_______________ occurs when the effect of one drug is enhanced by the presence of another drug.

Answers

Answer 1
Answer:

Synergism occurs when the effect of one drug is enhanced by the presence of another drug.

Explanation:

Synergism occurs when the effect of one drug is enhanced by the presence of another drug. It occurs due to the interaction between two or more substances which produces a combined effect.


Related Questions

if the oil leaves the exchanger at 100 what is its flow rate? what is the length of the exchanger shell required to accomplish the desired heating?

Answers

         A heat exchanger is a device that transfers heat from one working fluid to another. Both cooling and heating operations employ heat exchangers. The liquids may be in direct contact or separated from one another by a solid wall to prevent mixing.

How is heat transfer calculated in a heat exchanger?

CALCULATIONS FOR HEAT EXCHANGERS:

The fundamental equation for a heat exchanger is: Q is equal to the log mean temperature difference (U x A x Tm). ΔTm is: Tm is equal to (T1 - t2) - (T2 - t1) °F.

T1 is the fluid temperature on the inlet tube side; t2 is the fluid temperature on the outlet shell; and ln (T1 - t2) (T2 – t1)

       How are shell and tube heat exchangers designed? Steps for the design of a heat exchanger:

Define the fundamental conditions for the process.Choose an appropriate type of heat exchanger.To develop a heat exchanger model, adjust a few design parameters.The heat exchanger's design is rated.Make a specification sheet that includes the heat exchanger's finished design.

    The Second rule of thermodynamics states that 100% thermal efficiency is an impossibility for heat engines (). This is not conceivable since a heat engine will always produce some waste heat,.

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What state of liquid does point a represent in the Rankine cycle?
Saturated liquid, subcooled liquid, superheated liquid, or Sat. liquid vapor mix?

Answers

The state of liquid that point 2a" represents in the Rankine cycle is "Subcooled Liquid" (Option B).

What is the Rankine cycle?

The Rankine cycle, also known as the Rankine Vapor Cycle, is a process that is frequently utilized in power facilities such as coal-fired power plants and nuclear reactors. Fuel is utilized in this mechanism to generate heat within a boiler, transforming water into steam, which then expands via a turbine, providing useful work.

The Rankine cycle (RC) is a thermodynamic cycle used in thermal power plants to transform thermal energy into mechanical labor. Many researchers have recently focused on exploiting the Rankine cycle to recuperate low-grade waste heat.

Subcooling refers to a liquid that exists at a temperature lower than its typical boiling point. Water, for example, boils at 373 K and is referred to as "subcooled" at ambient temperature. A subcooled liquid is a suitable condition in which refrigerants, for example, can complete the remaining stages of a cooling system.

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A mass of 5 kg of saturated liquid-vapor mixture of water is contained in a piston-cylinder device at 125 kPa. Initially, 2 kg of the water is in the liquid phase and the rest is in the vapor phase. Heat is now transferred to the water, and the piston, which is resting on a set of stops, starts moving when the pressure inside reaches 300 kPa. Heat transfer continues until the total volume increases by 20 percent.


Determine:

(a) the initial and final temperatures,

(b) the mass of liquid water when the piston first start moving

Answers

a)  The initial and final temprature are 99.61°C and T3 = 259.07°C

b)   The mass of liquid water when the piston first start moving is 0g

Using the data provided:

Initial Pressure = P1 = 125kPa

Mass of Saturated Vapor Liquid = m = 5kg

Initial Mass of Liquid water = mf = 2kg

Initial Mass of Vapor = mg = 3kg

The temperature for a mixture of liquid steam saturated with water according to the thermodynamic table is:

T₁ = 99.61°C

The specific volume is:

vf = 0.001043m³/kg

And the saturated volume is:

vg = 1.6941m³/kg

Therefore, the volume in state 1 will be equal to:

V1 = mfvf + mgvg

V1 = (2kg)(0.001043m³/kg) + (3kg)(1.6941m³/kg)

V1 = 5.084m³

In state 3 then the volume will be equal to:

V3 = 1.2V1

V3 = 1.2(5.084m³)

V3 = 6.1008m³

Then the specific volume will be equal to:

v3 = V₃/m

v3 = 6.1008m³/5kg

v3 = 1.2202m³/kg

For a pressure of 300 kPa and the previous specific volume found through the thermodynamic table, the value of the temperature is:

T3 = 259.07°C

Question b) When the piston first stats moving at P₂ = 300kPa and V₂ = V₁ = 5.084m³

v₂ =V₂/m

v₂ = 5.084m³/5kg

v2 = 1.0168m³/kg

While at 300 kPa the value of the vapor saturated vg = 0.88578m³/kg This implies that the condition is met:

v2 > vg

Therefore, no liquid is there in-cylinder when piston stats moving, mf = 0kg

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in a horizontal cylinder with diameter 4 cm. if the shear stress on the wall of the cylinder tau subscript 0 equals tau subscript w equals 50 space p a, what is the linear pressure drop g

Answers

      A horizontal cylindrical segment is a section of a horizontal cylindrical tank that is partially filled with fluid and is defined by a single plane that is parallel to the cylinder's axis of symmetry.

What is the location of the horizontal cylinder?

      By first calculating the area, A, of a circular section and multiplying it by the length, l, you may determine the filled volume of a horizontal cylinder tank. The area of the circle, which is drawn in grey, is given by

A = (1/2)r2( - sin),

where = 2*arccos(m/r) and is a radian.

V(segment) is therefore equal to (1/2)r2( - sin)l.

     Oblique Cylinder: An oblique cylinder is one in which one of the bases is sideways and the axis is not at a right angle to the base.

      V=Bh or V=r2h is the formula for a cylinder's volume.

      The cylinder measures 8 cm in diameter and 15 cm in height. The equation V=r2h should be changed to 8 for r and 15 for h.

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problem 3 (25 points). in the design of a civil jet transport, such as the boeing 777links to an external site., the choice of engine size is usually based on having a 300 feet per minute rate-of-climb capability at the top of climb to cruising altitude. this is a safety margin. assume the following cruise conditions at top of climb for the boeing 777: l/d

Answers

The calculated thrust that we are required to find in this question are solved as:

150.45The static thrust at the sea level = 2446521.9 / 18 = 135.917 N

How to solve for the thrust

Rate = excess power / weight

= dn / dt

= V∞sin θ

V∞sin θ = Tn - Tr / w * V∞

sin θ  = Tn - D / w

Tr = D

sin θ = T / w - D / w

T / w = sin θ + D / w

We would have the formula here as

ma x √vRTw

= 0.85 x √1.4 x 287 x 226.73

= 256.5 m/s

Next we have to solve for the angle of climb

∅ = sin⁻¹ (1.524 / 256.5)

= 5.94 x 10⁻³

T = w (θ + 1/10)

= 2446521.9 * 5.94 x 10⁻³ * 1/18

= 150.45

The static thrust at the sea level = 2446521.9 / 18

= 135.917 N

Therefore the required thrust at the cruising altitude is equal to  150.45

while the corresponding thrust at the sea level is equal to 135.917 N

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-i+ (9-5i)-3(2-6i) in standard form with explanation

Answers

The given expression can be represented as 3+12i.

Complex Number

A complex number is represented by the following form: a+bi, where a and b are real numbers.  The variables: a is the real part and bi imaginary part. See an example: 5 + 2i , then:

5 real part2i imaginary part

Regarding operations math, the same properties used for real numbers can be applied to complex numbers. And for solving the operations math with these numbers, it is important to know that i²= -1. Thus, 3i² = 3*(-1)= -3.

When you subtract or sum complex numbers, you can only subtract or sum: the real part with the real part of each complex number and the imaginary part with the imaginary part of each complex number. Here, you can see examples:

(5 + 2i) + (5 + 2i) = 10+4i

(4 + 10i) - (2 + 5i) = 2+5i

Therefore, the result for the -i+ (9-5i)-3(2-6i)  will be:

-i + 9 -5i -6+18i

-6i +3 +18i

3+12i

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stranded wire use is being discussed. technician a says there is less exposed surface area for electron flow in stranded wire. technician b says there is more resistance in the stranded wire than in the same gauge solid wire. who is correct?

Answers

The answer is neither A nor B. The strands cannot be twisted without forming a helix. Or, to put it another way, the helix is an inevitable result of the twisting movement.

A solid wire with the same cross-sectional area and conventional length as the wire in the illustration will have a little less resistance. This is due to the fact that the wire in the illustration will have a Path Length that is somewhat more than the length of the solid wire, and Path Length is what counts in terms of resistance. Now, you probably won't notice the helix when holding a real stranded and twisted wire. The helix in the aforementioned image is exaggerated, and the helix in a real wire is typically so "slight" that it's difficult to see.

