a leakage problem can occur when connecting an output module to a high-impedance load. this problem can be corrected by connecting:

Answers

Answer 1

A leakage problem can occur when connecting an output module to a high-impedance load. this problem can be corrected by connecting A bleeder resistor in parallel with the load.

We like to believe that the AC or DC power supply we use to run our circuits are sterile and well-regulated. Transient Suppression Devices are needed because switching AC inductive loads, switching DC relay contacts, and switching DC motors all result in a power supply quality that is challenging to maintain. When an inductive or reactive load, such as a motor, a solenoid coil, or a relay coil, is abruptly turned off, inductive switching transients result. Its magnetic field collapses quickly, producing a transient voltage that is superimposed upon the steady-state supply. These voltage transients caused by inductive switching can reach thousands of volts.

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Related Questions

Which of these is not a reason we might want to measure the size of the economy?
O To track the magnitude of recessions
O To estimate the productive capacity of the country in case of war.
O To measure the happiness of people
O To compare living standards in different countries.

Answers

To measure the happiness of people is not a reason we might want to measure the size of the economy.

Measuring the size of the economy is important for various reasons, including tracking the magnitude of recessions, estimating the productive capacity of the country in case of war, and comparing living standards in different countries. However, measuring the happiness of people is not a direct reason for measuring the size of the economy, although some economists might argue that a larger economy generally leads to higher living standards and, therefore, greater happiness.

Answer:  C

Explanation:

C. Happiness is important but it is not measurable

Suppose Host A and Host B are separated by 15,000 kilometers. A direct link with rate, R = 5Mbps connects the two hosts. Suppose a propagation speed of 2.5x108 meters/sec. What is the bandwidth delay if using ∙ pppppppp

Answers

To calculate the bandwidth delay product, we need to multiply the bandwidth (R) by the round-trip time (RTT). The RTT is the time it takes for a packet to travel from the source (Host A) to the destination (Host B) and back. So, the bandwidth delay product in this scenario is 0.6 megabits (Mb).

First, we need to calculate the RTT. The RTT is the time it takes for a signal to propagate from Host A to Host B and back. Since the distance between the hosts is 15,000 kilometers, and the propagation speed is 2.5x10^8 meters/second, we can calculate the RTT as follows:

RTT = (2 * distance) / speed

RTT = (2 * 15,000,000 meters) / (2.5x10^8 meters/second)

RTT = 0.12 seconds

Now, we can calculate the bandwidth delay product:

Bandwidth Delay Product = Bandwidth (R) * RTT

Bandwidth Delay Product = 5 Mbps * 0.12 seconds

Bandwidth Delay Product = 0.6 megabits

Thus, the answer is 0.6 megabits (Mb).

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What is not a key characteristic of the engineering of web-based software engineering?

Answers

Answer:

Software reuse is the principal approach for constructing web-based systems, requirements for those systems cannot be completely specified in advance, User interfaces are constrained by the capabilities of web browsers.

characteristics of 3 types of soil​

Answers

fertile, infertile and corroded soil

Currently, there are 2 ultrasound systems housed in our Ultrasound Imaging Laboratory • System A has 32 channels. It uses a linear array that operates at a central frequency of 5 MHz and has a 50% fractional bandwidth. The size of the array is 4 cm and the total number of elements is 128 (each element width is 0.12 mm). System B has 64 channels. It uses a linear array that operates at a central frequency of 14 MHz and has a 80% fractional bandwidth. The size of the array is 4 cm and the total number of elements is 256 (each element width is 0.12 mm). Note: For calculation of the wavelength, please use c = 1540 m/s. a) Compare the performance of these 2 systems in terms of axial resolution and optimal lateral resolution at a typical imaging depth of 4 cm. b) Sketch the far field polar power density pattern for System B (please assume that you are using the maximum allowable number of elements given the hardware constraints). c) List 2 potential advantages of System A with respect to System B and 2 potential advantages of System B with respect to System A. Please, clearly justify your answers. d) Consider the radiation pattern of System B. Qualitatively describe how the pattern would change if each of the following modification was made independently in the array (all other parameters stay as specified): i) the wavelength was decreased. ii) the spacing between elements was decreased. iii) the total number of elements was decreased.

