Answer:
D. the service technician
Explanation:
hope it's help
Answer:
c) the owner
Explanation:
this is because when there is no owner there is no manager
you are designing a complete mix lagoon system to treat waste containing a non-conservative pollutant. The waste stream has a flow rate of 3,500 L/d and pollutant concentration of 20.0 mg/L. The pollutant decyas with a reaction rate coefficient of 0.50/ day.
Answer:
hgyvivihoy if he ogzrs go figure do it idydu
A rotor has been refinished on and off-car brake lathe, you should do all the following except
Inspect the rotor for damage, check thickness, clean, install properly, and torque lug nuts.
Defien torque.
Torque is a measure of the twisting force that causes an object to rotate around an axis or pivot point. It is often expressed in units of pound-feet (lb-ft) or Newton-meters (N-m). Torque is important in many mechanical applications, including automotive engineering, as it determines the ability of a vehicle's engine to generate power and move the vehicle forward. In the context of automotive engineering, torque is the force that is applied to the wheels to turn them and move the vehicle.
If a rotor has been refinished on and off-car brake lathe, here are some things you should do:
1. Inspect the rotor for any visible damage or defects, such as cracks, warping, or excessive wear.
2. Check the thickness of the rotor to ensure that it is still within the manufacturer's specifications.
3. Clean the rotor with brake cleaner to remove any debris or contaminants.
4. Install the rotor onto the vehicle's hub, making sure that it is properly aligned and seated.
5. Torque the lug nuts to the manufacturer's specifications.
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Rafe is transportation engineer working on a light rai, system. Who are the other two
specialized civil engineers Rafe is LIKELY working with?
(1 point)
O a coastal engineer and a water resources engineer
O a construction engineer and an urban engineer
O an air quality engineer and a civil engineer
a transportation engineer and a conservation engineer
The two specialized civil engineers Rafe is LIKELY working with are B. a construction engineer and an urban engineer
How to explain the informationBased on the context of Rafe working on a light rail system, the other two specialized civil engineers he is likely working with would be:
A construction engineer: This engineer would be responsible for overseeing the construction activities related to the light rail system, ensuring that the design plans are implemented correctly and managing the construction process.
An urban engineer: This engineer specializes in urban planning and design, focusing on the development and integration of transportation systems within urban environments. They would work closely with Rafe to ensure that the light rail system aligns with the city's overall urban planning goals and effectively integrates with existing infrastructure.
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Cody’s car accelerates from 0m/s to 45 m/s northward in 15 seconds. What is the acceleration of the car

Answer:
3 m/s²
Explanation:
Acceleration is calculated as :
a= Δv/ t
where ;
Δv = change in velocity
Δv = 45 - 0 = 45 m/s
t= 15 s
a= 45 /15
a= 3 m/s²
1. A 100kVA, 5000/200V transformer is tested. The data is provided below. (100 pts) Open Circuit VOC=200V, IOC=5A, POC=120W Short Circuit VSC=80V, ISC=10A, PSC=400W (a) What is the high-voltage side equivalent circuit? (30 pts) (b) What is the low-voltage side equivalent circuit? (30 pts) (c) At full load condition, PF=0.6 lagging, what is the voltage regulation rate? (40 pts)
The high-voltage side equivalent circuit of the 100kVA, 5000/200V transformer can be represented as a series combination of the transformer's leakage reactance (X1) and its magnetizing reactance (Xm) in parallel with the transformer's resistance (R1).
The low-voltage side equivalent circuit of the 100kVA, 5000/200V transformer can be represented as a series combination of the transformer's leakage reactance (X2) and its resistance (R2). To determine the voltage regulation rate at full load condition with a power factor (PF) of 0.6 lagging, you can use the formula:
Voltage Regulation Rate = \(((VFL - VL) / VL) * 100\), where VFL is the full load voltage and VL is the no-load voltage.
Please note that I have provided a concise answer to your question. If you have any further inquiries or need additional information, please let me know.
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what is cloud & quantum computing
Answer:
Explanation:
Cloud computing refers to the delivery of computing services—including servers, storage, databases, networking, software, analytics, and intelligence—over the internet to offer faster innovation, flexible resources, and economies of scale.
Quantum computing is a type of computing that uses quantum-mechanical phenomena, such as superposition and entanglement, to perform operations on data. Unlike classical computers, which use bits to represent and process information, quantum computers use quantum bits, or qubits. This allows quantum computers to perform certain calculations much faster than classical computers.
