Here's the code for the is_positive() function:
python
Copy code
def is_positive(num):
if num > 0:
return True
else:
return FalseThis function takes in a single number as a parameter, and uses an if statement to check if the number is greater than zero. If it is, the function returns True, indicating that the number is positive. If the number is not greater than zero, the function returns False, indicating that the number is negative (or zero).
You can call this function with a number like this:
python
Copy code
print(is_positive(5)) # Output: True
print(is_positive(-5)) # Output: False
You can also use this function in other parts of your program to determine if a number is positive or negative.
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What role do nongovernmental organizations playin emergency planning?
Answer:
they play a huge role
Explanation:
took the test
A supplier of parts to an assembly plant in the household appliance industry is required to make deliveries on a just-in-time basis (daily). For one of the parts that must be delivered, the daily requirement is 100 parts, five days/wk, 52 wk/yr. However, the supplier cannot afford to make just 100 parts each day because of the high cost of changing over the production machine.
Instead, it must produce in larger batch sizes and maintain an inventory of the parts from which 100 units are withdrawn for shipment each day. Cost per piece is $16 and holding cost is 24% of piece cost. Changeover time for the production machine used to produce the part is 2.5 hr and the cost of downtime on this machine is $180/hr.
Determine:
(a) the economic batch size. (10 marks)
(b) the total annual inventory cost for the data. (10 marks)
(c) How many weeks of demand does this batch quantity represent? (10 marks)
Referring to above scenario, it is desired to reduce the economic batch size from the value determined in that problem to 500 units, which would require the supplier to keep a maximum inventory of one week's demand for the parts.
Determine:
(d) the changeover time that would allow the economic batch size in stamping to be 500 pieces. (5 marks)
(e) What is the corresponding total annual inventory cost for this batch size, assuming the changeover time in part (d) can be realized? (5 marks)
(f) What are the total annual inventory cost savings to the supplier, compared to the TIC determined in the previous problem? (5 marks)
(g) explain the benefits and limitations of JIT systems. (5 marks)
To determine the economic batch size, we need to consider the cost of production and the cost of holding inventory. The cost of production includes the changeover cost and the cost per piece, while the cost of holding inventory is the holding cost per piece.
Supply chain vulnerability: JIT systems heavily rely on a smooth and reliable supply chain. Any disruptions, such as delays in delivery or quality issues from suppliers, can cause significant problems in the production process.Lack of buffer stock: JIT systems operate with minimal inventory levels, leaving little room for error. Any unexpected increase in demand or production delays can lead to stockouts and customer dissatisfaction.
High coordination and synchronization requirements: JIT systems require close coordination and synchronization among all parties involved in the supply chain. This can be challenging, especially when dealing with multiple suppliers and production processes.Limited flexibility: JIT systems are designed for stable and predictable demand patterns. They may struggle to handle sudden changes in demand or market conditions, requiring adjustments and flexibility in production processes.Overall, JIT systems offer numerous benefits in terms of cost savings, efficiency, quality, and responsiveness. However, they also require careful planning and coordination to overcome the potential limitations and ensure a smooth and effective implementation.
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Before finishing and installing a shelved cabinet you just constructed, you need to check the
nside corners for 90 degree angles. Which hand tool would meet the needs of this task?
Answer:
Carpenter's square
Explanation:
The most common hand tool used to measure or set angles with its application extending to setting angles of roofs and rafters. Another name of a Carpenter's square is a framing square.
Other hand tools that are used to measure angles are;
The combination square that allows a user to set both 90° and 45° anglesA Bevel that allows users to set any angle they like.A Protractor that resembles a bevel but its marks are marked in an arc.An electromagnetic angle finder which gives a reading according to the measure of the arms adjusted by the user.Where would an engineer indicate the unit of measurement used in a design
An engineer would indicate the unit of measurement used in a design in millimeters.
What are measurements?The primary unit of measurement is the stocking unit of measure for a given item in a specific organization. You must define an item attribute that serves as the primary unit of measurement when creating each item.
Because the technical drawings are scaled, engineers, architects, and builders may create the items according to exact specifications.
When understanding scales, the number on the left relates to the measurement of the drawing, while the number on the right represents the actual size of the object.
Therefore, a millimeter is used in a design.
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Suppose that out of 500 lottery tickets sold, 200pay off at least the cost of the ticket. Now supposethat you buy 5 tickets. Find the probability that youwill win back at least the cost of 3 tickets.
