Question 1: Assembly code to add 5 to AX register seven times, and then show the flags values from emulator in your answer, assuming that the Initialization value of AX is 60h
After the execution of the above code, the flags values can be determined by using the below command:pushf ;stores flags valuespop ax ;loads flag values in ax register
Question 2: Program to print out ASCII value from 0 to D on the screen starting from 30h which is 0 in ASCII code and incrementing 20 times
Finally, create a print_char function to print the characters in the console or on the screen:print_char:mov ah,2h ;function for printing one characterint 21hret;
Question 3: Translation of the following java into assembly codeint val1 = 5, val2 = 8, val3 = 10;if ((val1 < val2) || (val2 < val3)){ System.out.println("Hello");}
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Cho biết tác dụng chung của các hệ giằng khung ngang nhà công nghiệp nhẹ 1 tầng 1 nhịp.
When installing an engine on an engine stand for disassembly, Technician
A says to always be sure the stand is rated at or above the engine's
weight. Technician B says the engine's center of gravity must be balanced
on the stand for safety. Who is correct?
Select one:
A. Technician A
B. Technician B
C. Both A and B
D. Neither A nor B
Answer:
The answer is D
Explanation:
Because neither of them are wrong I dont know how to really tell you!
Ball valves allow or prevent flow with a one-quarter turn of their handles in much the same way as _______ valves
Answer: quarter turn
Explanation: There are two basic types of valves ball valves and quarter turn valves or unblocks the hole, either allowing or preventing fluid flow.
Legal metrology would protect consumers from businesses that do not take measurements according to defined measuring regulations.
From what my research concluded, true
Za answa iz:
True
Twust meh
Identify the advantages of using 6 tube passes instead of just 2 of the same diameter in shell-and-tube heat exchanger.What are the advantages and disadvantages of using 6 tube passes instead of just 2 of the same diameter?
Answer:
Please check explanation for answer
Explanation:
Here, we are concerned with stating the advantages and disadvantages of using a 6 tube passes instead of a 2 tube passes of the same diameter:
Advantages
* By using a 6 tube passes diameter, we are increasing the surface area of the heat transfer surface
* As a result of increasing the heat transfer surface area, the rate of heat transfer automatically increases too
Thus, from the above, we can conclude that the heat transfer rate of a 6 tube passes is higher than that of a 2 tube passes of the same diameter.
Disadvantages
* They are larger in size and in weight when compared to a 2 tube passes of the same diameter and therefore does not find use in applications where space conservation is quite necessary.
* They are more expensive than the 2 tube passes of the same diameter and thus are primarily undesirable in terms of manufacturing costs
An engine with low oil pressure may have a noticeable
1: A
2: A
3:B
4:B
5:A
1. A ___ timer has preset value timer instructions. a. variable b. discrete c. fixed d. system 2. The format uses coils to display the timer instruction. a. coil b. block c. timer d. None of the above
1. A fixed timer has preset value timer instructions
2. The coil format uses coils to display the timer instruction
What is a fixed timer?A fixed timer refers to a timer configuration characterized by a predefined delay duration that remains unalterable. In essence, the timer is preprogrammed to initiate an action or signal after a specific, predetermined period, unaffected by any input signals it may receive.
Fixed timers find extensive application in industrial control systems, where they are employed for implementing precise timing delays or generating periodic pulses.
The distinct feature of a fixed timer lies in its unmodifiable nature, as the preset delay remains constant and unchangeable. This predetermined delay duration guarantees consistent timing accuracy, enabling reliable and predictable triggering of actions or signals in various industrial contexts.
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Complete question:
1. A ___ timer has preset value timer instructions. a. variable b. discrete c. fixed d. system
2. The ___ format uses coils to display the timer instruction. a. coil b. block c. timer d. None of the above
An elevation is.... * 10 points a. A detailed description of requirements, composition and materials for a proposed building. b. A view of a building seen from one side, a flat representation of one façade. This is the most common view used to describe the external appearance of a building. c. The development of the last remaining lots in an existing developed area, the new development within an area already served by existing infrastructure and services, or the reuse of already developed, but vacant properties. d. The practice of creating structures and using processes that are environmentally responsible and resource-efficient throughout a building's life-cycle from siting to design, construction, operation, maintenance, renovation and deconstruction.
Answer:
b. A view of a building seen from one side, a flat representation of one façade. This is the most common view used to describe the external appearance of a building.