Quantum computing has the potential to revolutionize many fields, including cryptography, drug discovery, and financial modeling, among others. However, the technology is still in its early stages and there are significant challenges to overcome in terms of both hardware and software development before it can be widely adopted.
a low carbon steel is heated to a temperature below the lower transformation temperature before cooling in an effort to soften it slightly. which is the heat treating process being performed?
The heat treating process being performed when a low carbon steel is heated to a temperature below the lower transformation temperature before cooling in an effort to soften it slightly is known as annealing.
Annealing is a heat treatment process that involves heating a metal to a specific temperature and holding it there for a certain amount of time before allowing it to cool down slowly. The purpose of annealing is to make a metal softer, more ductile, and more machinable. It also improves its toughness and makes it easier to form.Annealing can be done in several different ways, including full annealing, stress relief annealing, and spheroidizing annealing.
Full annealing involves heating the metal to a temperature above its upper critical temperature, holding it there for a period of time, and then allowing it to cool down slowly. Stress relief annealing involves heating the metal to a lower temperature and holding it there for a shorter period of time, while spheroidizing annealing is used to improve the machinability of high-carbon steels.
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Prove that line current is equal to phase current in induction motor using ac voltage controller fed drives
In AC voltage controller-fed drives, the line current is equal to the phase current due to the balanced nature of the three-phase system. Therefore, in AC voltage controller-fed drives, the line current is equal to the phase current in the induction motor.
In AC voltage controller-fed drives, the induction motor operates with a balanced three-phase supply. Each phase of the motor is connected to a separate output of the AC voltage controller. The voltage controller regulates the voltage supplied to each phase. In a balanced three-phase system, the line current is the current flowing through the supply lines, while the phase current is the current flowing through each motor phase. Due to the balanced nature of the three-phase system, where the voltages and impedances are equal in magnitude and phase, the line current is equal to the phase current. This is known as the principle of balanced loads in three-phase systems.
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5. According to the FMCSRs, you are qualified to operate a CMV if you:
A. are at least 15-years old.
B. have passed an IQ test.
C. have only one current CDL.
D. are currently disqualified from operating a motor vehicle.
Answer:
currently states that a person is qualified to drive a commercial motor vehicle if he/she “can read and speak the English language sufficiently to converse with the general public, to understand highway traffic signs and signals
So I think B
A part has been tested to have Sut = 530 MPa, f = 0.9, and a fully corrected Se = 210 MPa. The design requirements call for the part to be loaded at three different fully-reversed loads and cycled at each one for a set number of cycles. First, it will be loaded at ±350 MPa for 5,000 cycles. Then, it will be loaded at ±260 MPa for 50,000 cycles. Finally, it will be loaded at ±225 MPa until it fails. How many cycles do we expect the part to last at the final loading? Use Miner's method. :g
Answer:
126984 cycles
Explanation:
Given data :
Sut = 530 MPa
f = 0.9
fully corrected Se = 210 MPa
using Miner's method attached below is the detailed solution of the given problem
when loaded with ± 225 MPa the number of cycles before it fails will be
≈ 126984
A non-entrepreneurship, work-based, agricultural type of SAE, in which a student learns and gains skills in a paid or unpaid position describe which type of SAE?
Answer:
Placement.
Explanation:
SAE is an acronym for Supervised Agricultural Experience programs and it is typically a planned, practical-based program designed to help students develop competent skills and experience in their various career choice. Basically, it enhances the academic knowledge and agricultural skills acquired by the students in the classroom.
Generally, there are four (4) main types of Supervised Agricultural Experience Programs;
1. Entrepreneurship SAE.
2. Exploratory SAE.
3. Research and Experimentation SAE.
4. Placement SAE.
A non-entrepreneurship, work-based, agricultural type of Supervised Agricultural Experience program (SAE), in which a student learns and gains skills in a paid or unpaid position describe a placement.
Some examples of organizations or businesses that provide placement SAE to students includes; lawn services, veterinary clinics, soil conservation firms, livestock farms, floral shops, grain farms etc.
Answer:
Placement
Explanation:
Ue Finite difference method, and etimate the conolidation ettlement. Conider that
the applied load i contant throughout the conolidation time. To how your
numerical reult you can aume boundary condition, thickne of conolidating
layer
Partial differential equations can be roughly solved using the finite difference method (FDM). It has been applied to a variety of issues. These include time independent and dependent, linear and non-linear issues.
What do the finite element method's boundary conditions entail?The resolution of a boundary value problem requires the presence of boundary conditions (b.c.). The definition of a boundary value problem is a differential equation (or system of differential equations) that must be solved in a domain where the boundary conditions are known.
