Brittle materials, such as ceramics and thermosetting plastics, thus break at the elastic limit point. That is, the stress-strain curve is a simple straight line drawn from the stress-strain diagram's axis. Brittle materials fail at the straight line's end. As a result, the correct option is (b).
What exactly is a brittle metal?
This is a property of a material that breaks when stressed, but has a small tendency to bend before breaking. These materials have a low deformation capacity, a low ability to withstand impact and vibration, a high compressive strength, and a low tensile strength. Steel with a high carbon content, pig iron, cast iron, and other brittle metals are examples. Brittle materials include bone, cast iron, ceramics, and concrete.
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what does a plan show about electrical outlets?
The location the type of electrical hardware to be utilized in a home, including meter, transmission panel box, outlets, switch, and other electrical features, are shown on the electricity plan.
What is the name of the electrical socket?Electrical devices can be connected to the electricity grid using electrical outlets, also known as electrical outlets, plugs, and wall plugs. The outlet receives alternating power from the power grid. Industrial and residential outlets are the two main categories.
What purpose how can an electrical outlet serve?Appliances can be put into electrical sockets or outlets to be connected towards the power grid and given power so they can work. Electric shocks, burns, and fires can all be caused by lightning.
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The minimum energy that colliding particles must have in order to react is called the activation energy.
True: The minimum energy that colliding particles must have in order to react is called the activation energy.
Activation energy is the minimal amount of extra energy a reactive molecule requires to change into a product. It is also known as the minimal energy required to energise or activate molecules or atoms in order for them to engage in a chemical reaction or transformation.
Factors Influencing Activation Energy There are two things that affect activation energy.
1. Reactants' Nature
Because there is an attraction between the reacting species in the case of an ionic reactant, (Ea) will have a low value. While the value of Ea will be significant in the case of a covalent reactant because energy is needed to break the older bonds.
2. Catalyst effects
Whereas a negative catalyst offers an alternative path where the value of Ea would be high, a positive catalyst offers a way where the value of Ea will be low.
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FILL IN THE BLANK. when looking over the suspension system you need to check for cracked loose or______
When looking over the suspension system you need to check for cracked loose or broken spring hangers, damaged torque rods, damaged u-bolts.
What is the suspension system?When looking over the suspension system of a vehicle, it is important to check for any signs of wear or damage, such as cracked, loose, or damaged parts. The suspension system is responsible for supporting the weight of the vehicle, maintaining tire contact with the road, and providing a smooth ride.
Therefore, Any damage to the suspension system can affect the handling, stability, and safety of the vehicle, so it's important to address any issues as soon as possible. Regular inspection and maintenance of the suspension system can help identify potential problems before they become more serious.
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which for-each loop would produce the same output?
A)
for (value : values)
{
if (value % 10 == 0)
System.out.println(value + " is divisible by 10");
}
B)
for (int value : values)
{
if (value % 10 == 0)
System.out.println(value + " is divisible by 10");
}
C)
for (int values : value)
{
if (value % 10 == 0)
System.out.println(value + " is divisible by 10");
}
D)
for (int value : values)
{
if (value / 10 == 0)
System.out.println(value + " is divisible by 10");
}
The correct answer is B, it would produce the same output ) for (int value : values)
{
if (value % 10 == 0)
System.out.println(value + " is divisible by 10");
}
In a for-each loop, the first parameter represents the type of element in the array or collection, and the second parameter represents the name of the current element being iterated. The for-each loop iterates over each element of the array or collection, and assigns the current element to the second parameter.
In this case, the array or collection being iterated is named "values". Option A and B both correctly iterate over the "values" array or collection, and print out the values that are divisible by 10. However, option A uses the type "value" instead of "int", which may cause a compilation error. Option C uses "int values" instead of "int value", which again may cause a compilation error. Option D uses division instead of modulo, so it would not correctly identify the values that are divisible by 10.
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to crank an engine at 200 rpm, how fast must an average starter motor turn?
The typical starting motor turns at 3600 RPM to power an engine at 200 RPM.
