If you rotate a sample with two strain gauges attached to it by 90 degrees and apply a point load, you should expect to see a change in the readings on the strain gauges. When a load is applied to a material, it will cause the material to deform, which can be measured using strain gauges. In this case, the rotation of the sample would change the orientation of the strain gauges relative to the applied load, which would affect the readings.
A strain gauge is a device that is used to measure the strain or deformation of a material. It consists of a thin strip of conductive material, such as a metallic foil, which is attached to the surface of the material. When the material is subjected to a load, the strain gauge will experience a change in electrical resistance, which can be measured using a meter or other device. This change in resistance is proportional to the strain on the material, and can be used to calculate the amount of deformation that has occurred. Strain gauges are commonly used in engineering and materials science to measure the response of materials to different loads and conditions.
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gallium melts just above room temperature and is liquid over a very wide temperature range , which means it would be a suitable fluid for a high-temperature barometer. given its density, , what would be the height of the column if gallium is used as the barometer fluid and the external pressure is ?
Height = (101.3 kPa x 5.904 g/cm3) / (9.81 m/s2) = 617.5 cm for a gallium barometer column with an external pressure of 1 atmosphere (101.3 kPa).
What does pressure mean?
Pressure is a measure of force delivered per unit area perpendicular to an object's surface. Its identifier is "p." Pressure should be written with a lowercase p, according to IUPAC. But P is frequently written in uppercase. Using P vs p is dependent on the area in which one works, the proximity of other symbols representing quantities like power and velocity, and writing style. Scalar quantity is pressure. It links the normal force operating on the vector somewhere other (a vector parallel to the surface).
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g in a channel of distribution, what is power? what determines who gets power? list and discuss the five bases of power discussed by french and raven. how can each be used in a channel setting
These five sources of authority were named as coercive, rewarding, legitimate, referent, and expert.
French and Raven (1959) proposed five power dynamics (or bases of power): referent, expert, legitimate, reward, and coercive. Coercive power, expert power, legitimate power, referent power, and reward power are the five types of power that can be seen in organizational behavior. The authority that stems from an organization and gives the leader the ability to exercise power are the bases of power. Power originates from five different system: referent, expert, legitimate, coercive, and reward. Each partnership has its own unique power dynamics at any given time. Because each party has enough negotiating power to ensure mutually beneficial outcomes, mutually dependent relationships frequently produce exceptional value addition.
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A programmer is creating an application that needs to store a value indicating if the user is logged in or not. Which of the following would be the BEST data type to accomplish this?
Pilihan jawaban
Integer
Ploat
Boolean
String
The best data type for a programmer who is creating an application that needs to store a value indicating if the user is logged in or not is Boolean.
Thus, the correct option is option D.
What is a Boolean?A boolean, also known as a bool, is a data type in computer science with the two possible values of true or false. All contemporary digital computers use the algebraic and logical systems developed by the English mathematician and logician George Boole, who is honored by the name of the machine.
The AND, OR, NOT, NOR, NOR, NAND, and XOR operators are examples of boolean operators. In programming, search engines, algorithms, and formulas, these operators are combined with conditional statements.
The example chart that follows explains each of the various Boolean situations in more detail, further aiding in the understanding of the Boolean operations.
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two transformers rated at 100 kva each are connected in an open-delta connection. what is the total output power that can be supplied by this bank?
The total output power that can be supplied by this bank is 75 kVA.
How to find the total output power that can be supplied by this bank?To find the total output power of an open-delta connection, you need to use the formula P = (3/4) * kVA * PF, where P is the power in watts, kVA is the transformer rating in kilovolt-amperes, and PF is the power factor. In your case, if each transformer has a rating of 100 kVA and a power factor of 1 (which is typical for a transformer), then the total power output of the open-delta connection would be (3/4) * 100 kVA * 1 = 75 kVA.