What three boundary conditions are there?Boundary conditions that have a fixed concentration, a fixed dispersive flux, and a Cauchy boundary are the most typical types (fixed total mass flux).
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1.Shortcut operators are faster than the conventional arithmetic operators.
2.You can declare more than one variable in a single line.
3.You must use else after every if statement.
what is answer?
It's important to note that this speed difference is only noticeable for large programs. For small programs, the difference is negligible.
1. Shortcut operators are faster than the conventional arithmetic operators: This statement is true. Shortcut operators are faster because they combine arithmetic operations with variable assignments in a single statement. For example, instead of writing "a = a + 2", you can write "a += 2". This saves time and reduces the amount of code you need to write. However, it's important to note that this speed difference is only noticeable for large programs or when dealing with complex calculations. For small programs, the difference is negligible.
2. You can declare more than one variable in a single line: This statement is also true. In many programming languages, you can declare and initialize multiple variables on the same line. For example, instead of writing "int a; int b; int c;", you can write "int a, b, c;". This saves space and makes your code more concise. However, it's important to note that you should only do this if the variables are related and have the same data type.
3. You must use else after every if statement: This statement is false. It's not necessary to use else after every if statement. You can use if statements on their own if you don't need to execute any code if the condition is not true. However, if you need to execute code in both cases (true and false), then you should use else. It's also important to note that you can use else if to test for additional conditions if the first if statement is not true.
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Pls help!!! will give brainly!!!
Bridge collapses have hit the news recently with more frequency. Do some research online and state two possible reasons for these collapses. How might those employed in the Health, Safety, & Environmental Management pathway help prevent these collapses and keep us safe?
Answer:
The main reason for bridges collapses is: earthquakes (natural disasters) and construction incidents. Whenever a natural disaster occur, it makes the bridge collapse. An example is hurricanes. Hurricanes come with a great wind and that might lead to the bridge collapsing. Construction incidents means the bridge falls during construction. Those who are employed in health, safety and environmental management need to make sure that during the construction, they have examined the material and made sure it is strong. Working with economists, they should seek better understanding of the methods for minimizing the costs during the life of the bridge. In case for natural disasters, like flooding, they should make the bridge in a lever where the water won't reach the bridge. And they should have a limit for weight in the bridges because that is another reason it collapses, because the bridge does not support extra weight.
Explanation:
hope this helps
A 100 n uniform ladder of length 8 m rests against a smooth vertical wall. It the coefficient of static friction between the ladder and the floor is. 4, what is the maximum angle that the ladder can make with the floor before it slips?.
The correct response is E. 39. The maximum angle that the ladder can make with the floor before it slips is 39.
solitary-pole ladders Ladders that extend (maximum length 15 metres) Ladders, Step (maximum height 6.1 metres) Given that you shouldn't be standing on the top three treads of the leaning ladder, a single-story home with a height of at least 4 meters would be suitable. You would require an extension ladder with an extension of about 7 meters for a two-story residence. The short answer is no, leaning a ladder against a gutter is not safe. "For a leaning ladder, you should secure it and have a sturdy top resting point, i.e. do not rest a ladder against weak upper surfaces." It is not a good idea to lean your ladder against a gutter as the gutter could not be strong enough to hold it.
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A 100-N uniform ladder, 8.0 m long, rests against a smooth vertical wall. The coefficient of static friction between ladder and floor is 0.40. What minimum angle can the ladder make with the floor before it slips?
A. 42
B. 22
C. 18
D. 51
E. 39
water from a reservoir passes over a dam through a turbine and discharges from a 70-cm id pipe at a point 55 m below the reservoir surface. the turbine delivers 0.80 mw. calculate the required flow rate of water in m3 /min if friction is neglected. if friction were included, would a higher or lower flow rate be required? (note: the equation you will solve in this problem has multiple roots. find a solution less than 2 m3 /s.)
The required flow rate of water can be calculated using the following formula:
Power = (Flow Rate) x (Acceleration due to Gravity) x (Height)
Here, Power = 0.80 MW, Acceleration due to Gravity = 9.81 m/s^2 and Height = 55 m.
So, Flow Rate = Power / (Acceleration due to Gravity x Height)
Substituting the given values, we get:
Flow Rate = 0.80 MW / (9.81 m/s^2 x 55 m) = 1.43 m^3/s
To convert this to m^3/min, we multiply by 60:
Flow Rate = 1.43 m^3/s x 60 = 85.8 m^3/min
If friction were included, a higher flow rate would be required because some of the energy of the water would be lost due to friction with the pipe walls, resulting in a lower overall efficiency of the system.
