The principal stresses are 01 = 6.497 MPa (tensile) and 02 = -33.497 MPa (compressive).
To determine the principal stresses 01 and 02, we need to use the stress transformation equations. These equations relate the stress components in one coordinate system to those in another coordinate system rotated at an angle θ with respect to the original one.
Using the stress transformation equations, we can derive the following quadratic equation:
(σ- sx)(σ- sy) - txy^2 = 0
where σ is the normal stress along the principal planes and txy is the shear stress on these planes. Solving this equation for σ, we get:
σ1,2 = (sx + sy)/2 ± √[(sx - sy)^2/4 + txy^2]
Substituting the given values, we obtain:
σ1 = 6.497 MPa and σ2 = -33.497 MPa
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A binary tree has L leaves and K nodes, each with two children. What is the relation of L and K ?
Option
L = K -1
L = 2K + 1
L = K - 1
There is no fixed relation between L and K
K=2*L-1 is the relationship between the number of nodes (K) and leaves (L). Therefore, L and k do not always have a stable relationship.
Number of internal nodes for L leaves = L - 1
So total nodes = 2L – 1
The following relation applies for a k-ary tree where each node has k offspring or none at all: L = (k-1)*n + 1.
where n represents the number of internal nodes and L represents the number of leaf nodes.
Every internal node will have K children since the k tree is fully developed.
A pointer to the topmost node of the tree, sometimes referred to as the "root," serves as the representation of a binary tree. The root's value is NULL if the tree is empty. The following components are present in each node of a binary tree:
Pointer to left kid in data
to the right-hand kid
Basic Binary Tree Operation:
adding a new element.
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When is Environmental Impact Assessment required?
Environmental Impact Assessment (EIA) is often required for significant development projects such as road construction, building construction, and industrial facility construction in order to analyze and minimize any environmental repercussions.
What is Environmental Impact Assessment?It is to be noted that the process of determining how a project or activity will affect the environment is known as environmental impact assessment.
It assists individuals in ensuring that the project will not hurt animals, plants, or natural resources. This manner, we can be sure that the things we construct or do won't affect the world.
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How is technology used in improving the casting products?
Answer:
Explanation:
Technology is used in a variety of ways to improve casting products. Some examples include:
1.Computer-aided design (CAD) and computer-aided manufacturing (CAM) software: These tools allow for the creation of highly detailed and precise designs for casting products, resulting in improved product quality and consistency.
2.3D printing: This technology allows for the creation of complex, detailed molds for casting, as well as the ability to produce small quantities of parts without the need for traditional tooling.
3.Simulation software: Simulation software is used to predict the behavior of a casting product during the casting process, allowing for adjustments to be made to the design and manufacturing process to improve product quality and reduce defects.
4.Robotics and automation: Robotics and automation are increasingly used in casting operations to improve efficiency, reduce costs, and improve product consistency.
5.Metal Additive manufacturing: Metal additive manufacturing techniques such as Directed energy deposition, Electron beam melting, and Laser beam melting can be used to produce casting products with high precision and complex geometries, which are not possible with traditional casting methods.
6.Non-destructive testing techniques: Non-destructive testing techniques such as X-ray, ultrasonic, and magnetic particle inspection are used to detect defects and ensure product quality in casted products.
Overall, technology plays a crucial role in improving the casting process, allowing for more precise and efficient production of higher-quality products.
Which of the following refers to the process in which engineers complete and repeat a sequence of steps to come closer to the project goal?
The process in question is referred to as the iterative design process. Engineers utilize this method by completing and repeating a sequence of steps in order to continually improve and refine their designs as they work towards achieving the project goal. This approach allows for flexibility and adaptability in the design process, as engineers can make adjustments and modifications based on feedback and testing, ultimately leading to a more successful outcome.
7-3 Project two using Python
Competencies
In this project, you will demonstrate your mastery of the following competencies:
Write scripts using syntax and conventions in accordance with industry standard best practices
Develop a fully functional program using industry-relevant tools
Scenario
You work for a small company that creates text-based games. You recently pitched your design ideas for a text-based adventure game to your team. Your team was impressed by all of your designs, and would like you to develop the game! You will be able to use the map and the pseudocode or flowcharts from your designs to help you develop the code for the game. In your code, you have been asked to include clear naming conventions for functions, variables, and so on, along with in-line comments. Not only will these help you keep track as you develop, but they will help your team read and understand your code. This will make it easier to adapt for other games in the future.