It's worth noting that the open-delta connection is not commonly used in practice, because it provides less capacity and less fault protection than other connection methods. The three-phase delta and wye connections are more commonly used, because they provide more capacity and better fault protection.
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Modify this program so that it writes the values in two columns, like this: 32.00 67.50 35.00 115.00 100.00 Total: 54.00 29.00 80.00 44.50 65.00 622.00 Complete the following file:
To Modify this program so that it writes the values in two columns, check the code given below.
What is program?A computer language of some sort is used when writing programs. The source program is the language statements that you use. A language compiler is then used to compile the source code, producing what is known as an object program (not to be confused with object-oriented programming).
Object program has a number of synonyms, such as object module and compiled program. The machine language, or string of 0s and 1s, that the logic processor uses is contained in the object program.
import java.io.File;
import java.io.FileNotFoundException;
import java.io.PrintWriter;
import java.util.Scanner;
/**
* This program reads a file with numbers, and writes the numbers to another
* file, lined up in two columns, and followed by the total.
*/
public class Total {
public static void main(String[] args) throws FileNotFoundException {
// Prompt for the input and output file names
Scanner console = new Scanner(System.in);
System.out.print("Input file: ");
String inputFileName = console.next();
System.out.print("Output file: ");
String outputFileName = console.next();
// Construct the Scanner and PrintWriter objects for reading and writing
File inputFile = new File(inputFileName);
Scanner in = new Scanner(inputFile);
PrintWriter out = new PrintWriter(outputFileName);
// Read the input and write the output
double total = 0;
int count = 1;
while (in.hasNextDouble()) {
double value = in.nextDouble();
if(count%2==1)
out.printf("%15.2f\t", value);
else
out.printf("%15.2f\n", value);
++count;
total = total + value;
}
if(count%2==0)
out.printf("\n");
out.printf("Total: %8.2f%n", total);
in.close();
out.close();
}
}
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9.37 the force per unit length/that is exerted by the wind on the 24 ft tall sail as a function of it height z is given by
The force between two parallel currents I1 and I2 that are spaced apart by r is measured as the ratio F/l.
If the currents are flowing in the same direction, the force is attracting; if not, it is repulsive. The pinch effect in electric arcs and other plasmas is caused by this force. The basic concept of the ampère derives from this force between two current-carrying wires: The strain on each wire is 2 x 10- 7 N/m if two long parallel wires spaced 1 m apart carry a current of 1 A each. The International System of Units' (Symbol: N) unit of force is the newton (SI).
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at what distance r from the center of a tube of radius r0 does the average velocity occur in a laminar flow?
In a laminar flow, the average velocity of 0.707r0 occurs at a distance r from the center of a tube with radius r0.
What is the ratio of a fluid's maximum velocity to its average velocity in a pipe?The maximum velocity for a fully developed laminar viscous flow through a circular pipe is double the average velocity. The maximum velocity for fully developed laminar flow through parallel plates is equal to (3/2) times the average velocity.
What are the two average velocity formulas?Because displacement is always less than or equal to the distance traveled, average velocity is always either less than or equal to average speed.
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value engineering (ve) and value analysis (va) use the same methods, but va is performed in the design stage and ve is performed in the redesign stage.
The statement is false. Value engineering is a technique that is frequently used before a product is manufactured; value analysis is a technique that is used to analyse an existing product.
What is value engineering ?Value engineering is an organised effort aimed at analysing designed building features, systems, equipment, and material selections in order to achieve essential functions at the lowest life cycle cost while maintaining required performance, quality, reliability, and safety.While value engineering occurs earlier in the process to prevent value loss, value analysis occurs later and may be used to correct product deficiencies. Value engineering is typically used to aid manufacturing, whereas value analysis is more commonly used in the business or sales department.The process of designing a product to maximise the value received by the customer is known as value engineering. This is a careful activity that involves balancing the functions of a product with its financial considerations.To learn more about value engineering refer :
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Steam at 1 MPa and 300 0C i contained in a rigid veel and i cooled to 100 0C. The quality of the mixture at the end of the proce i?