The probability that one will win back at least the cost of three tickets is approximately 0.31744. This is solved using Binomial Distribution Model.
What is the Binomial Distribution Model?
The Binomial Distribution Model is a mathematical model of probability that allows one to decipher the probability of success of a group of possibilities within a range of specifically repeated processes.
What is the calculation for the above?Given that non-losing tickets (n) is: 5
Tickets gotten with non-losing probability p = 2/5 = 0.4
Note that probability here is given as:
Pr [X ≥ 3] = \(\sum_{x=3}^{5}.\)\(\binom{n}{x}\) pˣ (1-p)ⁿ⁻ˣ
→ \(\sum_{x=3}^{5}.\)\(\binom{n}{x}\) (0.4)ˣ (0.6)⁵⁻ˣ
= 992/3125
= 0.31744
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When choosing a respirator for your job, you must conduct a __ test
Answer:
It's a fit test
what was the first roblox player A.bob B.roblox C.builderman
Answer:
actually, it was John Doe and Jane Doe, as they were created as testers on the exact same say when Roblox was created.
Explanation:
The first player was builderman. Option C
Who was the first player?The first player was one whose user handle was builderman.
However, the account was terminated. It was replaced with
‘Builderman’ is the account that belonged to the CEO and Co-Founder of , David Baszucki. He manages all of the admins.
When you make a new account, he's automatically your friend.
Note that ‘John Doe’ and ‘Jane Doe’ were two test accounts that were created by David.
The accounts were later rumored to hack others’
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It's the law. Under New York law, you can get a citation for riding your bike while listening to music using headphones or earbuds in both ears. It is lawful, however, to listen to music with only one earbud keeping the other ear free.
Sensory deprivation. One of the main ways that people alert each other to danger on the road is through sound. Whether it's honking, yelling or ringing a bicycle bell, you're less likely to hear any of these warnings if you're listening to music putting you at higher risk of an accident.
Decreased attention. The more stimuli you have to contend with, the more difficult it is to dedicate your full attention to one particular task. If you get caught up in a song or story you're listening to while cycling, it can increase your distractibility which could have disastrous consequences.
The majority of cycling-related accidents involve a cyclist and a motor vehicle. Not surprisingly, the injuries a cyclist suffers in such collisions tend to be disproportionately serious and often fatal. Therefore, if you're cycling in traffic, foregoing the headphones can prove to be a life-saving decision.
Answer:s
Explanation:s
It's the law. Under New York law, you can get a citation for riding your bike while listening to music using headphones or earbuds in both ears. It is lawful, however, to listen to music with only one earbud keeping the other ear free.
Sensory deprivation. One of the main ways that people alert each other to danger on the road is through sound. Whether it's honking, yelling or ringing a bicycle bell, you're less likely to hear any of these warnings if you're listening to music putting you at higher risk of an accident.
Decreased attention. The more stimuli you have to contend with, the more difficult it is to dedicate your full attention to one particular task. If you get caught up in a song or story you're listening to while cycling, it can increase your distractibility which could have disastrous consequences.
The majority of cycling-related accidents involve a cyclist and a motor vehicle. Not surprisingly, the injuries a cyclist suffers in such collisions tend to be disproportionately serious and often fatal. Therefore, if you're cycling in traffic, foregoing the headphones can prove to be a life-saving decision.
application's of kirchoff's law
which technology virtualizes the network control plane and moves it to a centralized controller? SDN
IaaS
cloud computing
fog computing
The technology that virtualizes the network control plane and moves it to a centralized controller is Software-Defined Networking (SDN).
In a traditional networking architecture, the control plane, which manages network traffic and makes decisions about how packets are forwarded, is distributed across individual networking devices such as routers and switches. However, in an SDN architecture, the control plane is separated from the data plane and moved to a centralized controller, which can dynamically program the network and make decisions based on global network conditions. This separation of the control plane and data plane allows for greater flexibility, scalability, and programmability in network management. SDN has gained popularity in recent years due to its ability to simplify network management, improve network performance, and reduce costs.
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___ is the concept that makes it possible for use to use the Scanner class without understanding how it's implemented (programmed/engineered).
The Scanner class can be used without being aware of how it was created thanks to the Java notion.