Explanation:
An elevation is a three-dimensional, orthographic, architectural projection that reveals just a side of the building. It is represented with diagrams and shadows are used to create the effect of a three-dimensional image.
It reveals the position of the building from ground-depth and only the outer parts of the structure are illustrated. Elevations, building plans, and section drawings are always drawn together by the architects.
What are the advantages of triggering circuit
for thyrestors?
Answer:
For most applications, it is simple, dependable, efficient, and straightforward to apply - a simple trigger signal may be provided, with appropriate processing if necessary. This implies that an appropriate trigger signal may be generated using other electrical circuits and then applied to the SCR.
Explanation:
Explain when single-stranded or multistranded wire should be used.
A rain gutter is to be constructed from a metal sheet of width 3m by bending up one-third of the sheet on each side through an angle θ. How should θ be chosen so that the gutter will carry the maximum amount of water?.
The area of the gutter is therefore equal to the area of the rectangle plus the area of the triangles.
A = rectangle + 2 * triangle
= 10h + 2 * (1/2 hw)
Using trig work out h and w.
h = 10 sin ?
w = 10 cos ?
A = 10h + hw
= 100sin? + 100sin?cos?
Differentiate the expression (either use the product rule for sin? cos?, or write 100sin?cos? as 50sin2? using the double angle formula)
A = 100sin? + 50sin2?
dA/dt = 100cos? + 100cos2?
For A to be a max or min the derivative must equal zero
100cos? + 100cos2? = 0
cos? + cos2? = 0
Use the double angle formula to write cos2? as 2cos^2 ? - 1
cos? + 2cos^2 ? - 1 = 0
2cos^2 ? + cos? - 1 = 0
This quadratic factorizes:
(2cos? - 1)(cos? + 1) = 0
This means that
cos ? = 1/2 or cos ? = 1
giving:
? = pi/3 or ? = pi
Which means that to achieve the maximum area ? should be pi/3 = 60 degrees
You can check that this is the max by substituting in these values of theta and the two end points (theta = 0, theta = pi), and seeing that pi/3 gives the maximum.
The maximum area is therefore
A = 100sin? + 100sin?cos?
= 100sin(pi/3) + 100sin(pi/3)cos(pi/3)
= 100 sqrt(3) / 2 + 100 sqrt(3)/2 * 1/2
= 100 * 3/2 * sqrt(3) / 2
= 3 * 25 * sqrt(3)
= 75 sqrt(3)
= 129.9...
= 130 cm^3
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Raven is adding FSMO roles to domain controllers in the domain1.com forest. The forest contains a single domain and three domain controllers, DC1, DC2, and DC3. DC1 contains a copy of the global catalog, and all three domain controllers have the latest version of Windows Server 2019 installed. Which of the following is a best practice that Raven should follow? She should use DC2 or DC3 as the Domain Naming Master. B She should create the Domain Naming Master role on DC1. She should create three Domain Naming Master roles, one for each domain controller. She does not need to create the Domain Master role because DC1 contains a copy of the global catalog.
The best practice that Raven should follow is to use DC2 or DC3 as the Domain Naming Master of the following is a best practice that Raven should follow. The correct option is A.
The management of the addition or deletion of domains from the forest is the responsibility of the Domain Naming Master. For redundancy and fault tolerance, it is advised to split the FSMO roles among several domain controllers.
Since DC1 already has a copy of the global catalog, it is advantageous to choose a different domain controller (DC2 or DC3) as the Domain Naming Master to disperse the workload and guarantee high availability. This ensures that the forest's operations may continue even if one domain controller goes offline and prevents the creation of a single point of failure.
Thus, the ideal selection is option A.
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Pls help!!! will give brainly!!!
Bridge collapses have hit the news recently with more frequency. Do some research online and state two possible reasons for these collapses. How might those employed in the Health, Safety, & Environmental Management pathway help prevent these collapses and keep us safe?
Answer:
The main reason for bridges collapses is: earthquakes (natural disasters) and construction incidents. Whenever a natural disaster occur, it makes the bridge collapse. An example is hurricanes. Hurricanes come with a great wind and that might lead to the bridge collapsing. Construction incidents means the bridge falls during construction. Those who are employed in health, safety and environmental management need to make sure that during the construction, they have examined the material and made sure it is strong. Working with economists, they should seek better understanding of the methods for minimizing the costs during the life of the bridge. In case for natural disasters, like flooding, they should make the bridge in a lever where the water won't reach the bridge. And they should have a limit for weight in the bridges because that is another reason it collapses, because the bridge does not support extra weight.