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If | A + B|2 = A2 + B2, then

Answers

If |a|b then 2−2=(−)(+)|0⟺+|0

A contractor estimates maintenance costs for a new piece of equipment to be $275 for the first month with a monthly increase of 0.5%. At i = 0.75% per month, what is the present cost of maintenance for the new equipment across 4 years?

Answers

The present cost of maintenance for the new equipment across 4 years is $12,266.01.

What is the formula for calculating a growing annuity?

The formula for calculating a growing annuity is as follows:

[tex]\frac{M}{r-g}[/tex] [tex](1- (\frac{1+g}{1+r} )^N).[/tex]

where M = the first payment, g = the growth rate, r = the discount rate, and N = the number of payments.

According to the question,

The first payment is = 275

The growth rate is = 0.5%.

The discount rate is = 0.75%.

The number of payments in 4 years = 4*12 = 48.

Now, put all values in the above equation:

[tex]\frac{275}{0.75 - 0.5}[/tex]  [tex](1- (\frac{1+0.5}{1+0.75} )^4^8)[/tex] = 12.366.01.

Therefore, the present cost of maintenance for the new equipment across 4 years is $12,266.01.

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for the following stress-strain curve, determine the following: a. the modulus of elasticity b. the stress where the linear stress-strain relationship ends, called the proportional limit c. the yield strength, taken at .002 strain offset the proportional limit d. the ultimate tensile strength e. the modulus of resistance

Answers

Answer:https://www.usna.edu/NAOE/_files/documents/Courses/EN380/Course_Notes/Ch10_Deformation.pdf

Explanation: This may help you

When the soluble BOD in the influent to the treatment plant rises from 129 mg/L to 201 mg/L, the operator called to ask your advice on a new MLVSS for the plant. It has been operating with an F/M of 0.45 mg/mg-d and the operator would like to continue using the same F/F. The plant data are as follows: flow rate = 7,673 m^3/d; aeration tank volume = 1,157 m^3; mixed liquor volatile suspended solids = 2,601 mg/L

Answers

The new mixed liquor volatile suspended solids from the given plant data is; 4052.72 mg/L

What is the discharge flow rate?

MLVSS is expressed as mixed liquor volatile suspended solids and it is the total amount (mg/L) of organic or volatile suspended solids in the mixed liquor residing in an aeration tank. This volatile portion in the aeration tank serves the purpose of measurement or indication of the microorganisms that are present.

We are given;

Initial BOD; y = 129 mg/L

New BOD; y' = 201 mg/L

F/M = 0.45 mg/mg-day

Volume of tank; V = 1157 m³ = 1157 × 10³ Liters

MLVSS = 2601 mg/L

1) The discharge from the initial BOD is gotten from the formula;

Q = ((F/M) * V * MLVSS)/y

Plugging in the relevant values gives;

Q = (0.45 * 1157 × 10³ × 2601)/129

Q = 10497756.98 Liters/day

2) Now, let us find the new MLVSS which would be gotten from the formula;

MLVSS' = (Q * y')/((F/M) * V)

MLVSS' = (10497756.98 * 201)/(0.45 * 1157 × 10³)

MLVSS' = 4052.72 mg/L

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is used to indicate the centers of objects such as columns and fixtures.

Answers

Answer: Centerline

Explanation: The centerline can tell you where the center of a circle or an object is.

for a steel alloy it has been determined that a carburizing heat treatment of 1-h duration will raise the carbon concentration to 0.38 wt% at a point 3.0 mm from the surface. estimate the time (in h) necessary to achieve the same concentration at a 6.1 mm position for an identical steel and at the same carburizing temperature. enter your answer in accordance to the question statement h

Answers

The time (in h) necessary to achieve the same concentration at a 6.1 mm position for an identical steel is 4 h.

As the carburizing heat treatment of 1-hour duration increases the carbon concentration to 0.38 wt% at a point 3.0 mm from the surface, the time necessary to achieve that same concentration for identical steel can be calculated as follows;

It is known that;

[tex]\frac{x_{1}^{2} }{Dt} = constant[/tex]

where x represents distance and t is time. As the carburizing temperature is constant, therefore D will also be constant;

[tex]\frac{x_{1}^{2} }{t} = constant[/tex]

Therefore;

[tex]\frac{x_{1}^{2} }{t_{1} } = \frac{x_{2}^{2} }{t_{2} }[/tex]

Now by substituting the given values, we can find the time required to achieve the same concentration as follows;

(3)² / 1 = (6.1)² / [tex]t_{2}[/tex]

9 = 37.21 / [tex]t_{2}[/tex]

9([tex]t_{2}[/tex]) = 37.21

[tex]t_{2}[/tex] = 37.21 / 9  

[tex]t_{2}[/tex] = 4.13 hours ≈ 4 hours.