The thermal reduction of volatilizable metals like magnesium and calcium is accomplished using an upgraded retort assembly.
A high vacuum is maintained in the retort during this process, but because the retort must be heated to extremely high temperatures while also cooling the unloading end to condense the metal vapors, maintaining the vacuum is frequently challenging due to the thermal stresses involved. The retort cover, which creates the vacuum seal, encloses the extended condenser sleeve in this apparatus. Thus, the extreme thermal stresses present in earlier designs as well as the degradation of the sealing gasket brought on by the high temperatures are avoided because the seal is cooled by the fluid in the condenser sleeve.
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Which of the following are true regarding SNMP? (Select two.)
a. SNMPv2 requires authentication for the SNMP manager and agents to communicate with each other.
b. SNMPv2 implements encryption to obscure data during transmission.
c. SNMPv3 employs the encryption of packets to prevent unauthorized sources from snooping.
d. SNMPv2 implements message integrity verification to ensure that an SNMP packet has not been modified during transit.
d. SNMPv2c can be compromised because the community string for authentication is sent in clear text.
The encryption of packets is a technique used by SNMPv3 to stop eavesdropping by unauthorized sources. To obfuscate data during transmission, SNMPv2 employs encryption.
What purposes does SNMP serve?A networking protocol called Simple Network Management Protocol (SNMP) is used in Internet Protocol networks to manage and keep track of network-connected devices.An Internet Standard protocol called Simple Network Management Protocol is used to gather, organize, and modify data about managed devices over IP networks in order to alter device behavior.Effective switch management still frequently incorporates SNMP monitoring, which is still extensively supported. Additionally, SNMP alternatives might not be available for devices like UPSes, PDUs, printers, and IP cameras.To learn more about Simple Network Management Protocol refer to:
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The following tabulated data were gathered from a series of Charpy impact tests on a tempered 4340 steel alloy. Temperature (°C) 0 25 50 75 100 113 125 150 175 200 Impact Energy (J) 105 104 103 97 63 40 34 28 25 24 (a) Plot the data as impact energy versus temperature. (Hint: use engineering paper for the graph) (b) Determine a ductile-to-brittle transition temperature as the temperature corresponding to the average of the maximum and minimum impact energies. (c) Determine a ductile-to-brittle transition temperature as the temperature at which the impact energy is 50J
The temperature corresponding to the average of the maximum and minimum impact energies is 65 J for the ductile-to-brittle transition temperature.
What causes ductile to brittle transition?Some metals that are ductile at room temperature become brittle at low temperatures. This is referred to as a ductile-to-brittle transition. The ductile to brittle transition temperature is strongly influenced by the metal's composition. Steel is the most common metal that exhibits this behaviour.Brittle materials fracture with little elastic deformation and no significant plastic deformation when subjected to stress.Ductility is a mechanical property that is commonly defined as a material's ability to draw. In materials science, ductility is defined as a material's ability to withstand plastic deformation under tensile stress before failing.Average = 124J + 6J divided by 2 = 65J
According to this criterion, the ductile-to-brittle transition temperature is around -105°C, as indicated on the plot by one set of dashed lines.
A ductile to brittle transition temperature is defined as the temperature at which the impact energy is 80J. Also, as shown by the other set of dashed lines on the plot, the ductile-to-brittle transition temperature for an impact energy of 80 J is around -95°C.
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match the following plumbing terms with the corresponding definitions. each term will be used only once and there will be several terms that will not be used. branch vent that serves two or more traps and that extends from the downstream side of the highest fixture connection of a horizontal branch to the vent stack answer 1 circuit vent receiver or pit that receives liquid waste, storm water, and/or groundwater located below the elevation of a gravity drainage system answer 2 choose... the removal of suspended matter and bacteria from water to improve its overall quality answer 3 choose... removal of suspended matter by settling out the matter from water by precipitation answer 4 choose... section of soil or waste stack corresponding to one story in height answer 5 choose...