Recall that the game requires players to type in a command line prompt to move through the different rooms and get items from each room. The goal of the game is for the player to get all of the items before encountering the room that contains the villain. Each step of the game will require a text output to let the player know where they are in the game, and an option of whether or not to obtain the item in each room.
Directions
In Project One, you designed pseudocode or flowcharts for the two main actions in the game: moving between rooms and gathering items. In this project, you will write the code for the full game based on your designs. You will also need to include some additional components beyond your original designs to help your game work as intended. You will develop all of your code in one Python (PY) file, titled "TextBasedGame.py."
IMPORTANT: The directions include samplecode from the dragon-themed game. Be sure to modify any sample code so that it fits the theme of your game.
First, create a new file in the PyCharm integrated development environment (IDE), title it "TextBasedGame.py," and include a comment at the top with your full name. As you develop your code, remember that you must use industry standard best practices including in-line comments and appropriate naming conventions to enhance the readability and maintainability of the code.
In order for a player to navigate your game, you will need to develop a function or functions using Python script. Your function or functions should do the following:
Show the player the different commands they can enter (such as "go North", "go West", and "get [item Name]").
Show the player’s status by identifying the room they are currently in, showing a list of their inventory of items, and displaying the item in their current room.
You could make these separate functions or part of a single function, depending on how you prefer to organize your code.
The program to demonstrate your mastery of the given competencies is in the explanation part.
What is programming?Programming tasks include analysis, algorithm generation, algorithm accuracy and resource consumption profiling, and algorithm implementation.
Here is a sample code to get you started on creating a text-based game in Python:
# TextBasedGame.py
# by [your name]
# Define the rooms in the game
rooms = {
'start': {'description': 'You are in a dark room. There is a door to the north.', 'north': 'room1'},
'room1': {'description': 'You are in a large hall. There is a door to the east and a door to the west.', 'east': 'room2', 'west': 'room3'},
'room2': {'description': 'You are in a kitchen. There is a door to the west.', 'west': 'room1'},
'room3': {'description': 'You are in a bedroom. There is a door to the east.', 'east': 'room1'}
}
# Define the items in the game
items = {
'sword': {'description': 'A rusty sword. It might be useful.', 'location': 'room1'},
'potion': {'description': 'A red potion. It looks like it could heal you.', 'location': 'room2'}
}
# Define the player's starting location and inventory
player = {'location': 'start', 'inventory': []}
# Define a function to show the player's status
def show_status():
print('You are in ' + rooms[player['location']]['description'])
print('Inventory: ' + str(player['inventory']))
for item in items:
if items[item]['location'] == player['location']:
print('You see a ' + item + ': ' + items[item]['description'])
# Define a function to handle player input
def handle_input(input_str):
parts = input_str.split(' ')
if len(parts) == 1:
if parts[0] == 'inventory':
print('Inventory: ' + str(player['inventory']))
else:
print('Invalid command')
elif len(parts) == 2:
if parts[0] == 'go':
direction = parts[1]
if direction in rooms[player['location']]:
player['location'] = rooms[player['location']][direction]
show_status()
else:
print('You cannot go that way')
elif parts[0] == 'get':
item_name = parts[1]
if item_name in items and items[item_name]['location'] == player['location']:
player['inventory'].append(item_name)
items[item_name]['location'] = 'inventory'
show_status()
else:
print('You cannot get that item')
else:
print('Invalid command')
else:
print('Invalid command')
# Main game loop
print('Welcome to the game! Type "help" for a list of commands.')
show_status()
while True:
input_str = input('> ')
if input_str == 'help':
print('Commands: go [direction], get [item], inventory')
elif input_str == 'quit':
print('Thanks for playing!')
break
else:
handle_input(input_str)
Thus, in this sample code, we have defined the rooms and items in the game using dictionaries.
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The bridge girder G of a bascule bridge is raised and lowered using the drive mechanism shown. If the hydraulic cylinder AB shortens at a constant rate of 0.15 m/s, determine the angular velocity of the bridge girder at the instant theta 0= 60°
According to the question, The bridge girder's angle of rotation at theta 0 = 60° is 0.18 rad/s.
