QUESTION 3 [ 17 Marks] Assume that the static output characteristics y(x) of a medical sensor could be approximated by the nonlinear relation y = Qo + azx + a,x², where x is the input to the sensor. Table 1 contains the sample measurements of the output versus the input of the sensor. 3.1 Use the data available in Table 1 to identify the sensor parameter do, , az : [12] 3.2 Based on the estimated sensor parameters, estimate the output of the sensor for an input value x = 8. [5] bo 1.0 х 0.5 0.8 0.45 3 1.5 2.0 12.45 | 22.2 4.0 86.2 5.0 133.3 y -1.8 5.2.

Answers

Answer 1

The missing data in the table (x = 0.45, y = ?) and (x = 5.2, y = ?) need to be provided to obtain a complete estimation of the sensor parameters and the output for x = 8.

3.1 The sensor parameter estimation can be done by fitting the given data from Table 1 into the nonlinear relation y = Qo + azx + a,x². We can use the method of least squares to find the best values for the parameters Qo, a, and az that minimize the sum of squared differences between the predicted values and the actual measurements.

Using the given data, we can create a system of equations based on the nonlinear relation and solve it to estimate the sensor parameters. By substituting the x and y values from the table into the equation, we can obtain a set of equations. For example, for the first data point (x = 1.0, y = -1.8), we have -1.8 = Qo + a(1.0)z + a(1.0)². Similarly, we can create equations for the remaining data points.

Once we have a system of equations, we can solve it using numerical methods or software such as MATLAB or Python to estimate the values of Qo, a, and az that best fit the data. These estimated values will represent the sensor parameters required for the nonlinear relation.

3.2 Based on the estimated sensor parameters obtained in 3.1, we can now estimate the output of the sensor for an input value x = 8. By plugging the value of x into the nonlinear relation y = Qo + azx + a,x² and using the estimated values of Qo, a, and az, we can calculate the corresponding output y.

Substituting the values into the equation, we get y = Qo + a(8)z + a(8)². By evaluating this equation using the estimated sensor parameters, we can determine the estimated output of the sensor for the given input value x = 8.

Note: The missing data in the table (x = 0.45, y = ?) and (x = 5.2, y = ?) need to be provided to obtain a complete estimation of the sensor parameters and the output for x = 8.

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Related Questions

if something is in your secondary range, you're still at a safe ____ distance.

Answers

If something is in your secondary range, you're still at a safe shooting distance.

Secondary range is a term used in firearms training, which refers to a distance that is not in close proximity but still close enough to pose a potential threat. It is the range at which a shooter may not be able to immediately identify a threat, but it is close enough to cause harm. It is important for shooters to be aware of their secondary range and take appropriate safety precautions.

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Which of these is an advantage of the disc brake system over drum brakes?
a. disc brakes transfer less heat to the atmosphere
b. disc brakes reduce the likelihood of the brake fade
c. disc brakes do not need maintenance
d. disc brake do not create annoying squeals and squeaks

Answers

The correct advantage of the disc brake system over drum brakes is: option b. Disc brakes reduce the likelihood of brake fade.

What is the disc brake system?

Drum brakes are inferior to disc brakes when it comes to dissipating heat effectively. This indicates  that they have a lower likelihood of experiencing brake fade, which is a decline in braking efficiency as a result of excessive or prolonged braking that leads to overheating.

Due to their superior heat management capabilities, disc brakes provide consistent and dependable braking performance even when faced with challenging circumstances.

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Which type of hybrid vehicle is propelled by only an electric motor and does not require a traditional transmission to drive the wheels

Answers

Answer:

Dual-Mode Hybrid

Explanation:

The type of hybrid vehicle propelled by only an electric motor and does not require a traditional transmission to drive the wheels is known as "DUAL-MODE HYBRID."

Dual-Mode Hybrid is a type of Hybrid Electric Vehicle (HEV) which contains a separate generator consisting of rechargeable batteries. The engine ensures the wheels and the generator are moved; thereby, the electric motor and the batteries are fully powered.

A good example is a Toyota Prius, where during driving conditions, only the electric motor drives the wheels, in which the batteries supply the car with power.