The Java Scanner class is part of the java. util package. It was released concurrently with Java 1.5. Most often, the Scanner is used to convert user input into straightforward data types like int, double, or the default String. It is a utility class that uses regular expressions to generate tokens from input that has been parsed. The Java. util package contains the Scanner class, which is mostly used to gather user input. To use the Scanner class, you can create an object from it and use any of its methods. In the sample below, I'm utilising the nextLine() method, which is used to read strings.
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Which answer best describes the relationship between the left-hand and right-hand panels in both File Explorer and Finder?
Answer: I think The left-hand panel shows like a high level list of folders. And Right-hand panel shows the contents of selected folder.
technician a says during a load (capacity) test, the battery voltage must not fall below 9.6 volts. technician b says the load applied should be half of the cold cranking amp rating. who is correct?f-8
Both Technician A and B are correct.
Technician A said during the load test, the battery voltage must not fall below 9.6 volts.
Technician B said that the load applied should be half of the cold cranking amp rating.
What is meant by load test?
The process of pushing a computer, peripheral, server, network, or programme to the edge of its design specifications is known as load testing.
What does cranking amp rating mean?
A 12-volt battery's rating is the maximum amount of amps it can produce for 30 seconds at 0°F while maintaining a voltage of at least 7.2 volts. The battery's starting power increases with higher CCA ratings.
During the load test, the battery voltage should not fall below 9.6 volts and the load should be half of the cold cranking amp.
Therefore, Both technicians A and B are correct.
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in on/off control systems, why does overshoot occur?
In on/off control systems, overshoot occurs due to the binary nature of the control action, which switches between only two states: on and off. When the controlled variable (e.g., temperature) reaches the desired setpoint, the control action turns off. However, due to system inertia and the absence of intermediate control actions, the variable may continue to rise for a short period, causing an overshoot.
Overshoot occurs as a result of the lack of precision in on/off control systems, which do not offer proportional or continuous control over the system's response. Instead, these systems rely on simple threshold-based actions, leading to fluctuations and oscillations around the desired setpoint. This results in inefficient performance and potential damage to system components, especially in cases where sensitive variables are involved.
To minimize overshoot, it is essential to properly tune the control system parameters and incorporate deadbands or hysteresis, which are small buffer zones around the setpoint. This can help reduce rapid cycling between on and off states, allowing the system to reach a stable equilibrium. In situations where more precise control is necessary, alternative control strategies such as proportional, integral, and derivative (PID) controllers can be employed to provide smoother, more accurate control over the system's response.
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The Boeing 787 Dreamliner is billed to be 20% more fuel efficient than the comparable Boeing 767 and will fly at Mach 0.85. The midsize Boeing 767 has a range of 12,000 km, a fuel capacity of 90,000 L, and flies at Mach 0.80. For Boeing 787, assume the speed of sound is 700 mph and calculate the projected volumetric flow rate of fuel for each of the two Dreamliner engines in m3/s.
Answer:
the projected volumetric flow rate of fuel for each of the two Dreamliner engines is 0.005 m³/s
Explanation:
Given the data in the question;
First we determine the fuel economy of Boeing 767
Range = 12,000 km
fuel capacity = 90,000 L
so, fuel economy of Boeing 767 will be
η\(_f\) = Range / fuel capacity
η\(_f\) = ( 12,000 km / 90000 L ) ( 1000m / 1 km) ( 3.7854 L/gal × 264.2 gal/m² )
η\(_f\) = 133,347.024 m/m³
Now, Boeing 787 is 20% more fuel efficient than Boeing 767
so fuel economy of Boeing 787 will be;
⇒ (1 - 20%) × fuel economy of Boeing 767
⇒ (1 - 0.2) × 133,347.024 m/m³
⇒ 0.8 × 133,347.024 m/m³
⇒ 106,677.6 m/m³
Hence, fuel economy of Boeing 787 dream line engine is
⇒ 106,677.6 m/m³ / 2 = 53,338.8 m/m³
Next, we find the velocity of Boeing 787
\(V_{787\) = Mach number of 787 × speed of sound
given that; Mach number is 0.85 and speed of sound is 700 mph
we substitute
\(V_{787\) = (0.85 × 700 mph) × ( 1 hr / 3600 s ) × ( 1609 m / 1 mile )
\(V_{787\) = 265.9319 m/s
Now, to get the Volume flow rate for each dream liner engine { Boeing 787 };
Volumetric flow rate = velocity of flight / fuel economy
we substitute
= 265.9319 m/s / 53,338.8 m/m³
= 0.0049857 ≈ 0.005 m³/s
Therefore, the projected volumetric flow rate of fuel for each of the two Dreamliner engines is 0.005 m³/s
What part of the scope pattern show the duration of the spark?