Therefore, the time necessary to achieve the same concentration at a 6.1 mm position for an identical steel is 4 hours.

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for a given amount of power (s) to be transmitted, an increase in the transmission line voltage would result in:

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Efficiency improvement is the main driver behind high voltage power transmission. There are inherent energy losses when electricity is transferred across vast distances.

Electricity is transferred from one site to another with the least amount of power loss possible thanks to high voltage transmission. Transformers, which raise voltage levels to enable long-distance transmission, are a crucial component of this process. The electrical grid is made up of power plants, distribution networks, and sub-stations as well as the electrical transmission system. The power loss will decrease as the current decreases. Therefore, to lower current during electricity transmission, the voltage is increased. When sending the same amount of power over a longer distance at a lower voltage, there will be a greater power loss.

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benefits of cellular technology based system to society

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Network home security systems, especially ones with cellular back-up, are more reliable than their old landline counterparts. While phone lines can be cut by a resourceful burglar or damaged during a natural disaster, network and cellular systems are less prone to these types of disruptions.

4. A 1.5 kg turtle crawls in a straight line at a speed of 0.51 m/sec. What is the turtle's
momentum???

Answers

Answer:  0.765 m kg / s

Explanation:

Momentum = (mass) x (speed)

a technician back probes the ground side of a port fuel injector with a dmm set to dcv. the engine is idling. what reading should the technician see?

Answers

Answer: A technician attaches one lead of a digital voltmeter to the ground terminal of the TP sensor and the other meter lead to the negative terminal of the battery.

Explanation: both technicians are correct

There is interdependence between an organization and its information systems". Discuss this statement.

Answers

There is interdependence between an organization and its information systems have a mutual dependency on each other.

What is the organization?

An institution made up of individuals or a group of individuals who gather together to accomplish a single, common goal is referred to as an organization.

Information systems and organizations are mutually influenced by one another. Inability to efficiently advantage of innovative technologies, an organization should be receptive to the effects of data systems, which have an impact on how information systems are designed.

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technician a says that variable valve timing improves performance. technician b says that cylinder deactivation helps improve performance. which technician is correct?

Answers

      In essence, it alters the valve timing by changing the camshafts' phase angle. For instance, to permit early intake at high speed, the inlet camshaft will be cranked 30° in advance. According to requirement, the engine management system regulates this movement, which is triggered by hydraulic valve gears.

Who introduced variable valve timing?

Aston Martin

    Variable valve timing (VVT), a technology used in conventional vehicle internal combustion engines, was first developed by Fiat in the late 1960s. The 1980 Spider 2000 from Alfa Romeo was the first manufacturer to use VVT in a production vehicle.

Unclean Oil Can Be Very Dangerous

      These oil-fed solenoids and actuators, which are also incompatible with turbocharged engines, are among the variable timing components. Internal coking, clogging, and sludge difficulties in those components can be brought on by dirty oil.

VVT regulates airflow and exhaust

      Engine valves regulate the ingestion of fuel and fresh air as well as the outflow of combustion gases. In order to match the engine's operating circumstances, VVT and lift systems modify the timing of the valves. As a result, efficiency is increased across a broad range of engine running speeds.

      Where can I find variable valve timing soldenoids? At the front of the engine, often close to the front of the valve cover, is where you'll find the variable valve timing solenoid.

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a single lug is designed having a radius of 0.375 inches, a width of 0.900 inches, a lug bore diameter of 0.375 inches, and a lug thickness of 0.250 inches. the lug is fabricated from a material with an ultimate strength of 35000 psi in the r-d direction, and ultimate strength of 29000 psi in the w-d direction (use curve

Answers

The connector-like components known as lugs are frequently utilized as structural supports for pin connections. Since weight and dimension constraints were largely unfettered in the past, the lug strength was overdesigned.

However, the tightening of these criteria has forced the use of conservative design techniques. This section outlines the static strength analysis processes for lugs and bushings that are evenly loaded, double shear joints, single shear joints, and joints that are subject to axial, transverse, or oblique loading. A portion that applies to lugs constructed from materials with ultimate elongations of at least 5% in any direction in the plane of the lug is also included in the list. Also provided are modifications for lugs with less than 5% elongation. A brief section on the strains caused by press fit bushings is also included.

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A rain gutter is to be constructed from a metal sheet of width 3m by bending up one-third of the sheet on each side through an angle θ. How should θ be chosen so that the gutter will carry the maximum amount of water?.

Answers

The area of the gutter is therefore equal to the area of the rectangle plus the area of the triangles.

A = rectangle + 2 * triangle

= 10h + 2 * (1/2 hw)

Using trig work out h and w.

h = 10 sin ?

w = 10 cos ?

A = 10h + hw

= 100sin? + 100sin?cos?

Differentiate the expression (either use the product rule for sin? cos?, or write 100sin?cos? as 50sin2? using the double angle formula)

A = 100sin? + 50sin2?

dA/dt = 100cos? + 100cos2?

For A to be a max or min the derivative must equal zero

100cos? + 100cos2? = 0

cos? + cos2? = 0

Use the double angle formula to write cos2? as 2cos^2 ? - 1

cos? + 2cos^2 ? - 1 = 0

2cos^2 ? + cos? - 1 = 0

This quadratic factorizes:

(2cos? - 1)(cos? + 1) = 0

This means that

cos ? = 1/2 or cos ? = 1

giving:

? = pi/3 or ? = pi

Which means that to achieve the maximum area ? should be pi/3 = 60 degrees

You can check that this is the max by substituting in these values of theta and the two end points (theta = 0, theta = pi), and seeing that pi/3 gives the maximum.

The maximum area is therefore

A = 100sin? + 100sin?cos?

= 100sin(pi/3) + 100sin(pi/3)cos(pi/3)

= 100 sqrt(3) / 2 + 100 sqrt(3)/2 * 1/2

= 100 * 3/2 * sqrt(3) / 2

= 3 * 25 * sqrt(3)

= 75 sqrt(3)

= 129.9...

= 130 cm^3

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g what gauge pressure in pa is required at the water source that is required to supply this flow at the sprinkler?

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A 1 meter tall vertical column of water exerts 9.8 kpa of static pressure. At the hose's nozzle outlet, you would need to apply 127kpa, or 13 times 9.8kpa, in order to move water 13 meters up a vertical axis.

A 1 meter tall vertical column of water exerts a static pressure of 9.8 kpa. You would need to put 127kpa - or 13 times 9.8kpa - at the hose's nozzle exit to move water 13 meters up a vertical axis.

The final sentence is crucial since it clarifies that this pressure is not what the pump or the mains require.

The length of the hose, friction inside the hose, any valves, or restriction nozzles all greatly limit the pressure between the supply/pump and the nozzle, which in turn affects the pressure required at the mains or the pump.

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a differentiator has a break frequency of 100 khz and a unity gain frequency of 10 khz. over what frequency range would the circuit provide the derivative of a function and increase the signal?

Answers

     An op amp-based circuit known as a differentiator produces an output signal that is proportional to the differentiation of the input signal. In essence, an op amp differentiator is an inverting amplifier with an appropriate capacitor at its input end.

A differentiator circuit: what is it?

        Depending on the circuit time constant and the amplifier's bandwidth, the differentiator circuit produces the derivative of the input signal over a range of frequencies. Applying the input signal to the inverting input causes the output to be polarity-inverted with respect to the input signal.

       Why is a differentiator opamp used? The major application of this op-amp is to boost weak signal levels. Depending on the components used in the design, an op-amp differentiator can be either active or passive. We will utilize this differentiator amplifier in frequency modulators and wave shaping circuits because it essentially functions as a high pass filter.

      Why do op-amps utilize capacitors? A feedback capacitor is used in a typical op-amp circuit to restrict bandwidth. A feedback capacitor is a typical approach to minimize noise because restricting op-amp bandwidth will do so. Consider that a capacitor functions as a short to "high frequency" AC impulses in order to comprehend how the feedback capacitor operates.

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negative impact of cellular base stations on public health

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Cellular base stations have a negative effect on the physical environment because they can cause environmental pollution as well as radiation, which can discharge dangerous substances into the air and cause health problems including cancer and breathing issues.

What does the base station of the cellular network do?

A base station is a telecommunications term for a fixed transceiver that acts as the central node for one or more wireless mobile client devices. The main point of connectivity for wireless devices is a base station.