Answers

a) Axial resolution is determined by the wavelength of the ultrasound waves and is given by the formula:

Axial resolution = wavelength / (2 * fractional bandwidth)

For System A:

Central frequency = 5 MHz

Fractional bandwidth = 50% = 0.5

Wavelength = c / frequency = 1540 m/s / (5 * 10^6 Hz) = 0.308 mm

Axial resolution for System A = 0.308 mm / (2 * 0.5) = 0.308 mm / 1 = 0.308 mm

For System B:

Central frequency = 14 MHz

Fractional bandwidth = 80% = 0.8

Wavelength = c / frequency = 1540 m/s / (14 * 10^6 Hz) = 0.11 mm

Axial resolution for System B = 0.11 mm / (2 * 0.8) = 0.11 mm / 1.6 = 0.069 mm (rounded to 3 decimal places)

At an imaging depth of 4 cm, both systems will have similar axial resolutions since the fractional bandwidth is not changing with depth. Therefore, the axial resolution for both systems would be approximately 0.308 mm for this depth.

Lateral resolution is determined by the physical size of the array and is given by the formula:

Lateral resolution = element width / 2

For both systems, the element width is given as 0.12 mm. Therefore, the lateral resolution for both systems would be 0.12 mm / 2 = 0.06 mm.

b) Sketching the far-field polar power density pattern requires detailed information about the array's geometry, such as the shape and arrangement of the elements. The given information does not provide enough details to accurately sketch the pattern. The pattern depends on factors like the shape of the array (rectangular, curved, etc.), the element spacing, and the element excitation. Without this information, it is not possible to accurately sketch the pattern.

c) Advantages of System A with respect to System B:

Higher number of channels: System A has 32 channels, while System B has 64 channels. Having more channels allows for better beamforming and improved image quality. It enables finer control over the ultrasound beam, resulting in enhanced spatial resolution and imaging capabilities.

Lower central frequency: System A operates at a central frequency of 5 MHz, which allows for deeper penetration into the body. This is advantageous for imaging structures located deeper within the body, such as organs or tumors that may require a lower frequency for better visualization.

Advantages of System B with respect to System A:

Higher central frequency: System B operates at a central frequency of 14 MHz, which provides higher spatial resolution. Higher frequency ultrasound waves can resolve smaller structures and details in the imaged area. This is beneficial for imaging superficial structures, such as skin or superficial blood vessels, where finer details need to be visualized.

Wider fractional bandwidth: System B has an 80% fractional bandwidth compared to System A's 50%. A wider fractional bandwidth allows for a larger range of frequencies to be transmitted, resulting in improved image quality and better differentiation of tissue characteristics. It can enhance the ability to distinguish between different types of tissues or detect subtle abnormalities.

d) Qualitative description of changes in the radiation pattern for System B:

i) Decreasing the wavelength: Decreasing the wavelength would result in a narrower beam and improved spatial resolution. The beam would be more focused and have a smaller beamwidth, allowing for better differentiation of structures and finer details in the imaged area.

ii) Decreasing the spacing between elements: Decreasing the spacing between elements would result in a wider beam and a broader main lobe in the radiation pattern. This would lead to a decrease in spatial resolution but an increase in the sensitivity to off-axis signals.

iii) Decreasing the total number of elements: Decreasing the total number of elements would result in a decrease in the overall sensitivity and signal-to-noise ratio. The radiation pattern would show reduced beamforming capabilities and a lower main lobe intensity. This would result in lower image quality and reduced ability to resolve fine details in the imaged area.

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All of these are true about using adhesive EXCEPT:

Answers

Answer:

Except what? I'm confused

All of these are true about using adhesive except Bilateral. A bilateral contract is defined as an agreements between two parties in which each side agrees to fulfill his or her side of the bargain.

What is bilateral contract?

A bilateral contract is defined as an agreements between two parties in which each side agrees to fulfill his or her side of the bargain. According to my research on the different terms used when referencing an insurance contract, I can say that all of the answers provided except for Bilateral are considered typical characteristics describing the nature of an insurance contract.

Since an insurance contract is a fund that the insurance company pays in the case of an accident in which the person is injured, there is only one party that agrees to fulfill their side of the bargain and that is the insurance company.

Therefore, All of these are true about using adhesive except Bilateral. A bilateral contract is defined as an agreements between two parties in which each side agrees to fulfill his or her side of the bargain.

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When should an additional vertical cable support a structure to make it more rigid? Can you give an example

Answers

When the structure is sagging, additional vertical cable support the structure to make it more rigid.

What are some examples of cable structures?