Explanation:
hope this helps
In the case of an open fracture, you may do all of the following except:
Answer:
Put a rigid material (splint) next to the injury, and tie or tape it in place. Secure the splint above and below the injury. Don't increase damage by straightening an injury.
In the case of an open fracture, it is advised to put a rigid material (splint) next to the injury, and tie or tape it in place.
What is fracture?A fracture is a partial or the complete breakage in the bone. There are many different types of fractures depending upon the breakage and severity of the fracture. Bone fractures are often caused by the falls, trauma, or as a result of a direct blow or kick to the body parts. Overuse or repetitive motions can cause stress fractures.
In the case of an open fracture, it is advised to put a rigid material such as splint next to the injury, and tie or tape it into a place. Secure the splint above and below the injured area. Do not increase the damage by straightening an injury.
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A transformer on a pole near a factory steps the voltage down from 2200 V to 130 V. The transformer is to deliver 1020 kW to the factory at 89 % efficiency. Find the power delivered to the primary. Answer in units of kW
The power delivered to the primary is approximately 1146.067 kW.
Where P is power, V is voltage, and I is current. Since the transformer is 89% efficient, we know that:
P_out = 0.89 * P_in
V_in = 2200 V
V_out = 130 V
P_out = 1020 kW
V_in/V_out = I_out/I_in
2200/130 = I_out/I_in
I_in = (I_out * V_out)/V_in
I_in = (1020 kW * 1000)/(0.89 * 130 V)
I_in = 8,105 A
P_in = VI
P_in = 2200 V * 8,105 A
P_in = 18,831,000 W
P_in = 18,831,000 W / 1000
P_in = 18,831 kW
Power output (Secondary side) = 1020 kW
Efficiency = 89%
Efficiency = (Power output / Power input) x 100
Power input (Primary side) = Power output / (Efficiency / 100)
Power input (Primary side) = 1020 kW / (89 / 100)
Power input (Primary side) = 1020 kW / 0.89
Power input (Primary side) ≈ 1146.067 kW
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Which battery cable is bolted to the vehicle frame to allow the metal structure of the vehicle to serve as a large conductor to carry current?
Answer:
The Negative battery cable is used to bolt the vehicle frame to allow the metal structure of the vehicle to serve as a large conductor to carry current.
Explanation:
Battery cable is large automotive cable. Like smaller types of automotive wire, it is available in PVC and cross-linked forms. Click here to read an earlier post explaining the differences between PVC and cross-linked wire insulation.
One type of PVC battery cable is SGT cable. It is rated to 80°C and therefore can be used in starters or battery grounds. Cross-linked battery cables can also be used in starter and battery ground applications, and they are more resistant to heat, abrasion, and aging than PVC cable.
Two types of cross-linked battery cable are SGX and STX. They are rated to 125°C. Of the three types of battery cable (SGT, SGX, amd STX), STX has the thinnest wall, making it a popular choice for automotive applications with limited space.
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If a loop does not contain within itself a way to terminate, it is called ? A) a for loop. B) an infinite loop C) a while loop. D) a do-while loop
If a loop does not contain within itself a way to terminate, it is called an Infinite loop.
An endless loop is a looping design that never ends and keeps running indefinitely. It is also known as an infinite circle or an indefinite loop. It either generates a steady production or none at all. Applications that take user input and constantly produce output until the user actively exits the application can benefit from using an infinite loop. Operating systems continue to operate indefinitely because they do not exist after completing a job. The only way it can be broken out of an endless cycle is if the user actively turns off the device.
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in cold climates, water pipes may freeze and burst if proper precautions are not taken. In such an occurrence, the exposed part of a pipe on the ground ruptures, and water shoots up to a height z2, of 52 m. Estimate the gage pressure of water in the pipe. The gage pressure of water in the pipe is determined to be kPa..
Answer:
Gauge Pressure = 408.3 KPa
Explanation:
The pressure inside the pipe can be given in terms of the elevation, by the following formula:
P = ρgΔz
where,
P = Absolute Pressure = ?
ρ = Density of Water = 1000 kg/m³
g = acceleration due to gravity = 9.8 m/s²
Δz = elevation = 52 m
Therefore,
P = (1000 kg/m³)(9.8 m/s²)(52 m)
P = 509.6 KPa
Now, for gauge pressure:
Gauge Pressure = P - Atmospheric Pressure
Gauge Pressure = 509.6 KPa - 101.3 KPa
Gauge Pressure = 408.3 KPa
Small particles in your power steering system may
Small particles in your power steering system may Damage the hydraulic pump.