To calculate the required flow rate of water in m³/min, we'll use the following equation:
Power = (ρ * g * h * Q) / (60 * 1000)
Where:
Power = 0.80 MW (800 kW)
ρ = Density of water (1000 kg/m³)
g = Acceleration due to gravity (9.81 m/s²)
h = Height difference between the reservoir surface and the discharge point (55 m)
Q = Flow rate in m³/min
We need to solve for Q:
800,000 W = (1000 kg/m³ * 9.81 m/s² * 55 m * Q) / (60 * 1000)
800 = 9.81 * 55 * Q / 60
Now, we can solve for Q:
Q = (800 * 60) / (9.81 * 55)
Q ≈ 14.75 m³/min
So, the required flow rate of water is approximately 14.75 m³/min.If friction were included, a higher flow rate would be required. This is because some of the energy would be lost due to friction, resulting in a lower efficiency of the turbine. Consequently, to maintain the same power output, the flow rate must be increased to compensate for the energy loss.
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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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Question 13 3 pts Internal controls provide: Accountability Deficiency in the operations Inappropriate use of resources Addtional unwanted cost
Internal controls provide accountability. Option a is correct.
Accountability is an essential feature of internal control. Internal controls are implemented to ensure that transactions are authorized, accurate, and complete, and that assets are secured and accounted for. They promote the ethical conduct of the business and foster a culture of compliance and accountability. Internal controls help prevent deficiency in the operations.
The main purpose of implementing internal controls is to prevent, identify, and correct errors, misconduct, and fraud. Internal controls allow managers to monitor business operations and ensure that resources are being utilized efficiently and effectively.
Internal controls help prevent inappropriate use of resources. Internal controls can help businesses to ensure that their resources are being used appropriately. Internal controls can help prevent employee fraud, misuse of company assets, and other forms of financial abuse. Internal controls help prevent additional unwanted costs.
Therefore, a is correct.
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Which XXX outputs the following? You have 3 Pencils. Total Price: 60 #include #include typedef struct Data_struct { int itemCount; double price; char name[20]; } Data; Data myData; void updateltemCount(int x) { myData.itemCount = x; } void updateltemPrice(double p) { myData.price = p; } void updateltemName(char n[20]) { strcpy(myData.name,n); }
double totalPrice() { XXX } int main(void) { int number = 3; double price = 20.0; char name[] = "Pencil"; double total; updateltemCount(number); updateltemPrice(price); updateltemName(name); total = totalPrice(); printf("You have %d %ss.", number, name); printf("Total Price: %.Of", total); return 0; } O return itemCount * price; return myData.itemCount * myData.price; 0 return price * number; total = myData.itemCount * myData.price;
The XXX output of the following coding is return myData.itemCount * myData.price;. The correct option is B.
What is the output?The output, which might take the form of text on a screen, printed materials, or sound coming from a speaker, is how the computer displays the outcomes of the operation.
totalPrice() function returns a double value.
So, XXX should be a return statement.
We can access itemCount of myData using
myData.itemCount
We can access pri
ce of myData using
myData.price
So, the return statement should be
return myData.itemCount * myData.price;
Therefore, the correct option is B. return myData.itemCount * myData.price;.
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A plant might be emitting some dangerous pollutants that are environmentally harmful, but completely eliminating them would be so expensive that the plant would have to close, throwing many local inhabitants out of work. Assuming there is an obligation both to preserve jobs and to protect the environment. What is the best technique that should be used to resolve this problem?
Select one:
a. The convergence and divergence techniques
b. The Utilitarian approach
c. The creative middle way
d. The line drawing technique
Answer: c. The creative middle way
Explanation:
As there is both an obligation to preserve jobs and to protect the environment, a creative middle way which involves compromise would be most effective.
The company involved should process and remove the worst pollutants alone while leaving others so that the process will not be so expensive that they have to close down.
They will do this till a better and more environmentally beneficial solution can be found at which point they can then clean up the previous pollutants with the hope that they have not irrecoverably damaged the environment.
A circular tube AB is fixed at one end and free at the other end. The tube is subjected to concentrated torques as shown in the figure. If the outer radius of the tube is 1.5in. and the thickness is 3/4in. , calculate the strain energy stored in the tube. Let G = 11800ksi.