Consider a 50-cm-diameter and 95-cm-long hot water tank. The tank is placed on the roof of a house. The water inside the tank is heated to 808C by a flat-plate solar collector during the day. The tank is then exposed to windy air at 188 C with an average velocity of 40 km/h during the night. Estimate the temperature of the tank after a 45-min period. Assume the tank surface to be at the same temperature as the water inside, and the heat transfer coefficient on the top and bottom surfaces to be the same as that on the side surface. Evaluate the air properties at 508C

Answers

The temperature of the tank after a 45-min period is estimated to be 30.908 K.

What is temperature?

Temperature is a measure of how hot or cold something is relative to a standard reference point. It is typically measured in degrees Celsius (°C), Kelvin (K), or Fahrenheit (°F).

The rate of heat transfer can be estimated by using the following equation: Q = hA∆T

From the given data, the surface area of the tank is calculated as:

A = πr2 = π (0.25 m)2 = 0.19625 m2

The heat transfer coefficient for a windy environment can be estimated by using the following equation: h = 0.024V1/2, where V is the wind speed (m/s).

From the given data, the wind speed is calculated as: V = 40 km/h = 11.1 m/s

Therefore, the heat transfer coefficient is calculated as: h = 0.024 (11.1)1/2 = 0.92 W/m2K

The temperature difference between the air and the tank is calculated as:  ∆T = (Tair – Ttank) = (288 K – 308 K) = -20 K

Therefore, the rate of heat transfer is calculated as:

Q = hA∆T = (0.92 W/m2K) (0.19625 m2) (-20 K) = -3.7 W

Since the tank is losing heat, the rate of heat transfer is negative.

From the given data, the mass of the water in the tank is calculated as:

m = ρV = (1,000 kg/m3) (0.095 m3) = 95 kg

The specific heat capacity of water is assumed to be 4,186 J/KgK.

Therefore, the temperature difference is calculated as:

∆T = Q/(mc) = (-3.7 W)/ [(95 kg) (4,186 J/KgK)] = -0.0089 K

Therefore, the temperature of the tank after a 45-min period is estimated to be 30.908 K.

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write $\frac 15 \left(\frac 15\right)^2 \left(\frac 15\right)^3 \left(\frac 15\right)^4$ as a decimal.

Answers

In order to write the given expression as a decimal, we can simplify the expression and then evaluate it.

The given expression can be simplified as follows:$$
\begin{aligned}
\(\frac 15 \left(\frac 15\right)^2 \left(\frac 15\right)^3 \left(\frac 15\right)^4 &= \frac{1}{5^1} \cdot \frac{1}{5^2} \cdot \frac{1}{5^3} \cdot \frac{1}{5^4}\\\)
\(&= \frac{1}{5^{1+2+3+4}}\\\)
\(&= \frac{1}{5^{1+2+3+4}}\\\)
\(&= \frac{1}{9,765,625}\)
\end{aligned}
$$Now, we can evaluate the given expression by dividing 1 by 9,765,625 as follows:$$
\begin{aligned}
\(\frac{1}{9,765,625} &= \frac{1}{10,000,000 - 234,375}\\\)
\(&= 0.\overline{000}1\\&= 1 \cdot 10^{-7}\)
\(\end{aligned}$$Therefore, $\frac 15 \left(\frac 15\right)^2 \left(\frac 15\right)^3 \left(\frac 15\right)^4$ as a decimal is $1 \cdot 10^{-7}$\), which means that the decimal is a very small number.

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Design a circuit that outputs a 1 when the bit pattern (101) has been applied to input, and 0 otherwise.

Answers

Answer:

  see the attachment

Explanation:

The circuit shown uses Nand and Nor gates to produce the desired logic. The input bits are numbered 0 to 2, right to left.

The logic is ...

  out = ((b2·b0)' + b1)'

  out = b2·b1'·b0

Design a circuit that outputs a 1 when the bit pattern (101) has been applied to input, and 0 otherwise.

Exercise 2.8.7: tostring for flowers

5 points

let's go!

complete the tostring method to the flower class. remember that the format for a tostring method is:

public string tostring()
the tostring method should be formatted so that the following code

flower foxglove = new flower("foxglove", "red", "digitalis", "obscura");
system.out.println(foxglove);
prints out

red foxglove (digitalis obscura)

Answers

We use the tostring method on the string object to specify in detail the elements of an output.

Why we use tostring method?

When we print the object of a string class without formatting it, the output will be distorted. However, if we use the tostring method we can fix the problem and present readable output. Here is an example:

Java code

import java. io.*;

public class Main{

public static void main(String args[]) throws IOException {

BufferedReader bufEntrada = new BufferedReader(new InputStreamReader(System. in));

Flower foxglove = new Flower("foxglove", "red", "digitalis", "obscura");

System.out.println("imprimo: "+foxglove);

}

}

// clase Flower

class Flower {

String name;

String color;

String genus;

String species;

//Constructor Flower

Flower (String theName, String theColor, String theGenus, String theSpecies) {

name=theName;

color=theColor;

genus=theGenus;

species=theSpecies;

}

//Returning values formatted by tostring method

public String toString() {

 return color +" "+ name+"  ("+genus+ " "+species+")" ;

}

}

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Exercise 2.8.7: tostring for flowers 5 points let's go! complete the tostring method to the flower class.

PLEASE HELP I NEED THIS ASP!!

PLEASE HELP I NEED THIS ASP!!

Answers

Answer:

up up down down

Explanation:

left right left right b a select start

Let the production Q of a company, in terms of the quantities of invested capital K and invested labour L, be given by the CES-production function Q: RRR: (K, L) (K¹/2+L¹/2)2. (Here "CES" is the abbreviation of constant elasticity of substitution.) What is the maximal production that the company can realise if they have a budget of b EUR to spend on capital and labour, given that a unit of capital costs k EUR and a unit of labour costs EUR? The answer will of course depend on the numbers b, k and , which we assume to be positive. Remark: To answer this question, you need to maximize a function subject to a constraint. If you find only one critical point, then you may assume it is the maximum that you are looking for, without checking any further conditions. Let the production Q of a company, in terms of the quantities of invested capital K and invested labour L, be given by the CES-production function Q: RRR: (K, L) (K¹/2 + L¹/2)². 4 (Here "CES" is the abbreviation of constant elasticity of substitution.) What is the maximal production that the company can realise if they have a budget of b EUR to spend on capital and labour, given that a unit of capital costs k EUR and a unit of labour costs / EUR? The answer will of course depend on the numbers b, k and , which we assume to be positive. Remark: To answer this question, you need to maximize a function subject to a constraint. If you find only one critical point, then you may assume it is the maximum that you are looking for, without checking any further conditions.

Answers

The maximal production cannot be achieved within the given budget constraint.

To find the maximal production that the company can realize given a budget of b EUR to spend on capital and labor, we need to maximize the CES-production function Q(K, L) = (K^(1/2) + L^(1/2))^2 subject to the constraint that the total cost does not exceed the budget.

Let's denote the cost of capital per unit as k EUR and the cost of labor per unit as l EUR.

The total cost equation can be written as:

Total Cost = K * k + L * l

Now, we need to formulate the problem as an optimization problem:

Maximize Q(K, L) = \((K^{1/2} + L^{1/2})^2\)

Subject to the constraint: K * k + L * l ≤ b

To find the maximum, we can use the method of Lagrange multipliers.

Define the Lagrangian function as:

L(K, L, λ) = (\((K^{1/2} + L^{1/2})^2\) + λ(b - K * k - L * l)

We need to find the critical points of the Lagrangian function L. Taking partial derivatives with respect to K, L, and λ and setting them to zero, we can find the critical points:

∂L/∂K = (1/2)\((K^{1/2} + L^{1/2})^2\)  - λk = 0

∂L/∂L = (1/2)\((K^{1/2} + L^{1/2})^2\)  - λl = 0

∂L/∂λ = b - K * k - L * l = 0

Simplifying the equations, we get:

\((K^{1/2} + L^{1/2})^2\) = 2λk

\((K^{1/2} + L^{1/2})^2\) = 2λl

K * k + L * l = b

Equating the two expressions for  \((K^{1/2} + L^{1/2})^2\), we can eliminate λ:

2λk = 2λl

k = l

Substituting k = l into the constraint equation, we get:

K + L = b / (k + l)

K + L = b / (2k)

Now, we have reduced the problem to finding the critical points of K + L = b / (2k) under the constraint K * k + L * l = b.

By solving these equations simultaneously, we can find the values of K and L that correspond to the maximal production given the budget constraint.

To find the values of K and L that correspond to the maximal production given the budget constraint, we need to solve the equations K + L = b / (2k) and K * k + L * l = b simultaneously.

Substituting K = b / (2k) - L into the second equation, we have:

(b / (2k) - L) * k + L * l = b

(b - L * 2k) + L * l = b

L * (l - 2k) = 0

Since L cannot be zero (assuming positive values for b, k, and l), we have:

l - 2k = 0

l = 2k

Substituting l = 2k into K + L = b / (2k), we get:

K + 2k = b / (2k)

K = (b / (2k)) - 2k

K = (b - \(4k^2\)) / (2k)

Now, we have an expression for K in terms of k.

To find the value of k that maximizes the production, we can take the derivative of the CES-production function Q(K, L) = \((K^{1/2} + L^{1/2})^2\) with respect to K and set it to zero:

dQ/dK = 1/2 * \((K^{1/2} + L^{1/2})^{-1/2}\) * (1/2) * \(K^{-1/2}\) = 0

Simplifying the equation, we have:

\((K^{1/2} + L^{1/2})^{-1/2}\)  *  \(K^{-1/2}\)  = 0

Since K cannot be zero, we can disregard the first term. Thus, we have:

\(K^{-1/2}\) = 0

This equation has no solution for K, which means there is no critical point for the CES-production function within the feasible region.

Therefore, the maximal production cannot be achieved within the given budget constraint.

Please note that the analysis provided assumes a simplified scenario based on the given equations and constraints. Additional considerations or specific numerical values for b, k, and l may result in different outcomes or solutions.

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What should you do before you start welding?

Answers

Explanation:

1. Weld only in authorized areas. Make sure the area is dry, chemical free, and well ventilated.

2. Inspect the equipment before starting to use it.

3. Keep other people away, unless they are authorized to be there and are wearing the appropriate personal protective equipment.

Which of the following are the same as 1545.5347
Select one:
a. 1.545534e: 3
b. 1545534.0e 4
c0.15455340-5
d. 154553.4e 3

Answers

Explanation:

D the answer is D and anyone can answer this Question

Based on the provided options, the scientific expression that is the same as 1545.5347 is 154553.4e3. Therefore, the correct option is option D.

A scientific expression, often known as scientific notation, is a method of representing extremely big or extremely small integers. It is often used to simplify the representation of such numbers in scientific and mathematical operations. A number is expressed in scientific notation as a product of two parts: a coefficient and a power of ten.

The coefficient is a value between 1 and 10, and the power of 10 determines how far the decimal point should be moved. The "e3" signifies multiplying the integer by 10 raised to the power of 3, which is similar to moving the decimal point three places to the right in this formula. As a result, 154553.4e3 equals 154553.4103, which simplifies to 154553400.

Therefore, the correct option is option D.

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What is the value of each of these prefix expressions? b) +3+313 333 For the toolbar, press ALT-F10 (PC) or ALT-FN-F10 (Mac) BIVS Paragraph Arial ♥ 14px 3 QUESTION 3 AV 2 Ix d

Answers

A prefix expression is an expression where the operator comes before the operands. It is evaluated by starting from the left and performing the operation specified by each operator.

The prefix expression "+3+313 333" can be evaluated as follows:

The operator "+" is encountered.

The next operand is "3". The current result is 3.

The operator "+" is encountered again.

The next operand is "3". The current result is added to 3, resulting in 6.

The operator "+" is encountered once more.

The next operand is "313". The current result is added to 313, resulting in 319.

The final operand is "333". The current result is added to 333, resulting in 652.

Therefore, the value of the prefix expression "+3+313 333" is 652.

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Materials requirement planning (MRP) enables a firm to make sure that the right amount of each material or component is available at the right time to satisfy its production needs.
True or false?

Answers

It is True to state that Materials requirement planning (MRP) enables a firm to make sure that the right amount of each material or component is available at the right time to satisfy its production needs.

What is Materials requirement planning ?

Material needs planning is a manufacturing process management system that includes production planning, scheduling, and inventory control. Most MRP systems are software-based, however MRP may also be done by hand.

Material requirements planning (MRP) is a method of determining the materials and components required to produce a product.

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The typical Canadian worker is able to produce 100 board feet (a unit of measure) of lumber or 1000 light bulbs per year. The world price of a board foot of lumber is $20 and that of a light bulb is $1. Draw the production possibilities frontier for the average Canadian worker by manipulating the line segment labeled PPF.

Answers

Answer:

Explanation:

In the Canadian country, it is possible that the country is able to produce either 100 units of lumber or 1000 lightbulbs. Then, 100 lumber is equal to 1000 bulbs in the home, and hence, one lumber is equivalent to 10 bulbs. Therefore, the opportunity cost of lumber in the home is ten bulbs.

Thus, the country's production possibilities frontier PPF is a linear combination of 100 lumber and 1000 bulbs. The graphical diagram of the production possibilities frontier PPF can be seen in the image below.

The typical Canadian worker is able to produce 100 board feet (a unit of measure) of lumber or 1000 light

Country C is capable of producing either 100 units of lumber or 1,000 lightbulbs. Therefore, in the residence, \(100\ lumber = 1000\ bulbs\), and thus \(1 \ lumber = 10\ bulbs\). As a result, the economic cost of lumber within the residence is equal to 10 bulbs.

This country's PPF, on the other hand, is a linear mixture of 100 trees and 1000 bulbs.In the global market, one log costs $20, and one light costs $1 therefore, in the global market, \(1 \ timber =20\ bulbs\). As a result, the price of lumber on the global market is high. The opportunity cost of lumber is lower in the home country. As a result, it'll be a lumber specialist. If it specialized entirely in timber, it would manufacture 100 pieces of lumber and trade them for up to 2000 bulbs.

As a result, the proper answer is "Canada would focus on lumber production for its competitive advantage", therefore, following the trade, the country's CPF (BC) is a linear combination of 100 lumber and 2000 lights.

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The typical Canadian worker is able to produce 100 board feet (a unit of measure) of lumber or 1000 light

A rectangular channel 3.0 m wide has a flow rate of 5.0 m3/s with a normal depth of 0.50 m. The flow then encounters a dam that rises 0.25 m above the channel bottom. Will a hydraulic jump occur?

Answers

Answer:

The hydraulic will jump since the flow is subcritical ( i.e. Y2 > Yc )

Explanation:

width of channel = 3.0 m

Flow rate = 5 m^3/s

Normal depth = 0.50 m

Flow encounters a dam rise of 0.25 m

To know if the hydraulic jump will occur

we will Determine the new normal depth

Y2 = 3.77m

Yc ( critical depth )= 0.66m

Attached below is the detailed solution

A rectangular channel 3.0 m wide has a flow rate of 5.0 m3/s with a normal depth of 0.50 m. The flow

Why are specimens usually very thin slices of material.

Answers

Because of the thinness, light can flow through, making the specimen visible.

The current standard for recovery only equipment is sae

Answers

Explanation:

I think is SAE standard J2810

The velocity profile in a turbulent boundary layer often is approximated by the 1/7-power-law equation u/U = (y/delta)1/7 Compare the shape of this profile with the parabolic laminar boundary-layer velocity profile (Problem 9.10) by plotting y/delta (on the ordinate) versus u/U (on the abscissa) for both profiles.

Answers

The 1/7-power-law velocity profile is a better representation of the velocity profile in a turbulent boundary layer than the parabolic laminar boundary-layer velocity profile.

What is velocity?
Velocity
is the rate at which an object moves in a certain direction. It is a vector quantity, meaning it has both magnitude (the speed) and direction. Velocity is often expressed as the rate of change of displacement, which is the distance an object travels in a certain direction. Velocity is the change in position over time; the faster an object moves, the greater the velocity. Velocity is important in physics because it is used to calculate the acceleration of an object, the force of gravity, and the momentum of a moving object. It is also used to measure the speed of sound and the speed of light. Velocity is a fundamental concept in physics, and it is used to describe and measure a variety of physical phenomena.

This is because the former has a higher velocity near the wall and a lower velocity near the centerline, which is more representative of the actual velocity profile in a turbulent boundary layer.
The 1/7-power-law velocity profile is represented by the equation u/U = (y/delta)1/7 and the parabolic laminar boundary-layer velocity profile is represented by the equation u/U = (y/delta)2.
When these two equations are plotted on the same graph, with y/delta on the ordinate and u/U on the abscissa, the 1/7-power-law velocity profile is seen to have a higher velocity near the wall and a lower velocity near the centerline, which is more representative of the actual velocity profile in a turbulent boundary layer.

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2–2 Assume you were specifying an AISI 1060 steel for an application. Using Table A–21,

(a) how would you specify it if you desired to maximize the yield strength?

(b) how would you specify it if you desired to maximize the ductility?

Answers

(a) From Table A–21, it can be observed that the AISI 1060 steel has the highest yield strength (965 MPa) for the cold-drawn/hardened and tempered condition (CDHT).

Therefore, the specification for the AISI 1060 steel can be made as follows:

AISI 1060 CDHT steel with a minimum yield strength of 965 MPa.This specification would ensure that the steel has the maximum yield strength possible and is suitable for applications that require high strength.

(b) From Table A–21, it can be observed that the AISI 1060 steel has the highest elongation (12%) for the annealed condition. Therefore, the specification for the AISI 1060 steel can be made as follows: AISI 1060 annealed steel with a minimum elongation of 12%.

This specification would ensure that the steel has maximum ductility and is suitable for applications that require high toughness and deformation without fracture.

The AISI 1060 steel is a type of high carbon steel that has a carbon content ranging between 0.55% to 0.65%. It is one of the most commonly used steels for industrial applications that require high strength and durability.The specification of AISI 1060 steel depends on the desired properties of the material for the particular application.

Two important properties of AISI 1060 steel are its yield strength and ductility. In order to maximize the yield strength of the steel, the following specification can be made:

Specification to Maximize Yield Strength:

From Table A–21, it can be observed that the AISI 1060 steel has the highest yield strength (965 MPa) for the cold-drawn/hardened and tempered condition (CDHT).

Therefore, the specification for the AISI 1060 steel can be made as follows:

AISI 1060 CDHT steel with a minimum yield strength of 965 MPa.This specification would ensure that the steel has the maximum yield strength possible and is suitable for applications that require high strength.

To maximize the ductility of the steel, the following specification can be made:

Specification to Maximize Ductility:

From Table A–21, it can be observed that the AISI 1060 steel has the highest elongation (12%) for the annealed condition. Therefore, the specification for the AISI 1060 steel can be made as follows: AISI 1060 annealed steel with a minimum elongation of 12%.

This specification would ensure that the steel has maximum ductility and is suitable for applications that require high toughness and deformation without fracture.

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If Alice wants to send Bob some Bitcoin, what information mast Bob first give to Alice?
A Transaction fees
B. Public key
C. Private key
D. Pablic and private keys, called a key pair

Answers

The information which Bob must given to Alice is B. Public Key.

Why is this?

Bob must give Alice his public key so that Alice can send the Bitcoin to Bob's public key address, which serves as the destination for the transaction.

The private key is kept secret and is used to access the Bitcoin stored at the corresponding public key address. The transaction fee is paid to the network to process the transaction and is separate from the amount being sent.

Therefore, the correct answer is B. Public key.

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An isentropic steam turbine processes 5.5 kg/s of steam at 3 MPa, which is exhausted at 50 kPa and 100°C. Five percent of this flow is diverted for feedwater heating at 500 kPa. Determine the power produced by this turbine. Use steam tables.