What exactly is velocity?Velocity is the direction at which an item is moving and serves as a measure of the rate at which its location is changing as seen from a certain point of view and as measured by a particular unit of time (for example, 60 km/h northbound). In kinematics, the field of classical mechanics that deals with the motion of objects, velocity is a basic idea. A physical vector quantity called velocity . It must have both a magnitude and a direction in order to be defined. Speed is the scalar absolute value (magnitude) of velocity; it is a coherent derived unit which quantity is measured in m/s (m/s or m/s1) in the SI (metric system).
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Why is information regarding the specific volume of gases important to the designer of air conditioning heating and refrigeration equipment
Explanation:
Enables the engineer to choose the size of the compressor or vapor pump to do a particular job.
Give a short fragment of Java code that uses the progression classes from Section 2.2.3 to find the eighth value of a Fibonacci progression that starts with 2 and 2 as its first two valuesCode and explain how it works. If you copy and paste from the pictures I attach I will report you
It is feasible to create code that installs Java and sets the Java Home to point to the Java installation location using knowledge of the computational language of JAVA.
In Java, there are several ways to copy elements from an array, including manually copying elements with a loop, making a copy of the array, and using Arrays. Java's copy Of() function or System. array Copy() can be used to begin moving elements between arrays. ERROR: The directory specified for JAVA HOME is invalid. "C: Program FilesJavajre7bin" is the value for JAVA HOME. Please modify your environment's JAVA HOME setting to correspond to where your Java installation is located I tried and worked on ANT. 1. launch cmd. 2. Enter "Mn -version". 3. On May 15, 2013, Apache Ant(TM) version 1.9.1 was compiled.
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What happens to the generated voltage, if a more powerful magnet is used?
1) The generated voltage gets higher
2) the generated voltage gets lower
3) the amount of voltage generated stay the same
A target ha the coordinate of (0,1). Nachie and Ihwari are both in a battle to ee who ha the mot accurate launcher. After hooting their bean bag 10 time, aiming for the target, they take the average of where their bag landed. Nachie' launched bean bag on average landed at (0. 05, 0. 08). Ihmari' launched bean bag on average landed at (0. 08, 1). Who' launcher wa more accurate (hint: who' bean bag were cloer to the target center on average)?
Answer:
Explanation:
To determine which launcher was more accurate, we can compare the average distance of the bean bags from the target center.
We can use the distance formula to calculate the distance between two points:
d = sqrt((x2-x1)^2 + (y2-y1)^2)
where d is the distance, (x1, y1) is the first point, and (x2, y2) is the second point.
For Nachie's bean bags, the average distance from the target center is:
d = sqrt((0.05-0)^2 + (0.08-1)^2) = sqrt(0.0025 + 0.0184) = sqrt(0.02)
For Ihwari's bean bags, the average distance from the target center is:
d = sqrt((0.08-0)^2 + (1-1)^2) = sqrt(0.0064 + 0) = sqrt(0.0064) = 0.08
Since Ihwari's bean bags were closer to the target center on average, it can be concluded that Ihwari's launcher is more accurate than Nachie's.
When mechanical work is done on a system, an increase normally occurs in its
O temperature.
O internal energy.
O both of these
O neither of these
An rise in temperature and internal energy often happens when a system is subjected to mechanical action.
It is impossible to directly quantify the internal energy of systems that are more complicated than a perfect gas. The system's internal energy is still inversely related to its temperature, though. Therefore, by keeping an eye on how the system's temperature varies, we can track changes in the system's internal energy. We may infer that the system's internal energy has grown whenever the system's temperature rises.
For the time being, let's assume that a thermometer set in a beaker of water on a hot plate registers 73.5°C, as indicated in the diagram below. Only the system's condition at that precise instant may be described by this measurement.
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During a construction project, engineers used explosives to excavate 140 feet of tunnel into a mountain. But because of time constraints and environmental concerns, they brought in a tunnel boring machine (tbm) to excavate the rest of the tunnel. The data table lists some observations an engineer made about the length of the tunnel after the tbm was introduced. How much of the tunnel was completed 26 days after the tbm was introduced?.
The engineer observed that the tunnel was 460 feet long 26 days after the tbm was introduced. Therefore, the tunnel was completed 460 feet - 140 feet = 320 feet after the tbm was introduced.
What is tunnel?
A tunnel is an underground or underwater passageway, typically constructed for transportation purposes. Tunnels are typically used to bypass obstacles such as mountains, rivers, or bodies of water, or to provide a secure route for transportation of goods and people. Tunnels may also be used for mining, research, or military purposes. Tunnels can be constructed using a variety of materials, including steel, reinforced concrete, rock, earth and soil. The length of a tunnel varies from a few metres to several kilometres. When constructing a tunnel, safety is of paramount importance. Special engineering techniques are used to ensure the stability of the tunnel and its construction is closely monitored and regulated. Tunnels are designed to be resistant to weather, vibration, fire, and other environmental factors.
