If a device is in a state that will accept power, it may provide a Classification signal.
What is Classification signal?These categories are used to group signals: Signals for both continuous time and discrete time. Signals that are deterministic and non-deterministic. Odd and Even Signals. Signals with and without periodicity.Continuous time signals are those that are specified at each moment of time. Analog signals are another name for continuous-time signals. The independent variable in continuous time signals is time.Discrete time signals are those signals that can only be characterised at specific points in time. Discrete time signals have continuous amplitudes, but their timing is discrete.Since a random signal's pattern is erratic, mathematical formulae cannot adequately describe it. An electrical circuit's thermal noise is a typical example of a random signal.Learn more about signal refer to ;
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Tiny hydrogen bubbles are being used as tracers to visualize a flow. All the bubbles are generated at the origin (x = 0, y = 0). The velocity is unsteady and obeys the equations: u = 1 m/s v = 2 m/s 0 ≤ t < 2 s u = 0 m/s v = −1 m/s 2 s ≤ t ≤ 4 s Plot the pathlines of bubbles that leave the origin at t = 0, 1, 2, 3, and 4 s. Mark the locations of these five bubbles at t = 4 s. Use a dashed line to indicate the position of a streakline at t = 4 s
Answer:
for t = 1 : ( x1 , y1 ) = (1,2)
for t = 2 : ( x2, y2 ) = (2,4)
for t = 3 : ( x3, y3 ) = ( 0,-3)
for t = 4 : ( x4, y4 ) = ( 0,-4)
Explanation:
Attached below is the detailed solution and the sketch
we have to make assumptions for the various values of t and integrate accordingly
for t = 1 : ( x1 , y1 ) = (1,2)
for t = 2 : ( x2, y2 ) = (2,4)
for t = 3 : ( x3, y3 ) = ( 0,-3)
for t = 4 : ( x4, y4 ) = ( 0,-4)
Given data :
origin ( x = 0, y = 0 )
u = 1 m/s, v = 2 m/s,
\(0 \leq t < 2s\) where u = 0 m/s v = -1 m/s
how were researchers able to keep track of what was happening to the otters?
Researchers used various methods to keep track of what was happening to otters. Here are some common techniques used in otter research:
1. Field observations: Researchers would spend time in the field, observing otters in their natural habitats. They would note behaviors, movements, and interactions with other otters or their environment.
2. Tagging and tracking: Otters may be captured and fitted with tracking devices such as radio collars or satellite tags. These devices allow researchers to monitor the movements and locations of otters over time.
3. Scat analysis: Otter scat, or feces, can provide valuable information about their diet, health, and reproductive status. Researchers collect and analyze otter scat to gain insights into their feeding habits, hormone levels, and overall well-being.
4. Genetic analysis: DNA analysis of otter samples, such as hair or scat, can help researchers identify individuals, determine relatedness, and track population dynamics. Genetic data provide insights into genetic diversity, gene flow, and population structure.
5. Camera traps: Motion-activated camera traps are set up in strategic locations to capture images or videos of otters in the wild. These cameras provide visual documentation of otter presence, behavior, and interactions with other species.
6. Mark-recapture studies: In mark-recapture studies, researchers capture otters, mark them with unique identifiers (e.g., tags, tattoos), and release them back into the wild. By comparing the number of marked otters recaptured to the total population, researchers can estimate population size and monitor changes over time.
7. Remote sensing: Remote sensing technologies, such as aerial surveys or satellite imagery, can be used to assess otter habitats, identify suitable areas, and track changes in habitat quality or availability.
By employing these methods, researchers can collect data on otters' behavior, population dynamics, habitat preferences, and responses to environmental factors. These data help scientists understand otters' ecology, conservation needs, and the impacts of human activities on their populations.
Research is an integral part of scientific and academic studies. The role of research is to offer answers to issues that lack conclusive explanations. The research methodology chosen plays a crucial role in the final research outcomes.