Answers

Answer:

The answer is 1823.9

Explanation:

Solution

Given that:

m = 5.5 kg/s

= m₁ = m₂ = m₃

The work carried out by the energy balance is given as follows:

m₁h₁ = m₂h₂ +m₃h₃ + w

Now,

By applying the steam table we have that<

p₃ = 50 kPa

T₃ = 100°C

Which is

h₃ = 2682.4 kJ/KJ

s₃ = 7.6953 kJ/kgK

Since it is an isentropic process:

Then,

p₂ =  500 kPa

s₂=s₃ = 7.6953 kJ/kgK

which is

h₂ =3207.21 kJ/KgK

p₁ = 3HP0

s₁ = s₂=s₃ = 7.6953 kJ/kgK

h₁ =3854.85 kJ/kg

Thus,

Since 5 % of this flow diverted to p₂ =  500 kPa

Then

w =m (h₁-0.05 h₂ -0.95 )h₃

5.5(3854.85 - 0.05 * 3207.21  - 0.95 * 2682.4)

5.5( 3854.83 * 3207.21 - 0.95 * 2682.4)

5.5 ( 123363249.32 -0.95 * 2682.4)

w=1823.9

As you encounter unfamiliar key torms in your eText, how can you leamn their definitions? Note that key terms may oppoar in boid or in a diferent color in your eted Select all that apply. O Select the Search icon and enter the term into the seurch feld. A definitian will show up in the Key torms saction of Eie fesulfs. O Select the Playlist icon and select the module you want to hear O Select the Table of Contents or the Navigation icon and navigate to the Glossary. O Select the key term in your eText and a pop-up defintion wel appear

Answers

A) Select the Search icon and enter the term into the search field. A definition will show up in the Key Terms section of the search results.

What is Key Terms?

Key Terms are words or phrases used to describe a concept or idea. They are often used in the field of academia to help define the scope of a particular study or research project. Key Terms are also used in business and legal documents to provide a concise and precise description of a concept or idea. By providing clear definitions for each key term, it helps to ensure that all parties involved in a discussion or agreement are on the same page.

C) Select the Table of Contents or the Navigation icon and navigate to the Glossary.
D) Select the key term in your eText and a pop-up definition will appear.

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Two technicians are discussing solder repair. Technician A says that solder should be applied to the soldering iron tip while soldering Technician B says that the solder should be applied
to the wire joint while soldering.

Answers

Two technicians are discussing solder repair. Technician A says that solder should be applied to the soldering iron tip while soldering Technician B says that the solder should be applied to the wire joint while soldering. The correction technician is: "Both Technician A and B (Option C)

What is soldering?

Soldering is a joining method that uses solder to bind several metals together. Solder is a metal alloy typically composed of tin and lead that is melted using a hot iron.

The iron is heated to a temperature above 600 degrees Fahrenheit before cooling to form a strong electrical connection. To put it another way, soldering is the process of uniting metal pieces to produce a mechanical or electrical link.

It commonly employs a low melting point metal alloy (solder), which is heated and applied to the metal pieces to be connected, and when the solder solidifies, it attaches to the metal parts and makes a connection.

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Full Question:

Two technicians are discussing solder repair. Technician A says that solder should be applied to the soldering iron tip while soldering Technician B says that the solder should be applied to the wire joint while soldering. Who is Correct?

Technician ATechnician  ABoth Techician A and BNeither Techician A nor B

passage c computer games are not the harmful monstrosities that the media has made them out to be. despite the fact that computer games now possess more sexual and violent content than has previously been generally accepted, the complexity and aesthetics of the electronic graphics medium fulfill a role similar to the role that classical art or music training has fulfilled for past generations. the benefits of the latter are unquestionable.

Answers

The passage argues that computer games are not as harmful as portrayed by the media and that their benefits are comparable to classical art or music training, challenging popular notions

The passage argues that computer games are not as harmful as portrayed by the media. It acknowledges that modern computer games may contain more sexual and violent content, but it contends that the complexity and aesthetics of electronic graphics provide a similar benefit to what classical art or music training provided for past generations.

The passage further implies that the benefits of classical art or music training are widely accepted and not questioned. Therefore, it suggests that the benefits of electronic graphics and computer games are also worth considering.

Overall, the passage seems to suggest that computer games, despite their controversial content, can provide benefits that are comparable to classical art or music training. It challenges the popular notion that computer games are harmful and suggests that their potential benefits should be acknowledged.

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a single-phase 50 kva, 2400–120 v, 60 hz transformer has a leakage impedance of (0.023 1 j 0.05) per-unit and a core loss of 600 watts at rated voltage

Answers

The leakage impedance of a single-phase 50 kVA, 2400-120 V, 60 Hz transformer is (0.023 + j0.05) per-unit.

