answer:

  C.  3325 Ω - 3675 Ω

Explanation:

5% of 3500 Ω is ...

  0.05 × 3500 = 175

The lower limit is this amount less than the nominal value:

  3500 -175 = 3325

The upper limit is the nominal value plus the tolerance:

  3500 +175 = 3675

The lower and upper limits are 3325 Ω and 3675 Ω, respectively.

A rocket is launched from rest with a constant upwards acceleration of 18 m/s2. Determine its velocity after 25 seconds

Answers

Answer:

The final velocity of the rocket is 450 m/s.

Explanation:

Given;

initial velocity of the rocket, u = 0

constant upward acceleration of the rocket, a = 18 m/s²

time of motion of the rocket, t = 25 s

The final velocity of the rocket is calculated with the following kinematic equation;

v = u + at

where;

v is the final velocity of the rocket after 25 s

Substitute the given values in the equation above;

v = 0 + 18 x 25

v = 450 m/s

Therefore, the final velocity of the rocket is 450 m/s.

difficult
to do things:
matter how
but they have a right
4
2. Are you aware of human rights violations happening
in your community? Explain.

3. Which laws protect citizens from human rights
violations?

difficultto do things:matter howbut they have a right42. Are you aware of human rights violations happeningin

Answers

If there are human rights violations happening in a community, it means that individuals' fundamental rights are being violated or disregarded.

How to explain the information

Human rights violations can take various forms, including discrimination, arbitrary arrest or detention, torture, restrictions on freedom of speech or assembly, and denial of basic necessities such as food, water, and healthcare. The specific violations and their severity would depend on the context and circumstances within that community.

To respond to human rights violations, various mechanisms exist at the national and international levels. Many countries have laws and legal frameworks in place that protect citizens' human rights. These laws may encompass constitutional provisions, human rights acts or charters, labor laws, and specific legislation addressing discrimination, torture, or other violations. Victims or concerned individuals can seek legal recourse through domestic courts and judicial systems.

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what is the part of a drill that holds the drill bit in place is called the ?

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The part of a drill that holds the drill bit in place is called the chuck.

The chuck is a key component of a drill, as it securely holds the drill bit in place during operation. It is typically located at the end of the drill, and can be opened and closed to insert or remove the drill bit.

The chuck is usually operated by either a key or a lever, depending on the type of drill. It is important to make sure that the chuck is properly tightened when the drill bit is inserted, as this will ensure that the bit is secure and will not slip or come loose during drilling.

Additionally, it is important to make sure that the bit is compatible with the size of the chuck, as an improper fit could cause the bit to become stuck or damaged.

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In a body undergoing deformation, the displacement at point P is given by [i(x 2 −yz)+j(2y−xz)+k(3z−x 2 y 2 )]×10 −3 mm here i,jξK are unit vectors in the cartesran coordinates Calculate "Eij" ε ij ​ (2,3,4)

Answers

Therefore, the strain tensor εij at point P (2, 3, 4) is:

ε11 = 2ε22 = 1ε33 = 3/2ε12 = ε21 = -4ε13 = ε31 = -39ε23 = ε32 = -2

To calculate the strain tensor εij at point P with coordinates (2, 3, 4), we need to differentiate the displacement vector with respect to the Cartesian coordinates. The strain tensor is defined as the symmetric part of the gradient of the displacement vector.

Given the displacement vector:

V = (i(x^2 - yz) + j(2y - xz) + k(3z - x^2y^2)) × 10^(-3) mm

We can calculate the strain tensor εij as follows:

εij = 1/2 * (dVi/dxj + dVj/dxi)

Taking the partial derivatives of V with respect to the Cartesian coordinates, we have:

dVx/dx = d/dx (x^2 - yz) = 2x

dVy/dy = d/dy (2y - xz) = 2

dVz/dz = d/dz (3z - x^2y^2) = 3

dVy/dx = d/dx (2y - xz) = -z

dVz/dx = d/dx (3z - x^2y^2) = -2xy^2

dVx/dy = d/dy (x^2 - yz) = -z

dVz/dy = d/dy (3z - x^2y^2) = -2x^2y

dVx/dz = d/dz (x^2 - yz) = -y

dVy/dz = d/dz (2y - xz) = -x

Substituting these values into the strain tensor equation:

ε11 = 1/2 * (2x + 0) = x

ε22 = 1/2 * (0 + 2) = 1

ε33 = 1/2 * (0 + 3) = 3/2

ε12 = ε21 = 1/2 * (-z - z) = -z

ε13 = ε31 = 1/2 * (-y - 2xy^2) = -y - xy^2

ε23 = ε32 = 1/2 * (-x - x) = -x

Plugging in the coordinates (2, 3, 4) into the strain tensor components:

ε11 = 2

ε22 = 1

ε33 = 3/2

ε12 = ε21 = -4

ε13 = ε31 = -3 - 4(3^2) = -39

ε23 = ε32 = -2

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EMISSIONS ASSESSMENT
What is the best recommendation you can make to your
customers to prevent emissions systems failure?
Running only ethanol-free gas in their vehicle
Wait until the gas light comes one before filling the car up
Regular maintenance of the fuel and emissions system
Regularly grease tie rod ends
Select Submit

Answers

Answer:

The best recommendation to prevent emissions systems failure is to regularly maintain the fuel and emissions system.