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A supplementary grounding electrode is required when the only grounding electrode available is: __________
A supplementary grounding electrode is required when the only grounding electrode available is a metal underground water pipe.
What is grounding electrode?
A grounding electrode is a device or conductor that provides a direct electrical connection to the earth. It is used as a reference point for electrical systems to establish a zero potential, or ground, and provide a path for electrical current in the event of a fault.
Examples of grounding electrodes include metal underground water pipes, driven rods, plates, and underground networks of electrodes. These are required for safety and protection of electrical equipment and to limit the voltage to ground during normal operation and fault conditions.
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Question 3:
Change the background color of the page to light-blue (#99ecft) when clicked on the text
that says "Yes". If there is a background color set already, change it to none when clicked
on "No"
Thank you I really like the color
Besides HEV and EVmotor systems themselves what other systems may use high voltage?
Besides the HEV and EV motor systems themselves, the other systems that may use high voltage are:
1. Air conditioning compressor.
4. Electric water pump.
What is the systems?In a hybrid electric vehicle (HEV) or an electric vehicle (EV), high voltage is used in certain systems to increase the efficiency and improve the performance of the vehicle.
The air conditioning compressor, for example, may use a high voltage system to power its electric motor, which in turn drives the compressor. By using high voltage, the air conditioning system can operate more efficiently and use less energy, improving the overall efficiency of the vehicle.
Similarly, an electric water pump in an HEV or EV may also use high voltage to improve its performance. The high voltage system allows the pump to operate more efficiently and use less energy, which can help to conserve the vehicle's battery power and improve its range.
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See transcribed text below
Besides the HEV and EV motor systems themselves, what other systems may use high voltage (check all that apply)?
Air conditioning compressor.
Electric power steering.
Auxiliary battery.
Electric water pump.
A four-bar linkage is shown in the figure (the ground �link� OC is considered the fourth bar). If the drive link OA has a counterclockwise angular velocity ?0 = 14.6 rad/s, determine the angular velocities of links AB and BC. The angular velocities are positive if counterclockwise, negative if clockwise.
Wab = 2.41 rad/s and Wbc = 6.53 rad/s if the angular velocity are positive in a clockwise direction and negative in a anticlockwise direction.
Va/b = Va - Vb
Va = Va/b + Vb
Va = Wo*A
= 14.6 * 50
= 730 mm/s
we know that
Wab=125/sin24 = Wbc=110/sin76 = 730/sin80
Wab = 2.41 rad/s position/ counter clock wise
Wbc = 6.53 rad/s position/counter clock wise
Every point on an object revolving on an axis experiences the same angular velocity. Any point's tangential velocity varies with its separation from the rotational axis. The angular velocity unit is rad/s.
The direction of angular velocity, in the right-hand rule meaning, can be thought of as being along the rotational axis.
The link between angular velocity and the rate of change of angular displacement
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4.
Describe the correct use of any equipment used to protect the health and safety of themselves and
their colleagues
Items such as gloves, safety goggles, shoes, earplugs, respirators, hard hats, coveralls, vests, and full body suits are examples of personal protection equipment.
What equipment is used for safety and protection?Wearing a safety helmet when using a power tool, donning the proper protective clothing when working with chemicals, and taking all necessary safety precautions when operating machinery are all examples of how to use equipment correctly to safeguard their own health and the health and safety of their coworkers.
Healthcare Facilities Using PPE Gloves shield the hands; gowns or aprons shield the skin or clothing; masks and respirators shield the mouth and nose; goggles shield the eyes; and face shields shield the full face. consisting of goggles, gloves, gowns, shoe covers, head coverings, masks, and respiratory equipment.
PPE, or personal protective equipment, is gear that shields users from harm to their health or the danger of accidents. It may consist of equipment like safety harnesses, gloves, eye protection, high-visibility clothes, safety footwear, and respiratory protective equipment (RPE).
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ariah is walking on a boat that is sailing in the ocean. at a certain point the boat encounters a current.
Answer:42.6 km/h
Khan said so
The magnitude of the force will depend on the speed and direction of the current, as well as the size and shape of the boat.
