Events that the EMR would likely be required to report to a state or federal agency would NOT include:

Answers

Answer 1

The EMR would likely be required to report to a state or federal agency would NOT include reporting the events where patients face negative reactions to treatments.

Electronic Medical Record (EMR) refers to a digital version of a paper-based medical record. EMRs have been designed to streamline the documentation of patient health information such as patient history, test results, diagnoses, medications, and treatments in real-time.

An EMR (Electronic Medical Record) may be required to report to a state or federal agency under certain circumstances. Some of the common reasons are for public health purposes, Medicare and Medicaid fraud, research purposes, or state and federal legal requirements.

The following events that EMRs are not required to report:

Patient decline treatmentPain or distress that is typically related to a patient's ailment or surgeryA mistake in the prescription of medicine can cause adverse effects on the patient's health.Non-violent health events that are related to a patient's therapy or surgery.

However, events, where patients face negative reactions to treatments, are not required to be reported.

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Related Questions

3 4/5÷2/5 as a fraction

Answers

Answer:

9 1/2

Explanation:

3 4/5 is 3.8

2/5 is 0.4

divide 3.8 by 0.4 you get 9.5 which is 9 1/2 in a fraction

write three ways of soil investigation of a site​

Answers

Methods of Soil Exploration
Open excavation.
Borings.
Subsurface soundings.
Geographical methods.

Commutation is the process of converting the ac voltages and currents in the rotor of a dc machine to dc voltages and currents at its terminals. True False

Answers

Answer:

false

Explanation:

the changing of a prisoner sentence or another penalty to another less severe

Technician A says that a graphing multi-meter may be used to verify signals going to and from electrical and electronic components. Technician B says that digital storage oscilloscope may be used to verify signals going to and from electrical and electronic components. Who is correct

Answers

Answer:

Both are correct.

Explanation:

Graphing multi meter is used to verify signals that move from electrical components. Digital oscilloscope is an equipment which stores and analyzes input signals with digital technique.

Two flows of air are both at 200 kPa; one is at 400 K with a flow rate of 1 kg/s, and the other is at 290 K with a flow rate of 2 kg/s. The two flows are mixed in an insulated box to produce a single exit flow at 200 kPa. Find the exit temperature and the rate of entropy generation. You may assume an ideal gas with constant specific heat.

Answers

Given data:Pressure of the two flows, P = 200 kPaFlow rate of 1st flow, m₁ = 1 kg/sFlow rate of 2nd flow, m₂ = 2 kg/sTemperature of 1st flow, T₁ = 400 KTemperature of 2nd flow, T₂ = 290 KLet the exit temperature be T.

Energy balance equation at the insulated box can be given as:

m₁Cp₁T₁ + m₂Cp₂T₂ = (m₁ + m₂)Cp.T.

(Where Cp₁ and Cp₂ are the specific heats of the gases)Also, the mass flow rate should be conserved:m₁ + m₂ = m₃ (where m₃ is the mass flow rate of the exit flow).

Therefore, the specific heat of the exit flow can be expressed as:

Cp.T = (m₁Cp₁T₁ + m₂Cp₂T₂)/(m₁ + m₂)

Substituting the given values,

Cp.T = (1 x 1005 x 400 + 2 x 1005 x 290)/(1 + 2) = 324.33 J/kg

KAgain, applying energy balance equation,Q₃ - W₃ = 0 (where Q₃ is the heat transferred to the system and W₃ is the work done by the system)Since the process is adiabatic, Q₃ = 0Therefore, W₃ = 0Also, from the second law of thermodynamics, the rate of entropy generation can be expressed as:σ = m₃S.

(Where S is the entropy per unit mass of the exit flow)Now, the entropy balance equation can be given as:

(m₁S₁ + m₂S₂) = m₃S

Where S₁ and S₂ are the specific entropy of the gasesTherefore,

S = (m₁S₁ + m₂S₂)/m₃

Substituting the given values,Specific entropy of 1st flow can be given as.

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Which unit is used, when specifying a vehicle's height, length and width?
Meters







Millimeters
Kilometres
Centimeters

Answers

Answer:

Centimeters

Explanation:

For one-family dwellings, the service disconnecting means must have a rating of at least ___ amperes, 3-wire.

Answers

The rating of the service disconnecting means for a single-family home must be at least 100 amperes, 3-wire.Therefore, 100 amperes is the required minimum rating of service size for a one-family home.

What is the service's required minimum ampere rating?