Explanation:

where are sensors located on a vehicle equipped with side sonar system?

Answers

The sensors for a side sonar system are typically located on the sides of the vehicle, usually near the bottom. These sensors use sound waves to detect obstacles and provide the driver with a warning.

The side sonar system is designed to detect objects on the sides of the vehicle, and can provide visual and/or audible alerts to the driver if an object is detected in the blind spot.

Overall, the placement of the sensors may vary depending on the make and model of the vehicle, but they are usually located in areas that provide optimal coverage for detecting objects.

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Do heavier cars really use more gasoline? Suppose a car is chosen at random. Let x be the weight of the car (in hundreds of pounds), and let y be the miles per gallon (mpg)

Answers

Answer:

Answer is explained in the explanation section below.

Explanation:

Solution:

Note: This question is incomplete and lacks necessary data to solve. But I have found the similar question on the internet. So, I will be using the data from that question to solve this question for the sack of concept and understanding.

Data Given:

x = 27 , 44 , 32 , 47, 23 , 40, 34, 52

y = 30, 19,  24,  13 , 29,  19,  21,  14

It is given that,

∑x = 299

∑y = 167

∑\(x^{2}\) = 11887

∑\(y^{2}\) = 3773

We are asked to verify the above values manually in this question.

So,

1. ∑x = 299

Let's verify it:

∑x = 27 + 44 + 32 + 47 + 23 + 40 + 34 + 52

∑x = 299

Yes, it is equal to the given value. Hence, verified.

2. ∑y = 167

Let's verify it:

∑y = 30 + 19 +  24 + 13 + 29 + 19 +  21 +  14

∑y = 169

No, it is not equal to the given value.

3. ∑\(x^{2}\) = 11887

Let's verify it:

For this to find,  first we need to square all the value of x individually and then add them together to verify.

∑\(x^{2}\) = \(27^{2}\) + \(44^{2}\) + \(32^{2}\) + \(47^{2}\) + \(23^{2}\) + \(40^{2}\) + \(34^{2}\) + \(52^{2}\)

\(x^{2}\) = 11,887

Yes, it is equal to the given value. Hence, verified.

4. ∑\(y^{2}\) = 3773

Let's verify it:

Again, for this we need to find the squares of all the y values and then add them together to verify it.

∑\(y^{2}\) = \(30^{2}\) + \(19^{2}\) +  \(24^{2}\) + \(13^{2}\) + \(29^{2}\) + \(19^{2}\) +  \(21^{2}\) +  \(14^{2}\)

\(y^{2}\)  = 3,845

No, it is not equal to the given value.

How is the caliber of a rifle or handgun determined

Answers

Caliber usually is measured as the diameter of the bore from land to opposite land and is expressed in hundredths of an inch, thousandths of an inch, or millimeters. For example, a . 270-caliber rifle bore measures 270/1000ths of an inch in diameter between the lands and has a larger bore diameter than a .

Consider a 5 m long, air-filled section of a coaxial transmission line, given that the radius of the inner conductor is 10 cm and the inner radius of the outer conductor is 20 cm? If the current is 100 mA, how much magnetic energy is strored in the air medium between the conductors. This problem is similar to Example 2 in the Time Varying Fields folder in the Example Bank.
a) 200.89 nj
b) 3.47 nj
c) 10.45nj
d) 80.9nj

Answers

Answer: b) 3.47 nj

Explanation:

Given that;

length l = 5m

radius of inner conductor r = 10cm = 0.1m

radius of outer conductor D = 20cm = 0.2m

current I = 100A = 100×10⁻³ = 0.1

medium between conductor in air u₀ = 4π × 10⁻⁷

Energy in a coaxial cable transmission line is

w = u₀ /2π I² en(b/a)

we substitute

L = 4π × 10⁻⁷ /4π ×10⁻²× 5 en (20/10)

L =3.4657 × 10⁻⁹ J

L = 3.4657 nJ ≈ 3.47 nJ

The concepts of contemporary quality can be codified in a single graphic image called the "Wheel of Quality".
With the aid of a diagram, discuss with 8 appropriate examples how the key elements i

Answers

The "Wheel of Quality" is a graphical representation that encapsulates the essential elements of contemporary quality management.

It encompasses various interconnected components that collectively contribute to achieving high-quality products or services. Here are eight examples of key elements commonly found in the "Wheel of Quality":Leadership: Effective leadership establishes a clear quality vision, sets quality objectives, and fosters a culture of continuous improvement. For instance, a CEO who promotes quality initiatives and supports employees in achieving quality goals.

Customer Focus: Placing the customer at the core of quality efforts involves understanding their needs, preferences, and expectations. For example, an online retailer conducting customer surveys to enhance the shopping experience.

Process Management: Efficiently managing processes is vital for maintaining quality standards. This entails analyzing and improving processes to minimize errors and waste. For instance, a software development company implementing agile methodologies for iterative improvement.

Employee Involvement: Engaging employees and empowering them to contribute to quality improvement fosters ownership and collaboration. For example, a healthcare organization encouraging frontline staff to participate in quality improvement projects.

Continuous Improvement: Emphasizing ongoing improvement enables organizations to adapt, innovate, and stay competitive. For instance, an automobile manufacturer conducting regular quality audits and implementing corrective actions.

Data-Driven Decision Making: Making informed decisions based on reliable data is crucial. Collecting and analyzing relevant data helps identify trends and measure performance. For example, a call center tracking key metrics like average handling time and customer satisfaction scores.

Supplier Relationships: Collaborating with suppliers ensures quality throughout the supply chain. Building strong relationships and monitoring supplier performance is essential. For instance, a food processing company conducting quality audits and setting stringent requirements for ingredient suppliers.

Innovation and Adaptation: Embracing innovation and adapting to market dynamics is vital for long-term success. Investing in research and development helps organizations stay competitive. For example, a software company continuously improving its products through innovation and updated features.

These examples illustrate how each element contributes to the overall quality management framework, fostering continuous improvement and customer satisfaction.

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According to Ref. 213/91, fire extinguishing equipment can be frozen True or False

Answers

False. Fire extinguishing equipment cannot be frozen according to Ref. 213/91.

According to Ref. 213/91, fire extinguishing equipment cannot be frozen. Fire extinguishers are essential safety devices designed to combat fires effectively. They contain pressurized agents that are specifically formulated to extinguish different types of fires. Freezing temperatures can significantly impair the functionality of fire extinguishers and render them ineffective in emergency situations.

When fire extinguishing equipment freezes, several issues can arise. First, the contents of the extinguisher may expand as they freeze, potentially leading to ruptures or leaks in the container. This can cause the extinguisher to malfunction or become hazardous when used. Second, freezing temperatures can affect the performance of the extinguishing agent itself. Certain agents, such as water-based solutions, can solidify or lose their effectiveness when exposed to extreme cold.

It is crucial to store fire extinguishers in suitable environments that are above freezing temperatures. This ensures that the equipment remains in optimal condition and is ready for immediate use during emergencies. Regular inspections and maintenance are also essential to identify any signs of damage or deterioration that may compromise the functionality of fire extinguishers.

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A steam power plant is represented as a heat engine operating between two thermal reservoirs at 800 K and 300 K. The temperature of the steam in the boiler is 550 K and the temperature of the saturated water in the condenser is 330 K. The rates of heat transfer in the boiler and condenser are 4 MW and 2 MW, respectively. Please answer the following.

Required:
a. Represent the devices present in the heat engine and include their name along with the data given in the problem.
b. If this steam power plant were to operate as a reversible heat engine, with the boiler and condenser temperatures, what would be its thermal efficiency?
c. Use your result from part (b) to determine if the actual steam power plant can achieve such thermal efficiency. Justify your answer.
d. For the actual steam power plant is the Clausius inequality satisfied? Show you computation and discuss whether your result agrees or disagrees with your answer in part (c).

Answers

Yeet is the answer .....

A cylindrical bar of metal having a diameter of 20.5 mm and a length of 201 mm is deformed elastically in tension with a force of 46300 N. Given that the elastic modulus and Poisson's ratio of the metal are 60.5 GPa and 0.33, respectively, determine the following: (a) The amount by which this specimen will elongate in the direction of the applied stress. (b) The change in diameter of the specimen. Indicate an increase in diameter with a positive number and a decrease with a negative number.

Answers

Answer:

a) The amount by which this specimen will elongate in the direction of the applied stress is 0.466 mm

b) The change in diameter of the specimen is  - 0.015 mm

Explanation:

Given the data  in the question;

(a) The amount by which this specimen will elongate in the direction of the applied stress.