The force will also cause the boat to experience a change in its velocity, which will affect the motion of the boat and the passengers on board. When a boat encounters a current, the boat will experience a force due to the current. This force will act on the boat in the direction of the current and will cause the boat to move in the direction of the current. The magnitude of the force will depend on the speed and direction of the current, as well as the size and shape of the boat. The force will also cause the boat to experience a change in its acceleration, which will affect the motion of the boat and the passengers on board. The acceleration of the boat will be equal to the force divided by the mass of the boat. The acceleration will cause the boat to change its velocity, which will cause the boat to move in the direction of the current. The magnitude of the velocity change will depend on the magnitude of the acceleration and the time over which the acceleration is applied.
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Technician A says a variable displacement vane pump reduces the pumping load on the engine when the transmission requires less fluid to be pumped. Technician B says the flexplate is bolted to the input shaft of the transmission
Technician A is correct, as indicated by the facts in the question, in that a positive - displacement vane pump lessens the engine's pumping burden when the gearbox needs less fluid to be pushed.
Describe transmission using an example.The act of transmitting something, such as a disease or a signal, or the component of a device that transfers the engine's power to the mechanical parts is referred to as transmission. When anything moves via cable wires to reach its destination, that is an example of transmission.
What is the use of transmission?For the wheels to move, vehicles need a differential and a gearbox to transfer engine power to the drive shaft. The torque, speed, and direction are all variable through the transmission.
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elivery Execution Knowledge Check Question 1 of 8. When you walk into the station at the end of your route, what should you do? Check in with your DSP and being any undeliverable packages back to the Amazon Retum to Station desk O leave the undeliverable packages with your OSP then go off duty You don't have to return to the station at the end of your day Sign out of your device and love Mark for foto up
Answer:
ur hhbkiegtbckdj you and your family a very merry merry
Ethernet standard 1000BASE-SX uses SMF and has a distance limitation of 5km. What is the bandwidth capacity of 1000BASE-SX?
Question 2 options:
A)
10Mbps
B)
100Mbps
C)
1Gbps
D)
100Gbps
E)
1000Gbps
Answer:C
Explanation:
2.35 Calculate Vo and Io in the circuit of Fig. 2.99
Vo and Io in the circuit is v^0=32V And I^0=0.8 A
Step by step explanation:
Given circuit:
Resultant equivalent resistance is
R^ e q=(700||30)+(20||5)
=21+4
R^ e q=25
Total current=v/R^ e q
I=200/25
I=8A
Therefore ,Apply nodal analysis at v^ 1
v^ 0=v^1
200-V0/70+ 200-v^ 0/30=8
6000-30v^0+14000-70v^0/2100=8
20000-100v^0/2100=8
=20000-100v^0=16800
=100v^0=3200
v^0=3200/100
v^0=32V
Apply nodal at V^ 2.
I^0=V^0-200/30+v^0/5
I^0=32-200/30+32/5
I^0=-168/30+32/5
I^0=-5.6+6.4
I^0=0.8 A
What Does Equivalent Resistance Mean?
An equivalent resistance is defined in physics as the sum of the resistances of the resistors connected in a circuit. Resistors can be wired in series or parallel. Assume that the three resistors are R1, R2, and R3.
If you connect these three resistors in series, the equivalent resistance is given by
Re = R1 + R2 + R3
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how to make hypertension thermo fisher with thermal nuclear propulsion powered by 100 thermal nuclear reactor
Hypertension therapy and thermal nuclear propulsion are two distinct fields and they are not related. Hypertension therapy refers to the treatment and management of high blood pressure, while thermal nuclear propulsion refers to the use of nuclear energy to power vehicles, such as spacecraft.
What is the reactor about?Thermal nuclear propulsion technology is still under development and is not yet available for commercial use. Building a thermal nuclear propulsion system would require significant resources, including the development of a suitable reactor and the design and construction of a spacecraft capable of withstanding the intense heat and radiation generated by the reactor.
It would also require compliance with a wide range of safety, environmental and regulatory standards.
Therefore, As for hypertension therapy, it is typically managed through a combination of lifestyle changes, such as diet and exercise, and medication. The specific treatment plan will depend on the individual patient's blood pressure level, overall health, and any other health conditions they may have. It is important to consult a doctor or healthcare professional for personalized treatment recommendations.
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before making a major repair technicians must evacuate an appliance ___
Answer:containing more then 200 pounds of R-410A to which of the following levels
Explanation:10 inches of Hg vacuum
Before making a major repair, technicians must evacuate an appliance's refrigerant.
