Forces exerted by the jet on the plate is=3976N
How to calculate forces exerted by the jet on the plate?A force is an effect that can change the motion of an object. A force can generate an object with mass to change its velocity, i.e., to accelerate. Force can also be explained intuitively as a push or a pull. A force has both volume and direction, making it a vector amount.
A jet of water 75m in diameter
velocity = 30m/s
The forces exerted by the jet on the plate is
F=1000×44178×10^-3×30²
=3976N
the jet on the plate work done by Is zero .
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how can you add an angle to all extruded faces of a feature
Stretching a flat, 2D shape vertically to produce a 3D item in a scene is called extrusion. For instance, extruding building polygons by a height value can result in three-dimensional building shapes.
By applying a force that causes the material to flow through an opening or die, a process known as extrusion allows a material to be plastically deformed. If the substance possesses the necessary qualities, it will adopt the cross-sectional profile of the die and keep that form in the final extrudate. The playdough toys used when playing with it are a straightforward illustration of extrusion. Playdough is forced through the die to form a certain shape, and the procedure is known as extrusion. The substance must be forced through the die firmly in order for it to produce the correct form.
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a very specific part of the population is called a
Answer:
The answer is C Population
Determine the critical load if the bottom is fixed and the top is pinned. ewew = 1. 6 ×(10)3ksi×(10)3ksi ,σyσy = 5 ksiksi
Critical load Fcr or buckling load is the value of load that causes the phenomenon of change from stable to unstable equilibrium state.
With that beign said, first it is neessary to calculate the moment of inercia about the x-axis:
\(Ix= \frac{db^3}{12}\\ Ix = \frac{2.(4)^3}{12} = 10.667in\)
Then it is necessary to calculate the moment of inercia about the y-axis:
\(Iy = \frac{db^3}{12}\\ Iy = \frac{4.(2)^3}{12} = 2.662in\)
Comparing both moments of inercia it is possible to assume that the minimun moment of inercia is the y-axis, so the minimun moment of inercia is 2662in.
And so, it is possible to calculate the critical load:
\(Pc\gamma = \frac{2046\pi ^2E.I}{L^2} \\Pc\gamma= \frac{2046.\pi ^2.(1,6.10^3.10^3).2662}{(10.12)^2} \\Pc\gamma= 5983,9db\)
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which of the following devices is most commonly used by a user to provide input to their workstation to launch a program or perform file manipulations?
Keyboard is most commonly used device by a user to provide input to their workstation to launch a program or perform file manipulations.
What is keyboard in computer?It is input devices used with computer. It creates letters, numbers, and symbols, and perform additional functions like calculations.It includes control keys, function keys, LED indicators, wrist pad, arrow keys.It used to sends data to a computer.It does not receive any information from computer. Keyboard used to input the information into the computer.Modifier Keys in Keyboard:control keyshift keyalt keyWindows Key:start keyflag keylogo keyIt is to open the Start menu.
Win+D is quickly show/hide the desktop.
Win+E is one that quickly opens File.
Multimedia keys allow the user to control music on computer keyboard.
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An electric motor and electric generator are
1. in a way, similar devices with input and output roles
exchanged or reversed.
2, entirely different devices.
3. neither of these
4. not sure
An electric motor and electric generator are in a way, similar devices with input and output roles are exchanged or reversed.
An electric motor and an electric generator are similar devices in the sense that they both involve the conversion of electrical energy into mechanical energy and vice versa. The key difference lies in the direction of energy conversion.
In an electric motor, electrical energy is supplied as an input, which is then converted into mechanical energy to produce rotational motion. The input is typically provided through an electrical power source, and the output is the mechanical work performed by the motor.
On the other hand, an electric generator operates in a reverse manner. Mechanical energy is supplied as input by rotating the generator's shaft, and this mechanical energy is converted into electrical energy. The output of an electric generator is an electrical current or voltage that can be used to power electrical devices.
So, while the input and output roles are reversed between an electric motor and an electric generator, they share similar principles of energy conversion.
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g ) Water is the working fluid in an ideal regenerative Rankine cycle with one closed feedwater heater. Superheated vapor enters the turbine at 16 MPa, 560 oC, and the condenser pressure is 8 kPa. The cycle has a closed feedwater heater using extracted steam at 1 MPa. Condensate drains from the feedwater heater as saturated liquid at 1 MPa and is trapped into the condenser. The feedwater leaves the heater at 16 MPa and a temperature equal to the saturation temperature at 1 MPa. The mass flow rate of steam entering the first-stage turbine is 120 kg/s. Determine (a) the net power developed, in kW.