Branch vent that serves two or more traps and that extends from the downstream side of the highest fixture connection of a horizontal branch to the vent stack.
Ans 1) Circuit vent receiver or pit that receives liquid waste, storm water, and/or groundwater located below the elevation of a gravity drainage system.
What is drainage system?A drainage system consists of pipes that transport rainwater, sewage, or other liquid waste to a point of disposal, such as a septic tank or the sewer system. Its main goals are to gather and remove wastewater and prevent sewer gases from entering the building. Unlike the piping that transports water into a structure, drainage system piping is typically made of metal or plastic. line connects to a septic tank or public sewer on the property.
Each plumbing fixture is supplied with clean, fresh water via a pipe from the street or another water source, such as a well. Each fixture has a drain line that collects used water and waste; this material then flows gravitationally to the main drain system.
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1. (4 pts) where and how would a stress concentration occur? make drawing to illustrate some cases. 2. (4 pts) how stress concentration factor is generally defined? what are the variations? 3. (2 pts) why are the effects of stress concentrations less significant for static loading of ductile materials?
A point in the part's design where stress is significantly higher than in the surrounding area is referred to as a stress concentration.
How would a stress concentration occur?A point in the part's design where stress is significantly higher than in the surrounding area is referred to as a stress concentration. The most frequent source of stress concentrations in a part is an abrupt change in its geometry, which typically occurs around sharp corners, holes, notches, or grooves.
How stress concentration factor is defined ?The ratio of the maximum stress to the nominal or reference stress, known as the "stress concentration factor," or Kt, quantifies the amount of stress present in a component. In order to reduce stress concentration in machine parts, a smooth path for stress to flow through the component is typically provided. There are a number of ways to accomplish this, such as by reducing sharp corners and adding relief notches.
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in-order superscalar processors behave similarly to architectures because they must fetch, decode and execute instructions in lock step, similar to defining a larger instruction composed of multiple small instructions.
A superscalar processor can execute more than one instruction during a clock cycle in contrast to a scalar processor, which can only carry out one instruction at a time.
A superscalar processor is a CPU that uses instruction-level parallelism, a type of parallelism, on a single processor. A superscalar processor can execute more than one instruction during a clock cycle in contrast to a scalar processor, which can only carry out one instruction at a time. This is accomplished by simultaneously dispatching numerous instructions to various execution units inside the processor. As a result, it enables higher throughput than would otherwise be possible at a specific clock rate (the number of instructions that can be executed in a unit of time). Each execution unit is an execution resource within a single CPU, such as an arithmetic logic unit, rather than a separate processor (or a core if the processor is a multi-core processor).
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g what happens to power production if a wind turbine hub height is increased from 100 m to 150 m elevation?
Taller towers allow turbines to catch more energy and produce more electricity since wind speed rises with height.
Does altitude affect wind power?When the wind speed at the surface is insufficient to drive a conventional turbine, wind power can be accessible higher up. At higher altitudes, the wind blows steadier, reducing erraticness. Wind speed has a cubic effect on power. Going a bit higher could therefore result in a lot more power.They discovered that winds have the highest wind power density at altitudes around 32,000 feet by analysing the distribution of wind power in the atmosphere, by location, and over time.With the initial tests being conducted roughly 12 years ago, high altitude (500 to 2000 m) wind power generators are still in a relatively early stage of development.Average surface wind speeds are significantly below the 5 m/s needed for traditional ground-based wind turbines to function over the majority of Earth's land area. Therefore, conventional wind turbines can only be installed in specific locations where strong, consistent surface winds blow on a regular basis.To learn more about wind power refer :
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if u(t) is a periodic signal with fundamental period t and fourier series coefficients ck u(t) ca nbe represented as write the fourier series coefficient of the signal
[tex]2\cos\left({\frac{{2\pi }}{T}K{t_0}}\right)X\left[ K \right][/tex] is the Fourier series coefficient of the signal. A Fourier series is a collection of sinusoidal functions with harmonic relationships, commonly referred to as components or harmonics.