Answer: This spark energy trigger ignition and combustion in the compressed air-fuel mixture. This discharge is of extremely brief duration (about 1/1000 of a second) and is extraordinarily complex!
-Your Welcome-
Answer:
This spark energy trigger ignition and combustion in the compressed air-fuel mixture. This discharge is of extremely brief duration (about 1/1000 of a second) and is extraordinarily complex.
In the context of electronics, the term "ground" is often used to refer to:
1: the negative battery terminal
2:the breadboard
3:the circuit diagram
4:the components
Which one is the answer
Answer:
1: the negative battery terminal
Explanation:
When we design and develop an electrical circuit in electrical and electronics engineering, it is important that we define a reference point for all electronic signals from which we can measure voltage. Although, the voltage passing through a reference point in an electrical circuit is typically 0 Volts.
Also, a ground is a common return path in an electrical circuit for the current flowing through the circuit.
When working on a direct current (DC) circuit that is mainly operated using a battery, the negative terminal of the battery would be the ground (reference point) for all the components connected to the electrical circuit.
Hence, in the context of electronics, the term "ground" is often used to refer to the negative battery terminal.
a 0.505-in.diameter metal bar with a 2-in. gauge length l0 is subjected to a tensile test. the following measurements are made in the plastic region. determine the strain hardening exponent for the metal.
The strain hardening exponent for the metal can be determined based on the given measurements in the plastic region of the tensile test conducted on the 0.505-inch diameter metal bar with a 2-inch gauge length.
How can the strain hardening exponent be calculated using the measurements from the plastic region of the tensile test?The strain hardening exponent characterizes the relationship between the true stress and true strain in the plastic region of a material. To determine the strain hardening exponent for the metal, we need to analyze the measurements obtained during the tensile test. The true stress and true strain can be calculated using the following formulas:
True Stress = Load / Area
True Strain = ln(Original Gauge Length / Final Gauge Length)
By plotting the true stress and true strain data on a logarithmic scale, we can determine the slope of the resulting curve. This slope represents the strain hardening exponent, denoted by "n." The strain hardening exponent indicates how the material's strength increases as deformation occurs. By analyzing the given measurements in the plastic region, we can calculate the strain hardening exponent for the metal bar.
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difference between PN junction diode and Bipolar diodes?
PN junction diode and bipolar junction diode are two types of diodes with distinct characteristics and functionalities.
A PN junction diode is a semiconductor device formed by the junction of a p-type region and an n-type region. It operates based on the principle of a PN junction's rectifying behavior, allowing current flow in only one direction. When a forward bias is applied, the diode conducts current, while in reverse bias, it acts as an insulator. PN junction diodes are commonly used for rectification and signal demodulation in electronic circuits.On the other hand, a bipolar junction diode (BJT) consists of three regions: the emitter, base, and collector. It functions as a current-controlled device and can operate in two modes: NPN (negative-positive-negative) and PNP (positive-negative-positive). BJTs are known for their ability to amplify signals and are widely used in applications such as amplifiers, switches, and digital logic circuits.In summary, the main difference between PN junction diode and bipolar junction diode lies in their construction and operating principles. PN junction diodes are based on a single PN junction and primarily used for rectification, while bipolar junction diodes are composed of multiple regions and employed for signal amplification and switching.
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A picture showing the actual parts of a circuit and their connection is called_______ diagram
Answer:
a picture showing the actual parts of a circuit and their connection is call a Circuit diagram
Refrigerant-134a enters a 28-cm-diameter pipe steadily at 200 kPa and 20°C with a velocity of 5.5 m/s. The refrigerant gains heat as it flows and leaves the pipe at 180 kPa and 40°C. The specific volumes of R-134a at the inlet and exit are 0.1142 m3/kg and 0.1374 m3/kg. Determine (a) the volume flow rate of the refrigerant at the inlet, (b) the mass flow rate of the refrigerant, and (c) the velocity and volume flow rate at the exit.
Answer:
(a) The volume flow rate of the refrigerant at the inlet is 0.3078 m3/s
(b) The mass flow rate of the refrigerant is 2.695 kg/s
(c) The velocity and volume flow rate at the exit is 6.017 m/s
Explanation:
According to the given data we have the following:
diameter of the pipe=d=28 cm=0.28 m
inlet pressure P1=200 kPa
inlet temperature T1=20°C
inlet velocity V1=5.5 m/s
Exit pressure P2=180 kPa
Exit Temperature T2=40°C
a. To calculate the volume flow rate of the refrigerant at the inlet we would have to use the following formula:
V1=AV1
=π/4(0.28∧2)5
V1=0.3078 m3/s
b. To calculate the mass flow rate of the refrigerant we would have to use the following formula:
m=p1 V1
m=V1/v1
=0.3078/0.11418
=2.695 kg/s
c. To calculate the velocity and volume flow rate at the exit we would have to use the following formula:
m=m1=m2
V1/v1=V2/v2
V2=(v2/v1)v1
=(0.13741/0.11418)5
=6.017 m/s
"hapter One Review Questions 1. Where did the Industrial Revolution start and why did it begin there? 2. What does "emerging" mean, emerging technologies and how are they found? 3. What makes "emerging technologies" happen and what impact will they have on Individuals, Society, and Environment?
An agrarian and handicraft economy was replaced by one that was dominated by industry and machine manufacturing during the Industrial Revolution in modern history. The world as a whole was affected by this process after it started in Britain in the 18th century.
The first three industrial revolutions were which three?These first three industrial revolutions shaped our contemporary society. The world we live in underwent a fundamental transformation with the advent of each of these three innovations: the steam engine, the age of science and mass production, and the rise of digital technology. And right now, it's taking place once more, for the fourth time.
The term is frequently used to describe emerging technologies, or those expected to become available in the next five to ten years. It is typically reserved for technologies that are having, or are anticipated to have, significant social or economic effects.
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Understanding a product_____ _____ helps in waste management and in assessing environmental impacts
Understanding a product LCA (Life Cycle Assessment) helps in waste management and in assessing environmental impacts.
What is Life Cycle Assessment?The process of life cycle assessment evaluates the environmental effects of a product over the course of its existence. The following are the most crucial applications:
analysis of the life cycle stages' contributions to the overall environmental burden, typically with the intention of identifying changes that can be made to products or processes.Product comparisons for use internallyTo learn more about Life Cycle Assessment, refer:
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ctal numbers have a base of eight and the digits 0–7. Write the scripts octalToDecimal.py and decimalToOctal.py, which convert numbers between the octal
and decimal representations of integers. These scripts use algorithms that are
similar to those of the binaryToDecimal and decimalToBinary scripts developed in Section 4-3
**`octalToDecimal.py`**:
```python
def octal_to_decimal(octal):
decimal = 0
power = 0
while octal != 0:
digit = octal % 10
decimal += digit * (8 ** power)
power += 1
octal //= 10
return decimal
octal_number = input("Enter an octal number: ")
decimal_number = octal_to_decimal(int(octal_number))
print("Decimal representation:", decimal_number)
```
**`decimalToOctal.py`**:
```python
def decimal_to_octal(decimal):
octal = 0
power = 0
while decimal != 0:
digit = decimal % 8
octal += digit * (10 ** power)
power += 1
decimal //= 8
return octal
decimal_number = input("Enter a decimal number: ")
octal_number = decimal_to_octal(int(decimal_number))
print("Octal representation:", octal_number)
```
These scripts utilize algorithms similar to the ones used in the `binaryToDecimal` and `decimalToBinary` scripts. In `octalToDecimal.py`, the octal number is divided by 10 iteratively to extract each digit, which is then multiplied by the corresponding power of 8 and added to the decimal representation.
Similarly, in `decimalToOctal.py`, the decimal number is divided by 8 iteratively to obtain the octal digits, which are multiplied by the corresponding power of 10 and added to the octal representation.
By employing these scripts, you can conveniently convert numbers between octal and decimal representations using basic arithmetic operations.
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name two problems the refrigeration system may have if the condensing unit is exposed to a low ambient condition when not equipped with a low ambient head pressure controlled valve.
Insufficient refrigerant flow rates through metering devices and starved evaporator coils in condensers can result from low temperatures.
What is the refrigeration principle?A substance that moves heat from one place to another during a heat cycle is called a refrigerant. When a refrigerant is applied to the food that is kept in the refrigerator, it absorbs heat and transfers the heat to the surrounding area at a lower temperature. The refrigeration cycle is made up of four main parts: evaporator, compressor, condenser, and thermal expansion valve (TXV) metering device The refrigeration cycle's primary function is to transfer heat from indoor air to outdoor air.
The first law of thermodynamics is the underlying physics principle of mechanical refrigeration. According to this law, energy—or heat in this instance—cannot be produced or destroyed; rather, it can only be transferred from one location to another, and work is required to initiate the transfer of energy.
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A periodic digital waveform has a pulse width 25 and a period of 150 . Determine the frequency and the duty cycle
The frequency is 6.67 kHz and the duty cycle is:16.67%.
Frequency and duty cycle
Given:
Pulse width=25
Period=150
Frequency:
Frequency=1/(150×10^-6)
Frequency=1/0.00015
Frequency=6.666 kHz
Frequency=6.67 kHz (Approximately)
Duty cycle:
Duty cycle=(25×10^-6)/ (150×10^-6)×100%
Duty cycle=16.67%
Therefore the frequency is 6.67 kHz and the duty cycle is:16.67%.
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what is a computer device
A cylindrical specimen of steel has an original diameter of 12.8 mm. It is tested in tension its engineering fracture strength is found to be 460 MPa. If the cross-sectional diameter at fracture is 10.7 mm, determine (max. pts. 8): a. The ductility in terms of percent reduction in area b. The true stress at fracture
Answer:
a) The ductility = -30.12%
the negative sign means reduction
Therefore, there is 30.12% reduction
b) the true stress at fracture is 658.26 Mpa
Explanation:
Given that;
Original diameter \(d_{o}\) = 12.8 mm
Final diameter \(d_{f}\) = 10.7
Engineering stress \(\alpha _{E}\) = 460 Mpa
a) determine The ductility in terms of percent reduction in area;
Ai = π/4(\(d_{o}\) )² ; Ag = π/4(\(d_{f}\) )²
% = π/4 [ ( (\(d_{f}\) )² - (\(d_{o}\) )²) / ( π/4 (\(d_{o}\) )²) ]
= ( (\(d_{f}\) )² - (\(d_{o}\) )²) / (\(d_{o}\) )² × 100
we substitute
= [( (10.7)² - (12.8)²) / (12.8)² ] × 100
= [(114.49 - 163.84) / 163.84 ] × 100
= - 0.3012 × 100
= -30.12%
the negative sign means reduction
Therefore, there is 30.12% reduction
b) The true stress at fracture;
True stress \(\alpha _{T}\) = \(\alpha _{E}\) ( 1 + \(E_{E}\) )
\(E_{E}\) is engineering strain
\(E_{E}\) = dL / Lo
= (do² - df²) / df² = (12.8² - 10.7²) / 10.7² = (163.84 - 114.49) / 114.49
= 49.35 / 114.49
\(E_{E}\) = 0.431
so we substitute the value of \(E_{E}\) into our initial equation;
True stress \(\alpha _{T}\) = 460 ( 1 + 0.431)
True stress \(\alpha _{T}\) = 460 (1.431)
True stress \(\alpha _{T}\) = 658.26 Mpa
Therefore, the true stress at fracture is 658.26 Mpa
Care must be taken when working with parallel circuits because current can be flowing in one part of the circuit even though another part of the circuit is turned OFF.
True False
This statement is true. When working with parallel circuits, each branch provides a separate path for the current to flow.
As a result, even if one part of the circuit is turned off, the current may still be flowing through the other branch(es). This can create a potentially dangerous situation if someone assumes that the entire circuit is de-energized and starts working on it. Therefore, it is possible for current to continue to flow in one part of the circuit even though another part of the circuit is turned off. This can lead to safety hazards, as well as inaccurate measurements or calculations if the current flow is not properly accounted for
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technician a says that loose ball joints can cause the vehicle to wander. technician b says that loose control arm bushings can affect alignment angles. who is correct?
Technician a is correct. The car may veer off course due to loose ball joints. The propensity of a vehicle to veer from one side of the road to the other is known as wander.
The propensity of a vehicle to veer from one side of the road to the other is known as wander. Uneven tire pressure or mismatched tires are potential causes number one. Linkage binding or inadequate lubrication is a potential cause number two. The third potential factor is binding or inadequate lubrication of the steering gear.
The bottom line is that before you start to address poor steering performance, you must identify the underlying source of the issue. Oversteer and understeer have been discussed separately, but we've also included 10 other common steering issues with their likely causes below. You can stop cursing and start fixing your steering problems by locating potential problem areas.
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