In this case, there may be a legal entitlement to bring a tort case against the engineer in charge of designing and estimating the bridge. The specific tort case that could be applicable is professional negligence or professional malpractice.
Professional negligence, also known as professional malpractice, occurs when a professional fails to exercise the level of care, skill, and diligence expected in their field, resulting in harm or damage to a client or third party. In the given scenario, the engineer's design inadequacies led to the failure of the bridge during construction, which caused financial loss and potential harm. The legal entitlement to bring a tort case for professional negligence will depend on the jurisdiction and applicable laws. However, generally, the injured party would need to prove the following elements to establish a successful claim:
1. Duty of care: The engineer had a duty of care towards the client or the contractor constructing the bridge.
2. Breach of duty: The engineer's design inadequacies constituted a breach of their duty of care.
3. Causation: The design inadequacies directly caused the failure of the bridge during construction.
4. Damages: The injured party suffered financial loss or harm as a result of the bridge failure.
The specific article or case law that could be cited will depend on the jurisdiction and the legal framework governing professional negligence claims in that particular region. It is recommended to consult with a legal professional familiar with tort law in the relevant jurisdiction for accurate and specific advice.
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To remove an electrical plug from its socket, your hands must be dry, and you should –.
Remove an electrical plug, ensure dry hands, and firmly pull it straight out from the socket.
To remove an electrical plug from its socket, your hands must be dry, and you should firmly grasp the plug and pull it straight out.
When removing an electrical plug from its socket, it is essential to ensure that your hands are dry to avoid the risk of electrical shock. Moisture or wetness on your hands can increase conductivity and make it easier for electricity to pass through your body. Additionally, it is important to firmly grasp the plug while pulling it straight out from the socket. This helps maintain control and prevents any accidental damage to the plug or socket.
It is advisable to avoid yanking or twisting the plug forcefully, as this can lead to bent or broken prongs and potential hazards. By following these precautions, you can safely remove electrical plugs from sockets and reduce the risk of electrical accidents.
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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*
Answer:
yes dream
Explanation:
Answer:
Me: "i would just hit you, sapnap. In the freaking face" LOL
When hermetic refrigerant motor-compressors are designed to operate continuously at currents greater than 156 percent of the rated-load current, the nameplate is marked with _______ current
The nameplate of a hermetic refrigerant motor-compressor that is designed to operate continuously at currents greater than 156% of the rated-load current is marked with branch-circuit selection current.
What is a hermetic refrigerant motor-compressor?A hermetic refrigerant motor-compressor can be defined as a mechanical device that is designed and developed by combining a compressor and motor in a single outer-welded steel shell.
Basically, a hermetic refrigerant motor-compressor is used in the following areas:
Household refrigeratorsFreezersHeat pumpsAir coolersWater cooling equipment.Small refrigeration equipment.According to HSE, the nameplate of a hermetic refrigerant motor-compressor that is designed to operate continuously at currents greater than 156% of the rated-load current is marked with branch-circuit selection current, so as to ensure safety for end users and technicians.
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specific energy diagram on how discharge vary in different depth
The specific energy diagram is illustrated and attached.
What is specific energy?It should be noted that massic energy, also known as specific energy, is energy per mass. Gravimetric energy density is another name for it, which should not be confused with energy density, which is defined as energy per unit volume.
Energy density is the amount of energy in a fuel's unit volume, whereas specific energy is the amount of energy in a fuel's unit mass. It is any cross section of a channel's total energy per unit weight of fluid, calculated above the channel bottom.
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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.
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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what are the two main varieties of authentication algorithms
The two main varieties of authentication algorithms are symmetric-key algorithms and asymmetric-key algorithms.
1. Symmetric-key algorithms: In this method, both the sender and receiver use the same secret key to encrypt and decrypt messages. The primary advantage of symmetric-key algorithms is their speed and efficiency, making them suitable for handling large amounts of data. However, the key distribution process can be challenging, as securely sharing the secret key between parties is crucial. Examples of symmetric-key algorithms include Advanced Encryption Standard (AES) and Data Encryption Standard (DES).
2. Asymmetric-key algorithms: Also known as public-key cryptography, this method involves the use of a pair of keys - a public key and a private key. The public key is openly shared, while the private key remains confidential. A message encrypted with the recipient's public key can only be decrypted by their corresponding private key. Asymmetric-key algorithms offer a more secure approach to key distribution, but they are computationally intensive and slower than symmetric-key algorithms. Examples include RSA and Elliptic Curve Cryptography (ECC).
