-6. When we say the flip-flop is in the set condi-
_____ is at a
tion, we mean output
logical
MT
CL

Answers

Answer 1

The term “Flip-flop” relates to the actual operation of the device, as it can be “flipped” into one logical  Set state or “flopped” back into the opposing logical set.

A flip-flop is a device which stores a single bit (binary digit) of data; one of its two states represents a "one" and the other represents a "zero". Such data storage can be used for storage of state, and such a circuit is described as sequential logic in electronics.

STATIC RAM (SRAM) consists of flip-flops, a circuit composed of four to six transistors. Once a flip-flop stores a bit, it keeps that value until the opposite value is stored in it.

Hence, logical set is used.

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Related Questions

The program will take two integers from the user, say n1 and n2. It will then call the method sum(n1, n2) to calculate the sum of all numbers between n1 and n2, inclusive. The answer returned by the sum( ) method will then be displayed on the screen. For example, if the user enters 5 and 9, the program will print the value of 5+6+7+8+9. On the other hand, if the user enters 5 and -2, the program will print the value of 5+4+3+2+1+0+(-1)+(-2). Note: Do not assume the user will always enter the smaller number first.

Answers

The Java program will take two integers from the user and we are not assuming the user will always enter the smaller number first.

Step-by-step coding of the given problem:

import java.util.*;

class main{

public static void main(String args[])

{int n1,n2;

Scanner in=new Scanner(System.in);

System.out.print("Enter the starting number: ");

n1=in.nextInt();

System.out.print("Enter the ending number: ");

n2=in.nextInt();

System.out.println("The sum of the numbers from "+n1+" to "+n2+" is "+sum(n1,n2));

}

public static int sum(int n1, int n2)

{int i,sum=0,start,stop;

start=n2;

stop=n1;

if(n1<n2)

  {start=n1;

   stop=n2;

   }

for(i=start;i<=stop;i++)

    sum+=i;

return sum;

}

}

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In an industrial process, the diameter of a ball bearing is an important measurement. The buyer sets specifications for the diameter to be 3.0 ± 0.01 cm. The implication is that no part falling outside these specifications will be accepted. It is known that in the process the diameter of a ball bearing has a normal distribution with mean μ = 3.0 and standard deviation σ = 0.005. On average, how many manufactured ball bearings will be scrapped?

Answers

On average, the percentage of manufactured ball bearings that will be scrapped is 4.56%.

What is the manufactured ball bearings about?

An example of a rolling element bearing is a ball bearing, which has three major purposes in addition to facilitating motion: carrying weights, lowering friction, and positioning moving machine elements.

Note that:

x1 = 3-0.01 = 2.99

x2 = 3+0.01 = 3.01

So, It can be scrapped by:

1−P(2.99 < Z <3.01)= 1−P (2.99 −3/ 0.005 < Z < 2.99+30.00/5)

=1−P(2.99 − 3/0.005 <  Z <2.99 + 3/0.005)= 1 − P ( −2 < Z <2)

=1−(P (Z < 2.0) − (P (Z> − 2.0)) = ( P (Z > 2.0) + P( Z < −2.0)=

2 x 0.0228 = 0.0456

Therefore, the Answer will be 4.56% of the manufactured ball bearings need to be scrapped.

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technician a says that fuel pump modules are spring-loaded so that they can be compressed to fit into the opening. technician b says that they are spring-loaded to allow for expansion and contraction of plastic fuel tanks. who is right?

Answers

According to Technician A, fuel pump modules are spring-loaded so they can be compressed to fit the aperture.

Electric fuel pumps are often mounted in the fuel tank to utilize the fuel in the tank to cool the pump and ensure a steady supply of fuel. Each injector has a spring-loaded valve that is kept closed by the force of the spring. The valve doesn't open until fuel is squirted into it. The fuel pump driver module controls the voltage supplied to the fuel pump in a vehicle. By adjusting voltage, the module ensures ideal fuel pressure and flow to the engine throughout its entire operating range.

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What growth opportunities are available for Robert in other markets outside of the US?

Answers

The growth opportunities that are available for Robert in other markets outside of the US are  Lower costs, cheaper production, premises as well as lower wages.

What is growth in international marketing?

Your business may benefit from growth and higher margins if you export your goods or services to another nation.

There are four cornerstones of international company to take into account: management commitment, product knowledge, operational capacity, and financial capability, whether you export presently or are debating whether you should.

Therefore, The basis is commitment. The general consensus is that you either go all in or you don't. Opportunities for market expansion include, for example: increasing access to resources like new goods and services, money, people, etc. greater productivity in the workplace. Improved customer service and a change in the consumer experience. the development of new markets for the goods or services of the organization.

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See full question below

Expanding Into International Markets by Robert Burrus. What growth opportunities are available for Robert in other markets outside of the US?

Schains 21 LINKS
Achains 21 LinkS
N 40° 30' E
4 chains 25 LINKS
5 chains
N 40° 30' E
FARM
3 chains
N 49° 30' W
1
ROAD
OLO
1. Determine the area of the enclosed property in square feet and acres.
2. How many linear feet of fencing would the farmer need to fence in the entire property?
3. If the land is valued at $4500.00 per hectare, what price did the farmer pay for the parcel?
4. Determine the three unidentified internal angles of the polygon.
5. Determine the bearings of the unidentified sides of the parcel.

Answers

1. The area of the enclosed property is 10,000 square feet.

2. The farmer would need 1,000 linear feet of fencing to fence in the entire property.

3. The farmer paid $20,000 for the parcel.

4. The three unidentified internal angles of the polygon are 90°, 45°, and 45°.

5. The bearings of the unidentified sides of the parcel are North, South, and East.

What is angles of the polygon?

An angle of a polygon is generated by two sides of the polygon that share a terminal in geometry. If a point within the angle is in the interior of a simple (non-self-intersecting) polygon, regardless of whether it is convex or non-convex, this angle is called an interior angle (or internal angle). Each vertex in a polygon has precisely one internal angle. A simple polygon is said to be convex if every internal angle is less than radians (180°).

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What does The vehicle dashboard includes

Answers

Answer: The vehicle dashboard includes the speedometer, tachometer, fuel gauge, temperature gauge, oil pressure gauge, and voltmeter.

Explanation:

What is the correct way to mark False Starts in Full Verbatim?

Answers

The use of double dashes is the correct way to mark False Starts in Full Verbatim.

How do you appropriately double  dashes?

Double dashes are used to distinguish the beginning and finish of a sequence that would otherwise be misunderstood. In dialogue, dashes are also used to indicate when a sentence has been cut off.

To indicate a range or that material has been incorporated into a statement, dashes can be used in place of parenthesis. Only in casual writing should dashes be used; in academic and business writing, commas, parenthesis, or colons should be used instead. A space should not come before or after a dash.

Therefore, False Starts should be marked in Full Verbatim with double dashes.

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QUESTION 8
Per the Machinery's Handbook, close-fitting bushings in drill jigs may increase
holes.
wear
friction
heat
damage
on the drill and cause swarf to plug up the drill

Answers

Answer:

Explanation:

heat

if an aircraft is loaded 90 pounds over maximum certificated gross weight and fuel (avgas) is drained to bring the aircraft weight within limits, how much fuel should be drained?

Answers

When an aircraft is loaded 90 pounds or more than the maximum certificated gross weight and fuel (avgas) is drained to bring the aircraft weight within limits, 15 gallons of fuel should be drained.

How is aircraft loaded moment calculated?Determine the empty weight of the aircraft and the weights of passengers, luggage, and fuel by consulting the pilot's operating manual. To determine the moment, multiply each weight by the arm, which is the separation from the reference datum. To determine the gross weight, add up all the weights. To find the total moment, add all the moments together.n= L/W Where L is the lift produced by the wing and W is the aircraft's gross weight. As lift and weight are different types of forces, units cancel out when calculating the load factor, leaving the load factor dimensionless. However, because load factor refers to a force, it is expressed in units of G's.

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a v-6 is being tested for starter amperage draw. the initial surge current was about 210 amperes and about 160 amperes during cranking. technician a says that the starter is defective and should be replaced because the current flow exceeds 200 amperes. technician b says that this is normal current draw for a starter motor on a v-6 engine. who is right?

Answers

This is a typical current draw for a starter motor on a v-6 engine, according to technician B.

What does a starter motor do?

The starter motor is in charge of starting the engine during ignition and permitting the rest of the process. The starter motor engages and turns the engine over when the ignition is turned on, allowing the engine to inhale air. The starter is positioned low to the ground near the rear of the engine in a front-engine layout. The starter requires a strong electric current, which it obtains from the battery through thick wires. It cannot be turned on with a typical hand-operated switch since it needs a large switch to handle the enormous current. Labor costs should also be taken into consideration; they can range from $150 to $1,000. Costs for new starters might range from $80 to $350. A replacement starter for a typical vehicle costs about $500. It looks that your mechanic is billing you at the going cost for this service.

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a transformer has 880 turns and 62 turns for the primary and secondary respectively. with no load on the secondary and a primary voltage of 2058.06 v, what is the output voltage of the secondary?

Answers

In a secondary coil, there are twice as many turns as there are in a main coil. A transformer with a turns ratio of 2:1 will have 100 primary turns and 50 secondary turns.

As a result, 60 volts will be impressed on the secondary if the primary is at 120 volts. Therefore, by multiplying both sides by N p, we may find N s, which equals N pV s over V p. The voltage drop is produced by a step-down transformer, which has a secondary coil with only 30 turns and 400 turns multiplied by 9.00 volts divided by 120 volts.

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when a load resistor is connected across a voltage divider output, the output voltage increases. group of answer choices true false

Answers

When a load resistor is connected across a voltage divider output, the output voltage increases is false.

What is load resistor?

Load resistors are utilized to guarantee a minimal current flow, impedance matching, maximum power transfer, and improved output stability. At a circuit's output, load resistors are utilized to change the amount of power going to the load.

A resistor serving as a load is known as a load resistor. Depending on how much electricity it needs to dissipate (otherwise it wouldn't be much of a load), it might be extremely small or might need to be physically large.

*When reading about circuits, different resistors may be categorized according to what they do, so you might see "feedback," "damping," "source," "bias," etc. resistors.

Any device that draws power, whether it be a resistor, capacitor, inductor, or a combination of these three, is referred to as a load. According to Ohm's Law, a load resistor should be a pure resistive load that dissipates power.

                                    [tex]P = I^2 \times R[/tex]

and

                                   [tex]P = \frac{V^2}{R}[/tex]

where P stands for power lost, I for current, V for voltage, and R for resistance, expressed in ohms.Replace R with impedance Z, which is a combination of resistance and reactance, for inductive and capacitive loads.

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assume if the shear stress in steel exceeds about 4.00 108 n/m2 the steel ruptures. (a) determine the shearing force necessary to shear a steel bolt 0.95 cm in diameter. your response differs from the correct answer by more than 10%. double check your calculations. n (b) determine the shearing force necessary to punch a 1.60-cm-diameter hole in a steel plate 0.450 cm thick.

Answers

The diameter is the distance along the circle's circumference that separates two locations on its edge. A 0.038 x 109 N shearing force is applied.

Explain about the Diameter?

Any straight line segment that traverses a circle's centre and has its ends on the circle is said to have that circle as its diameter. It is also known as the circle's longest chord. The diameter of a sphere can be defined using either of the two methods.

It is an important circular measurement. In fact, it is one of the characteristics that distinguishes circles. The diameter is a measurement of the circumference of a circle taken from rim to rim through its center.

Calculate the area of a 0.95 cm diameter circle.

A = πr²

If A is not present, A = (0.95 cm/100 cm)2 =0.0095m

Increase this by the specified shearing stress.

Shearing force = (4 x 10x8 N/m2)(0.0095)

0.038 x 109 N shearing force

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How many different welding processes are in use?

Answers

There are basically five types of welding namely:

a)Gas Metal Arc Welding (GMAW/MIG)

b)Friction welding,

c)ELECTRON BEAM WELDING

d) LASER BEAM WELDING

e) RESISTANCE WELDING

What is welding?

Welding is a fabrication process in which two or more parts are joined together using of heat, pressure, or both to form a joint as the parts cool. materials to be welded include metals, thermoplastics, and wood.

Types of welding processes

a)Gas Metal Arc Welding (GMAW/MIG)

Used mainly for joining metals like stainless steel, nickel, copper alloys, aluminum, titanium, and cobalt.

b)Friction welding

This is a  technique used to join materials using mechanical friction. this can be used to join wood, steel, and aluminum.

c)ELECTRON BEAM WELDING

This process uses a mean of high-velocity electrons to combine materials this can be used to join thick sections in the aerospace, automotive, rail, and nuclear power industry.

d)LASER BEAM WELDING

this is used to combine pieces of metal or thermoplastics.

e) RESISTANCE WELDING

This is a process that joins metals by applying pressure and passing a current through them for a period of time.

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in a device to produce potable water, humid air at 90 of, 29.7 in hg, and 95% relative humidity is cooled to 40 of at constant pressure. what volumetric flow rate of air into the cooler (ft3/min) is required to provide 10.0 gal/min of condensed water? (20 points)

Answers

The amount of water that flows through a specific surface in a unit of time is known as the volumetric flow rate. Or, to put it more simply, how quickly water moves through a pipe.

Volumetric flow rate is influenced by friction loss, water velocity, and pipe diameter. As is well known, volumetric flow determines how much space the molecules in a flowing gas occupy, while mass flow counts the number of molecules in the gas. Volumetric flow rates can significantly change in response to changes in pressure and/or temperature because gases are compressible and temperature has a large impact on them. Vacuum technology typically deals with three different types of flow: molecular flow, viscous or continuous flow, and the flow at their intersection.

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refrigerant 134a is the working fluid in a solar power plant operating on an ideal rankine cycle. saturated vapor at 60 oc enters the turbine, and the condenser operates at a pressure of 6 bar. the rate of energy input to the collectors from solar radiation is 0.4 kw per m2 of collector surface area. determine the solar collector surface area, in m2, per kw of power developed by the plant.

Answers

The solar collector surface area, in m2, per kW of power developed by the plant is [tex]25.3 m^2/kW[/tex].

1. T1=[tex]60 ^{0}[/tex]C

H1=275.99 kJ/Kg (Enthalpy for saturated vapor [tex]60^{0}[/tex]C)

Hfg=137.42 kJ/Kg

2. P2= 6 bar

T2=21.58 C ( temperature of sat. liquid  6 bar)

H2=259.19  (enthalpy of sat. liquid  6 bar)

From the above conditions, the power generated can be found.

Wt.=H1-H2=275.99-259.19=16.8 KW )

3.After condensing:

T3=21.58 C

P3= 6 bar

4. After pump:

T4=21.58 C

the power required by the solar collector to bring the temperature of the fluid up to 60 C  and vaporize the fluid :

W=CpT + [tex]H_{fg}[/tex]

Cp= 0.857 KJ/kg

[tex]H_{fg}[/tex]=137.42

W=0.857x(60-21.58) + 137.42=170.35 KW

Area required:

A=[tex]170.35 kw/0.4 KW/m^2[/tex]

A=[tex]425.86 m^2[/tex]

Area/Power generated= A / Wt=[tex]425.86 m^2/16.8 KW[/tex]

Area/Power generated=[tex]25.3 m^2/KW[/tex]

What is solar radiation?

Solar radiation often referred to as solar energy or simply sunlight, is the general term for electromagnetic radiation emitted by the sun. Solar radiation can be captured and converted into useful forms of energy such as heat and electricity using various technologies.

Solar radiation produces heat, light and energy that all living organisms need. Infrared radiation provides heat to all habitats both on land and in water Without solar radiation, the earth would be about 32°C colder 25. Solar radiation provides the heat and light necessary for life on earth.

TYPES OF SOLAR RADIATION

Direct solar radiation. Diffuse solar radiation. Reflected solar radiation.

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a(n) ? is an intentionally constructed, low-impedance electrically conductive path designed and intended to carry current during ground-fault conditions from the point of grounding on a wiring system to the electrical supply source, and is intended to facilitate the operation of the overcurrent protective device or ground-fault detectors on a high-impedance system.

Answers

A effective ground-fault current path  is an intentionally constructed, low-impedance electrically conductive path designed and intended to carry current during ground-fault conditions from the point of grounding on a wiring system to the electrical supply source.

Is earth an effective ground fault current path?Sticking the wire in the ground is not sufficient since the earth is not thought to be a reliable ground-fault current channel.The electrical system of a building or other structure is based on grounding.To give a fault current a secure path to travel, grounding is used.When installing switches, light fixtures, appliances, and receptacles, a complete ground route must be kept.The undesired current flow trips circuit breakers or blows fuses in a system that is correctly grounded.Through the use of a grounding bank, effective grounding maintains voltages within predetermined limits during a line-to-ground fault (short-circuit condition).

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a simply supported beam has a length of 1.2 m. the cross section has a width of 140 mm and height of 240 mm. the weight density of the beam is 5.4 kn/m3 . calculate the maximum permissible value of the load p if (a) the allowable bending stress is 8.5 mpa, and (b) the allowable shear stress is 0.8 mpa.

Answers

The results of the calculations are (a) P = 37.97 kN and (b) P = 35.62 kN.

The surface won't be cut if you press the flat section of the knife against the fruit. The force is dispersed over a wide area.

Using the parameters and figure provided in the problem, we have:

A = b*h = 0.14*0.24 = 0.0336 m^2

S = (b*h^2)/6 = (0.14*0.24*0.24)/6 = 0.001344 m^3

q = 5400*0.0336 = 181.44 N/m

(a) The load P at 8.5 MPa = 8.5*106 Pa (allowable bending stress)

σ = M/S

M = *S thus equals 0.001344*8.5*106 = 11424 Nm.

Aside from that

M = (P*L/4) + (q*L^2)/8

11424 = (P*1.2/4) + (181.44*1.2^2)/8

11424 = 0.3*P + 32.6592

P = (11424-32.6592)/0.3 = 37.97 kN

(b) If (allowable shear stress) = 0.8 MPa, then the value of P is equal to 0.8*106 Pa.

(2*A*τ/3) = P/2 + q*L/2

(2*0.0336*0.8*10^6)/3 = P/2 + 181.44*1.2/2

17920 = P/2 + 108.864

P = (17920 - 108.864) * 2 = 35.62 kN.

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what best describes concrete? group of answer choices the matrix is cement and the particulates are sand and gravel it is a structural composite it is a laminate composite it is a fiber-reinforced composite

Answers

Pre-tensioning or post-tensioning procedures that apply compressive stress to the concrete result in prestressed concrete.

For a more flexible and long-lasting end result, steel tendons, such as high-strength wires or alloys, are stretched to reinforce the tension into the concrete substance. Families of importance and performance properties. To give the plastic a particular hue, pigments—insoluble organic or inorganic particles—are added to the polymer basis. Plasticizers are typically nonvolatile, high boiling, low molecular weight compounds that are added to a polymer to alter the mechanical properties and increase its processability, flexibility, and stretchability. Major Families & Performance Properties of Pigments. To give the plastic a particular hue, pigments—insoluble organic or inorganic particles—are added to the polymer basis.

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What type of drum system is mostly to be found on the rear of a modern front wheel drive vehicle ?

Answers

Drum Brakes are mostly to be found on the rear of a modern front wheel drive vehicle.

What Is Drum Brake?

Drum brakes have been around since 1900 ,patented until 1902 by Louis Renault.

A drum brake is a brake that , causes friction caused by a set of shoes or pads that press outward against a rotating cylinder-shaped part called a brake drum.It  rotates at the same speed as the wheel. The drum surrounds a set of brake shoes that are coated in materials that generate friction.

Types of drum brakes

Leading/Trailing Shoe type. Twin-leading shoeDuo Servo.

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how does energy industry meet their compliance goals?

Answers

One of the biggest and most strictly regulated industries in the world is the energy and utilities (E&U) sector. For businesses that don't modernize their business practices, it can be challenging to comply with all the new and evolving regulations. E&U businesses can lower their risk of non-compliance by adopting a comprehensive strategy that incorporates automation and verification tools.

The Energy industry:

Let's begin by taking a look at some of the definitions and current trends in the energy sector. It will give us a helpful framework for some of the other crucial components of this quickly evolving sector.

What is it? 

The energy sector is enormous and encompasses a wide range of disciplines, occupations, and specializations. It generally refers to the production of electricity using fossil fuels like oil and gas, nuclear energy, and renewable sources like wind and solar.

This idea typically refers to three distinct areas: the production of the power itself, its transmission and distribution, and the sales and metering side. There are numerous energy-related businesses, markets, and jobs in each of these regions.

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a) what would if we tried to further accelerate a
Supersonic fluid with a
diverging diffuser?

Answers

If we tried to further accelerate a Supersonic fluid with a diverging diffuser,  the pressure will decrease due to an increase in area. This can be described as :

dA/A = dP/ρV² (1-M²) for supersonic flow Mach Number, M: M > 11 - M² < 0 (dA/A) = -K (dP/ρV²)k = 1-M²

What is Supersonic Fluid?

Supersonic flow fields have Mach numbers greater than one at every location. Supersonic flows are usually characterized by the presence of shock waves, which cause abrupt changes in flow characteristics and streamlines (in contrast to the smooth, continuous variations in subsonic flows).

Supersonic and subsonic relate to speeds that are faster or slower than the speed of sound, respectively. Supersonic means traveling faster than the speed of sound, which is 343.2 m/s (1,126 ft/s). Subsonic speeds are defined as anything moving slower than the speed of sound.

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7. what will be stronger: a blend of stainless steel and copper powder that is compacted and sintered, or a stainless steel powder that is compacted, sintered, and infiltrated by copper?

Answers

When considering all blended, compacted, sintered and infiltrated components, the components that are made from infiltrated parts have no porosity. These infiltrated parts are the strongest ones among the remaining processes.  Hence, the stainless steel components which are powdered, compacted, sintered, and infiltrated by copper are the strongest.

What is Stainless steel?

Steels that include at least 10.5% chromium, less than 1.2% carbon, and other alloying elements are known as stainless steels. Other elements, such as nickel, molybdenum, titanium, niobium, manganese, etc., can be added to stainless steel to further improve its mechanical and corrosion resistance.

Sintered steel alloys are increasingly being used in mechanical parts. However, the better mechanical and corrosion-resistant qualities needed for sintered materials can be obtained by lowering porosity. The copper infiltration technique is effective here.

A measured quantity of copper-base alloy is spread over the surface of a porous ferrous compact during the copper infiltration process. The two components are then sintered at a temperature (>2000°F), causing the copper alloy to melt and flow through capillary action into the porosity of the ferrous compact. After the cooling process is finished, the copper alloy permanently solidifies inside the ferrous framework.

The infiltration procedure increases density, seals the sintered components, and makes the part corrosion resistant. The mechanical properties (hardness, toughness, strength, etc.) are also enhanced by this process.

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technician a says that most engine oems recommend priming full flow oil filters following an oil change. technician b says that failure to prime a full flow oil filter following engine lube service may damage the turbocharger when the engine is started. who is correct?

Answers

Answer:

The correct answer is that both the technician a oil filter and b about turbocharger are correct.

Explanation:

The outside of the oil filter is a metal can with a sealing gasket that allows it to be tightly held against the engine’s mating surface. The engine’s oil pump moves the oil directly to the oil filter, where it enters from the holes in the perimeter of the base plate. The dirty oil is passed (pushed under pressure) through the oil filter media and back through the central hole, where it re-enters the engine.The buildup is transferred away from the highly stressed components by the engine oil filter, which prevents temperatures from rising to a point where the construction materials would soften or the turbo would completely mechanically collapse. The turbocharger can be completely destroyed in a matter of seconds if the engine oil supply is even briefly interrupted while the engine is operating at high speed.

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how can we find the maximum power delivered from the fixed source and to the variable load? how can we find the maximum power delivered from the fixed source and to the variable load? when we find the equivalent resistance when we replace a load with a short circuit when we replace a load with an open circuit when we find the thevenin equivalent resistance as seen by the load and replace the load with this resistance

Answers

Consequently, RL=RTh is the need for maximal power dissipation over the load. In other words, the power dissipated across the load will be at its maximum if the value of load resistance is equal to the value of source resistance, or Thevenin's resistance.

According to the maximum power transfer theorem, when the load resistance is equal to the series resistance, the power transmitted to the load resistor is maximized. The critical point can be determined by evaluating the derivative of the power equation with respect to the load resistance. Define Equation 1 in relation to RL and set it equal to zero. Consequently, RL=RTh is the need for maximal power dissipation over the load. A crucial technique for successful system design is the maximum power theorem, also referred to as the maximum power transfer theorem.

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N 40° 30' E
Achains 21 Links 4 chains 25 LINKS
Schains 21 LINKS
OLO
5 chains
N 40° 30'E
FARM
3 chains
N 49° 30' W
ROAD
1. Determine the area of the enclosed property in square feet and acres.
2. How many linear feet of fencing would the farmer need to fence in the entire property?
3. If the land is valued at $4500.00 per hectare, what price did the farmer pay for the parcel?
4. Determine the three unidentified internal angles of the polygon.
5. Determine the bearings of the unidentified sides of the parcel.

Answers

Answer:

Omg so long i will give later

a certain stress sensor is mounted on an aircraft wing that is subject to periodic wing gusts. the stress can be approximated by a sinusoidal function (i.e. sine wave) ranging from 3,313 kpa to 5,371 kpa at a frequency of 6 hz. determine the average stress value in kpa. (provide the answer using 2 decimal places).

Answers

average stress value in kpa with a 6 hz frequency and 5,371 kpa of pressure. 4,342

What does the term "sinusoidal function" mean?

A function that is based on the sine function, a periodic function that oscillates smoothly between high and low values, is referred to as a sinusoidal function. Since the cosine function is simply a horizontal shift of the sine function, sinusoidal functions can also be built on it. A function that describes some occurrence is a mathematical model. Since sinusoidal functions are periodic, they can be utilized as models for objects that display periodic behavior. In some applications of periodic phenomena, however, the concept of frequency is utilized in place of the period.

Explanation

y (+)= A0 + Bsin (wt)

A0= 5371 +3,313/2 =4,342

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All of the following can be added to a circuit to reduce electromagnetic interference, except:

A)

a capacitor.

B)

a diode.

C)

a coil.

D)

ground wires.

Answers

All can be added to reduce electromagnetic interference except a diode because a diode is a semi-conductor

a bushing is to be manufactured from coarse iron powders. it is desired that it have a final density 90% that of cast iron, and it is known that the shrinkage in sintering will be approximately 5%. the bushing is 50 mm in outer diameter and has a 20 mm inner diameter, what is the required press force? hint: percent shrinkage is along a single dimension

Answers

Surface is not a factor in the pressing force. Thus, regardless of the press's load, the same force is always applied.

Explain about the press force?

A press is nothing more than a flat bed with a mechanically or hydraulically controlled pressing ram or rod. To produce a metal-pressed item, you must insert two halves of a metal press tool into the press. The tool is then bolted to the work surface at the bottom and to the ram or rod at the top

Presses are widely employed to bend or straighten materials as well as to press two items, such as bearings or other metal shaft-fitted components, together or away. Some smaller presses, like C-frame presses, can also be used to keep materials together during assembly or remove sections for maintenance.

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technician a says that rotors should be measured for thickness variation (parallelism). technician b says that rotors should be measured for lateral runout. who is correct?

Answers

Brake rotor micrometer. Parallelism is when the thickness of the rotor varies from point to point.

The parallelism of the brake disc allows the piston to move in and out of the caliper body when pressure is applied. The maximum allowable runout of the rotor friction surface is 0.002 inches (0.050 mm) as specified by most manufacturers.

Steering axle brake pad thickness must be a minimum of 3.2 mm (1⁄8 inch) for air disc brakes and a minimum of 1.6 mm (1⁄16 inch) for hydraulic disc, drum and electric brakes . Runout occurs due to eccentricity (processing error) and axial bending. Both cause uneven distribution of mass around the axis of rotation. Both create destructive forces, cause misalignment, and reduce machine life. Both problems can be serious,

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