What is appliance refrigerant?Refrigerants are chemicals that absorb heat and transfer it between different parts of an appliance, and they are typically contained within a closed system of pipes and coils.
We have,
Before making a major repair, technicians must evacuate an appliance's refrigerant.
This is particularly true for appliances that use refrigerants, such as refrigerators, air conditioners, and heat pumps.
During a major repair, such as replacing a compressor or repairing a leak in the refrigerant system, the refrigerant must be safely removed from the system before work can begin.
This is typically done using specialized equipment that can capture and store the refrigerant for safe disposal or recycling.
Evacuating the refrigerant helps to prevent the release of harmful chemicals into the atmosphere, and is an important step in ensuring the safety and effectiveness of appliance repairs.
After the repair is complete, the refrigerant can be recharged and the appliance can be returned to service.
Thus,
The technicians must evacuate an appliance's refrigerant before making a major repair.
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Consider the following piece of C code:
for (j = 2; j < 1000; j++)
D[j] = D[j − 1] + D[j − 2];
The MIPS code corresponding to the above fragment is:
addiu $s2, $zero, 8000
addiu $s1, $zero, 16
loop: l.d $f0, -16($s1)
l.d $f2, -8($s1)
add.d $f4, $f0, $f2
s.d $f4, 0($s1)
addiu $s1, $s1, 8
bne $s1, $s2, loop
Re-write the assembly code above so that the loop is unrolled by 4 iterations.
CPU SS: A two-core superscalar processor with two function units that can handle out-of-order issues (FUs). On each core, only one thread can be active at once. CPU MT.
a fine-grained multithreaded processor that enables simultaneous execution of instructions from two threads (i.e., there are two functional units), but only one thread's worth of instructions can be issued at a time. CPU SMT: A SMT processor that has two functional units and supports running instructions from two threads simultaneously. Instructions from either or both threads may be sent to execute on any cycle. A high-level, all-purpose programming language is the C language. It offers a simple, reliable, and effective interface for system programming.
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125 psig is equivalent to
A. 14.696 psia.
B. 135 psia.
C. 139.7 psia.
D. 147.7 psia.
A pressure of 139.7 psia is equal to 125 psig. The pressure measured by a gauge, PSI Gauge, is equal to PSI Absolute + 1 atmosphere pressure. Assume that the atmosphere has a standard atmospheric pressure of 14.7 PSI at sea level.
What is PSIG versus PSIA?PSIA, or pounds per square inch absolute, stands for. As opposed to zero or the absolute vacuum, absolute pressure is pressure. On engineering documents or P&IDs, PSIA may be used. PSIG Defined: The term "PSIG" refers to pounds per square inch gauge.
Is PSI the same as PSIA?The word PSIA refers to the absolute pressure in PSI, which includes the atmospheric pressure. Another name for absolute pressure is "total pressure.
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Classify each of the structures as statically determinate, statically indeterminate, or unstable. If indeterminate, specify the degree of indeterminacy. The supports or connections are to be assumed as stated.
The structure a) is indeterminate. The structures b, c, and d are statically indeterminate.
We know that if
r = 3n (Statically determinate)
r > 3n (Statically indeterminate)
r < 3 n (unstable)
r \geq 3n (unstable if reactions are concurrent or parallel)
where r = no.of reactions
n = no of parts
a) r = 2+2+1 = 5
n = 1, 3n = 3x1 = 3
5 > 3
Indeterminate upto 5 - 3 = 2 degrees
b) Unstable as all reactions are parallel
c) r = 3
n = 1 , 3(1) = 3
r = 3n
Statically Determinate
d) r = 2+2+2 = 6
n =2 , 3(2) = 6
r = 3n
Statically Determinate
e) Unstable as the reactions are concurrent meeting at common point
Frames can be classified by cutting closed loops and finding reactions
At each cutaway section three unknown forces are generated
b) 8 cuts are required generating 8x3 = 24 forces and 3 members
r = 24 +2+2+3 = 31
n = 3. r = 3(3) = 9
31 - 9 = 22
Indeterminate upto 22 degrees
c) 6 cuts are required generating 6x3 = 18 forces and 4 members
r = 18 + 3 + 3 = 24
n = 4 , 3(4) =12
24 - 12 = 12
Statically Indeterminate upto 12 degrees
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© 2022. Grand Canyon University. All Rights Reserved.APA Activity 2: Citing PracticeCreate a reference page by citing the following sources in correct APA format. You may use your text or the GCU Library website to help you, but do not use citation generators.•A textbook: The second edition of Psychology and Your Life by Robert S. Feldman written in 2013. The publishing city is New York, New York published from McGraw Hill Companies.•Snickers commercial https://youtu.be/2rF_FRCd_LA •PBS Frontline special League of Denial •The document found at this address:http://www.eia.gov/forecasts/aeo/er/pdf/0383er(2013).pdf•The movie Silver Linings Playbook•The episode of Friends titled: The One After Joey and Rachel Kiss•The 7th edition of the APA Manual
Using APA reference style, the references is attached below from Feldman, R. S. (2013) to American Psychology Association (2020)
What is APA Reference StyleAPA reference style is a style of citing sources used by the American Psychological Association. It is primarily used in the social sciences and includes guidelines for citing sources both within the text of a document and in the reference list at the end of the document. The guidelines provide a consistent way of citing sources to make it easier for readers to identify and locate the sources cited in a document.