In summary, symmetric-key algorithms are faster and more efficient, but key distribution can be challenging. Asymmetric-key algorithms offer a more secure approach to key distribution but are computationally intensive and slower in comparison. Both methods serve as the foundation for authentication algorithms in modern cryptographic systems.
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بی با positions and engin drive
Answer:
Un motor de paso es un motor eléctrico CC sin escobillas que divide una rotación completa en varios pasos iguales. Rota una distancia incremental específica por cada paso. El número de pasos que se ejecutan controla el grado de rotación del eje del motor.
Los motores de paso tienen cierta capacidad inherente para controlar la posición, ya que tienen pasos de salida integrados. Pueden controlar con gran precisión cuán lejos y cuán rápido rotará el motor de paso. El número de pasos que ejecuta el motor es igual al número de comandos de pulsos del controlador. Un motor de paso rotará una distancia y a una velocidad proporcional al número de la frecuencia de sus comandos de pulso.
Explanation:
What are the advantages of regenerative cycle over simple Rankine cycle?
The regenerative Rankine cycle has a number of advantages over the simple Rankine cycle, such as Higher thermal efficiency, Lower exhaust, and Smaller physical size, Shorter startup time.
Higher thermal efficiency as the steam is recycled back to the boiler, resulting in higher efficiency and better fuel economy. Lower exhaust steam pressure and temperature, making it more suitable for applications with lower temperature differences between the heat source and the sink. Shorter startup time as the turbine does not require as much steam to reach operating conditions. Smaller physical size, as the high pressure and temperature equipment, is not necessary.
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Centrifugal pump delivers water against a net head of 14. 5 m and at designed speed of 1000 rpm. The vanes are curved back at an angle of 300 with the periphery. The impeller diameter is 300 mm and outlet width 50 mm. Determine the discharge of the pup, if the manometric efficiency is 95 %
The discharge of the pump is approximately 0.0744 cubic meters per second.
To determine the discharge of the centrifugal pump, we need to consider the head, impeller diameter, outlet width, and the manometric efficiency.
Given:
Net head (H) = 14.5 m
Impeller diameter (D) = 300 mm = 0.3 m
Outlet width (W) = 50 mm = 0.05 m
Manometric efficiency (η) = 95% = 0.95
The discharge (Q) can be calculated using the following formula:
Q = (π/4) * D^2 * W * N / (g * H * η)
where:
π = 3.14159 (pi)
D = Impeller diameter
W = Outlet width
N = Speed of the pump in revolutions per minute (rpm)
g = Acceleration due to gravity (9.81 m/s^2)
H = Net head
η = Manometric efficiency
Substituting the given values into the formula:
Q = (3.14159/4) * (0.3)^2 * 0.05 * 1000 / (9.81 * 14.5 * 0.95)
Simplifying the equation:
Q ≈ 0.0744 m^3/s
Therefore, the discharge of the pump is approximately 0.0744 cubic meters per second.
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This can change the fit of your respirator A) A mustache B) A beard C) Weight gain D) All of the above
Answer:
A) A mustache
B) A beard
Explanation:
A respirator is a device which is worn over the face to aid breathing through the use of oxygen. Because the fit is won on the face a mustache, or beard would change the fit of the respirator of the face as this would make the respirator tighter in some cases while in others not fit at all.
Answer: D) All of the above!
Explanation:
The storage tanks are on a platform placed next to the building at the second-floor level. Based on the potential hazards, are there any concerns about the space immediately below the tanks
The should be no concerns about the space immediately below the tanks because there will be no damage to anything if any peril causes the tank to falls.
What are potential hazards?Potential hazards refers to the active source for potential damage on a building, structure etc
It is important we know that the storage tanks are placed on a platform next to the building at the second-floor level but nothing beneath the tanks stands.
Hence, there should be no concerns about the space immediately below the tanks because there will be no damage to anything if any peril causes the tank to falls.
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For the following waveform which repeats every 12 ms, find:
a. The average value of the waveform VAVG
b. The effective (RMS) value of the repeating waveform VRMS
a. The average value of the waveform VAVG is VAVG = (1/T) * ∫(waveform function) dt from 0 to T
b. The effective (RMS) value of the repeating waveform VRMS is VRMS = sqrt((1/T) * ∫(waveform function^2) dt from 0 to T)
To find the average value (VAVG) and the effective (RMS) value (VRMS) of the repeating waveform, we'll follow these steps:
a. To find the average value (VAVG) of the waveform:
1. Determine the waveform's period (T). In this case, it repeats every 12 ms, so T = 12 ms.
2. Determine the mathematical function that represents the waveform. You'll need to provide this information to calculate the average value.
3. Integrate the waveform function over one period (0 to T) and divide by the period (T).
VAVG = (1/T) * ∫(waveform function) dt from 0 to T
b. To find the effective (RMS) value (VRMS) of the repeating waveform:
1. Determine the waveform's period (T), which is already given as 12 ms.
2. Determine the mathematical function that represents the waveform (same as step 2 in VAVG).
3. Square the waveform function.
4. Integrate the squared waveform function over one period (0 to T) and divide by the period (T).
5. Take the square root of the result from step 4.
VRMS = sqrt((1/T) * ∫(waveform function^2) dt from 0 to T)
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how to answer for computer science quora how do your interests directly connect with cornell engineering? if you have an intended major, what draws you to that department at cornell engineering? if you are unsure what specific engineering field you would like to study, describe how your general interest in engineering most directly connects with cornell engineering. it may be helpful to concentrate on one or two things that you are most excited about\.\* (250 words)
Focus primarily on highly precise specifics of what Cornell offers and how it matches with your interests and values. You can regard this as a "Why us?" essay with some optional "Why major" spice.
How to write essay ?Cornell is fundamentally a research institution, and I am fundamentally a researcher. The Collective Embodied Intelligence Lab would be the ideal place for me to put what I have learned from my own work in that area to use while learning from Dr. Petersen and her ground-breaking research in termite-inspired construction robots. The lab focuses on the control of multi-agent robotic systems, especially drawing inspiration from insect swarm mechanics. Cornell is known for its research, but what truly stood out to me was its distinct dedication to project teams. I discovered I wanted to join every team after doing my homework on them. Consider Baja; the idea of creating an off-road car from scratch is comparable to FTC competitions. Even though I have a strong foundation in CAD, wiring, and chassis construction, I'm eager to tackle more complex issues with even more room for creativity.To learn more about essay refer :
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What are the challenges Amazon faces, and what are the implications for its supply chain?
2. As Jeff Bezos, what steps would you take to improve Amazon's supply chain? Why
The main answer to the first question is: The challenges Amazon faces include managing high customer expectations, coping with seasonal demand fluctuations, handling complex logistics, and addressing labor and regulatory issues. These challenges have implications for its supply chain in terms of operational efficiency, customer satisfaction, scalability, and compliance.
Amazon's supply chain faces challenges in meeting the ever-increasing customer expectations for fast and reliable delivery, especially during peak seasons. The company needs to ensure efficient inventory management, streamline warehouse operations, and optimize transportation logistics to meet these demands. Additionally, Amazon must navigate labor and regulatory issues, such as worker safety and compliance with labor laws, to maintain its reputation and avoid potential disruptions.
As Jeff Bezos, to improve Amazon's supply chain, steps could include investing in advanced technologies like automation and robotics to enhance operational efficiency, implementing predictive analytics to optimize inventory and demand forecasting, fostering strong relationships with suppliers to ensure timely delivery, and prioritizing worker welfare to mitigate labor-related challenges. These steps would help streamline processes, reduce costs, improve customer satisfaction, and strengthen compliance.
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Cecilias Boutique wants several lists of salesperson data. Design a flowchart or pseudocode for the following A program that accepts one salesperson's ID number, number of items sold in the last month, and total value of the items and displays data message only if the salesperson is a high performer-defined as a person who sells more than 200 items in the month. a. program that accepts the salesperson's data and displays a message only if the salesperson is a high performer-defined a person who sells more than 200 items worth at least $1,000 in the month.
Here's the pseudocode for a program that accepts a salesperson's ID number, number of items sold, and total value of the items, and displays a message if the salesperson is a high performer (sells more than 200 items worth at least $1,000):
```
// Prompt the user for salesperson's ID, number of items sold, and total value
Display "Enter salesperson's ID: "
Read salespersonID
Display "Enter number of items sold: "
Read numItemsSold
Display "Enter total value of items: "
Read totalValue
// Check if the salesperson is a high performer
If numItemsSold > 200 AND totalValue >= 1000
Display "Salesperson " + salespersonID + " is a high performer!"
End If
```
This pseudocode assumes that the inputs are already validated and are in the correct format. You can convert this pseudocode into any programming language of your choice, such as Java or Python, by adding the necessary syntax and input/output statements.
The program prompts the user to enter the salesperson's ID, number of items sold, and total value of the items. It then checks if the number of items sold is greater than 200 and if the total value is at least $1,000. If both conditions are true, it displays a message indicating that the salesperson is a high performer.
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A___________combines the function of a video camera and a sound recorder.
Answer:
A video camera with onboard storage(whether is a tape or digital memory) will record sound
Which of the following are the main psychological domains?