The suspension bridge, the cable-stayed roof, and the bicycle-wheel roof are all examples of highly effective cable structures. Any string or cable stretched freely between two points will take the shape of a catenary, as evidenced by the beautiful arc of the enormous main cables of a suspension bridge.

Cable frameworks are a type of tensioned long-span construction that is supported by suspension cables. The suspension bridge, the cable-stayed roof, and the bicycle-wheel roof are all examples of highly effective cable structures.

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The pyramids in Egypt are cited as an ancient world wonder. What is the main
reason that the pyramids are important to the study of engineering?

Answers

The pyramids are important to the study of engineering because they were some of the first structures built using engineering principles. The pyramids are an example of how engineering can be used to create amazing structures.

What is pyramid?

A pyramid is a structure with triangular exterior surfaces that converge to a single step at the summit, giving the shape the shape of a pyramid in the geometric sense. A pyramid's base can be trilateral, quadrilateral, or any polygon shape. A pyramid, as a result, has at least three exterior triangle surfaces. A typical variant is the square pyramid, which has a square base and four triangular exterior surfaces. The design of a pyramid, with the majority of the weight closer to the bottom and the pyramidion at the apex, means that less material will be pushed down from above. This weight distribution enabled early civilizations to build stable massive constructions.

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In the circuit of Figure 1, V = 277 volts, L = 2 mH, R = 0:4 Ω, and Ï = 2Ï60 rad/s. Determine (a) the rms symmetrical fault current; (b) the rms asymmetrical fault current at the instant the switch closes, assuming maximum dc offset; (c) the rms asymmetrical fault current 5 cycles after the switch closes, assuming maximum dc off-set; (d) the dc offset as a function of time if the switch closes when the instantaneous source voltage is 300 volts.

Answers

(a) The rms symmetrical fault current is 326.65 A

(b) The rms asymmetrical fault current at the instant the switch closes, assuming maximum dc offset is 397.4π A

(c) The rms asymmetrical fault current 5 cycles after the switch closes, assuming maximum dc off-set is 324.539 A

(d) The dc offset as a function of time if the switch closes when the instantaneous source voltage is 300 volts is 351.43\(e^{200t}\) A

What is symmetrical fault current?

Transmission line faults can generally be divided into the following categories:

Symmetrical faultsAsymmetrical faults

A symmetrical fault in a power system is a type of fault that results in a short circuit involving all three phases. This could be a three phase short circuit or a three phase to ground fault.

When a fault is symmetrical, fault currents in the phases are symmetrical in that their magnitudes are equal and they are equally spaced by a 120° angle. So, a symmetrical fault with a high value of current in phases may be taken for granted as the norm.

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What components should you inspect if the crankshaft end play is out of specifications?

Answers

Answer:

gdyc ddxtfvytg4dgtfxdwcftcd3rcby

If the crankshaft end play is out of specifications, check for:

Thrust Bearings

Main Bearings

Crankshaft

Crankshaft Thrust Washers

Engine Block

To understand the crankshaft when it is out of specifications, check for:

Thrust Bearings: Check the condition of the thrust bearings, which are located at the front and/or rear of the engine block. Excessive wear or damage to the thrust bearings can contribute to increased crankshaft end play.

Main Bearings: Inspect the main bearings, which support the crankshaft within the engine block. Worn or damaged main bearings can cause excessive movement of the crankshaft.

Crankshaft: Check the crankshaft itself for any signs of damage, such as scoring or bending. A damaged crankshaft may not sit properly within the bearings, leading to increased end play.

Crankshaft Thrust Washers: Some engines use thrust washers to control the end play of the crankshaft. Inspect these washers for wear, damage, or improper installation.

Engine Block: Check the engine block for any signs of damage or distortion that may affect the alignment and support of the crankshaft.

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what is the lighting load on a 120v circuit for six 100w incandescent lights and four fluorescent fixtures with a ballast rating of 1.5a, all operating continuously for 8 hours per day?

Answers

Note that the lighting load on a 120v circuit for six 100w incandescent lights and four fluorescent fixtures with a ballast rating of 1.5a, all operating continuously for 8 hours per day is: 10,560 Watts.

What is Lighting Load?

A building's lighting loads are sometimes referred to in terms of "Lighting Power Density," which is measured in watts per square foot or square meter.

It is to be noted that a single calculation is used to compute lighting load:

W=VA.