NEC 230.79 (C) states that the rating of the service disconnecting mechanism for a one-family residence must not be less than 100 amperes, 3-wire.Therefore, 100 amperes is the required minimum rating of service size for a one-family home. In one enclosure, six switches or circuit breakers.Since the 1937 edition of the NEC, the number of switches or sets of circuit breakers that can be utilized as the service disconnecting mechanism to separate a building's premises wiring from the utility provider's conductors can range from one to six. The combined ratings of the circuit breakers, if the disconnecting method consists of more than one switch or circuit breaker, must not be less than the calculated load as established by Art. The 98 amp load for the single-family home will be supplied by a 100 amp electrical service.100 x 83 percent equals 83 amps.The bare minimum service conductor is this one. A revision made to the 2020 NEC mandates that an emergency disconnect be used in accordance with section 230.85.This disconnect is meant to allow emergency personnel to turn off the electricity to the entire house before entering to deal with the situation. Any combination of the following is authorized for the two to six service disconnecting means:separate enclosures, each with a method to disconnect the main service.a main service disconnecting mechanism built inside each panel board enclosure. All primary conductors of transformers that are not grounded must be disconnected using a disconnect.Unless the location of the disconnect is clearly written on the transformer and the disconnect is lockable, as is depicted in the Figure, it must be placed within sight of the transformer.

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What equipment is needed for weightlifting?

Answers

Examples include weightlifting gloves, belts, wrist wraps, and other items that are together referred to as weightlifting gear.

Is lifting hooks unethical?

No, using weightlifting hooks is not unethical. Weightlifting hooks can be a useful tool for lifters who need them if they are utilized properly and sparingly. Just be careful not to utilize them for exercises where they are not necessary.

Is deadlifting unethical?

Briefly, no. Given the aforementioned, we may conclude that sumo deadlifts are not simpler. We can also state without a doubt that sumo deadlifts are not cheating by referring to any powerlifting rulebook, which permits both conventional and sumo deadlifts in competition.

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A reluctance pressure transducer is a diaphragm pressure sensor with a metal ___ mounted between two stainless steel blocks.

Answers

Answer:

A reluctance pressure transducer is a diaphragm pressure sensor with a metal pressure switch mounted between two stainless steel blocks.

I hope this helps...

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A reluctance pressure transducer is a diaphragm pressure sensor with a metal diaphragm mounted between two stainless steel blocks.


1. The reluctance pressure transducer has a metal diaphragm that acts as a sensing element.
2. This metal diaphragm is mounted between two stainless steel blocks.
3. When pressure is applied to the diaphragm, it flexes, causing a change in the gap between the diaphragm and the blocks.
4. This change in gap affects the reluctance (magnetic resistance) of the magnetic circuit.
5. A transducer within the device measures the change in reluctance and converts it into an electrical signal proportional to the applied pressure.

In summary, a reluctance pressure transducer is a diaphragm pressure sensor with a metal diaphragm mounted between two stainless steel blocks, and it measures pressure by detecting changes in reluctance.

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Assume that the electrons in a material follow the Fermi-Dirac distribution function and assume that EF​ is 0.3eV below EC​. Determine the temperature at which the probability of an electron occupying an energy state at E=(EC​+0.025)eV is 8×10−6.

Answers

Assuming that the electrons in a material follow the Fermi-Dirac distribution function and  EF​ is 0.3eV below EC​, the temperature at which the probability of an electron occupying an energy state at E=(EC​+0.025)eV is 8×\(10^{-6}\) is 271.74 K.

A mathematical depiction of the probability distribution of the energy of the quantum states that electrons can reside in at a specific temperature is the Fermi-Dirac probability function.

It explains what happens to the electrons within metal solids as their temperature rises. The Fermi Level Formula is - k=1.38×10-23 J/K=8.62×10-5 eV/K. The detailed solution is attached below.

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Assume that the electrons in a material follow the Fermi-Dirac distribution function and assume that
Assume that the electrons in a material follow the Fermi-Dirac distribution function and assume that

An apple, potato, and onion all taste the same if you eat them with your nose plugged

Answers

Answer:

I didn't understand your question or is it a fun fact

Nope because smell helps with our taste. When you’re home sick and mucus-ridden, everything tastes the same usually

Under a subsection for geological hazards the buyer is encouraged to obtain an read the booklet

Answers

Answer:

Buyer is encouraged to obtain and read the booklet entitled "The Homeowners Guide to Earthquake Safety." In most cases a questionnaire within the booklet must be completed by Seller and the entire booklet given to the Buyer if the Property was built prior to 1960.

Electronic components are often mounted with good heat conduction paths to a finned aluminum base plate, which is exposed to a stream of cooling air from a fan. The sum of the mass times specific heat products for a base plate and components is 5000 J/K, and the effective heat transfer coefficient times surface area product is 10 W/K. The initial temperature of the plate and the cooling air temperature are

Answers

Answer:

Hello your question is incomplete  below is the complete question

Electronic components are often mounted with good heat conduction paths to a finned aluminum base plate, which is exposed to a stream of cooling air from a fan. The sum of the mass times specific heat products for a base plate and components is 5000 J/K, and the effective heat transfer coefficient times surface area product is 10 W/K. The initial temperature of the plate and the cooling air temperature are 295 K when 300 W of power are switched on. 1) Find the plate temperature after 10 minutes.

answer ; 311.36 k

Explanation:

Given data :

sum of mass * specific heat products for a base plate and components ( Mcp )

= 5000 J/K

effective heat transfer coefficient * surface area ( hA )  = 10 W/K

Initial temperature of plate and cooling air temperature( Tc ) = 295 k

power ( Q = W ) = 300 W

a) Determine plate temperature after 10 minutes

10 mins = 600 secs ( t )

heat supplied = change in temp + heat loss

          Q * t    = mCp ( ΔT ) + hA ( ΔT ) t

   300*600   =  5000 * ( T -295 )  + 10 ( T -295 ) * 600

therefore ; T - 295 = 16.363

                           T = 311.36 K

A sky lantern which a child tied to a piece of stone on the ground at the side of a tall multi-storey building got loose and then rose vertically upward with a uniform rate of 2.7 m/sec. At a certain height, it touched a small loose stone on the side of the building. The stone strikes the ground after 2.5 sec. Determine the height in meters of the sky lantern when the stone touched the ground. Josh threw the marble vertically upward with a speed of 66 ft/s from a bridge. On the way down, the marble just misses the bridge and falls into the water 5 seconds after having been thrown upward. Find the height of the bridge in feet above the water

Answers

The sky lantern had risen to a height of 6.75 meters when the stone touched the ground.

The bridge is 70 feet above the water.

For the first scenario, we can use the equations of motion to determine the height of the sky lantern when the stone touched the ground.

Let's denote the initial height of the sky lantern as 'h' and the time it takes for the stone to touch the ground as 't'.

We know that the sky lantern rises vertically upward with a uniform rate of 2.7 m/s, so its velocity can be represented as v = 2.7 m/s. The velocity of the stone when it touches the ground is v = 0 m/s because it has come to a stop.

Using the equation of motion for displacement, we have:

s = ut + (1/2)at²

Since the sky lantern is moving upward with a constant velocity, the acceleration (a) is 0 m/s². Therefore, the equation simplifies to:

s = ut

Substituting the known values, we have:

h = (2.7 m/s) * t

We are also given that the stone strikes the ground after 2.5 seconds, so t = 2.5 seconds.

Calculating the height (h):

h = (2.7 m/s) * (2.5 s)

h = 6.75 meters

Therefore, the height of the sky lantern when the stone touched the ground is 6.75 meters.

The sky lantern had risen to a height of 6.75 meters when the stone touched the ground.

We can use the equations of motion to find the height of the bridge above the water when the marble falls into the water.

The marble is thrown vertically upward with an initial velocity (u) of 66 ft/s, and it falls into the water 5 seconds after being thrown upward.

Using the equation of motion for displacement:

s = ut + (1/2)at²

Since the marble is thrown upward, the acceleration (a) due to gravity is -32 ft/s² (negative because it acts in the opposite direction of the initial velocity).

The equation becomes:

s = (66 ft/s)(5 s) + (1/2)(-32 ft/s²)(5 s)²

Simplifying the equation:

s = 330 ft - 400 ft

s = -70 ft

The negative sign indicates that the displacement is downward, as expected when the marble falls.

Therefore, the height of the bridge above the water is 70 feet.

Please note that the equations used assume no air resistance and a constant gravitational acceleration, which may not be entirely accurate in real-world scenarios.

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what substance does light travel through before putting water in the cup

Answers

Bend surface in water! Hopefully this helps, I looked it up!
what substance does light travel through before putting water in the cup

PSC compressor motors have difficulty starting if the supplied voltage is low. To overcome this problem, a technician will often install a _____.

Answers

PSC compressor motors have difficulty starting if the supplied voltage is low. To overcome this problem, a technician will often install a start capacitor.

The start capacitor is a device that stores and releases energy to start the compressor motor. The start capacitor provides the initial boost of power that the motor needs to overcome the resistance of starting up .There are two types of compressor motors: the permanent split capacitor (PSC) motor and the capacitor start motor.

The PSC motor is commonly used in residential air conditioning systems, while the capacitor start motor is used in larger commercial applications.The PSC motor has a single capacitor that provides the start and run power. If the voltage supplied to the motor is low, the motor may not start up.

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what advantages do orifice-type metering devices have over capillary tubes

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Orifice-type metering devices and capillary tubes are two common types of flow meters used in industrial applications.

Orifice-type metering devices are widely used in flow measurement applications, while capillary tubes are not so common. Some of the advantages of orifice-type metering devices over capillary tubes are:

Orifice-type metering devices are simpler and less expensive than capillary tubes. Orifice-type metering devices can handle a higher flow rate than capillary tubes and can be used to measure a wider range of flow rates.Orifice-type metering devices can be used with a variety of fluids, including gases and liquids, while capillary tubes are typically used only with liquids.Orifice-type metering devices have a relatively low pressure drop, which means that they do not significantly affect the flow of fluid through the system.

In conclusion, orifice-type metering devices have several advantages over capillary tubes, including simplicity, versatility, low cost, and low pressure drop. As such, they are widely used in flow measurement applications across a wide range of industries.

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a compacted sand specimen has a water content (w%) of 12% and a degree of saturation (sr) of 75%. the specific gravity of solids (gs) is 2.65. calculate the total unit weight, void ratio (e), and porosity (n).

Answers

Total unit weight, γ = 1.0825 kg/m³Void ratio, e = 3Porosity, n = 0.75

Water content (w%) = 12%Degree of saturation (Sr) = 75%Specific gravity of solids (Gs) = 2.65We have to calculate the total unit weight, void ratio (e), and porosity (n).Calculation:

First, we have to calculate the dry unit weight, γd

Dry unit weight, γd = γw / (1 + w%)

Let's calculate γw

Water content (w%) = 12%

So, moisture content (w) = w% * γd / 100= 12/100 * 1.65= 0.198 kg/kg of dry soil

Total weight of soil (Wt) = Weight of solids (Ws) + Weight of water (Ww)

Weight of solids (Ws) = Volume of solids (Vs) * Gs * γw/Vs = 1

Total volume of soil = Volume of solids (Vs) + Volume of voids (Vv)

Let's calculate Vv Degree of saturation (Sr) = 75%Vv/Vs = Sr / (1 - Sr)= 0.75 / 0.25= 3

Total volume of soil = Volume of solids (Vs) + Volume of voids (Vv)= 1 + 3= 4m^3

Let's calculate the weight of water,

WwWw = Wt - WsWw = 4 * 0.12 = 0.48 kg

Weight of solids, Ws = Gs * γs * Vsγs = (Wt - Ww) / Vst = (1 - 0.12) * 1.65= 1.452 kg/ m^3

Ws = Gs * γs * Vs= 2.65 * 1.452= 3.85 kg

Total unit weight, γ= Wt / Vt= (Ws + Ww) / Vt= (3.85 + 0.48) / 4= 1.0825 kg/m^3

Now, calculate the void ratio, eVv/Vs = 3Vv / Vt = Vv / (Vs + Vv) = 3 / 4e = Vv / Vs = 3 / 1 = 3

Porosity, n= Vv / Vt= 3 / 4= 0.75

Answer: Total unit weight, γ = 1.0825 kg/m³Void ratio, e = 3Porosity, n = 0.75

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Hey guys can anyone list chemical engineering advancement that has been discovered within the past 20 years

Answers

Top 10 Emerging Technologies in Chemistry
Nanopesticides. The world population keeps growing. ...
Enantio selective organocatalysis. ...
Solid-state batteries. ...
Flow Chemistry. ...
Porous material for Water Harvesting. ...
Directed evolution of selective enzymes. ...
From plastics to monomers. ...

Determine the location of the maximum bending moment. In the formula, w is the rate of load increase in lb ft and l is the length (in ft) of the beam. calculus

Answers

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The movement of electrons from one atom to another along a conductor. It is a form of energy that, when in motion, exhibits magnetic, chemical, or thermal effects.

Answers

Electricity is the movement of electrons from one atom to another along a conductor. It is a form of energy that when in motion, exhibits magnetic, chemical, or thermal effects.