In the given problem, if we need to write the reference using APA style, it will take this format below
Reference Page:
Feldman, R. S. (2013). Psychology and your life (2nd ed.). New York, NY: McGraw Hill Companies.
Frontline. (n.d.). League of denial. Retrieved from https://www.pbs.org/wgbh/frontline/film/league-of-denial/
Friends. (2004). The one after Joey and Rachel kiss [Television series episode]. In D. Crane, & M. Kauffman (Executive producers), Friends. Burbank, CA: Warner Bros. Television.
Silver Linings Playbook. (2012). [Motion Picture]. United States: The Weinstein Company.
U.S. Energy Information Administration. (2013). Annual energy outlook 2013 with projections to 2040. Retrieved from http://www.eia.gov/forecasts/aeo/er/pdf/0383er(2013).pdf
Snickers. (2013, April 2). You’re not you when you’re hungry [Video file]. Retrieved from https://youtu.be/2rF_FRCd_LA
American Psychological Association. (2020). Publication manual of the American Psychological Association (7th ed.). doi:10.1037/0000165-000
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A nuclear fuel element of thickness 2L is covered with a steel cladding of thickness b. Heat generated within the nuclear fuel at a rate q is removed by a fluid at T infinity, which adjoins one surface and is characterized by a convection coefficient h. The other surface is well insulated, and the fuel and steel have thermal conductivities of kf and ks, respectively. Obtain an equation for the temperature distribution T(x) in the nuclear fuel. Express your results in terms of q, kf, L, b,ks, h, and T infinity . NOTE: Do not solve this problem by integrating equations.
Thermal conductivity is a property of any substance by which the substance conducts heat.
A nuclear fuel element of thickness 2L is covered with a steel cladding of thickness?
The thermal heat conductivity of any solid is independent of the change in pressure. The thermal conductivity of solid depends on temperature.
The thickness of fuel element is
t=2LThe thickness of steel cladding is
ts=bThe rate of heat generation is,
˙qThe temperature of surrounding is,
T∞The convective heat transfer coefficient is, h
The thermal conductivity of fuel is
kf The thermal conductivity of steel is kss
d2T/dx2+qkf=0
Integrate the above equation respect to x.
dTdx=−q2kfx+C1
Integrate the above equation respect to x.
T=−q2kfx2+C1x+C2
As,
dTdx∣∣∣x=−L=0 , Substitute -L for x in
dTdx=−q2kfx+C1.
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Determine the friction drag on the bar required to overcome the resistance of the paint if the force F lifts the bar at 3 m/s. Take rho = 920 kg/m^3 and v = 42(10^-6) m^2/s.
Start by drawing a free-body schematic of the bucket that is at the end of the string. The net force is upwards since the bucket is at the bottom of the circle (inwards).
Keep in mind that for there to be a net upward (inward) force, the tension force must be larger than the force of gravity. Also see that Fgrav is pointing in the opposite direction from Ftens, which is pointing in the direction of the net force. As a result, the equation is as follows:
Ftens - Fgrav = Fnet
The formulas for Fgrav (m•g) and Fnet (m•v2/R) can be swapped into this equation to solve for tension:
Fnet + Fgrav + Ftens = m
2.50 kg + 3.0 m/s + 0.500 m + 2.50 kg + 9.8 m/s
= v2/R + m•g
N = 69.5 Ftens
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