Where

W = Watts

V = Volts; and

A = Amps

To determine the total wattage for the fluorescent fixtures we say:

4 fixtures x 1.5 amps x 120 volts = 720 watts

Next, we add the wattages for the incandescent lights and fluorescent fixtures to get the total wattage for the circuit. That is:

(6 x 100watts) + 720 watts
= 600 watts + 720 watts

= 1,320 watts

Thus the Load is 1,320 watts.

If all lighting will operate continuously for 8 hours/day, then:

Daily energy consumption will be:

1320 x 8

= 10,560 Watts.

Thus, the Lighting Load on a 120v circuit for 6  100w incandescent lights and four fluorescent fixtures with a ballast rating of 1.5a Operating at 8 hours per day is 10,560 Watts.

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agile is a form of adaptive or change-driven project management that largely reacts to what has happened in the early or previous stages of a project rather than planning everything in detail from the start. all of these are characteristics of an agile life cycle model that distinguish it from other life cycle methodologies except: a. increased visibility, adaptability, and business value while decreasing risk. b. life cycle proceeds in an iterative or continuous way. c. a plan-driven model with phases including: selecting and initiating, planning, executing, and closing and realizing benefits. d. project started with a charter, then a backlog, first release plan, and first iteration plan

Answers

Agile is a form of adaptive or change-driven project management that c. A plan-driven model with phases including: selecting and initiating, planning, executing, and closing and realizing benefits.

What is agile?

This characteristic does not identify the agile life cycle model from added life cycle methodologies. In fact, it details a plan-driven or traditional biological clock model that follows a sequential approach accompanying distinct phases.

Agile, in another way, emphasizes flexibility, changeability, and iterative development, frequently without strict devotion to predefined phases.

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What is the eye an example of?



sense organ
stimulus
a relay neuron

What is the eye an example of? sense organstimulus a relay neuron

Answers

sens organ is the eye example

A conceptual issue can be resolved by which of the following?

Answers

Answer:

Investigation or empircial research

Explanation:

gimme brainliest pls

((X•Y')'(Y'+Y'•(Y')'•Y•Z+Z))

Answers

Answer:

huh?

Explanation:

Suppose that the resistors in the various circuit diagrams represented the resistances of lightbulbs. When a lightbulb "burns out," the circuit is open through that particular component, that is R is infinite. Would the remaining bulbs continue to burn?

Answers

Answer:

The Remaining Bulbs will either burn out( draw more current ) or Not burn out depending on the arrangement of the bulbs in the circuit

Explanation:

The Remaining Bulbs will either burn more brightly ( draw more current ) or Burn less brightly ( draw less current).and this depends on the arrangement of the light bulbs in the various circuit.

If the light bulbs are connected in series the remaining bulbs will burn out as soon as  any light bulb burns out and this is because bulbs connected in series receive the same amount of current ,

If the light bulbs are connected in parallel the remaining bulbs will not burn out because each bulb receives current based on its resistance.

Which statement best explains why pneumatic cylinders need to be smaller than hydraulic cylinders?
The pneumatic system only needs enough room to have an onloff switch installed in order to operate correctly.
The energy in pneumatic power systems is easily transmitted to gases, which absorb the energy of the system and lower its efficiency
The control of the hydraulic system is much more precise and therefore requires a larger cylinder.
The fluid in a hydraulic system has more mass and therefore needs more storage space.

Answers

Answer:

The energy in pneumatic power systems is easily transmitted to gases, which absorb the energy of the system and lower its efficiency.

Explanation:

I did it on edge and got it right.

Answer:

The energy in pneumatic power systems is easily transmitted to gases, which absorb the energy of the system and lower its efficiency

Thanks for points!!! :D

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.

Answers

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:

technician a says a torsion bar is a type of shock absorber. technician b says shock absorbers slow the upward and downward movement of the vehicle after a bump. who is correct?

Answers

A torsion isn't part of the shock absorber. Hence, technician A is wrong and technician B is correct.

The suspension system allows the wheel to up and down over bumps in the road. The suspension system makes the wheels and tires to up and down to absorb the shock from bumps. The rubber tires and air in the tires also slow down the ride over hard surfaces and conform to slightly uneven and rough surfaces. Thus, technician B is correct. Meanwhile, the technician A is wrong because a torsion isn't kind of shock absorber.

Kind of shock absorbers are:

Standard telescopic shocks. Struts. Spring seat.