Keep in mind that a base station is a device that transmits a wireless signal to a more compact handheld device using radio frequencies such as via a telephone line or the use of the Internet.

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We can classify information systems in many different ways”. Describe two of the ways in which we can do the classification.?

Answers

We can classify information systems in many different ways like Operations support systems and Management Support Systems.

What are information systems?

A system is an organized system of parts used to gather, store, and store information as well as to provide information, technology, and online mediums.

Operations support systems - The ultimate user enters data into an organization, which is transformed into digital products. A system like this is known as an operations support system.

Management Support Systems - An structured system of components, known as a system, is employed to collect, store, and provide information, software, and digital websites.

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what single addition to the automobile gave the internal combustion engine the edge and resulted in most automobiles being produced with these engines?

Answers

The gas vacuum engine, the first internal combustion engine used industrially, was patented by Samuel Brown in 1823. In a vehicle and a boat, the invention was shown. It was then utilized commercially to pump water to the Croydon Canal's upper level in 1830.

What three kinds of internal combustion engines are there?

Internal combustion engines come in three main categories and are widely used today:

1. the spark ignition engine, which is generally used in automobiles;

2. the diesel engine, which is utilized in big vehicles and industrial systems and

3. is preferable to the more compact and lighter due to gains in cycle efficiency.

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to determine the real power capability of an electrical service you must take into account, phase, voltage and wattage?

Answers

It is right that to determine the real power capability of an electrical service you must take into account, phase, voltage and wattage.

Generators operators often control the voltage on the North American bulk system, and they are frequently given voltage schedules by transmission system operators. In the past, variable generation plants were seen as being extremely small in comparison to traditional producing units.

They were typically either induction generators (wind) or line-commutated inverters (PV), both of which lack the ability to naturally regulate voltage. Synchronous generators provided practically all of the bulk system voltage control.

However, the need for renewable production to contribute increasingly significantly to power system voltage and reactive management has arisen as a result of the increased degree of penetration of non-traditional renewable energy, particularly wind and solar.

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technician a says that vehicles with independent rear suspensions provide better handling than those with solid rear axles. technician b says that vehicles with independent rear suspensions generally have less unsprung weight. which technician is correct?

Answers

According to Tech B, non-drive axles are the only ones that use a semi-independent rear suspension. Technician B is accurate.

The geometrical positioning of steering linkages that enables the interior wheels of a turn to move in a different circle radius than the outside wheels. Cost and load-bearing are the two main downsides of a coil spring suspension. If the car already has coil springs, cost is less of a concern; however, retrofits can be very costly and time intensive. Due to lower unsprung weight and the capacity of each tire to address the road independently of the other wheel on the vehicle, independent suspension often provides better ride quality and handling qualities.

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IMPACT OF TRANSPORTATION INNOVATION ON SHAPING PATTERNS OF SETTLEMENT TO ECONOMIC DEVELOPMENT

Answers

The impact of transportation innovation on shaping patterns of settlement to economic development is that it is one that encourages relocation as well as leads to both internal and external trade, efficient use of natural resources and others.

How does improving transportation leads to economic development?

Market competition is increased by a transportation network. Resource allocation, or the utilization of particular products and services, is a topic economists frequently research. The allocation process is enhanced by a transportation system because it gives suppliers and consumers more opportunities.

Note that Access to additional markets is facilitated by better transportation infrastructure, and since efficient transportation is less expensive, it is also used more frequently.

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a 400 l tank initially contains water at 200 kpa and a quality of 1%. heat is transferred to the tank by a burner, thereby raising the temperature and pressure of the water. at a pressure of 3 mpa, a valve opens and saturated vapor at 2 mpa flows out. the burner remains on, maintaining a pressure of 3 mpa inside the tank, until the quality of the tank is 90%, after which it shuts off

Answers

To prevent a waterlogged tank or surging at the faucets, you must keep air in the bladder of bladder-type pressure tanks. First, look at the pressure gauge to determine the pressure at which your well pump activates and deactivates.

The difference in pressure between turning on and turning off is typically 20 psi. our pipes, fittings, and switches may become damaged by pressures more than 60 psi. Plumbing failure and expensive leaks could result from this damage. It's probable that the pump won't be able to achieve the cut-off pressure if the pressure is set at 80 psi. The bladder could be torn or holed if tank pressure lowers. If a tank is totally filled with water or has too much water for it to function properly, it is said to be waterlogged.

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