What are different kinds of motor?We are aware that AC motors and DC motors are the two main kinds of motors. AC motors have variable speed capabilities and require little electricity to initiate. On the contrary end, DC motors are frequently used because they can be installed quickly and have lower starting costs for low power units than AC.
What do engineers mean by an electric motor?Electric motors are a type of machinery that use electromagnetic processes to transform electrical energy into mechanical energy.
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You are a supervisor in a shipping department of a distribution company. You are in charge of measuring oil for shipments. You use a rotameter to measure the speed that oil is pumped into tank trucks. You also measure the time that the oil is pumped using a stopwatch. From this, you can calculate the amount of oil placed in the trucks.
a rotameter labeled with a company name and GPM H2O at 25 degrees Celsius
At the end of the month, the accounting department says that the company has produced 8% more oil than it has billed for.
What is the most likely cause of the accounting problem?
A. The rotameter is calibrated for water only.
B. The tanks were not empty at the start.
C. Bubbles in the oil caused a poor flow-rate reading.
D. The stopwatch is running slow.
The correct option is B.
Describe Discrepancy?Discrepancy is a term used to describe a difference or inconsistency between two or more things that should be the same or similar. It can refer to a variety of situations, such as a mismatch in data or information, a disagreement between parties, or a deviation from expected or standard values.
In data analysis, discrepancy is often used to describe a discrepancy between the data collected and the expected or predicted values. This can occur due to errors in data collection, measurement, or analysis, or due to the presence of outliers or other unusual data points. Discrepancies in data can be identified through statistical analysis, such as regression analysis or hypothesis testing.
Discrepancy can also refer to a difference between two parties or groups, such as a discrepancy in opinion or perspective. In this context, discrepancies can arise due to differences in background, experience, or values, and may require negotiation or compromise to resolve.
Overall, discrepancy is a term that is commonly used in a variety of contexts to describe differences or inconsistencies between two or more things, and can have important implications for decision-making, problem-solving, and communication.
Based on the information provided, the most likely cause of the accounting problem is option B, the tanks were not empty at the start. If there was residual oil left in the tanks from previous shipments, and that oil was not accounted for in the measurement, it could result in an inaccurate billing. Using the rotameter and stopwatch to measure the amount of oil placed in the trucks should provide an accurate measurement, provided the tanks are empty at the start of each shipment. The other options (A, C, and D) could also potentially cause measurement errors, but they would likely result in consistently inaccurate measurements rather than an 8% discrepancy.
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At the end of the month, the accounting department says that the company has produced 8% more oil than it has billed discrepancy for the tanks were not empty at the start.
Describe Discrepancy?Discrepancy is a term used to describe a difference or inconsistency between two or more things that should be the same or similar. It can refer to a variety of situations, such as a mismatch in data or information, a disagreement between parties, or a deviation from expected or standard values.
In data analysis, discrepancy is often used to describe a discrepancy between the data collected and the expected or predicted values. This can occur due to errors in data collection, measurement, or analysis, or due to the presence of outliers or other unusual data points. Discrepancies in data can be identified through statistical analysis, such as regression analysis or hypothesis testing.
Discrepancy can also refer to a difference between two parties or groups, such as a discrepancy in opinion or perspective. In this context, discrepancies can arise due to differences in background, experience, or values, and may require negotiation or compromise to resolve.
Overall, discrepancy is a term that is commonly used in a variety of contexts to describe differences or inconsistencies between two or more things, and can have important implications for decision-making, problem-solving, and communication.
Based on the information provided, the most likely cause of the accounting problem is option B, the tanks were not empty at the start. If there was residual oil left in the tanks from previous shipments, and that oil was not accounted for in the measurement, it could result in an inaccurate billing. Using the rotameter and stopwatch to measure the amount of oil placed in the trucks should provide an accurate measurement, provided the tanks are empty at the start of each shipment. The other options (A, C, and D) could also potentially cause measurement errors, but they would likely result in consistently inaccurate measurements rather than an 8% discrepancy.
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the temperature light will come on in your vehicle when
The temperature light will come on in your vehicle when the coolant in the engine is too hot.