Answer:
146494 kw
Explanation:
Given data:
Turbine inlet pressure ( p1 ) = 16 MPa
Turbine inlet temperature ( T1 ) = 560°C
condenser pressure : P3 = 8Kpa
Extracted steam at pressure ( P2 ) = 1 MPa
mass flow rate of steam ( m ) = 120 kg/s
a) The net power developed
= 146494 kw
note: values of h1, h2, y, Wp are all calculated values not included in the solution to make the solution less cumbersome.
If the marginal utility per the price of Good A is $2.50, and the marginal utility per the price for Good B is $2.40, what does the utility-maximizing rule tell you to do, if the budget allows it?
So, it is evident that Good B offers a marginal utility per price of $2.50 while Good A offers a marginal utility per price of $2.40 in this instance.
What does "marginal use" mean?
The marginal use of a good or service, according to the Austrian School of Economics, is the specific use that an agent would put a given rise in or the specific use of the good or service that would be abandoned in reaction to a given drop. Marginal refers to the emphasis on the expense or benefit of the next unit or person, such as the price to create an additional widget or the revenue generated by hiring an additional employee. For the purpose of maximising possible earnings, businesses employ marginal analysis as a decision-making technique.
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data collector characteristics may be a threat to internal validity if
Answer:
Explanation:
Data collector characteristics may be a threat to internal validity if they introduce biases or systematic errors that impact the accuracy and reliability of the collected data. Some potential characteristics of data collectors that can pose threats to internal validity include:
1. Personal Bias: Data collectors may have personal biases, beliefs, or expectations that can consciously or unconsciously influence their data collection process. These biases can lead to selective sampling, favoritism, or altered data recording, affecting the validity of the findings.
2. Inconsistent Procedures: If data collectors do not follow standardized and consistent procedures for data collection, it can introduce variations and inconsistencies in the data. Inaccurate or inconsistent data collection methods can compromise the internal validity of the study.
3. Interpretation Bias: Data collectors' interpretations and judgments during data collection, such as coding or categorization, may be subjective and influenced by their own perspectives. This subjectivity can introduce errors or misinterpretations, impacting the internal validity of the study.
4. Inadequate Training or Experience: Insufficient training or lack of experience in data collection methods can result in errors, inconsistent measurements, or miscommunications. Inadequate skills or knowledge may compromise the reliability and validity of the collected data.
To ensure internal validity, it is crucial to minimize these potential threats by providing comprehensive training to data collectors, implementing standardized protocols, using clear instructions, and regularly monitoring and verifying the data collection process. Additionally, employing multiple data collectors and employing techniques such as inter-rater reliability checks can help mitigate the impact of data collector characteristics on internal validity.
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What’s is the answer
Answer: A, B, C or D
Explanation: its either those
The ______ operator always follows the cin object, and the ______ operator follows the cout object. A) binary, unary. B) conditional, binary. C) >>, << D) <<, >>
The response is (C) >>,. The output operator (>) always comes after the cout object, while the input operator (>) always comes after the cin object.
What is the purpose of CIN in C++?The iostream header file in the C++ language declares the object of class istream named cin. With the use of the extraction operator (>>) or member functions like getline(), read(), etc. together with the cin object, we may read data from a common input device like a keyboard.
What in C++ is cout?In C++, output is shown on the screen using the cout function. The letters "c" and "out" in "cout" stand for character and output, respectively. cout hence denotes character output. Using the insertion operator along with cout to output formatted data.
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Brass is an alloy of zinc and copper. In brass, zinc atoms with a radius of 0.133 nm have replaced some of the copper atoms, which have a radius of 0.128 nm. What type of defect is it?
Answer: Substitutional Impurity
Explanation:
Substitutional impurity is a defect that occurs when a non-matrix atom replaces a matrix atom as did the zinc atoms in brass did to some copper atoms. These non-matrix atoms will then be called substitutional impurity atoms.
For this to happen, the non-matrix atoms have to be close in size to the matrix atom that they are replacing which in general means within a range of 15%.
Technician a says to use an air impact wrench to remove rusted exhaust nuts. technician b says that when installing a flywheel ring gear, heat it until it is red hot. who is right?
Mostly for exhaust bolts we utilize impact wrenches. Impact wrenches exist very reasonably on flywheels because the crankshaft must be set from rotating. Also, impact wrenches exist valid on cars for reducing wheel nuts. The wheels need not be restrained or the brakes need not be used to fix the wheels in position.
What is an Impact Wrench?Impact wrenches do a great job of tautening and relieving bolts, lug nuts, and rusted fasteners. They deliver a very increased rotational torque that normal drills exist simply not qualified for and have high torque output with minimal effort by the user.