In Female, the twenty-third pair of chromosomes is called in in
Identify the prefixes used in the International System of
Units (SI)
Meaning
Prefix
Meaning
Prefix
1/1,000,000
1,000,000
1/1,000
1,000
1/100
100
1/10
10
nce
Answer:
i need points 425677
Explanation:
yurrrrrr awnser C
Imagine I have a direct mapped cache with 256 bytes per block, 16 sets, and 20 bit addresses. The cache is initialized in the following manner: 1 Set Valid Tag Oxa4 0 1 1 1 Ox4d 2 1 Ox5a 3 0 Ox14 4 0 Ox37 5 1 Ox87 6 1 Oxff 7 1 Oxae 8 1 Oxco 9 0 Oxd1 10 1 Oxe8 11 1 Ox84 12 1 Oxba 13 1 Oxb7 14 0 Ox12 15 1 Ox4f For each of the following addresses, describe if they will be a hit or a miss in the cache by typing 'hit' or 'miss' Ox53c4f will be a Ox12da4 will be a Ox12db5 will be a Oxa4000 will be a Ox5a201 will be a Ox13da4 will be a
According to the question of cache by typing 'hit' or 'miss', Ox53c4f will be a miss in the cache.
Ox12db5 will be a miss in the cache. Ox12db5 falls into set 7. However, when comparing its tag with the stored tag in set 7, we find a mismatch. Therefore, Ox12db5 will result in a cache miss. Oxa4000 will be a hit in the cache. Oxa4000 falls into set 10. Upon comparing its tag with the stored tag in set 10 (Oxa4), we find a match. Hence, Ox12db5 will result in a cache hit. Ox5a201 will be a miss in the cache. Ox5a201 falls into set 5. However, the stored tag in set 5 is Ox37, which does not match the tag of Ox5a201. Thus, Ox5a201 will result in a cache miss. Ox13da4 will be a miss in the cache. Ox13da4 falls into set 0. However, the stored tag in set 0 is Ox4f, which does not match the tag of Ox13da4. Therefore, Ox13da4 will result in a cache miss.
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Preferential stress will cause crystals to rotate into a preferred orientation unless the crystals are ________
Answer:
Preferential stress will cause crystals to rotate into a preferred orientation unless the crystals are Equant
Application: Assume a small
spacecraft is in open space.
One panel is a dedicated
radiator (dimensions in
image) and is painted with
S13 GLO white paint
(emissivity = .89). If the
radiator is at 30C and has a
full view factor to space, how
much heat can it reject from
the system? (How much is
this radiator radiating to
space?). Use 3K for space
temperature. Round answer
up to one decimal place. No
need to include units.
*.../2
1 m
Radiator
.3 m
The amount of radiation that the system is radiating into space is 1.164 x 10¹⁷. See the explanation below.
What is radiation?Rockets or space crafts emit heat as they navigate into space. This heat or emissions is what is referred to as radiation.
What is the calculation supporting the answer above?Recall that we are given the following:
Thus,
Converting the temperature of the Radiator, we have:
30°C = 273 + 30
= 303K
Area of the Panel of the radiator = 0.3 x 0.1
= 0.03
The formula for the heat emitted by the system is given as:
Q = ∈δA (T₁⁴ - T₁⁴)
Where:
δ = Stefan - Bolta Mann constant
→ δ = 5.67 X 10⁻ⁿ
→ The amount of heat is thus given as:
Q = 0.89 x 5.17 x 10⁸ [ (303)⁴ - (3)⁴] x 0.03
Therefore,
Q = 1.1635158780036 × 10¹⁷
Q ≈ 1.164 x 10¹⁷
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A hydrogenation catalyst is prepared by soaking alumina particles (100-150 mesh size) in aqueous NiNO3 solution. After drying and reduction, the particles contain about 7 wt% NiO. This catalyst is then made into large cylindrical pellets for rate studies. The gross measurements for one pellet are: Mass, g 3.15 Diameter, mm 25 Thickness, mm 6 Volume, cm3 3.22 The alumina particles contain micropores, and the pelleting process introduces macropores surrounding the particles. If the macropore volume of the pellet is 0.645 cm3 and the micropore volume is 0.40 cm3 /g of particles, determine: i] The density of the pellet ii] The macropore volume in cm3 /g iii] The macropore void fraction in the pellet iv] The micropore void fraction in the pellet v] The solid fraction vi] The density of the particles
i] The density of the pellet is 0.977 g/cm^{3}. ii] The macropore volume in cm^{3}/g is 0.205 cm^{3}/g. iii] The macropore void fraction in the pellet is 25.1%.iv] The micropore void fraction in the pellet is 49.0%. v] The solid fraction of the pellet is 25.9%. vi] The density of the particles is 1.222 g/cm^{3}.
i] To determine the density of the pellet, we can use the formula:
Density = Mass / Volume
Given that the mass of the pellet is 3.15 g and the volume is 3.22cm^{3}, we can calculate the density as follows:
Density = 3.15 g / 3.22 cm^{3}≈ 0.977 \(g/cm^{3\)
ii] The macropore volume in cm3/g can be calculated by dividing the macropore volume of the pellet (0.645 cm3) by the mass of the pellet (3.15 g):
Macropore volume = 0.645 cm^{3} / 3.15 g ≈ 0.205 \(cm^{3} /g\)
iii] The macropore void fraction in the pellet can be calculated using the formula:
Macropore void fraction = Macropore volume / Total volume of the pellet
Total volume of the pellet = Volume - Macropore volume = 3.22 cm^{3}- 0.645 cm^{3} = 2.575 cm^{3}
Macropore void fraction = 0.645 cm^{3} / 2.575 \(cm^{3}\)≈ 0.251 or 25.1%
iv] The micropore void fraction in the pellet can be calculated using the given micropore volume of the particles (0.40 cm^{3} /g) and the mass of the pellet (3.15 g):
Micropore volume in the pellet = Micropore volume/g x Mass
Micropore volume in the pellet = 0.40 \(cm^{3} /g\) x 3.15 g = 1.26 cm3
Micropore void fraction = Micropore volume in the pellet / Total volume of the pellet
Micropore void fraction = 1.26 \(cm^{3}\) / 2.575 \(cm^{3}\) ≈ 0.490 or 49.0%
v] The solid fraction of the pellet can be calculated by subtracting the sum of macropore and micropore void fractions from 1:
Solid fraction = 1 - (Macropore void fraction + Micropore void fraction)
Solid fraction = 1 - (0.251 + 0.490) ≈ 0.259 or 25.9%
vi] The density of the particles can be determined using the mass of the pellet (3.15 g) and the total volume of the particles:
Total volume of the particles = Volume - Macropore volume = 3.22 \(cm^{3}\)- 0.645 \(cm^{3}\) = 2.575\(cm^{3}\)
Density of the particles = Mass / Total volume of the particles
Density of the particles = 3.15 g / 2.575\(cm^{3}\) ≈ 1.222 \(g/cm^{3}\)
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The structure consists of a very large steel plate they will be used to transfer an in plane tensile stress. You have information from the company that performed a non-destructive testing technique if there are any flaws inside the plate. This non-destructive testing technique is based on ultrasonic wave transmission and will only detect a crack if it is bigger than 2.5 mm. No flaws were detected in the plate. You decided to pull some samples from a similar plate and you determined that the KIC value of these plates are 40 MPa*m0.5.
Required:
Estimate the maximum in plane tensile stress that you would suggest that this plate should carry.
Answer:
\(\mathbf{\sigma_{max} =638.308 \ MPa}\)
Explanation:
For any large steel plate with an infinite length and width and a center through the crack under tension, the stress intensity factor can be expressed as:
\(K_I = \sigma \sqrt{\pi a}\)
where;
a = 2.5 mm/2
a = 1.25 mm
a = 1.25 × 10⁻³ m
Therefore; the maximum stress in tension capacity can be computed as;
\(\sigma_{max} = \dfrac{K_{I_C}}{\sqrt{\pi a_c}}\)
\(\sigma_{max} = \dfrac{40}{\sqrt{\pi \times 1.25 \times 10^{-3}}}\)
\(\mathbf{\sigma_{max} =638.308 \ MPa}\)
Multiple poles at the origin. Sketch the asymptotes of the Bode plot magnitude and phase for each of the listed open-loop transfer functions. After completing the hand sketches, verify your result with Matlab. Turn in your hand sketches and the Matlab results on the same scales.
(a) L(s) = 1/s^2(s + 10)
(b) L(s) = 1/s^3(s + 8)
(c) L(s) = 1/s^4 (s + 10)
(d) L(s) = (s + 3)/s^2(s + 10)
(e) L(s) = (s + 3)s^3(s + 5)
(f) L(s) = (s + 1)^2/s^3(s + 10)
Answer:
a la 1/s^2(s + 10)
Explanation:
I got it right on math lab
why is technical drawing important in the engineering and construction Fields