The coolant warning light will turn on briefly after the engine starts to check the lightbulb. When the car has been started, if the coolant temperature warning light is still on, it means that there is a problem with the system. And the temperature or coolant fluid level is typically the main cause of a blazing temperature light on an automobile. Keep in mind that if your car's coolant level drops, it signifies there has been a leak, which needs to be fixed right away. Otherwise, your automobile will be in a low coolant state once more, increasing the danger of motor overheating. This is a very helpful tool when trying to figure out what's wrong with the coolant temperature warning light because the car's computer frequently saves the code in the event of a malfunction.
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FILL IN THE BLANK. ____is the order in which waveforms from each phase (A,B, and C) cross zero. (Current crest rotation; Harmonic sequence; Phasor rotation ; Harmonic degree)
Phasor rotation is the order in which waveforms from each phase (A, B, and C) cross zero.
In a three-phase electrical system, the voltage and current waveforms of each phase are offset by a specific angle from each other. This angle is called the phase angle, and it determines the relationship between the waveforms. The phasor rotation is the order in which the voltage or current waveforms from each phase (A, B, and C) cross the zero axis, which is also known as the reference or neutral line.
In a three-phase electrical system, the waveform of each phase completes one full cycle (360 degrees or 2π radians) within a given time period. The phasor rotation refers to the order in which each waveform completes this cycle, starting from the point where it crosses the zero axis.
For example, in a three-phase system, the voltage waveforms for each phase (A, B, and C) may be offset by 120 degrees from each other. This means that each waveform crosses the zero axis at a different time relative to the other waveforms. The phasor rotation refers to the order in which these waveforms cross the zero axis, as they complete one full cycle.
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what kind of batteries does the motorcycle from killacycle use?
Lithium iron phosphate battery pack, batteries does the motorcycle from killacycle use.
What serves as the fuel for the fuels cell battery mentioned in the section on making materials cleaner?Pure water and possibly valuable heat are the only byproducts generated by fuel cells, which turn the energy stored in hydrogen directly into electricity. In addition to being pollution-free, hydrocarbon fuel cells have the potential to be more than twice as efficient as conventional internal combustion technologies.
According to the readings for the course, which copper metal is recycled the most frequently?The non-ferrous metal that is recycled the most is aluminum. NDc (ISRI) Industrial or fresh scrap and outdated scrap are indeed the main sources of nonferrous scrap.
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Which are NOT properties for which aluminum is noted? 1) low density 2) low electrical and thermal conductivity 3) formability ability to be alloyed and strengthened to achieve good strength-to-weight 4) ratios
Since aluminium is a soft metal that is silvery white in colour and is classified as metal, it will be a good electrical conductor, malleable, ductile, and have a low density.
What is the function of aluminium?
The lightest metal known as aluminium is silvery-white. Being malleable and squishy. Cans, foil, culinary utensils, window frames, beer kegs, and components of aeroplanes are just a few of the goods that employ aluminium. Its unique characteristics account for this.
Aluminum (Al) is the main metal in an alloy, which is referred to as an aluminium alloy (or aluminium alloy; see spelling variations). The usual alloying elements are copper, magnesium, manganese, silicon, tin, nickel, and zinc.
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what is the horsepower rating on the bmw m3 in north america?A) 473 horsepowerB) 463 horsepowerC) 450 horsepowerD) 470 horsepower
A) 473 horsepower rating on the bmw m3 in north america.
BMW's S58 twin-turbo 3.0-liter inline-six, which in standard form generates 473 horsepower and 406 lb-ft of torque, powers the M3. It is connected to either a six-speed manual transmission or an eight-speed automatic transmission that only drives the rear wheels. According to BMW, the M3 will reach 60 mph in 4.1 seconds and reach a top speed of 180 mph.
Engine output increases to 503 horsepower and 479 lb-ft of torque in the M3 Competition. BMW's xDrive AWD technology is now provided, whilst the Competition is only offered with an automatic transmission. Considering the car's capabilities, fuel economy isn't too poor; regardless of the transmission selected, it receives an EPA rating of 16/23 mpg city/highway.