The leakage impedance of a transformer represents the resistance and reactance of the winding that does not contribute to the power transfer. In this case, the leakage impedance is given as (0.023 + j0.05) per-unit. The real part, 0.023, represents the resistance, while the imaginary part, 0.05, represents the reactance. The per-unit value is used to normalize the impedance with respect to the rated values of the transformer.

The core loss of the transformer is given as 600 watts at rated voltage. Core loss refers to the power dissipated in the transformer core due to hysteresis and eddy current losses. It is important to consider the core loss when calculating the overall efficiency of the transformer.

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the same rules apply to trolley and light rail crossings that apply to train crossings.
T/F

Answers

True. The same rules and regulations that apply to train crossings also apply to trolley and light rail crossings.

These include obeying signals and warning signs, looking both ways before crossing, and not stopping on the tracks. Trolley and light rail crossings may have additional safety measures, such as gates or bells, but the basic rules are the same. It's important to follow these rules to avoid accidents and stay safe.
In conclusion, trolley and light rail crossings have the same rules as train crossings. It's important to be aware of these rules and follow them to ensure safety at all times.

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One of the requirements for tennis balls to be used in official competition is that, when dropped onto a rigid surface from a height of 120 in., the height of the first bounce of the ball must be in the range 55 in. <= h <= 60 in. Determine the range of the coefficients of restitution of the tennis balls satisfying this requirement. Any ideas on this?

Answers

Answer:

At temperature is and relative humidity is 86% therefore,  the humidity ratio is 0.0223 and the specific volume is 14.289

At temperature is and Relative humidity is 40% therefore, the humidity ratio is  0.0066 and the specific volume is 13.535.

To calculate the mass of air can be calculated as follows:

Now , we going to calculate the volume,

The time which is required to fill the cistern can be calculated as follows:

Now, putting the value in above formula we get,

Therefore, the hours required to fill the cistern is 4.65 hours.

Explanation:

A cube of edge 4 inches is cut by a plane containing 2 diagonally opposite edges
of the cube find the area of the section formed.

Answers

Answer:

 So its area A = 4 * 4sqrt(2) = 16sqrt(2) inches^2

Explanation:

In order to find the area of the section, we need to find the length of one of the diagonals.

Using the Pythagorean Theorem, a^2 + b^2 = c^2, we pick any side of the cube which in

itself is a square with sides 4 inches each.  The length of the diagonal of the square is

2(4^2) = c^2  or c = 4sqrt(2).

To calculate the area of the section, we must first determine the length of one of the diagonals. Using the Pythagorean Theorem, \(\bold{a^2 + b^2 = c^2}\), one selects any side of the cube which in its a square with four-inch sides.

The diagonal of a square has a length:

           \(\to 2(4^2) = c^2 \\\\ \to c = 4\sqrt{(2)}\)

A section is now a rectangle with sides 4 and \(4\sqrt{(2)}\). So its area

      \(\to A = 4 \times 4\sqrt{(2)} = 16\sqrt{(2)}\ inches^2\)

Therefore, the answer is "\(\bold{ 16\sqrt{(2)}\ inches^2}\)".

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12. Which of the following letter doesn't still the same when its viewed
in a mirror?
Α. Ε
B. W
C.S.
D. B

Answers

Answer:

the correct answer is option B. W

Answer:

it is b and w

Explanation:

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Does the load (alarm, motor, starter coil, etc.) that the relay contacts control need to be the same voltage rating and type (AC or DC) as the relays coil?

Answers

Yes, the load that the relay contacts control should have the same voltage rating and type (AC or DC) as the relay's coil. This ensures proper functioning and prevents damage to the relay and the load.

The relay acts as a switch that opens and closes the circuit to control the load, and if the voltage rating and type do not match, it can cause malfunction or failure. Therefore, it is essential to check the specifications of both the relay and the load before installation.
The coil and the load (such as an alarm, motor, or starter coil) that the relay contacts control do not necessarily need to have the same voltage rating or type (AC or DC). The relay serves as an isolating mechanism that allows the coil circuit to control the load circuit, even if they have different voltage ratings and types. However, it is essential to ensure that the relay itself is rated for the appropriate voltage and type of both the coil and the load to function safely and efficiently.

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