Mostly for exhaust bolts we utilize impact wrenches. Impact wrenches exist very reasonably on flywheels because the crankshaft must be set from rotating. Also, impact wrenches exist valid on cars for reducing wheel nuts. The wheels need not be restrained or the brakes need not be used to fix the wheels in position.
Impact wrenches exist located in the tool chests of mechanics everywhere. They're commonly utilized for reducing lug nuts from cars and trucks, but they can even be utilized in any high-torque situation
Therefore, the correct answer is Neither A nor B.
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It is desired to obtain 500 VAR reactive power from 230 Vrms 50 Hz 1.5 KVAR reactor. What should be the angle of the AC to AC converter to be used? Calculate the THD of the current drawn from the mains (consider up to the 12th harmonic)?
Answer:
14.5° ; THD % = 3.873 × 100 = 387.3%.
Explanation:
Okay, in this question we are given the following parameters or data or information which is going to assist us in solving the question efficiently and they are;
(1). "500 VAR reactive power from 230 Vrms 50 Hz 1.5 KVAR reactor".
(2). Consideration of up to 12th harmonic.
So, let us delve right into the solution to the question above;
Step one: Calculate the Irms and Irms(12th) by using the formula for the equation below;
Irms = reactive power /Vrms = 500/230 = 2.174 A.
Irms(12th) = 1.5 × 10^3/ 12 × 230 = 0.543 A.
Step two: Calculate the THD.
Before the Calculation of the THD, there is the need to determine the value for the dissociation factor, h.
h = Irms(12th)/Irms = 0.543/ 2.174 = 0.25.
Thus, THD = [1/ (h)^2 - 1 ] ^1/2. = 3.873.
THD % = 3.873 × 100 = 387.3%.
Step four: angle AC - Ac converter
theta = sin^-1 (1.5 × 10^3/ 12 × 500) = 14.5°.
Which electrode uses a whip technique and why
Answer:
STICK SKILL DRILL...
Explanation:
The skill drill uses a Whip and Pause technique.The reason for whip and pause is that 6010 electrodes are fast freezing electrodes and the momentary whips allow the puddle to solidify a bit ..Length of Art..Too long an arc causes problems so try to keep the arc equal to or shorter than diameter of electrode.
a survey regarding truck engines found a positive correlation between the size of the engine and horsepower the engine produces. answer the following question based only on this information. true or false: it can be concluded that trucks with larger engines have greater horsepower. select the correct answer below: true false
True.
Based on a survey showing a positive correlation, can it be concluded that trucks with larger engines have greater horsepower? (True/False)Based on the information provided, the statement "trucks with larger engines have greater horsepower" can be concluded to be true.
The survey found a positive correlation between the size of the engine and the horsepower it produces.
A positive correlation indicates that as the size of the engine increases, the horsepower it produces also tends to increase.
Therefore, it can be inferred that trucks with larger engines generally have greater horsepower.
positive correlation
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Consider a charged parallel-plate capacitor. How can its capacitance be halved?1) Double the charge.2) Double the plate area.3) Double the plate separation.
The capacitance of a parallel-plate capacitor can be halved by doubling the plate separation. This is because the capacitance is inversely proportional to the plate separation.
A parallel-plate capacitor is a two-plate arrangement that can store an electric charge when an electric potential difference is applied across the plates. The capacitance of a parallel-plate capacitor is proportional to the plate area and inversely proportional to the distance between them.
According to the relation C = ε_0(A/d)
Where C is the capacitance, ε_0 is the permittivity of free space, A is the plate area and d is the distance between the plates.
Therefore, to halve the capacitance of the charged parallel-plate capacitor, we have to double the plate separation. This relation between capacitance and plate separation helps in understanding the effect of physical properties on the electric field between two parallel plates.
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Recall a recent decision that you had difficulty making. How did you diagnose and solve the challenge? Were the consequences good, bad, or both? Should you, and could you, have done anything differently in making the decision? Based on what you have learned so far, what changes would you make and why?
Answer:
yes maybe
Explanation:
I have a project and everyone in the world will know about it.
Answer:
both
Explanation:
what is the smallest acceptable size of the next state register in bits?
The smallest acceptable size of the next state register in bits depends on the number of distinct states that need to be represented. It can be determined by finding the minimum number of bits required to uniquely represent all possible states.
To determine the smallest acceptable size of the next state register, we need to consider the number of distinct states the system can have. If the system has N distinct states, the next state register should have enough bits to represent all these states uniquely.
The number of bits required to represent N states can be calculated using the formula: log2(N). This formula represents the base-2 logarithm of N, which gives the minimum number of bits required. It is important to round up the result to the nearest whole number to ensure that all states can be represented.
For example, if a system has 8 distinct states, we would calculate log2(8) = 3, indicating that at least 3 bits are required to represent all the states uniquely. Therefore, the smallest acceptable size of the next state register in this case would be 3 bits.
In general, the size of the next state register should be chosen to accommodate the maximum number of distinct states the system can have, ensuring that all states can be represented without ambiguity.
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When an inside corner is being welded in the horizontal position, undercutting can be decreased or prevented by?
Answer:
By using a forward-inclined half-moon torch position, stopping momentarily at each end of the weld pool
Explanation:
By using a forward-inclined half-moon torch position, stopping momentarily at each end of the weld pool
Adjusting welding parameters, using appropriate electrode size, and maintaining proper torch angle can prevent undercutting in horizontal
welding of an inside corner.
We have,
When an inside corner is being welded in the horizontal position, undercutting can be decreased or prevented by adjusting the welding parameters, such as:
- Controlling Welding Parameters:
Adjusting the welding parameters is crucial in preventing undercutting.
It involves regulating the welding current, voltage, and travel speed.
- Selecting Appropriate Electrode Size:
Choosing the right electrode size is essential to control the heat generated during the welding process.
Smaller electrode diameters generally provide lower heat input, which can help prevent undercutting.
- Maintaining Proper Torch Angle and Manipulation Techniques:
Keeping the correct torch angle during welding is crucial to control the weld pool and metal deposition.
- reducing the welding current and travel speed
- using the appropriate electrode size
- maintaining proper torch angle and manipulation techniques.
Thus,
Adjusting welding parameters, using appropriate electrode size, and maintaining proper torch angle can prevent undercutting in horizontal welding of an inside corner.
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double-resonance versus pulsed fourier transform two-dimensional infrared spectroscopy: an experimental and theoretical comparison
Double-resonance and pulsed Fourier transform two-dimensional infrared spectroscopy offer distinct advantages, with the former providing enhanced resolution and sensitivity and the latter offering broader spectral coverage and suitability for complex samples.
A comparison between double-resonance and pulsed Fourier transform two-dimensional infrared (2D IR) spectroscopy reveals both experimental and theoretical aspects of the two techniques. Double-resonance 2D IR spectroscopy utilizes two lasers to probe the vibrational modes of interest, providing enhanced spectral resolution and sensitivity. On the other hand, pulsed Fourier transform 2D IR spectroscopy employs a single broadband pulse and utilizes frequency-domain measurements to obtain the 2D IR spectrum.
To compare the techniques experimentally, one can consider factors such as the spectral range, resolution, sensitivity, and experimental setup requirements. Double-resonance 2D IR spectroscopy offers higher resolution and sensitivity due to the use of two lasers, but it requires precise control of the laser frequencies. Pulsed Fourier transform 2D IR spectroscopy has broader spectral coverage and is more suitable for samples with complex dynamics.
From a theoretical perspective, the mathematical formulations differ between the two techniques. Double-resonance 2D IR spectroscopy utilizes quantum mechanical calculations and Franck-Condon factors to interpret the observed spectra. Pulsed Fourier transform 2D IR spectroscopy involves Fourier transformation of the time-domain signal to obtain the frequency-domain 2D IR spectrum.
In conclusion, double-resonance 2D IR spectroscopy and pulsed Fourier transform 2D IR spectroscopy offer distinct advantages and considerations. The former provides enhanced resolution and sensitivity through dual laser excitation, while the latter offers broader spectral coverage and is more suitable for complex samples. The choice between the two techniques depends on the specific research objectives and sample characteristics.
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A piston cylinder device contains 5 kg of Refrigerant 134a at 600 kPa and 80 C. The refrigerant is now cooled at constant pressure until it reaches a liquid-vapor mixture state with a quality of 0.3. How much heat was extracted in the process?
Answer:
The answer is 920 kJ
Explanation:
Solution
Given that:
Mass = 5kg
Pressure = 600 kPa
Temperature = 80° C
Liquid vapor mixture state (quality) = 0.3
Now we find out the amount of heat extracted in the process
Thus
Properties of RI34a at:
P₁ = 600 kPa
T₁ = 80° C
h₁ = 320 kJ/kg
So,
P₁ = P₂ = 600 kPa
X₂ =0.3
h₂ = 136 kJ/kg
Now
The heat removed Q = m(h₁ -h₂)
Q = 5 (320 - 136)
Q= 5 (184)
Q = 920 kJ
Therefore the amount of heat extracted in the process is 920 kJ
what is automotive engineering?
Answer:
Vehicle Design and Manufacturing
Explanation:
Automotive engineering is simply a branch of vehicle engineering that focuses on the design and manufacturing of various types of automobiles. It involves the in-depth application of math in the design and production of the vehicles.
The transition zone in which the ocean's density increases rapidly with depth is called the:___________
Answer: Pycnocline.
Explanation:
The Pycnocline is the layer, where there is a significant change in density of water with respect to depth.
In freshwater environments such as lakes this density change is primarily as a result of change in water temperature, while in seawater environments e.g oceans the cause of change in density change are changes in water temperature or salinity.
A switch that can open or close an electric circuit can be used to?
Answer:
When a switch is in the "off" position the circuit is open. Electric charges cannot flow when a switch is in the off position.
Explanation:
A switch that can open or close an electric circuit can be used to stop the flow of current.
What is a switch?A switch can be defined as an electrical component (device) that is typically designed and developed for interrupting the flow of current or electrons in an electric circuit.
This ultimately implies that, a switch that can open or close an electric circuit can be used to stop the flow of current.
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How much dry salt must be added in 150kg of aquous salt solution in order to increase the concentration from 15% to 40%
Answer:
about half a pound i think
Explanation:
TRUE/FALSE. Instruction: TRUE or FALSE. In the space provided, WRITE ‘TRUE’ If the statement is correct. WRITE ‘FALSE’ if the statement is wrong. If your answer is FALSE, write beside the ‘FALSE’ the correct word/s or phrase to replace the underlined word/s or phrase and to make the statement right.?
1- Distribution occurs between every pair of stages in the supply chain. Therefore, distribution includes moving of raw materials from suppliers to retailers.
2- The process of designing a distribution network that is visualized includes a decision like selling products directly to the end consumers.
3- When you want your received ordered product online to be changed by the eRetailer. This is an example of product availability.
4- When you receive an extra item as a gift from the package carrier. This is an example of product variety.
5- It is said in the relationship between response time and number of facilities that to be more responsive to customers, there is a need to limit the number of facilities.
6- In the relationship between response time and number of facilities, if customer is willing to wait longer than normal delivery days to get a book, then less number of facilities is an ideal distribution network design.
7- In the relationship between number of facilities and inventory costs, if inventory costs are increasing, this means that the number of facilities are decreasing.
8- In the relationship between number of facilities and transportation costs, there is decrease in the total transportation cost if number of facilities are increased and inbound lot sizes are very small to a point of losing economies of scale in inbound transportation.
9- In the relationship between number of facitlities and facility costs, to achieve supply chain effeciency in facility in terms of cost, there should be more number of facilities to get closer to the end customers.
10 In the variation of logistics cost and response time with number of facilities, the total logistics cost can be decreased and/or increased. The total logistics cost is increased when the response time is faster and the number of facilities are increased beyond the point of a minimized total logistics costs.
1- Distribution occurs between every pair of stages in the supply chain. Therefore, distribution includes moving of raw materials from suppliers to retailers.
2- The process of designing a distribution network that is visualized includes a decision like selling products directly to the end consumers.
3- When you want your received ordered product online to be changed by the eRetailer. This is an example of product availability.
4- When you receive an extra item as a gift from the package carrier. This is an example of product variety.
5- It is said in the relationship between response time and number of facilities that to be more responsive to customers, there is a need to limit the number of facilities.
6- In the relationship between response time and number of facilities, if customer is willing to wait longer than normal delivery days to get a book, then less number of facilities is an ideal distribution network design.
7- In the relationship between number of facilities and inventory costs, if inventory costs are increasing, this means that the number of facilities are decreasing.
8- In the relationship between number of facilities and transportation costs, there is decrease in the total transportation cost if number of facilities are increased and inbound lot sizes are very small to a point of losing economies of scale in inbound transportation.
9- In the relationship between number of facitlities and facility costs, to achieve supply chain effeciency in facility in terms of cost, there should be more number of facilities to get closer to the end customers.
10 In the variation of logistics cost and response time with number of facilities, the total logistics cost can be decreased and/or increased. The total logistics cost is increased when the response time is faster and the number of facilities are increased beyond the point of a minimized total logistics costs.
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Name two common fuel gases that can be used for oxyfuel cutting
When using the superposition theorem, each ideal voltage and current source must be replaced by an open circuit.
true
false
since an autotransformer can be designed with only one winding, less copper can be used and costs may be lower than for an equivalent two-winding transformer. T/F
If gear X turns clockwise at constant speed of 20 rpm. How does gear y turns?
Answer:
Gear Y would turn Counter-Clockwise do to the opposite force created from gear X.
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