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When you are a new driver and practicing turning right or left with good traction and normal conditions, your speed should not exceed:
a. 45 to 50 mph
b. Less than 5 mph
c. 5 to 15 mph
d. 25 to 30 mph
When you are a novice driver practicing right or left turns in typical traffic, you shouldn't travel faster than 5 to 15 mph.
What is the ideal starting position for a right turn?Start from the right lane if you are making a right turn. If you are turning onto a highway with more than one lane traveling in the direction you want to go, enter the lane that is the closest to where you want to go.
What should a motorist do when making a right turn?Even if approaching traffic is turning left into the same road as you when you make a right turn from a main road into a minor road, you still need to yield to them.
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what is the minimum distance that targets are engaged firing a mk-19
The minimum distances that targets are engaged firing a MK-19 grenade launcher with HE ammunition is 310m or greater.
Both offensive and defensive duties are supported by the MK-19 Grenade Machine Gun by the troops. When used against hostile personnel and lightly armored vehicles, it provides a sizable volume of accurate and continuous firepower. The MK19 can be mounted on a tripod or various bases for vehicles. It serves as the main suppressive tool for troops that provide combat support and combat service support. The weapon can defend bivouac supply trains, assembly lines, and motorized mobility.
The MK19 Grenade Machine Gun can attack targets with high volume fire into an engagement area as well as indirect fires from concealed positions. It can protect against hovering rotary-wing aircraft, take out lightly armored vehicles, and fire on suspected enemy positions. With the help of high-explosive, dual-purpose ammunition, the system improves the ability of American forces to defeat hostile armored, mechanized, and infantry forces.
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Complete question is:
The minimum distances that targets are engaged firing a MK-19 grenade launcher with HE ammunition is ___
2 points) what is the eeg frequency in each section? trace 1 sectionsfrequency (hz)trace 2 sectionsfrequency (hz) left, 0-1sleft, 0-1s left, 1-2sleft, 1-2s left, 2-3sleft, 2-3s right, 0-1sright, 0-1s right, 1-2sright, 1-2s right, 2-3sright, 2-3s
The waveforms delta (0.5 to 4Hz), theta (4 to 7Hz), alpha (8 to 12Hz), sigma (12 to 16Hz), and beta are among the most frequently researched waveforms (13 to 30Hz).
What are the EEG's frequency ranges?EEG frequency patterns can be divided into four categories: beta (14–30 Hz), alpha (8–13 Hz), theta (4–7 Hz), and delta (1-3 Hz). In general, when the frequency drops, the EEG's amplitude rises. Each of the four EEG frequencies corresponds to a distinct degree of cerebral cortex arousal.
How can you determine an EEG's frequency?The frequency is then calculated by taking I and dividing it by the duration, which in this case results in a 5Hz wave. the amount of analogue millimetres in a second.
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What is ADA door clearance?
When a door is opened to a 90-degree angle, the amount of clear space required between the face of the door and the opposite stop or surface is referred to as ADA door clearance.
What does ADA spacing mean for stores?Aisles must be at least 60 inches wide to allow room for passing other customers and at least 36 inches wide if they are longer than 200 feet. Keep an eye out for aisle displays and provide adequate room to pass around them. When placing any kind of furniture or objects in an open area, you still need to make sure that there is a lane of travel that is at least 36 inches wide throughout the area, according to Stein. 30 x 48 inches of clean floor space must be available to fit a single stationary wheelchair and its occupant (760 mm by 1220 mm). The wheelchair-accessible minimum floor or ground space may be positioned for forward.
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the plate is deformed into the dashed shape shown. what is the average normal strain along the diagonal ad?
The diagonal ad's typical strain average is 0.0168.
What is an illustration of typical stress?It describes the relationship between the object's initial length and its length change instead and is a dimensionless feature. For instance, a normal strain measurement of +/- 0.1 indicates that an object's length has either increased by 10% (tensile) or dropped by 10% (compressive) (compressive).
What signifies a typical strain?eBook on mechanics: Normal Strain. The Greek letter stands for strain, which is a phrase used to describe the extension or distortion of a body when it is subjected to a force or collection of forces. In general, the strain of a body is calculated as the length change divided by the beginning length.
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What are the main types of coaxial cable? Choose two.
UTP
STP
RG-6
RG-59
The main types of coaxial cable are RG-6 and RG-59.
UTP (unshielded twisted pair) and STP (shielded twisted pair) are types of copper cabling used in Ethernet networks, and are not considered coaxial cables.
RG-6 and RG-59 are used for transmitting video signals, including cable TV, satellite TV, and security camera systems. RG-6 has a larger diameter, lower loss, and can carry signals over longer distances than RG-59. RG-6 is commonly used in professional installations and for high-definition video, while RG-59 is often used in residential installations or for lower-resolution video. Both RG-6 and RG-59 have a center conductor, a layer of insulation, a braided shield, and an outer jacket.
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Calculate the maximum surface pressure (in N/m^2 ) that can be achieved on the forward face of a wedge flying Mach 3.0 at standard sea-level conditions (p1 = 1.01 x 10^5 N/m^2) with an attached shock wave.
The maximum surface pressure that can be achieved on the forward face of a wedge flying Mach 3.0 at standard sea-level conditions is [tex]\mathrm{1.90 \times 10^7 N/m^2}.[/tex]
What is surface pressure?
Surface pressure is the pressure exerted on the surface of a liquid or a gas due to the weight of the atmosphere above it. It is measured in units of force per unit area, and is typically expressed in millibars (mbar).
The maximum surface pressure that can be achieved on the forward face of a wedge flying Mach 3.0 at standard sea-level conditions is calculated using the formula for the pressure coefficient (Cp):
Cp = (p - p1)/(1/2 rho V²)
Where p is the static pressure, p1 is the free-stream static pressure, rho is the air density and V is the velocity of the air.
Substituting these values into the equation gives:
Cp = (p - 1.01 x 10⁵)/(1/2 x 1.225 x 9144²)
Rearranging this equation to solve for p gives:
p = Cp x (1/2 x 1.225 x 9144²) + 1.01 x 10⁵
The maximum pressure coefficient that can be achieved on the forward face of a wedge is Cp = 1. The maximum surface pressure (p) that can be achieved is therefore:
p = 1 x (1/2 x 1.225 x 9144²) + 1.01 x 10⁵
p = 1.90 x 10⁷ N/m²
Therefore, the maximum surface pressure that can be achieved on the forward face of a wedge flying Mach 3.0 at standard sea-level conditions is 1.90 x 10⁷ N/m².
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how is service-oriented architecture (soa) structured? select one.
Services in a service-oriented architecture (SOA) operate independently and offer their users functionality or data interchange. The customer uses the service to send input data and obtain information.
Which three levels make up a SOA layered architecture?Three of the layers deal with implementation and the way that a service is accessed (the Operational Systems Layer, the Service Component Layer, and the Services Layer). Three of them support service consumption (the Business Process Layer, the Consumer Layer, and the Integration Layer).
What components of SOA architecture are there?The functional capabilities of the architecture will be supported by the five functional or horizontal levels, which are the Operational Systems Layer, Service Component Layer, Services Layer, Business Process Layer, and Consumer Layer.
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the part of a melting-alloy overload that responds to an overload current is known as the?
The part of a melting-alloy overload that responds to an overload current is known as the trip element. It is typically a strip of alloy that melts when the current exceeds a certain level.
What is overload ?Overload is a situation where too much work or pressure is placed on an individual or system. It occurs when a person or system is asked to do more than it can physically or mentally handle. This can cause stress, exhaustion, difficulty concentrating, and a decrease in productivity. In extreme cases, it can also lead to mental and physical health issues. Overload can be caused by a number of factors, such as an increased workload, and a lack of resources. To prevent overload, individuals and organizations should ensure that workloads are manageable and that employees have adequate resources and support.
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what type of engineer designs and builds planes and space vehicles?
A Aerospace Engineer is the type of engineer who designs and builds planes and space vehicles.
What is Aerospace Engineer?Aerospace engineers are professionals who design, develop, test, and maintain aircraft and spacecraft. They use their knowledge of aerodynamics, thermodynamics, materials, propulsion, and other related topics to create and improve the performance, safety, and cost-effectiveness of aircraft and other related systems.
Aerospace Engineers use their expertise in aerodynamics, thermodynamics and structural analysis to develop aircraft and spacecraft.They also collaborate with other engineers and aeronautical professionals to test and refine design concepts and ensure that the aircraft or spacecraft meets safety requirements.
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What are the five different types of fabric?
Although there are several varieties of fabrics, the following five are the most prevalent: cotton, silk, wool, polyester, and nylon.
How many distinct fabric types are there?Due to the large range of possible qualities of materials, selecting the right fabric for a project is essential properties. Study many fabric types and develop your ability to identify them, from knit to woven to natural to synthetic fibres.
Which two textiles are more popular?Wool and silk are the most popular protein-based fibres, whereas cotton and linen are the most popular cellulose-based fibres. Linen is the oldest cloth ever made by humans. It is a cool option for hot times and is grown from the flax plant. The majority of apparel, however, is made of cotton.
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Sweeten Company had no jobs in progress at the beginning of March and no beginning inventories. The company has two manufacturing departments—Molding and Fabrication. It started, completed, and sold only two jobs during March—Job P and Job Q. The following additional information is available for the company as a whole and for Jobs P and Q (all data and questions relate to the month of March):
Molding Fabrication Total
Estimated total machine-hours used 2,500 1,500 4,000
Estimated total fixed manufacturing overhead $ 10,000 $ 15,000 $ 25,000
Estimated variable manufacturing overhead per machine-hour $ 1.40 $ 2.20
Job P Job Q
Direct materials $ 13,000 $ 8,000
Direct labor cost $ 21,000 $ 7,500
Actual machine-hours used:
Molding 1,700 800
Fabrication 600 900
Total 2,300 1,700
Sweeten Company had no underapplied or overapplied manufacturing overhead costs during the month.
Required:
For questions 1 to 9, assume that Sweeten Company uses departmental predetermined overhead rates with machine-hours as the allocation base in both departments and Job P included 20 units and Job Q included 30 units. For questions 10 to 15, assume that the company uses a plantwide predetermined overhead rate with machine-hours as the allocation base.
1. What were the company’s predetermined overhead rates in the Molding Department and the Fabrication Department? (Round your answers to 2 decimal places.)
Molding department
Fabrication department
Plant wide predetermined rate= Total fixed manufacture head/Total estimated hour
Plant Wide Predetermined rate=29800/4000
Plant Wise Predetermined Rate=$7.45
What percentage of manufacturing overhead was used on Job P?Job P Applying manufacturing overhead ($6.20 per DLH x 1,300 DLHs) results in $8,060. Job Q Applying manufacturing overhead ($6.20 per DLH x 600 DLHs) results in $3,720. Together, those equal. applied to work that was already in progress.
2. Applying Manufacturing Overheads to P and Q
P Q
Variable Manufacturing Overheads
Molding 7540 5200
Fabrication 6120 7140
Fixed Manufacturing Overheads
Molding 21605 14900
Fabrication 13410 15645
Total 48675 42885
3. Total Manufacturing Cost assigned to Job P is $48675.
4. If P has 20 Units Unit Product Cost will be as below:
Direct Materials 25000
Direct Labour 30600
Total Manufacturing overheads assigned 48675
total Product Cost 104275
Cost per unit $5213.75
5. $42885 is the total manufacturing cost attributed to Work Q.
6.The cost of the product will be as follows if Q has 30 units:Direct Materials 14000
Direct Labour 12300
Total Manufacturing Overheads 42885
Total Cost 69185
Cost per Unit $2306.167.
Selling Price for P
Total Cost of P...............................................................................$104275
Mark Up...........................................................................................$38940
Selling Price......................................................................................$ 143215 Cost per unit.....................................................................................$7160.75
Selling Price for Q
Total Cost of Q ..............................................................................69185
Markup ......................................................................................... 34308
Selling Price ................................................................................103493
Cost per unit...................................................................................$3449.76
8. Cost of Goods Sold for March...................................................$173460
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A california geothermal power plant generates 4. 3 mw by extracting 24 mw of heat from an underground source at 108∘c and then discharging waste heat into the 17∘c air
Electricity is created by geothermal power plants by utilising the Earth's core's natural heat energy.