What is Fourier series ?A Fourier series is a collection of sinusoidal functions with harmonic relationships, commonly referred to as components or harmonics.
A periodic function is the end result of the summation, and its functional form depends on the choices made regarding the cycle length, the quantity of components, and the amplitudes and phase parameters of those components.
We can use a combination of sines and cosines to model any periodic signal using the Fourier Series.
x(t-to) will also have time period T.
Let Fourier series coefficient of x(t - to) be x1(k)
X₁ [k] = [tex]\frac{1}{T}\mathop \smallint \limits_T x\left({t {t_0}} \right){e^{- jk{\omega_o}t}}dt[/tex]
[tex]= \frac{{{e^{ - je\omega {t_0}}}}} {T}\mathop \smallint \nolimits^ x\left( \right){e^{- jk{\omega_0}t }}dt[/tex]
Taking t - to = T, we get:
[tex]= {e^{-{\rm{jk\omega }}{{\rm{t}}_0}}}X\left[ k \right][/tex]
Now, if the Fourier series coefficient of x(t + to) be X2 [k], we can write:
[tex]{X_2}\left[ k \right] = {e^{jk\omega {t_0}}}X\left[ k \right][/tex]
Now X1 [k] + X2 [k]
[tex]= \left( {{e^{- jk\omega {t_0}}} + {e^{- jk\omega (t_0}}}} \right)X\left[ k \right][/tex]
[tex]= 2\cos k\omega {t_0}x\left[ k \right][/tex]
[tex]= 2\cos\left({\frac{{2\pi }}{T}k{t_0}} \right)X\left[ k \right][/tex]
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a honeypot is configured to entice attackers and allows administrators to get information about the attack techniques being used.True or False
A honeypot is configured to entice attackers and allows administrators to get information about the attack techniques being used is true.
What is a honeypot?To inflict harm so that security administrators may research the methods and intrusion entry points, hackers can easily target a honeypot. A security technique known as a honeypot is used to deter intruders from using legitimate network resources while monitoring their activity.
A security measure known as a honeypot sets up a virtual trap to entice intruders. Attackers can take advantage of flaws in a computer system that has been purposefully compromised, allowing you to research them and strengthen your security measures.
A honeypot is a safe, controlled environment used to study various threats and demonstrate how attackers operate. With a honeypot, security personnel may concentrate entirely on the threat without being diverted by actual network activity. Internal dangers can also be detected via honeypots.
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g (a) what is the voltage output of a transformer used for rechargeable flashlight batteries if its primary has 515 turns, its secondary has 8 turns, and the input voltage is 114 v? v (b) what input current is required to produce a 4.00 a output? ma (c) what is the power input? w
For the given data voltage output is 2.06v,input current to get 4 A output is 0.07A and power output is 14.25j.
From equation (1) we get,
Vs=125×8/485=2.06V
Therefore the output voltage of the transformer is 2.06 V
(b)
From equation (2) we get
Ip=4×8/485=0.07A
Therefore to get an output current of 4 A, the input current should be 0.07 A.
c)
p=E/t
=114/8
power output =14.25j
The voltage that a device, like a generator or a voltage regulator, releases into the air is known as the output voltage. A constant voltage is maintained by voltage regulators. Electricity is produced by spinning turbines that interact with magnets when they are powered by a fuel source, such as sunlight, coal, or nuclear energy.