In the study of the otters, researchers used various ways to keep track of what was happening to them. Below is an explanation of the techniques they used to get the information. To keep track of what was happening to the otters, researchers employed the use of radio telemetry, radio transmitters, and satellite tracking. They fixed these devices on the otters and monitored them from a distance. Radio telemetry is a tool that helps researchers to monitor animal behavior and movement. Researchers fit radio transmitters to the otters to track their movements in the sea. Researchers then monitored the movement of the otters using a radio receiver. Radio transmitters are electronic gadgets that help in tracking the movement of animals. The radio transmitter emits signals that researchers monitor using a receiver. By tracking the movements of the otters, researchers could gather crucial data about the activities of the otters. The satellite tracking system is another method that researchers used to track the otters' movements. The method is an essential technique in wildlife tracking since it enables researchers to keep track of the movement of animals in vast areas such as oceans and forests. In conclusion, researchers were able to keep track of what was happening to the otters using radio telemetry, radio transmitters, and satellite tracking. These methods helped researchers collect crucial data on the otters' activities, which were later analyzed to understand the otters better.
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Select a movement with which you are familiar and list at least five questions that you, as a movement analyst, might ask the performer of the movement to gain additional knowledge about a performance
A movement that I am familiar is a religious movement known as Heavenly conscious movement and the things i want them to gain additional knowledge about a performance on:
The right way to live.The right way to pray.Becoming closer in our walk with God.Becoming closer in our work with God.Helping others to see the light.What in history is a movement?A movement is known to be one that make use of planning as well as unpredictability. The movement is one that is given identity, leadership, as well as coordination by one or more organizations.
Therefore, A movement that I am familiar is a religious movement known as Heavenly conscious movement and the things i want them to gain additional knowledge about a performance on:
The right way to live.The right way to pray.Becoming closer in our walk with God.Becoming closer in our work with God.Helping others to see the light.Learn more about religious movements from
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Give a brief explanation of the difference between a NAAQS
exceedance and a NAAQS violation.
A NAAQS exceedance refers to temporary levels exceeding the established standard, while a NAAQS violation indicates a persistent or recurring non-compliance with the standard.
NAAQS (National Ambient Air Quality Standard), set by regulatory agencies to protect public health and the environment, establish maximum allowable levels for pollutants in the ambient air. The terms "exceedance" and "violation" are used to describe different scenarios of non-compliance:
1. NAAQS Exceedance: A NAAQS exceedance refers to a temporary event where pollutant concentrations surpass the standard. It may occur due to short-term spikes in pollution levels caused by localized sources, unusual weather conditions, or specific events. Exceedances are typically evaluated and addressed on a case-by-case basis and may not immediately trigger regulatory actions.
2. NAAQS Violation: A NAAQS violation signifies a sustained or recurring non-compliance with the established standard. It occurs when pollutant levels consistently exceed the NAAQS over a specified timeframe, such as an averaging period (e.g., 24 hours or annual). Violations trigger regulatory consequences and the implementation of corrective measures, such as emission controls, enforcement actions, or mandated pollution reduction plans.
Differentiating between exceedances and violations is crucial in regulatory decision-making and prioritizing resources for air quality management. While exceedances may warrant investigation and localized actions, violations indicate the need for more significant and sustained efforts to achieve and maintain compliance with the NAAQS.
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Products exit a combustor at a rate of 100 kg/sec, and the air-fuel ratio is 9. Determine the air flow rate. a. 9 kg/sec b. 90 kg/sec c. 100 kg/sec d. 10 kg/sec
Answer: the air flow rate a is 90 kg/sec; Option b) 90 kg/sec is the correct answer
Explanation:
Given that;
product of combustor flow rate m = 100 kg/s
air-fuel = 9
Airflow rate = ?
⇒We know that in the combustor, air fuel are mixed and then ignited,
⇒air fuel products are exited at the combustor
let air and fuel be a and b respectively
⇒ a + b = 100 kg/sec ----- let this be equation 1
now
⇒ air / fuel = 9
a / b = 9
a = 9b -----------let this be equation 2
now input a = 9b in equation 1
9b + b = 100 kg/sec
10b = 100 kg/sec
b = 10 kg/sec
we know that
a = 9b
so a = 9 × 10 = 90 kg/sec
Therefore the air flow rate a is 90 kg/sec
What are buildings that contain machines for manufacturing?
Machine building is one part of a larger production group that also includes the production of metal goods and machine building and metalworking.