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noooo plssschvwekjshdjkshdjkshdjksahdk

Answers

Huh? Kffjkdkdodjenxkrkdkre

Answer:

chehdhfhfhd

Explanation:

fjrjshrhdhr

The​ short-term demand for crude oil in Country A in 2008 can be approximated by q = f(p) = 2,144,309p^-0.05 , where p represents the price of crude oil in dollars per barrel and q represents the per capita consumption of crude oil. Calculate and interpret the elasticity of demand when the price is ​$79 per barrel. The elasticity of the demand for oil is ___ ?

Answers

The elasticity of demand for oil when the price is $79 per barrel is approximately -0.052.

The elasticity of demand measures the responsiveness of quantity demanded to changes in price. In this case, the elasticity of demand is calculated by taking the derivative of the demand function with respect to price, and then multiplying it by the ratio of price to quantity.

To calculate the elasticity at a specific price, we need to differentiate the demand function with respect to price, which gives us -0.05 * 2,144,309 * p^(-0.05 - 1). Simplifying this expression gives us -107,215.45 * p^(-1.05).

Next, we multiply this expression by the ratio of price to quantity. At a price of $79 per barrel, we substitute p = 79 into the expression and divide it by the quantity consumed. This gives us (-107,215.45 * 79^(-1.05)) / (2,144,309 * 79^(-0.05)). Simplifying further, we find the elasticity to be approximately -0.052.

Interpreting this elasticity value, we can say that a 1% increase in the price of crude oil would result in a approximately 0.052% decrease in per capita consumption of crude oil in Country A in 2008. Similarly, a 1% decrease in price would lead to a 0.052% increase in per capita consumption. This indicates that the demand for oil in Country A is relatively inelastic, meaning that changes in price have a proportionately smaller impact on the quantity demanded.

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Find the volume of the rectangular prism
9 cm
10 cm

Answers

Answer:

V= 90h cm³ where h is the height of the rectangular prism.

Explanation:

The formula for volume of a rectangular prism is ;

V=l*w*h  where;

V=volume in cm³

l= length of prism=10cm

w =width of the prism = 9 cm

Assume the height of the prism as h cm then the volume will be;

V= 10* 9*h

V= 90h cm³

when the value of height of the prism is given, substitute that value with h to get the actual volume of the prism.

During one eight-hour shift, 750 non-defective parts are desired from a fabrication operation. The standard time for the operation is 15 minutes. Because the machine operators are unskilled, the actual time it takes to perform the operation is 20 minutes, and ,on average, one-fifth of the parts that begin fabrication are scrapped. Assuming that each of the machines used for this operation will not be available for one hour of each shift, determine the number of machines required.

Answers

Answer:

No. of Machines Required = 47

Explanation:

First, we calculate the number of parts that can be manufactured by one machine during the shift. For that purpose, we use following formula:

No. of Parts Manufactured by 1 Machine = Total Operating Time/Time taken to perform Operation

where,

Total Operating Time = 8 h - 1 h = (7 h)(60 min/h) = 420 min

Time taken to perform operation = 20 min

Therefore,

No. of Parts Manufactured by 1 Machine = 420 min/20 min

No. of Parts Manufactured by 1 Machine = 21

Now, we will calculate the no. of non-defective parts manufactured by 1 machine. Since, it is given that one-fifth of the parts manufactured by machine are defective. Therefore, the non-defective parts will be: 1 - 1/5 = 4/5 (four-fifth).

No. of Non- Defective Parts Manufactured by 1 Machine = N = (4/5)(21)

N = 16.8 = 16 (Since, the 17th part will not be able to complete in time)

So, the no. of machines required to produce 750 non-defective parts is given by:

No. of Machines Required = No. of non-defective parts required/N

No. of Machines Required = 750/16

No. of Machines Required = 46.9

No. of Machines Required = 47 (Since, 46 machines will not be able complete the job)

the contact areas of nail tips are smoothed with a fine-grit block buffer held:

Answers

The contact areas of nail tips are smoothed with a fine-grit block buffer held using a gentle and light touch.

When applying nail tips, it is important to ensure that they are properly attached to the natural nails to prevent them from lifting or breaking. This requires the contact areas of the nail tips to be smoothed and flattened so that they adhere well to the natural nails. A fine-grit block buffer is typically used for this purpose, as it is gentle on the nails and provides a smooth finish. To use the fine-grit block buffer on the contact areas of nail tips, it should be held with a gentle and light touch. The buffer should be moved in a back-and-forth motion across the contact area until it is smooth and flat. It is important to avoid applying too much pressure or buffing too aggressively, as this can damage the natural nails and cause discomfort to the client.