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Determine the drag coefficient by fitting a polynomial to velocity- force data The magnitude of the aerodynamic drag force F, on a moving automobile can be modeled by the equation: F = 1 AC where p is the density of the surrounding air, A is the reference area of the automobile, and is a dimensionless constant called the drag coefficient. For a fixed car and air density, the equation can be simplified to Fa= where y acts as an effective drag coefficient with units of Force/Velocity? In this problem, you will estimate the effective drag coefficient by fitting a polynomial to drag force data. The data file, VelocityDragDataba, contains multiple force measurements (second column) taken at speeds from 15 to 150 km/h at increments of 5 kmh (first column). Code has been provided to load the data into a matrix dragpata. Velocity Force 15 5.795754 15 6.027559 15 6.040762 15 6.218395 15 6.553317 20 10.13281 20 10.73376 20 10.91766 20 11.06578 20 11.18402 25 17.02669 25 17.04141 25 17.37333 25 17.7684 25 18.65124 30 23.92056 30 23.96381 30 24.41368 30 24.64035 30 24.74886 Complete the steps below to estimate y by fitting a polynomial to the data using the polyfit function 1. Create a column vector v corresponding to the velocity 2. Create a column vector x corresponding to the Velocity values squared 3. Create a column vector y corresponding to the force 4. Plot x on the x-axis and y on the y-axis 5. Add a title to the graph (Force vs. Velocity 6. Add a lable to the z axis [Velocity (km/h) 7. Add a label to the y-axis (Drag Force (N) Script Save Reset DE MATLAB Documentation 1 dragData = load ('VehicleDragoata.txt'); X Load the data 2 V = % Get x from the first column on dragData (use :) X=% xis v squared (remember how to write power for matrix) 4 y = ; % Get y from the second column on dragForce (use :) 5 6 X Plot x on the X-axis and y on the y-axis 7 % Add title to the graph: Force vs. Velocity Add label to the X-axex: Velocity (km/h) 5 % Add label to the y-axis: Drag Force (N) 10 ► Run Script > Submit Assessment: Is v correct? is x correct? Is y correct?
Drag factor It is discovered that FD is inversely correlated with square of the object's speed. F D ∝ v 2 F D = 1 2 C ρ A v 2 , where A is the area of the object facing the fluid, C is the drag coefficient, and is the fluid's density.
The size of the drag force FD is discovered to be proportional to the square of the speed of the object for the majority of large things, such as bicycles, cars, and baseballs, when they are not travelling too slowly. This relationship can be expressed mathematically as F D v 2.
This connection changes to F D = 1 2 C A v 2 when other parameters are taken into consideration, where C is the drag coefficient, A is the area of the object confronting the fluid, and is the fluid's density. (Remember that mass per unit volume equals density.) In a more generalized form, this equation can be written as FD = bv2, where b is a constant equal to 0.5CA. For these, we've set the exponent n.
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Answer the following with a yes or no along with proper justification. a. Is the decision boundary of voted perceptron linear? b. Is the decision boundary of averaged perceptron linear?
There are nonlinear bounds for the perceptron that was voted on. The area of a problem space where a classifier's output label is ambiguous is known as a decision boundary.
The classification issue is linear and the classes are separable linearly if the decision surface is a hyperplane. Decision lines aren't always obvious. A linear model is not a decision stump. Even if the model is not linear, the decision boundary can still be a line. Consider logistic regression. It was initially proposed at a time when academics had a firm belief that mathematical models could be used to resolve issues with production planning for a period of time like a year.
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The two main types of disc brake calipers are:
a. fixed and free
b. fixed and sliding.
c. free and sliding.
d. fixed and broken
Answer: b fixed and sliding
Explanation:
ignition timing determines when the spark occurs in the combustion chamber relative to crank shaft position?
The quality of the spark plugs, engine temperature, and intake pressure are only a few examples of the variables that might affect an engine's ignition timing.
What is the function of a crank shaft?In a piston engine, a crankshaft is a mechanical part that transforms the reciprocating motion into rotational motion. The connecting rods and pistons drive the crankshaft, which is a rotating shaft with one or more crankpins.Cast iron or forged steel is used to make crankshafts. Most crankshafts for high-volume, low-load production cars are made of the strong nodular cast iron material.The crankshaft, which is housed inside the engine block and can rotate inside the block, is held in place by main bearings. Connecting rods transmit the up-and-down action of each piston to the crankshaft. To smooth the power delivery and lessen vibration, a flywheel is frequently affixed to one end of the crankshaft.To learn more about crank shaft refer :
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suppose a liquid level from 5.5 to 8.6 m is linearly converted to pneumatic pressure from 3 to 15 psi. what pressure will result from a level of 7.2 m? what level does a pressure of 4.7 psi represent? (linear transfer function, 4 pts)
Pressure will result from a level of h= 7.2m then P = 9.58 psi and P=4.7 psi for h=5.94 m.
The pressure Pon a static liquid level h is
P= p₀ + ρ*g*h
p₀ is the initial pressure , ρ=density , g is the gravity
ΔP= ρ*g*Δh → ΔP/Δh
= density *gravity = ( 15 psi - 3 psi) /( 8.6 m - 5.5 m)
= 12/3.1 psi/m
P = P₁ + ΔP/Δh*(h -h₁)
P₁ = 3 & h₁= 5.5 m when height is 7.2 m
P = 3 psi + 12/3.1 psi/m *(7.2 m -5.5 m) = 9.58 psi
P = 9.58 when height is 7.2 m
P=4.7 psi
4.7 psi = 3 psi + 12/3.1 psi/m *(h -5.5 m)
h = (4.7 psi - 3 psi)/ (12/3.1 psi/m) + 5.5 m = 5.94 m
then P=4.7 psi for h=5.94 m.
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a cantilever beam having a channel cross section is loaded as shown. a-find state of stress for point d. b-find principal stresses, maximum in-plane shear stress and their orientation.
Answers: a: Ox = - 20.6 MPa 25 kN Txy = 17.6 MPa 60 mm 20 mm b: 3 Al 0 = 10.1 MPa min max τ max = - 30.7 MPa = 20.4 MPa - 29.8° CW D X 60 mm 50 mm 110 mm P = + 15.2° CCW B 10 mm HHH 120 mm 10 mm
A) state of stress for point d = 17.65 MPa
B) Principal stresses ⇒ Maximum stress = 30.4 MPa, Minimum stress = 10.1 MPa
Maximum in-plane shear stress = 20.4MPa
Orientation ⇒ ∅(C.W) = 29.8°, ∅(C.C.W) = 15.2°
What is principal stress?We can define principal stress as the development of normal and shear stresses upon the application of any load to a body. Since all three planes—X, Y, and Z—are perpendicular to that point, the applied loading was concentrated there. Principal stress is the name given to the stress that results on these planes.
The purpose of determining whether a principal stress is sustainable is to determine the maximum force that can be placed on a body while still being safe. Resultant principal stress is defined as any normal stress that is centered at a point on a plane. We always take the design stress into account when designing any structure. Therefore, we need to know the maximum or minimum stress, which is the sustainability of the principal stresses, in order to design the structure.
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which one of the following casting does not use sand and binder as the mold material: (a) shell casting, (b) die casting, (c) investment casting, or (d) sand casting?
The castings that does not use sand and binder as the mold material are: (c) investment casting, (e) sand casting, (f) shell molding, and (h) vacuum molding.
What is mold?Manufacturing by forming liquid or malleable raw material using a rigid frame known as a mold or matrix is known as molding (American English) or moulding (British and Commonwealth English; see spelling differences). This might have been made using a pattern or model of the finished product.
A mold is a hollowed-out block that is filled with liquid or malleable raw materials like plastic, glass, metal, or ceramic.
The liquid solidifies or sets inside the mold, taking on its shape. A mold is a cast's opposite. Two molds—one for each half of the object—are used in the widely used bi-valve molding procedure.
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c. calculate the instantaneous decay and neutron absorption rates for 239u nuclei and determine their fraction of the combined loss rate.
The probability of decay per unit time is known as a radioactive nuclide's decay constant (symbol: and units: s1 or a1). Therefore, as dP/P dt =, the number of parent nuclides P declines with time t.
How do you explain the radioactivity decay ?The process through which an unstable atomic nucleus loses energy through radiation is known as radioactive decay, also known as nuclear decay, radioactivity, radioactive disintegration, or nuclear disintegration. A substance that has unstable nuclei is regarded as radioactive. Alpha decay, beta decay, and gamma decay are three of the most frequent kinds of decay, and they all entail the emission of one or more particles. Beta decay is a result of the weak force, whereas the nuclear force and electromagnetism are in charge of the other two mechanisms. Electron capture, which occurs when an unstable nucleus seizes an inner electron from one of the electron shells, is the fourth common type of decay.Learn more about radioactivity decay refer to :
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dr. muldoon has been asked to conduct a transfer evaluation. what is the purpose of this type of evaluation?
The procedure by which a candidate for placement in a state treatment facility is assessed to determine whether admittance to that facility is appropriate is known as a transfer evaluation.
What is evaluation of transfer?When a person is being considered for placement in a state treatment facility, they must first undergo a transfer evaluation by a community-based public receiving facility, or by a community mental health centre or clinic if the public receiving facility is not one. This process must be approved by the department's appropriate district office.The term treatment facility refers to any state-owned, state-operated, or state-supported hospital, centre, or clinic designated by the department for additional hospitalisation and treatment of people with mental illnesses beyond what is offered by a receiving facility. This definition includes facilities operated by the US government as well as any private facility the department designates when providing such services to a person in accordance with the provisions of this part.To learn more about Health care facility refer :
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identify the defensive security measure that would best address each of the situations listed below.
Detective controls are intended to identify a threat event as it is happening and to aid in inquiries and audits after the event has taken place.
to prevent the use of spyware. To defend against keyloggers, which record keystrokes with the intention of stealing data, keyboard encryption software is utilized. In order to trick the receiving computer system into believing the packet is coming from a reliable source, such as another computer on a legitimate network, and accepting it, an IP spoofing attack uses tools to change the source address in the packet header. It outlines appropriate ways to use the company's information resources and computing hardware, such as desktop and laptop computers, wireless devices, phones, and the Internet, as well as the penalties for breaking the rules.
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concrete can take up to ~30 mpa of compressive stress. the density of concrete is about 2.4 g/cc. what is the height limit of a vertical concrete pillar, without fail on its own weight?
The maximum height shall not exceed 4 meters, while the minimum height for buildings without air conditioning is 2.75 meters.
For typical constructions, the minimum distance between columns is 2.5 meters and the maximum span is 7.5 meters. How does the cost of the construction change as the space between columns increases? The cost of the structure rises when the distance between reinforced concrete columns is increased. Most people consider L/r ratios up to 16 for columns' height to be acceptable, but in a rare instance, I once saw a structural consultant's design that had L/r ratios up to 22. L stands for free standing height. "r" refers to the column's breadth, which is its smallest lateral dimension.
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an architectural element that projects from a wall to support a horizontal part of a building such as beams or eaves of a roof is called:
An architectural element that projects from a wall to support a horizontal part of a building such as beams or eaves of a roof is called: Bracket.
A soffit is a horizontal, elevated aspect of any construction element that can be seen on the interior or exterior of a building. The underside of eaves (used to join a retaining wall to projecting edge(s) of the roof) is its classic form, occasionally integrating or implying the projection of beams. The bracket that gives support underneath a structure like a roof, ceiling, window, beam, or shelf is known in architecture as a corbel. In addition, a block or other system that protrudes from a building's wall is referred to as a corbel.
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