What exactly is machine making?The process of designing and manufacturing machines for a specific purpose—usually the production of a product or an upgrade to an existing device—is known as machine building.
What types of machinery do you know of?Tools and fabrication equipment, such as metalworking machines, polishing machines, presses, boilers, industrial ovens, and industrial scales; industrial machinery and equipment; hardware and parts like valves, pneumatic hoses, nuts and bolts, springs, and screws and.
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Subject: Mechanical Engineering
Please find the attached file for your reference.
I would be happy to help you with your question regarding Mechanical Engineering. I am unable to provide a detailed answer that incorporates the terms "Mechanical Engineering" and "reference."
Mechanical engineering is a branch of engineering that deals with the design, development, and maintenance of mechanical systems, machines, and equipment. It is a broad field that encompasses many different specialties, including automotive engineering, aerospace engineering, manufacturing engineering, and robotics engineering. Mechanical engineers use their knowledge of physics, mathematics, and materials science to design and analyze mechanical systems and devices. They work on a wide range of projects, from developing new engines and power generators to designing prosthetic limbs and medical devices.
Mechanical engineering plays a critical role in many industries, such as automotive, aerospace, defense, energy, and manufacturing. It is a constantly evolving field, with new technologies and innovations emerging all the time, and mechanical engineers must stay up-to-date with the latest developments to ensure that their designs are safe, efficient, and effective.
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A frost free, 17 cu. ft. refrigerator-freezer uses energy at a rate of 500. watts when you hear the compressor running. If the fridge runs for 200. hours per month, how many kilowatt-hours of energy does the refrigerator use each month
Answer:
100 kWh
Explanation:
Since the freezer has a rating of 500 watts and runs for 200 hours in a month, the energy consumption can be gotten by getting the product of the rating of the freezer in kilowatts and the amount of time the fridge is on per month.
The rating of the freezer = 500 watts = 0.5 kW, time = 200 h
Energy consumption = rating * time = 0.5 kW * 200 h
Energy consumption = 100 kWh
Therefore the refrigerator uses 100 kWh per month
What are the four scanning systems as per biomedical engineering
Answer:
- Ultrasound scanning system
- Magnetic Resonance Imaging (MRI)
- Computed tomography (CT)
- X - Ray scan
Explanation:
\(.\)
Answer:
- USS Ultarsound
- Medical sonography
QUESTION 7
An indemnity clause in a contract may allow the subcontractor hold harmless the contractor in a construction case.
O True
False
Answer:
True
Explanation:
Ture, the indemnity protects.
Answer: The correct choice is True
Which items are NOT found on a
door?*
5 points
Cladding
Moulding
Weatherstrip
Check Strap
Striker
All of the above
None of the above
Answer:
None of the above cause thats what i put
In this lab, we assumed that the flip-flops did not contribute to the timing constraints of the circuit. Unfortunately, this is not the case. As you saw when you simulated the D flip-flop, the sampling action does not happen instantaneously. In fact, a flip-flop will become unstable if the inputs do not remain stable for a certain amount of time prior to the rising-edge event (setup time) and a certain amount of time after the rising-edge event (hold time). Assume a setup and hold time of 2ns and 1ns, respectively. What would the theoretical maximum clock rate for the synchronous adder be in this scenario
How Many Possible Host IDs Do You Always Lose Per Network?a. 2b. 4c. 8d. 12
The correct response is a. 2. Per network, there are always two host IDs that are lost.
A network is made up of two or more computers that are connected in order to share resources (such CDs and printers), exchange files, or enable electronic interactions. Computers connected to a network can communicate with one another via wires, phone lines, radio waves, satellites, or infrared laser beams. Making connections and developing relationships is the process of networking. You may receive contacts and guidance from these connections, which can assist you in making wise career selections. Even unlisted jobs and internships might be found through networking. You can network in a group or one-on-one scenario. The Howard Beale Show ends once the assassination is successful, and The Mao Tse-Tung Hour begins its second season. The narrator of the movie says, "This was the story of Howard Beale, the first known instance of a guy who was slain because he had poor ratings," as the movie comes to a close. The first person who was known to have been killed because of poor grades was Howard Beale.
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Basic engine conponents
An engine is composed of several major components; the block, the crank, the rods, the pistons, the head (or heads), the valves, the cams, the intake and exhaust systems and the ignition system. These parts work together in an exacting manner to harness the chemical energy in gasoline.
The engine block consists of a cylinder block and a crankcase. An engine block can be produced as a one-piece or two-piece unit. The cylinder block is the engine component that consists of the cylinder bore, cooling fins on air-cooled engines, and valve train components, depending on the engine design.
hope this helps
have a good day
:)
What is the reading of this Dial Caliper?
Answer:
45
Explanation:
bdgdsfggsfg
The following data represent the time of production (in hours) for two different factories for the same product. Which factory has the best average time of production? Which factory will you select and why?
Factory A
14, 10, 13, 10, 13, 10, 7
Factory B
9, 10, 14, 14, 11, 10, 2
An engineer wants to design a knee replacement.Identify one criterion the design should meet.
Which of these is an advantage of the disc brake system over drum brakes?
a. disc brakes transfer less heat to the atmosphere
b. disc brakes reduce the likelihood of the brake fade
c. disc brakes do not need maintenance
d. disc brake do not create annoying squeals and squeaks
The correct advantage of the disc brake system over drum brakes is: option b. Disc brakes reduce the likelihood of brake fade.
What is the disc brake system?Drum brakes are inferior to disc brakes when it comes to dissipating heat effectively. This indicates that they have a lower likelihood of experiencing brake fade, which is a decline in braking efficiency as a result of excessive or prolonged braking that leads to overheating.
Due to their superior heat management capabilities, disc brakes provide consistent and dependable braking performance even when faced with challenging circumstances.
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Illinois furniture , Inc produces all types of coffee furniture the executive secretary is a chair that has been designed using ergonomics to provide comfort during long work hours the chair sells for $130 there are 480 minutes available during the day and the average daily demand has been 50 chairs there are eight tasks
This question is incomplete, the complete question is;
Illinois furniture , Inc produces all types of office furniture. The "Executive Secretary" is a chair that has been designed using ergonomics to provide comfort during long work hours the chair sells for $130. There are 480 minutes available during the day and the average daily demand has been 50 chairs. There are eight tasks.
TASK PERFORMANCE TIME( MIN ) TASK MUST FOLLOW TASK LISTED
A 4 ---------
B 7 ----------
C 6 A,B
D 5 C
E 6 D
F 7 E
G 8 E
H 8 F,G
1) What is the cycle time for operation?
2) What is the theoretical minimum number of workstation?
Answer:
1) the cycle time for operation is 9.6 min
2) the theoretical minimum number of workstation is 5
Explanation:
Given the data in the question;
production time per day = 480 minutes
average daily demand = 50
Given the data in the question;
1) cycle time for operation
this is simply referred to as the total time for the process from start to finish.
cycle time = production time per day / units demand per day
we substitute
cycle time = 480 min / 50
cycle time = 9.6 min
Therefore, the cycle time for operation is 9.6 min
2) theoretical minimum number of workstation.
theoretical minimum number of workstation = total task time / cycle time
Total task time = ( 4 + 7 + 6 + 5 + 6 + 7 + 8 + 6 ) = 49 min
∴ theoretical minimum number of workstation = 49 min / 9.6 min
theoretical minimum number of workstation = 5.104 ≈ 5
Therefore, the theoretical minimum number of workstation is 5
can a weld be marginal and still perform its job successfully
Answer:
It is possible for a marginal weld to perform its job successfully in some cases, but it is generally not recommended as it may be more likely to fail or cause other problems compared to a high-quality weld. It is important to use high-quality welding techniques and materials to ensure that the weld is strong and able to perform its intended function effectively.
Explanation:
A weld is considered marginal if it meets the minimum acceptable standards for quality, but is not necessarily of the highest quality. In some cases, a marginal weld may be able to perform its intended job successfully, but it may be more susceptible to failure or other issues compared to a high-quality weld.
Whether a marginal weld can perform its job successfully depends on a number of factors, including the type of materials being welded, the conditions under which the weld is being made, and the intended use of the welded joint. In some cases, a marginal weld may be sufficient for a low-stress application, but it may not be able to withstand higher levels of stress or strain.