Almost all of the appliances we use on a daily basis, including those for the home, the office, and the workplace, require energy. Free electrons moving from one atom to another generate electrical phenomena. In contrast to static electricity, current electricity has different properties.

Conductors like copper or aluminum make up wires. Free electrons, which can freely flow from one atom to the next, make up the nuclei of metal atoms. A free electron is drawn to a proton to become neutral if an electron is added to the wire. A lack of electrons can result from pushing electrons out of their orbits. Electric current is the name given to the constantly moving electrons in a wire.

Electric current is the directionally moving negative-to-positive electrons from one atom to the next in solid conductors. Electric current refers to electrons and protons flowing in the opposite direction and relates to liquid and gas conductors.

Despite the fact that current and electron move in opposite directions, the current is an electron flow. Current flows from positive to negative while electrons travel from negative to positive.

The quantity of electrons that flow through a conductor's cross-section in a second defines current. The ampere, also known as "amps," is the unit of measurement for current. The symbol for an amp is the letter "A".

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A rigid pavement on a new interstate with 3 lanes in each direction has been conservatively designed with a 12-inch slab, an Ec of 5.5 million psi, a concrete modulus of rupture of 700 psi, a load transfer coefficient of 3.0, an initial PSI of 4.5, and a TSI of 2.5. The overall standard deviation is 0.35, the modulus of subgrade reaction is 290 lb/in3, and the drainage coefficient is 0.9. The pavement was designed for 600 30-kip tandem axles per day and 1400 20-kip single axle loads per day total for all 3 lanes. If the desired reliability is 90%, how long will the pavement last in years

Answers

The pavement will last between 41 and 50 years with a reliability of 90%.

A road surface, also known as pavement, is a durable surface material that is laid down on an area intended to support vehicular or pedestrian traffic, such as a road or walkway.

First, calculate the number of equivalent single axle loads (ESALS):

ESALS = 600*30 + 1400*20 = 55600.

Next, calculate the design life (L) using the formula: L =

(ESALS/18000)^(1/TSI) * (Ec/PSI)^(-1/2*SD).

Plugging in the values,

L = (55600/18000)^(1/2.5) * (5.5 x 10^6/4.5)^(-1/0.7) = 41.8.

Lastly, calculate the reliability (R) using the formula:

R = (1-LT^(-1/2))*100.

Calculating for a pavement life of 41 years and 50 years gives a reliability of 90% for both values.
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Using the Breguet range and endurance equation, estimate the amount of kerosene fuel needed for an aircraft weighing 10 metric tons (this is the dry weight that includes passengers and cargo) to fly from Boston to Los Angeles, assuming a distance of 5,000 [km], flying at 300 [m/s].

Assume a lift-to-drag ratio of 15 - this is the ratio of lift force over drag force during the cruise, the overall efficiency of 0.3, and about half of the standard air density at an altitude of approximately 6,000 [m]. You can neglect the climb and descent phases of the flight. The energy density of kerosene is 775.0-840.0 g/L.

Answers

The amount of kerosene fuel needed for an aircraft weighing 10 metric tons is 8500kg

How to calculate the value

R = (300 m/s / 15) * (25 g/Ns / 9.81 m/s^2) * ln((10,000 kg + 5,000 kg * R) / 10,000 kg)

By analyzing the equation numerically, the range of the aircraft appears to be roughly 3,400 km. Therefore the volume of fuel required for the flight is:

m_fuel = 5,000 kg * 3,400 km = 17,000 kg

This calculation signals the required amount of fuel for a round-trip journey with no additional reserve account. To gauge the exact quantity of fuel necessary for the one-way voyage from Boston to Los Angeles, we can merely divide this figure by half :

= 17000 / 2

= 8,500 kg

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The type of current that flows from the electrode across the arc to the work is called direct current electrode?

Answers

Answer:

Direct Control Electrode Negative) (DCEN)

Explanation:

The type of current that flows from the electrode across the arc to the work is called direct current electrode is called DCEN.

A diametral pitch P set of gears consists of an N
1

tooth pinion and N
2

tooth gear. Find the pitch diameters, module, circular pith, and center distance. Given N
1

=19,N
2

=124,P=406.4 mm

Answers

A diametral pitch P set of gears consists of an N =124, P=406.4 mm.

A diametral pitch P set of gears consists of an N =124, P=406.4 mm. Here, P is the circular pitch diameter of the gear in mm. It is given by the formula: P = πd/P = (πN)/d where, d is the pitch diameter of the gear in mm. Hence, the pitch diameter of the gear is: d = (πN)/P= (π × 124)/406.4≈ 121.89mm Hence, the pitch diameter of the gear is 121.89mm. The formula for diametral pitch is: P = N/D, where N is the number of teeth in the gear and D is the pitch diameter of the gear.

By dividing the number of teeth (z) by the diameter of the pitch circle (d, in inches), the diametral pitch (DP) can be calculated. To put it another way, the number of teeth per inch can be used to calculate the diametral pitch.

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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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A major tennis manufacturer is undertaking a test program for shoes, tennis balls, and tennis strings. Develop a test plan for the situations described below. In each case provide details for how the test should be conducted, and describe expected difficulties in interpreting the results. In each case the tests are to be conducted during college tennis matches. Four teams of six players each are to test the products under match (as opposed to practice) conditions. A tennis team consists of six players, and a match consists of six singles matches and three doubles matches.

a. Tennis shoes: Two different sole designs and materials are to be wear tested. The life of the soles are known to be strongly affected by court surface and playing style.
b. Tennis strings: A new tennis string material is to be tested for durability. String failure occurs due to breakage or due to loss of tension. String life is a function of the racquet, the player's style, and string tension.
c. Tennis balls: Two tennis balls are to be play tested for durability. The condition of a tennis ball can be described by the coefficient of restitution, and the total weight (since the cover material actually is lost during play). A player's style and the court surface are the primary determining factors on tennis ball wear.

Answers

Answer:

4 balls

Explanation:

First, we find out how many tennis balls are there altogether.

There are 8 cans and each can has 3 tennis balls.

Total numberThese balls are shared with 6 players. So we divide the total quantity by 6 to find out how many tennis balls each player gets.

Each player = 24 ÷ 6 = 4

of balls = 8 x 3 = 24

What unit of electricity is used as a signal for a computer?

Answers

Answer:

A power supply unit (PSU) converts mains AC to low-voltage regulated DC power for the internal components of a computer. Modern personal computers universally use switched-mode power supplies

Answer:

Volt is the SI (Standard International) unit of electrical potential of the..

Explanation:

name two problems the refrigeration system may have if the condensing unit is exposed to a low ambient condition when not equipped with a low ambient head pressure controlled valve.

Answers

Insufficient refrigerant flow rates through metering devices and starved evaporator coils in condensers can result from low temperatures.

What is the refrigeration principle?

A substance that moves heat from one place to another during a heat cycle is called a refrigerant. When a refrigerant is applied to the food that is kept in the refrigerator, it absorbs heat and transfers the heat to the surrounding area at a lower temperature. The refrigeration cycle is made up of four main parts: evaporator, compressor, condenser, and thermal expansion valve (TXV) metering device The refrigeration cycle's primary function is to transfer heat from indoor air to outdoor air.

The first law of thermodynamics is the underlying physics principle of mechanical refrigeration. According to this law, energy—or heat in this instance—cannot be produced or destroyed; rather, it can only be transferred from one location to another, and work is required to initiate the transfer of energy.

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Describe another engineering design (besides wheelchairs) that must incorporate mass, force, and

velocity.

Answers

the creation of several wheelchair designs for various sports Discussion should be expanded to cover issues with engineering designs related to other things.

How was the design of various wheelchairs influenced by science?

taking into account their physique, weight, and condition. Weights should be placed so as to encourage balance and stability without compromising agility. Angle of the wheels to increase speed and maneuverability. In order to meet the diverse needs of users, wheelchair designs vary significantly, with elements like overall length, weight, frame type and width, seat configuration, wheel and castor type, arm and footrests, axle position, and propulsion mechanism all having an impact on function. If you or the person you care for needs more assistance getting around, rollators and walking frames are excellent options to take into consideration. A rollator can help to provide stable support when you're outside, whereas walking frames are typically more appropriate for use indoors.

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The creation of several wheelchair designs for various sports Discussion should be expanded to cover issues with engineering designs related to other things.

How was the design of various wheelchairs influenced by science?Taking into account their physique, weight, and condition. Weights should be placed so as to encourage balance and stability without compromising agility. Angle of the wheels to increase speed and maneuverability. In order to meet the diverse needs of users, wheelchair designs vary significantly, with elements like overall length, weight, frame type and width, seat configuration, wheel and castor type, arm and footrests, axle position, and propulsion mechanism all having an impact on function. If you or the person you care for needs more assistance getting around, rollators and walking frames are excellent options to take into consideration. A rollator can help to provide stable support when you're outside, whereas walking frames are typically more appropriate for use indoors.

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