First we find the area of the cross section of the specimen

A = \(\frac{\pi }{4}\) d²

our given diameter is 20.5 mm so we substitute

A = \(\frac{\pi }{4}\) ( 20.5 mm )²

A = 330.06 mm²

Next, we find the change in length of the specimen using young's modulus formula

E = σ/∈

E = P/A × L/ΔL

ΔL = PL/AE

P is force ( 46300 N), L is length ( 201 mm ), A is area ( 330.06 mm² ) and E is  elastic modulus (60.5 GPa) = 60.5 × 10⁹ N/m² = 60500 N/mm²

so we substitute

ΔL = (46300 N × 201 mm) / ( 330.06 mm² × 60500 N/mm² )

ΔL =  0.466 mm

Therefore, The amount by which this specimen will elongate in the direction of the applied stress is 0.466 mm

(b) The change in diameter of the specimen. Indicate an increase in diameter with a positive number and a decrease with a negative number.

Using the following relation for Poisson ratio

μ = -  Δd/d / ΔL/L

given that Poisson's ratio of the metal is 0.33

so we substitute

0.33 = -  Δd/20.5 / 0.466/201

0.33 = -  Δd201 / 20.5 × 0.466

0.33 = - Δd201  / 9.143

0.33 × 9.143 =  - Δd201

3.01719 = -Δd201

Δd = 3.01719 / - 201

Δd  = - 0.015 mm

Therefore, The change in diameter of the specimen is  - 0.015 mm

Switches are placed only in the _ of a circuit?

Answers

the switch should always be placed immediately adjacent to the non-grounded terminal of the power supply.

Solve for R.
What is the current going through the 6 ohms light bulb?

Solve for R. What is the current going through the 6 ohms light bulb?

Answers

Answer:

9A

Explanation:

Technician A says ASE certification is mandatory in all 50 states before performing an automotive repair for pay. Technician B says automotive training programs must be reviewed every 3 years to be recertified. Who is correct?

Answers

Answer:

Technicians A is  correct

Explanation:

According to ASE ( Automotive service excellence) "Certification credentials are valid for five years. If it has been five years or more since you took a test, it’s time to register for the corresponding Recertification Test. The five-year requirement ensures certified professionals are current in this rapidly changing industry."

This counters the claim of technician B who say the programs must be reviewed every three years  , and ASE sends you reminders before your credentials expire.

 

1. Name three current problems in your life that could be solved through an algorithmic process. Explain why each of these problems is algorithmic in nature.

Answers

As a supervised learning algorithm for problem classification, the Decision Tree algorithm is one of the most widely utilized in machine learning today.

Which problems can be solved by algorithmic processes?

Whether a problem is logical, mathematical, or complex in nature, algorithms can be created to solve it. As an illustration, consider sorting algorithms, depth-first search, and traveling salespeople. The algorithm, however, would arrive at a finite solution after a certain number of steps before coming to an end. Algorithms can be used to describe typical daily tasks. An algorithm for preparing a specific cuisine, for instance, might be thought of as a recipe.

Steps 1-3 outline the algorithm. The amounts of each component that are mentioned, together with the type of pan and desired topping, are our inputs. A series of procedures known as an algorithm are used to solve issues or carry out tasks. A typical illustration of an algorithm is a recipe, which is a set of detailed directions for making a dish or meal.

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within the reactor, the stationary rods are the fuel rods and contain the fuel. the rods that move up and down are the control rods. what do the little dots that move between the fuel rods represent?

Answers

The little dots that move between the fuel rods represent steam.

What are fuel rods?

A long, thin zirconium metal tube that holds pellets of fuel for nuclear reactors made of fissionable material. The fuel rods are bundled together into fuel assemblies, which are then put one at a time into the reactor core. The fuel rod's main functions are to maintain the fuel in a precise geometry and to act as the first line of defense between the fission products and the outside world. Therefore, maintaining its integrity is the main objective of fuel design and operating procedures for reactors. Small ceramic pellets of low-enriched uranium oxide are the fuel used in today's commercial reactors. These fuel rods are bundled into tall fuel assemblies, which are then put inside the reactor.

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requires a mix of machines, equipment, energy and labor

Answers

Answer:

building?

Explanation:

here you can find my "english language" practice test. thanks in advance to solve that.
***Rewrite the sentences correct form of either infinitive or ing form without losing the meaning of the given sentences.

1) No matter how hard you tried, you will not convince Sarah. -Its no use Sarah.
2) The kids cant wait to go on holiday. (look forward to) -The kids on holiday.
3) He decided he would go on a business trip in september rather than in may. (choose) - He on a business trip in september.
4)They made me study hard when i was at university. I was at university.
5) I went to my local bank about getting a loan. (view) I went to my local bank a loan.

Answers

1) No matter how hard you try, Sarah will not be persuaded.

2) The kids are excited to go on vacation.

3. He opted to travel for business in September as opposed to May.

4) They pushed me work hard on my studies while I was in college.

5) I went to my neighbourhood bank to ask about obtaining a loan.

Note: Number 5's corrected sentence was puzzling. I assumed that asking about loans was the intended meaning. If you would like more information so that I can understand what you meant, please let me know.

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