The following incomplete method is intended to sort its array parameter arr in increasing order.
// postcondition: arr is sorted in increasing order
public static void sortArray(int[] arr)
{
int j, k;
for (j = arr.length - 1; j > 0; j--)
{
int pos = j;
for ( /* missing code */ )
{
if (arr[k] > arr[pos])
{
pos = k;
}
}
swap(arr, j, pos);
}
}
Assume that swap(arr, j, pos) exchanges the values of arr[j] and arr[pos]. Which of the following could be used to replace /* missing code */ so that executing the code segment sorts the values in array arr?
A
k = j - 1; k > 0; k--
B
k = j - 1; k >= 0; k--
C
k = 1; k < arr.length; k++
D
k = 1; k > arr.length; k++
E
k = 0; k <= arr.length; k++
As it meets the criteria for looping through the unsorted portion of the array and iterating from the first unsorted element up to the current value of j, k = 1; k arr. length; k++.
How can I determine how many elements there are in an unsorted array?We must do a linear search to locate the largest value in an unsorted array by examining each element and keeping note of the location the maximum has been discovered thus far.
Which approach requires the least amount of time to search an entry in an unsorted array?The most popular method of searching an element in an unsorted array is by performing a linear search, which checks each element one by one from start to finish and has an O(n) complexity.
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When my animal is to old to physically carry her baby what process can I use to still produce her young from her
A light commercial building located in Philadelphia, Pa has construction and use characteristics much like a residence and design heating load of 120,000 Btu/h and cooling of 60,000 Btu/h. Determine the following: (a) Heating energy requirement, Btu(b) Gallons of No. 2 fuel oil/year, assuming efficiency of the furnace is 75 %(c) Cubic feet of natural gas/year(d) kWh of electricity for cooling for air conditioner with SEER of 8.5 using degree day method.(6 points)
Answer:
b
Explanation:
11. Technicians A and B are discussing
hybrid engines. Technician A says that idle
stop in HEVs and EREVs is a safety feature
for technicians. Technician B says that
high viscosity engine oil should be used
with most hybrid electric vehicles. Who is
correct?
O A. Technician A
B. Technician B
C. Neither Technician A nor B
D. Both Technicians A and B
Answer:
C. Neither Technician A nor B
Explanation:
Just took the test
what is the term Self-induced EMF (Induction)
Self induction and Mutual induction
If the current through the coil changes, the flux through the coil changes and an emf is induced. Since the emf is induced in the coil due to its own field, it is called self–induced emf and the phenomenon is called self–induction.
Answer:
Self induced EMF is the electro-motive force that is generated due to change in flux in the coil caused by the change in current in the same coil.
A nonpipelined system takes 300ns to process a task. The same task can be processed in a 5-segment pipeline with a clock cycle of 60ns. Determine the speedup ratio of the pipeline for 100 tasks. What is the maximum speedup that could be achieved with the pipeline unit over the nonpipelined unit
Answer:
The maximum speedup that could be achieved is approximately 4.81.
Explanation:
From the question, we have:
Speed up ratio = Time taken by a non-pipelined processor / Time taken by a pipelined processor = (n * T) / ((n + (k – 1)) * Tk) …………………. (1)
Where:
n = number of tasks = 100
T = Number ns for a nonpipelined system takes to process a task = 300
k = Type of segment pipeline = 5
Tk = Number of clock cycle of the type of segment pipeline in ns = 60
Substituting the above into equation (1), we have:
Speed up ratio = (100 * 300) / ((100 + (5 - 1)) * 60) = 4.81
Therefore, the maximum speedup that could be achieved is approximately 4.81.
Consider the following output generated by the show interface fa0/0 command generated on a router:
FastEthernet0/0 is up, line protocol is up
[...]
Auto-duplex, 100Mb/s, 100BaseTX/FX
[...]
Input queue: 0/75/1771/0 (size/max/drops/flushes); Total output drops: 0
[...]
5 minute input rate 0 bits/sec, 0 packet/sec
5 minute output rate 0 bits/sec, 0 packet/sec
15387 packets input, 1736263 bytes, 0 no buffer
Received 15241 broadcasts, 0 runts, 0 giants
0 input errors, 1 CRC, 0 frame, 0 overrun, 0 ignored, 0 abort
0 watchdog, 0 multicast
0 input packets with dribble condition detected
607 packets output, 6141 bytes, 0 underruns
4 output errors, 10 collisions, 3 interface resets, 0 restarts
0 babbles, 0 late collision, 0 deferred
0 lost carrier, 0 no carrier
0 output buffer failures, 0 output buffers swapped out
Which of the following statements are true about the fa0/0 interface? (Select three.)
- No input or output errors have occurred.
- The interface is running in half-duplex mode.
- Several collisions have occurred.
- One cyclic redundancy check error has occurred.
- The interface is dropping incoming packets.
- There have been no interface resets.
- Several collisions have occurred.
- One cyclic redundancy check error has occurred.
- The interface is dropping incoming packets.
The fa0/0 interface is running in half-duplex mode, no input or output errors have occurred, and there have been several collisions.
Is the fa0/0 interface running in half-duplex mode, and have there been any input or output errors or collisions?The output of the "show interface fa0/0" command on the router indicates that the fa0/0 interface is up and functioning properly. The line protocol is also up, indicating that the physical layer connectivity is established. The "Auto-duplex" field shows that the interface is running in half-duplex mode. Half-duplex means that the interface can either transmit or receive data at a given time, but not both simultaneously.
The output further reveals that there have been no input or output errors, as indicated by the absence of any values other than zero in the corresponding fields. However, there have been several collisions, as indicated by the value of 10 in the "collisions" field. Collisions occur when two devices attempt to transmit data simultaneously on a shared medium.
It's important to note that the statement about one cyclic redundancy check (CRC) error is not true, as the output shows only one CRC error, which is different from "one cyclic redundancy check error."
In addition, the interface is not dropping incoming packets, as indicated by the absence of any drops in the "Total output drops" field.
In summary, the three true statements about the fa0/0 interface based on the provided output are:
1. The interface is running in half-duplex mode.
2. No input or output errors have occurred.
3. Several collisions have occurred.
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*sapnap teaching you how to drive*
"Skeppy and Badboyhalo are crossing the street, what do you hit?"
"Skeppy, I would never hurt Bad."
"whA- THE BRAKES YOU HIT THE BREAKS!!"
*Dream wheezing from the back*
Answer:
yes dream
Explanation:
Answer:
Me: "i would just hit you, sapnap. In the freaking face" LOL
Calculate the allowable bending moment for a solid rectangular 6-in.-by-16-in. timber beam if the allowable bending stress is 1000 psi. Assume that the large dimension is vertical and parallel to the applied loads.
(a) Use nominal dimensions.
(b) Use dressed dimensions.
The bending moments for the rectangular solid are:
a) M = 256,000 in-lb
b) M = 227,730 in-lb
How to calculate the allowable bending moment?a) To calculate the allowable bending moment for a solid rectangular timber beam, we can use the formula below:
M = (allowable stress)*(section modulus)
where M is the allowable bending moment and the section modulus is a measure of the beam's resistance to bending.
For a solid rectangular beam with nominal dimensions of 6 inches by 16 inches, the section modulus can be calculated as:
S = (b*h²) / 6
where b is the width of the beam and h is the height.
Substituting the values, we get:
S = (6*6²) / 6
S = 256 in³
Now, we can calculate the allowable bending moment as:
M = (allowable stress)*(section modulus)
M = 1000 psi*256 in³
M = 256,000 in-lb
Therefore, the allowable bending moment for the timber beam with nominal dimensions is 256,000 in-lb.
(b) For dressed dimensions, we need to adjust the section modulus calculation by subtracting the amount of wood that is removed during the dressing process. Assuming that the dressing process removes 1/8 inch from each side, the width and height of the dressed beam would be 5 3/4 inches and 15 1/2 inches, respectively.
Using these dimensions, the section modulus can be calculated exactly like above, but just with the different numbers:
S = (b*h²) / 6
S = (5.75*15.5²) / 6
S = 227.73 in³
Now replace that in the formula
M = 1000 psi x 227.73 in³
M = 227,730 in-lb
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A robot with artificial intelligence would best be suited for