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Un mol de gas ideal realiza un trabajo de 3000 J sobre su entorno, cuando se expande de manera isotermica a una temperatura de 58°C, cuando su volumen inicial es de 25 L. Determinar el volumen final

Answers

Answer:

74,4 litros

Explanation:

Dado que

W = nRT ln (Vf / Vi)

W = 3000J

R = 8,314 JK-1mol-1

T = 58 + 273 = 331 K

Vf = desconocido

Vi = 25 L

W / nRT = ln (Vf / Vi)

W / nRT = 2.303 log (Vf / Vi)

W / nRT * 1 / 2.303 = log (Vf / Vi)

Vf / Vi = Antilog (W / nRT * 1 / 2.303)

Vf = Antilog (W / nRT * 1 / 2.303) * Vi

Vf = Antilog (3000/1 * 8,314 * 331 * 1 / 2,303) * 25

Vf = 74,4 litros

Sketch a stone bridge, a steel bridge, a wood bridge, and a reinforced concrete bridge. Describe how their shape is related to the properties of the material.

Answers

The shape of a bridge is determined by the material it's made of. Bridges are made from different materials such as wood, steel, stone, and reinforced concrete.

Stone bridge: A stone bridge is built from stone blocks or stones that are cut and fitted together. The shape of a stone bridge is typically arched or curved. This is because stone is a very heavy and dense material that can withstand a lot of pressure. The arched shape of the stone bridge helps distribute the weight of the bridge evenly across the supporting pillars.

Steel bridge: A steel bridge is made from steel beams or trusses. The shape of a steel bridge is typically angular and geometric. This is because steel is a very strong material that can be easily molded and shaped into different shapes. The angular shape of the steel bridge helps distribute the weight of the bridge evenly across the supporting pillars. The shape also helps provide stability and prevent the bridge from swaying or moving in high winds.

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What is the reading of this Dial Caliper?

What is the reading of this Dial Caliper?

Answers

Answer:

45

Explanation:

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a chemical fume hood is a primary engineering control. which of the following describes how it works with the building exhaust system?: a. all air in the fume hood is exhausted outside of the building b. all air in the fume hood is filtered and recycled back into the lab c. all air in the fume hood is filtered and recycled back into the building air supply d. none of the above

Answers

The exhaust system collects exhaust gases from the cylinders, removes pollutants, reduces noise levels, and directs the purified exhaust gases away from the occupants at appropriate locations within the vehicle.

What is Exhaust system?

Depending on the engine, the exhaust system consists of he one or he two channels. Flow resistance should be chosen so that exhaust back pressure has as little impact on engine performance as possible.

For an exhaust system to work properly, it must be thought of as a whole and developed accordingly. This means that the component must be matched by the designer to be specific to the vehicle and engine.

All internal combustion engines produce an "exhaust noise" due to the pulsating ejection of gases from the cylinders. This noise should be attenuated by reducing the acoustic energy of the exhaust stream.

Therefore, The exhaust system collects exhaust gases from the cylinders, removes pollutants, reduces noise levels, and directs the purified exhaust gases away from the occupants at appropriate locations within the vehicle.

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The input resistance at the base of a biased transistor depends mainly on
(a) bDC
(b) RB
(c) RE
(d) bDC and RE

Answers

Answer:

D

Explanation:

Your vehicle has a dual air brake system. if a low air pressure warning comes on for the secondary system, what will happen?

Answers

If the low air pressure warning for the secondary air brake system comes on, it indicates that the pressure in the system is low and needs to be restored to the correct level for the brake system to function correctly.

There are two types of air brake systems:

the single air brake system and the dual air brake system.

The dual air brake system is the most common one used in heavy-duty commercial vehicles.

The dual air brake system is made up of two independent systems that function together.

The primary system provides the majority of the braking power and is controlled by the foot brake.

The secondary system, on the other hand, is a backup system that is used to stop the vehicle in the event of a primary system failure.

The low air pressure warning light is the primary indicator of a system failure.

If the low air pressure warning light comes on for the secondary system,

the driver must take action immediately to correct the problem.

If the problem is not addressed promptly,

the vehicle's brakes will not function properly, putting the driver and passengers in danger.

When the low air pressure warning light comes on for the secondary system,

the driver should immediately pull over to a safe location and check the air pressure in the system.

If the air pressure is low, the driver should take steps to restore the correct level of air pressure as soon as possible.

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