Check more about the reason for the above in the power steering system below:
What is the Small particles about?If a person is said to have notice that there is small black particles that can be seen inside of the power steering reservoir, there is therefore some chances that are these are some piece of the hose, instead of the pump or rack.
Since High-temperature pulsations can be able to lead the power steering hoses to be destroyed from the inside.
Therefore, based on the above, one can say that Small particles in your power steering system may Damage the hydraulic pump.
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how much does it cost to heat a 1,200 sq ft house with natural gas
The cost of heating a 1,200 sq ft house with natural gas can vary depending on several factors. On average, the annual cost ranges from $600 to $1,200.
However, the estimate can be influenced by factors such as energy efficiency, insulation, local gas prices, and climate conditions. The cost of heating a 1,200 sq ft house with natural gas depends on various factors. First and foremost, the energy efficiency of the heating system plays a significant role. Modern, high-efficiency furnaces can provide better heat output while consuming less natural gas, resulting in lower costs. On the other hand, older or less efficient systems may require more fuel and therefore incur higher expenses. Another factor is the insulation of the house. Proper insulation helps retain heat within the house, reducing the amount of energy required to maintain a comfortable temperature. Well-insulated homes tend to have lower heating costs compared to those with inadequate insulation. The local price of natural gas is a crucial consideration. Gas prices can vary significantly by region and even by season. It is important to check with the local gas provider or utility company to determine the current rates. Additionally, climate conditions play a role in heating costs. Areas with colder climates will require more energy to keep the house warm, leading to higher expenses. Regions with milder winters may have lower heating costs. Taking all these factors into account, the average annual cost of heating a 1,200 sq ft house with natural gas ranges from $600 to $1,200. However, it's important to note that this is a rough estimate and individual circumstances may vary. To get a more accurate cost estimate, it is recommended to consult with a local heating professional or utility company.
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In a component under pure torsion, the ratio of maximum normal stress to maximum shear stress is equal to
A) 0.0 B) 0.5 2.0 D) 1.5
The ratio of maximum normal stress to maximum shear stress in a component under pure torsion is equal to 2.0.
In a component under pure torsion, the stress distribution is such that the maximum normal stress occurs at the center of the cross-section and is equal to zero at the outer boundary. On the other hand, the maximum shear stress occurs at the outer boundary and is equal to the maximum normal stress divided by 2. Therefore, the ratio of maximum normal stress to maximum shear stress is equal to 2.0, which is option (C) in this case.
It is worth noting that pure torsion is a loading condition where a component is subjected to twisting motion about its longitudinal axis. This type of loading induces shear stresses in the cross-section of the component and causes it to twist along its length. It is important to understand the stress distribution in such components as it helps in designing them for maximum efficiency and durability.
The maximum normal stress occurs at the center of the cross-section and is zero at the outer boundary, while the maximum shear stress occurs at the outer boundary and is equal to half the maximum normal stress.
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Find the block diagram for the X99 chipset and answer the following: 3. Which processor socket does the X99 chipset support? 4. Do PCI Express 3.0 graphics adapters connect directly to the processor or to the X99 chipset? 5. Do High-Speed USB ports connect directly to the processor or to the X99 chipset?
The X99 chipset, developed by Intel, uses a block diagram to illustrate the connections between various components.
In the diagram, you can find the processor socket, PCIe lanes, and USB ports, among other elements. The X99 chipset supports the LGA 2011-v3 processor socket, which is compatible with Intel's Haswell-E and Broadwell-E processors. These processors offer improved performance and power efficiency over their predecessors. Regarding PCI Express 3.0 graphics adapters, they connect directly to the processor rather than the X99 chipset. This direct connection allows for faster communication and reduced latency between the processor and graphics adapters, resulting in improved performance in gaming and other graphic-intensive tasks.
High-Speed USB ports, on the other hand, connect to the X99 chipset. The chipset serves as an intermediary between the processor and these USB ports, managing data transfers and ensuring smooth communication. This design helps offload some processing tasks from the CPU, allowing it to focus on more demanding tasks. In summary, the X99 chipset's block diagram reveals its support for the LGA 2011-v3 processor socket. PCIe 3.0 graphics adapters connect directly to the processor for faster communication, while High-Speed USB ports connect to the X99 chipset for efficient data management.