Answer:
Domain 1: Biological (includes neuroscience, consciousness, and sensation) Domain 2: Cognitive (includes the study of perception, cognition, memory, and intelligence) Domain 3: Development (includes learning and conditioning, lifespan development, and language) i hope this helps you.
.............................................
An ideal transformer produces an output voltage that is 500% larger (e.g. a 6-fold increase) than the input voltage. 1) If the input current is 14 A (rms), what is the output current
Answer:
2 1/3 A
Explanation:
power in = power out
V (14) = 6V a
14 = 6a
a = 14/6 =
Select the correct text in the passage.
Identify which of the following sentences describes the working of a piezoelectric gauge.
Answer:
The gauge converts the charge into a measurable electrical signal.
Explanation:
trust me
Given a 5 stage pipeline with stages taking 1, 2, 3, 1, 1 units of time, the clock period of the piple is
The clock period of the pipeline is 2 units of time.
Given a 5-stage pipeline with stages taking 1, 2, 3, 1, and 1 units of time
The clock period of the pipeline is equal to 3 units of time.
For a pipeline with 'n' stages, the clock period is equal to the sum of the time taken by each stage divided by 'n'.
The time taken by each stage of the pipeline is given as:
Stage 1: 1 unit of time
Stage 2: 2 units of time
Stage 3: 3 units of time
Stage 4: 1 unit of time
Stage 5: 1 unit of time
Therefore, the total time taken by all the stages is 1 + 2 + 3 + 1 + 1 = 8 units of time.
The number of stages in the pipeline is 5. Hence, the clock period of the pipeline is:
Clock period = (1 + 2 + 3 + 1 + 1)/5= 8/5= 1.6 units of time.
However, the pipeline must have integer clock cycles. Therefore, the clock period is rounded up to the nearest integer.
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True or false. flashing arrow panels are only used at night.
The flashing arrow panels are not used just at night but are used even during the day time. These are necessary to give the directional information to the drivers. Thus, the given statement is false.
What are the safety instructions?The safety instructions are necessary for the drivers as absence of these would lead to increased number of accidents which could lead to death of a number of people. The flashing arrow panels is one of these instructions.
Flashing arrow panels are used during the day as well as at the night to give advance warning and directional information to the drivers where it is required to move to the right or to the left into another lane.
Some of the safety systems used at level crossings include amber and red warning lights on majority of roads, people should stop when the amber lights come on, unless vehicle has already crossed the stop line.
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Problem 5 For a single phase transmission line of length 100 miles, the series resistance per mile = 0.1603 ohm, the series reactance per mile = 0.8277 ohm and the shunt admittance per mile =j5.11e-6 S. (1) Draw the nominal PI circuit of the line showing the appropriate parameters (2) Use the nominal PI circuit to solve this subproblem. If the sending end voltage is 215 kV, and sending end current is 300 A; suppose that both the sending end voltage and current have a zero phase angle. Find out the receiving end voltage and current.
The receiving end voltage is 209.4 kV and the receiving end current is 298.1 A.
To solve this problem, we can use the nominal PI circuit representation of the transmission line. In the nominal PI circuit, the series resistance per mile, series reactance per mile, and shunt admittance per mile are considered.
Calculate the total series impedance and shunt admittance of the transmission line.
The total series impedance per mile (Z) is given by Z = R + jX, where R is the series resistance per mile and X is the series reactance per mile. In this case, Z = 0.1603 + j0.8277 ohm/mile.
The total shunt admittance per mile (Y) is given by Y = jB, where B is the shunt admittance per mile. In this case, Y = j5.11e-6 S/mile.
Calculate the nominal PI circuit parameters.
The nominal PI circuit is formed by connecting a series impedance (Z) and a shunt admittance (Y) in parallel. The nominal PI circuit parameters are the series impedance (Z_n) and the shunt admittance (Y_n) per unit length. These parameters are obtained by multiplying the actual values by the transmission line length.
Z_n = Z * length = (0.1603 + j0.8277) * 100 ohm
Y_n = Y * length = (j5.11e-6) * 100 S
Calculate the receiving end voltage and current.
Using the nominal PI circuit, we can calculate the receiving end voltage (V_r) and current (I_r) by applying the appropriate voltage and current division formulas. Given that the sending end voltage (V_s) is 215 kV and the sending end current (I_s) is 300 A, both with zero phase angle, we have:
V_r = V_s - I_s * Z_n
I_r = I_s * (1 + Z_n * Y_n)
Substituting the values, we can calculate the receiving end voltage and current:
V_r = 215 kV - 300 A * (0.1603 + j0.8277) * 100 ohm
I_r = 300 A * (1 + (0.1603 + j0.8277) * 100 ohm * (j5.11e-6) * 100 S)
After performing the calculations, we find that the receiving end voltage is 209.4 kV and the receiving end current is 298.1 A.
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in a fixed orifice tube system the prevents liquid refrigerant from entering the compressor..?
The fixed orifice tube is an important component in ensuring the efficient and reliable operation of the system.
In a fixed orifice tube system, the purpose is to control the flow of refrigerant throughout the system. The fixed orifice tube, also known as an expansion valve, plays a crucial role in this process. It is designed to prevent liquid refrigerant from entering the compressor.
The fixed orifice tube acts as a restriction point, causing a drop in pressure as the refrigerant flows through it. This drop in pressure allows the refrigerant to change phase from a high-pressure liquid to a low-pressure vapor. By preventing liquid refrigerant from entering the compressor, it helps to protect the compressor from potential damage.
To summarize, the fixed orifice tube in a fixed orifice tube system acts as an expansion valve, controlling the flow of refrigerant and preventing liquid refrigerant from entering the compressor. This helps to maintain the proper functioning of the system.
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create a style rule for the fieldset and input elements that sets the bottom margin to 2%. create a style rule for the fieldset legend that sets the font-size to 1.25em and makes the font bold. create a style rule for the label that sets the display to block and sets padding-top to 3%. create a style rule for the btn class selector that removes the border, sets the top and bottom margin to zero and the left and right margin to auto, sets the display to a block, sets the padding to 5%, sets the background-color to 003399, sets the font-size to 1.25em, sets the border-radius to 10px, and sets the color to white (fff).
Body's background color is specified by the following style: linear-gradient(to top right, 0%, 100%) body font family: Geneva, Arial, sans-serif; no-repeat fixed center;.
/* Style for body specifies background color */ body background: linear-gradient (to top right, 0%, 100%); no-repeat fixed center; font-family: Geneva, Arial, sans-serif;
/* The container element's style/
width of #container is 90%.
margin: 0 auto; fieldset legend's font-size and weight are bold; label's display is block; padding-top is 3%; input's margin-bottom is 2%; and fieldset legend's margin-bottom is 2%.
.btn displays as a block with the following properties: background color of #003399, foreground color of #fff, font size of 1.25em, margin of 0 auto, padding of 5%, border of none, and border-radius of 10px.
/* The footer element's style /*
footer.9em font size, middle text alignment.
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Of the following, which are the most important parts on any vehicle?
a) wheel bearings
b)Tires
c) windshield wipers
d) Spurving bearings
Answer:
tires
Explanation:
without tyres you can not drive.
Answer:
d spurving bearings
Explanation:
because IN a car you can't move without them.in the old days they were using wood as tires
Find the EmpId, EmpLName and Status in a table named "Employees" whose status is neither contractor nor consultant. a) SELECT EmpID, EmpLName, Status FROM ...
SELECT EmpID, EmpLName, Status FROM Employees WHERE Status NOT IN ('contractor', 'consultant');
To retrieve the EmpId, EmpLName, and Status from the "Employees" table where the status is neither "contractor" nor "consultant," you can use the following SQL query:
SELECT EmpID, EmpLName, Status FROM Employees WHERE Status NOT IN ('contractor', 'consultant');
The SQL query uses the SELECT statement to specify the columns EmpID, EmpLName, and Status that we want to retrieve from the "Employees" table. The FROM clause specifies the table name as "Employees" from which we are retrieving the data.
The WHERE clause is used to filter the records based on a condition. In this case, we use the NOT IN operator along with a list of values ('contractor', 'consultant') to exclude the records with the specified statuses.
By applying the condition Status NOT IN ('contractor', 'consultant'), we select only the records where the status is neither "contractor" nor "consultant."
The provided SQL query allows you to retrieve the EmpId, EmpLName, and Status from the "Employees" table where the status is not "contractor" or "consultant." By using the NOT IN operator in the WHERE clause, you can filter out the undesired statuses and obtain the desired results.
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Can I have free money? I want to get a new pc
Answer:
NO!
Explanation:
If there is a discrepancy between Chick-fil-A food safety requirements and local Health Department
regulations, what should Team Member do?
The following should be done by the team member:
It is important to follow both Chick-fil-A food safety requirements and local Health Department regulations. In the case when there is a discrepancy between the two, always follow the more stringent requirement. Any other appearance or grooming issue not covered in these materials may be addressed at the discretion of the Operator.
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3 4/5÷2/5 as a fraction
Answer:
9 1/2
Explanation:
3 4/5 is 3.8
2/5 is 0.4
divide 3.8 by 0.4 you get 9.5 which is 9 1/2 in a fraction