In the case of the aforementioned geothermal power plant in California, the facility produces 4.3 MW of energy by drawing 24 MW of heat at a temperature of 108°C from an underground source. As is usual for geothermal power facilities, this indicates that the plant's efficiency is around 18%. Following the extraction of heat from the subsurface source, the plant releases waste heat into the 17°C surrounding air. Instead of being used to produce more energy, this waste heat is dumped into the environment. Geothermal power plants are an all-around sustainable and renewable energy source that can aid in lowering greenhouse gas emissions and reliance on fossil fuels.
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What is a good relative strength index?
One gauge of momentum, the Relative Strength Index (RSI), examines the size of recent price fluctuations to assess overbought or oversold levels.
A decent relative strength index is what?Look for indications of support or resistance in the RSI as well. During an uptrend or bull market, the RSI normally oscillates between 40 and 90, with the 40-50 region acting as support. During a fall or bear market, the RSI normally oscillates between 10 and 60, with the 50–60 range acting as resistance.
What makes a strong relative position?For trading possibilities, traders should look for RSI values that reach 30 or drop below that mark. This enables them to search for potential undervalued investment opportunities. where future price increases are possible.
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You are given a csv file Sales.csv, dataframe Sales, Date, customer_id, item_name, no_of_items_bought and item_price are the columns in the dataframe.
What is the right syntax to reset index of the dataframe?
a. Sales.reset()
b. Sales.index()
c. Sales.index_reset()
d. Sales.reset_index()
For the revised DataFrame's index to be reset, use reset index(). By default, it adds the current row index as a new column in the DataFrame called "index" and will generate a new row index as a series of numbers beginning at
You can restore the index to its default values of 0, 1, 2, etc. using the reset index() method. The drop option can be used to override the method's default behavior of keeping "old" idexes in the "index" column. The index should be reset when creating a new DataFrame or Series. This is helpful if the index must be handled as a column or if it must be reset to the default value before another operation because the index is worthless. Except in the case of Series with a MultiIndex.
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The limitations of signing up for digital technology?
Answer:
There are two distinct disadvantages to the digital process: It is far more complicated than the analog process; computers can only handle numbers of finite resolution. Thus, the (potentially) “infinite resolution” of the analog signal is lost.
which storage device uses aluminum platters for storing data?
A hard disk drive (HDD) uses aluminum platters for storing data. HDDs are composed of one or more rigid disks, or platters, which are coated with a magnetic material. The platters are made of aluminum, glass, ceramic, or a combination of these.
What is Hard Disk ?A hard disk is a storage device used to store digital data. It is composed of one or more spinning platters that use magnetic media to record digital data on the surface. The hard drive is connected to the computer using an interface such as SATA or ATA, and is powered by an internal motor which spins the platters.
The data is written and read using an arm that moves across the platters as they spin, allowing data to be read and written at different locations. Hard disks are the most common type of storage device used in modern computers and are used to store programs, applications, and user data. They offer fast data access and high capacity storage, making them a popular choice for storing large amounts of data.
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an inexperienced programmer is developing a program. the parameter type is a positive integer from 1-20.
It appears that you are specifying a function parameter that accepts a positive number between 1 and 20. Below is an example Python function signature.
How does one obtain a function's signature in Python?With the aid of the signature() function, we can obtain the function signature. It returns the annotation after receiving a callable as a parameter. If no signature is provided, a value of Error is raised. A Type Error is thrown if an object of an invalid type is supplied.
def my_function(num: int) -> None:
if num 1 or num 20:
raise Value Error("num must be a positive integer between 1 and 20")
# rest of your function code here
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The minimum distances that targets are engaged firing a MK-19 grenade launcher with HE ammunition is ___.
In training, the closest safe distance to launch the grenade is 310 meters and 75 meters in battle.
What is the simplest way to define distance?
The overall movement of an item without regard to direction is defined as distance. Distance may be defined as the amount of ground an item has traversed regardless of its starting or finishing place. We kept a safe space between us and them. She notices a new difference between her and her brother. While they had formerly been close, there was now a significant distance between them. He wishes to separate himself from his old employer.
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