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Consider that you have a code of 200,000 instructions which is executed using a 16 stages pipeline. It is expected that 20% of the instructions will cause an exception. In order to handle the exception, there is an exception handler which is using 20 cycles to execute (includes the flushing and reloading and the actual handling of the exception). The pipeline frequency is 2 GHz
i) How many cycles does it take to execute the code?
ii) What is the average CPI for this code?
iii) How long does it take to execute the code?
Answer:
3
Explanation:
extensive structures and intricate arrangement of functional space in the nan madol community support which of the following conclusions?
Both cultures imposed rigid moral standards. Sometimes works of art and architecture challenge our perceptions of what was formerly thought to be feasible and what our forefathers were capable of.
An excellent example is the defunct megalithic capital of Nan Madol, which is situated in a lagoon next to the island of Pohnpei in the Federated States of Micronesia in the Pacific Ocean. By stating that over a period of four centuries, the people of Pohnpei moved an average of 1,850 tons of basalt per year—and no one is quite sure how they did it—archaeologist Rufino Mauricio helps us put these enormous amounts into perspective.
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(a) A duct for an air conditioning system has a rectangular cross section of 1.8 ft × 8 in. The duct is fabricated from galvanized iron. Determine the Reynolds number for a flow rate of air of 5400 cfm at 100 °F and atmospheric pressure (g=0.0709 lbf/ft3 u=1.8×10-4ft2/s and m=3.96×10-7lbf.s/ft2) (9 points)
Answer:
Reynolds number = 654350.92
Explanation:
Given data:
Cross section of rectangular cross section = 1.8ft * 8 in ( 8 in = 2/3 ft )
Flow rate of air = 5400 cfm = 90 ft^3 / sec
v ( kinematic viscosity of air ) = 1.8*10^-4 ft^2/s
Reynolds number
Re = VDn / v
Dn ( hydraulic diameter ) = 4A / P
where A = area, P = perimeter
a = 1.8 ft ( length )
b = 2/3 ft ( width )
hence Dn = \(\frac{4(ab)}{2(a+b)}\) = \(\frac{4(1.8*0.6667}{2(1.8+0.6667)}\) = 0.9729 ft
V ( velocity of air flow ) = \(\frac{Q}{\pi /4 * Dn^2 }\) = \(\frac{90}{\pi /4 * 0.9729^2 }\) = 121.064 ft/sec
back to Reynolds equation
Re = VDn / v -------------- equation 1
V = 121.064 ft/sec
Dn = 0.9729 ft
v = 1.8*10^-4 ft^2/s
insert the given values into equation 1
Re = (121.064 * 0.9729 ) / 1.8*10^-4
= 654350.92
What is a kind of useful car?
A gas-fired power station has four generation units, each capable of producing electric power at a rate 200 MW. In order to maintain adequate power supply to the network three generation units must run continuously with the fourth on active standby. Using the binomial expansion of (F + R)" find the probability that three units will be running four years after installation if the failure rate 1 for each generation unit is 0.06 / yr.
The probability that three units will be running four years after installation if the failure rate 1 for each generation unit is 0.06 / yr would be 5.88%.
The probability that three units will be running four years after installation can be calculated as follows:
Formula:F + R = 1Here,F = 0.94 (since the failure rate is given as 0.06/yr, so the probability that one unit will still be operational after one year is 1-0.06 = 0.94)R = 0.06 (the probability that one unit will fail in one year is given as 0.06)Now,Using the binomial expansion of (F + R)⁴ to find the probability that three units will be running four years after installation:(F + R)⁴ = F⁴ + 4F³R + 6F²R² + 4FR³ + R⁴Probability that three units will be running after four years = 4C₃F³R + 4C₄F⁰R⁴= 4 × (0.94)³ × (0.06) + 4 × (0.06)⁴ × (0.94)⁰= 0.0588 + 0.00004= 0.05884 or 5.88%Therefore, the probability that three units will be running four years after installation if the failure rate 1 for each generation unit is 0.06 / yr is 5.88%.
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The US navy recently funded the development of submersible drones to investigate shipwrecks located
on the ocean floor of the Marianas Trench. In this region of the world the ocean floor is located about
7.0 miles below sea level. Calculate the pressure a submersible drone would need to withstand 7 miles
below the surface of the ocean.
The pressure a submersible drone would need to withstand 7 miles is given to be 114.49 MPA
How to solve for the pressure of the submersible droneWer have P = rho x H
Where Rho s is the Sp x the weight of the sea water
= 10163 . 16n/m²
We are to proceed to find the value of H
H = 7. 0 miles below sea water
= 11265.408m
P = 11265.408m x 10163 . 16n/m²
= 114,492.144
= 114.49 MPA
Hence we can say that the pressure of the submersible drone should be equal to 114.49 MPA
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Calculate the equivalent capacitance of the three series capacitors in Figure 12-1
The question is incomplete! Complete question along with answer and step by step explanation is provided below.
Question:
Calculate the equivalent capacitance of the three series capacitors in Figure 12-1
a) 0.01 μF
b) 0.58 μF
c) 0.060 μF
d) 0.8 μF
Answer:
The equivalent capacitance of the three series capacitors in Figure 12-1 is 0.060 μF
Therefore, the correct option is (c)
Explanation:
Please refer to the attached Figure 12-1 where three capacitors are connected in series.
We are asked to find out the equivalent capacitance of this circuit.
Recall that the equivalent capacitance in series is given by
\($ \frac{1}{C_{eq}} = \frac{1}{C_{1}} + \frac{1}{C_{2}} + \frac{1}{C_{3}} $\)
Where C₁, C₂, and C₃ are the individual capacitance connected in series.
C₁ = 0.1 μF
C₂ = 0.22 μF
C₃ = 0.47 μF
So the equivalent capacitance is
\($ \frac{1}{C_{eq}} = \frac{1}{0.1} + \frac{1}{0.22} + \frac{1}{0.47} $\)
\($ \frac{1}{C_{eq}} = \frac{8620}{517} $\)
\($ C_{eq} = \frac{517}{8620} $\)
\($ C_{eq} = 0.0599 $\)
Rounding off yields
\($ C_{eq} = 0.060 \: \mu F $\)
The equivalent capacitance of the three series capacitors in Figure 12-1 is 0.060 μF
Therefore, the correct option is (c)
Need help fast 50 points Project: Creating a Morphological Matrix
Assignment Directions
A systematic way to view common functionality of an object's structure and components is through a morphological matrix. You are going to utilize this method to analyze a common household device (from the list below or your own idea). First, create the left-hand column by deciding on the parameters that allow the object to function normally. For example, a pencil sharpener has a blade and a housing unit to support the system. Use the parameters to describe the system. If the pencil sharpener is hand operated, list the parameter of hand turning (either the pencil itself in a small unit or a handle in a wall-mounted device). The parameter column can include specific structures in the device, power sources, or any other information you learned in the lesson. The right-hand columns will include the current methods used by the device to complete the parameter, as well as any other options that would satisfy the parameter. You must create at least two other options for each parameter.
While the matrix provides valuable information for an engineer, it is typically more technological than a client or decision team needs. Therefore, you will also need to complete a one- or two-page analysis of the device, including the current parameter solutions and any recommended alterations to a design. Each recommendation must be supported by information in the morphological matrix.
Here are some ideas of household devices that you can analyze:
can opener
bathroom or kitchen scale
doorknob assembly
stapler
Assignment Guidelines
a completed morphological matrix
each parameter must have at least three solutions
a written analysis of the device with supporting details from the matrix
Submission Requirements
One to two pages double spaced
Proper grammar and vocabulary is required.
Answer:
The fundamental difference between effective and less effective matrix organizations is whether the tension between different perspectives is creative or destructive. While various processes, systems and tools can help, what matters most is what top leadership says and does and how that flows through the organization in shared targets, clear accountabilities, live team interactions and team-building transparency and behaviors.
Getting matrix management right is linked inextricably to an organization’s culture - the only sustainable competitive advantage. Key components of a culture can be grouped into behaviors, relationships, attitudes, values and the environment.
Environment and values: Each organization has its own environment, context and bedrock values. Everyone needs to know what matters and why. Don’t try to do anything else until you’ve got that set.
Attitude is about choices: An organization’s overall strategy drives choices about which of its parts will be best in class (superior), world class (parity), strong (above average), or simplified/outsourced to be good enough. These choices help determine the need for a matrix and how best to design it.
Relationships and behaviors: This is why organizations have matrices. The most effective of them best balance focus and collaboration. They allow leaders and teams to build differential strengths and then work together to make the best possible decisions and scale enterprises with a creative tension that they could not do on their own.
My colleague Joe Durrett has worked all sides of matrix organizations in marketing at Procter & Gamble, sales and general management at Kraft General Foods and CEO of Information Resources, Broderbund Software and Advo. He has seen matrices at their best and at their worst and offered his perspective for this article along with his partners John Lawler and Linda Hlavac. The 12 ways to make matrix organizations more effective were built on their ideas.
Explanation: