Where can I find a list of required equipment installed to conduct a particular flight (night, day, instrumentation)?

Answers

Answer 1

To find a list of required equipment installed to conduct a particular flight, you can refer to the aircraft's operating manual or the Federal Aviation Administration's (FAA) regulations.

These documents will detail the necessary equipment for different types of flights such as night, day, and instrumentation. It's important to ensure that all required equipment is loaded and functioning properly before takeoff to ensure a safe and successful flight. To find a list of required equipment for conducting a particular flight (night, day, or instrumentation), you can refer to the Federal Aviation Regulations (FAR) under Part 91.205, which outlines the minimum required equipment for various flight conditions. Here's a step-by-step guide on how to find this information:
1. Visit the Federal Aviation Administration (FAA) website: https://www.faa.gov/
2. Navigate to the "Regulations & Policies" tab at the top of the page.
3. Click on "Federal Aviation Regulations" in the dropdown menu.
4. Scroll down to "Title 14: Aeronautics and Space," and click on it.
5. Locate "Part 91—General Operating and Flight Rules" and click on it.
6. Scroll down to "§91.205 - Powered civil aircraft with standard category U.S. airworthiness certificates: Instrument and equipment requirements" and click on it. Now, you can review the specific equipment requirements for day VFR (Visual Flight Rules), night VFR, and IFR (Instrument Flight Rules) flights. These regulations will provide you with the necessary information to ensure your aircraft is properly equipped for your intended flight conditions.

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Answer 2

You can find a list of required equipment for conducting flights (night, day, or under instrument conditions) in the aircraft's Pilot Operating Handbook (POH) or the Airplane Flight Manual (AFM).

These documents are provided by the aircraft manufacturer and contain crucial information, including minimum equipment requirements and limitations specific to the aircraft model. Additionally, you can refer to aviation regulations such as the Federal Aviation Administration (FAA) in the United States, which outlines equipment requirements under 14 CFR Part 91.205. These regulations detail the necessary instruments and equipment for various flight conditions. Remember to always follow the guidelines and regulations for safe and compliant flying.

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Related Questions

Why is using the proper joining technique important? What could go wrong if the wrong joining technique is used?

Answers

Answer:

Explanation:

Using the proper technique is incredibly important because it prevents the materials being joined from breaking and/or causing an accident. If the wrong joining technique is used the materials may not hold in place and come apart easily instead. Also, some joining techniques are not meant for some materials and may instead cause the material to become weak and brittle causing it to break apart almost immediately.

Joining describes a technique which is used to merge two or more independent materials together. The use of wrong joining technique or procedure could result in accident.

In engineering construction, the need to join materials together is always needed for so many reasons. Hence, depending on the materials to be merged, welding, soldering and some other techniques may be employed.

Therefore, wrong or inadequate joining may cause these parts to split or breakup, hence causing severe casualty.

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(a) (6 points) Find the integer a in {0, 1,..., 26} such that a = -15 (mod 27). Explain. (b) (6 points) Which positive integers less than 12 are relatively prime to 12?

Answers

a. a = 12 is the solution to the given congruence relation. b. the positive integers less than 12 that are relatively prime to 12 are 1, 5, 7, and 11.

(a) The main answer: The integer a that satisfies a ≡ -15 (mod 27) is 12.

To find the value of a, we need to consider the congruence relation a ≡ -15 (mod 27). This means that a and -15 have the same remainder when divided by 27.

To determine the value of a, we can add multiples of 27 to -15 until we find a number that falls within the range of {0, 1,..., 26}. By adding 27 to -15, we get 12. Therefore, a = 12 is the solution to the given congruence relation.

(b) The main answer: The positive integers less than 12 that are relatively prime to 12 are 1, 5, 7, and 11.

Supporting explanation: Two integers are relatively prime if their greatest common divisor (GCD) is 1. In this case, we are looking for positive integers that have no common factors with 12 other than 1.

To determine which numbers satisfy this condition, we can examine each positive integer less than 12 and calculate its GCD with 12.

For 1, the GCD(1, 12) = 1, which means it is relatively prime to 12.

For 2, the GCD(2, 12) = 2, so it is not relatively prime to 12.

For 3, the GCD(3, 12) = 3, so it is not relatively prime to 12.

For 4, the GCD(4, 12) = 4, so it is not relatively prime to 12.

For 5, the GCD(5, 12) = 1, which means it is relatively prime to 12.

For 6, the GCD(6, 12) = 6, so it is not relatively prime to 12.

For 7, the GCD(7, 12) = 1, which means it is relatively prime to 12.

For 8, the GCD(8, 12) = 4, so it is not relatively prime to 12.

For 9, the GCD(9, 12) = 3, so it is not relatively prime to 12.

For 10, the GCD(10, 12) = 2, so it is not relatively prime to 12.

For 11, the GCD(11, 12) = 1, which means it is relatively prime to 12.

Therefore, the positive integers less than 12 that are relatively prime to 12 are 1, 5, 7, and 11.

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Consider an airplane patterned after the fairchild republic a-10links to an external site., a twin-jet attack aircraft. the airplane has the following characteristics: wing area

Answers

step: 1 of 16

The static thrust is defined as such a force which is developed and applied by the jet engine on the surrounding air or earth when the airplane is at rest condition.

Power is defined as the rate of doing work with respect to time. Power is a scalar quantity and having no direction. The unit of power is J/s  or watt in an hour(w) .

The expression to calculate the resultant power Ps  is,

PRETV  …… (1)

Here, Ps  is the required power, T R  is the required thrust and is the velocity of the airplane at a certain altitude.

The expression for the actual power for two engines is,

P, = 2(TV)  …… (2)

Here, т.  is the actual thrust and  is the velocity of the airplane for a given altitude.

step: 2 of 16

Write the expression for the thrust of an airplane.

TRE W CIC)  …… (3)

Here, T R  is the required thrust, W  is the weight of the airplane, с. is the lift polar coefficient of the airplane and Ср  is the drag polar coefficient of the plane.

Write the expression for the lift polar coefficient of the airplane.

W C 1 2P. Vis  …… (4)

Here, P  is the air density,  is the velocity of the airplane for a given altitude and S  is the wing area.

Write the expression for drag polar coefficient.

C, = CD,0 + C πε(AR)  …… (5)

Here, Сро  is the zero-lift drag coefficient,  is the Oswald’s efficiency factor and AR  is the aspect ratio.

It is clear from the power required curve that maximum velocity at the altitude at 5 km is

Hence, the required maximum velocity at the altitude of 5 km  is295 m/s.

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A rectangular channel 3.0 m wide has a flow rate of 5.0 m3/s with a normal depth of 0.50 m. The flow then encounters a dam that rises 0.25 m above the channel bottom. Will a hydraulic jump occur?

Answers

Answer:

The hydraulic will jump since the flow is subcritical ( i.e. Y2 > Yc )

Explanation:

width of channel = 3.0 m

Flow rate = 5 m^3/s

Normal depth = 0.50 m

Flow encounters a dam rise of 0.25 m

To know if the hydraulic jump will occur

we will Determine the new normal depth

Y2 = 3.77m

Yc ( critical depth )= 0.66m

Attached below is the detailed solution

A rectangular channel 3.0 m wide has a flow rate of 5.0 m3/s with a normal depth of 0.50 m. The flow

Many architects are innovators. Select the examples of innovation presented in this chapter.
A. Arches
B. Flying buttresses
C. Horizontal ribbon windows
D. Flat pack modules
E. Solar panels with DC microgrids
F. A, B, and C only
G. A, B, and D only

Answers

The options A, B, and C are the correct examples of innovation presented in the chapter by architects.

how we know that?

A, B, and C only are the examples of innovation presented in the chapter that are the innovation presented by architects

.What is innovation? Innovation is the process of creating something new or improved, or introducing something new to the market or society.

To produce a new or improved version of something, one must have the desire and resources to do so.

Many architects are innovators, and this chapter provides examples of their innovation.

The following examples of innovation are presented in this chapter :Arches Flying buttresses Horizontal ribbon windows Innovators and architects are usually the ones who are concerned with designing, developing, and enhancing our built environment.

Architects are responsible for designing and planning a wide range of structures and spaces that meet the demands of clients while adhering to rigorous industry and ethical standards.

It is said that architects have a hand in everything from the types of materials and building techniques used in construction to how people interact with the building they design.

Flat pack modules and solar panels with DC microgrids are innovative solutions in today's world, making it more efficient, sustainable, and cost-effective.

These new, cutting-edge solutions are ideal for the modern age, where the need for eco-friendly construction and sustainable living is becoming increasingly important.

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1. Draw the shear diagram for the beam. Set M0 = 500 N?m, L = 8 m.

2. Draw the moment diagram for the beam.

Thanks for the help!

1. Draw the shear diagram for the beam. Set M0 = 500 N?m, L = 8 m.2. Draw the moment diagram for the
1. Draw the shear diagram for the beam. Set M0 = 500 N?m, L = 8 m.2. Draw the moment diagram for the

Answers

Answer:

Sure! Here's how to draw the shear and moment diagrams for the beam:

To draw the shear diagram, start by finding the shear force at the left end of the beam (V1). This will be equal to M0, since there is no external force acting on the left end of the beam. Then, draw a horizontal line segment to represent the shear force at that point.

Next, move to the right end of the beam (at x=8m). The shear force at this point (V2) will be equal to the shear force at the left end, minus the total load on the beam. So, if the total load on the beam is W, then V2 = M0 - W. Draw a horizontal line segment to represent the shear force at this point.

Finally, connect the two line segments with a smooth curve. This curve represents the variation of the shear force along the length of the beam.

To draw the moment diagram, start by finding the moment at the left end of the beam (M1). This will be equal to 0, since there is no external force acting on the left end of the beam and the shear force is constant (M0) along the length of the beam. Then, draw a horizontal line segment to represent the moment at that point.

Next, move to the right end of the beam (at x=8m). The moment at this point (M2) will be equal to the moment at the left end, plus the total load on the beam multiplied by the length of the beam (WL). So, M2 = M1 + WL = W*L. Draw a horizontal line segment to represent the moment at this point.

Finally, connect the two line segments with a smooth curve. This curve represents the variation of the moment along the length of the beam.

I hope this helps! Let me know if you have any questions.

Explanation:

When exchanging information with anyone involved in the collision, you should _____.

Answers

Try to be as relax as possible.

Provide names of all parties involved.

Provide vehicle information and identification details.

Provide full names, address, registration numbers and insurance company details.

Explanation:

After a collision one may be confused, afraid and have no attention about the details that what happened because all the collision event happens in a short interval of time. So the first thing one should do during information exchange is to sit back and relax and be calm so that one can remind the things at some extent. After that provide all the details about injured people and the involved vehicles.

This figure represents a portable ramp that is being recovered on all sides. How much material is needed to recover the ramp?
A. 1288 m²
B. 1416 m²
C. 1443 m²
D. 1680 m²

Answers

the answer is 1288 m2

Explanation:

i took the k12 test

Answer: The answer is 1288

Explanation: I took the test and it was right

Consider a condenser in which steam at a specified temperature is condensed by rejecting heat to the cooling water. If the heat transfer rate in the condenser and the temperature rise of the cooling water is known, explain how the rate of condensation of the steam and the mass flow rate of the cooling water can be determined. Also, explain how the total thermal resistance R of this condenser can be evaluated in this case.

Answers

Answer:

Q = [ mCp ( ΔT) ] \(_{cooling water }\)

(ΔT)\(_{cooling water}\) and  Q  is given

\(m_{cooling water}\)  = \(\frac{Q}{Cp[ T_{out} - T_{in} ] }\)

next the rate of condensation of the steam

Q = [ m\(h_{fg}\) ]\(_{steam}\)

  \(m_{steam} = \frac{Q}{h_{fg} }\)

Total resistance of the condenser is

R = \(\frac{Q}{change in T_{cooling water } }\)

Explanation:

How will the rate of condensation of the steam and the mass flow rate of the cooling water can be determined

Q = [ mCp ( ΔT) ] \(_{cooling water }\)

(ΔT)\(_{cooling water}\) and  Q  is given

\(m_{cooling water}\)  = \(\frac{Q}{Cp[ T_{out} - T_{in} ] }\)

next the rate of condensation of the steam

Q = [ m\(h_{fg}\) ]\(_{steam}\)

  \(m_{steam} = \frac{Q}{h_{fg} }\)

Total resistance of the condenser is

R = \(\frac{Q}{change in T_{cooling water } }\)

What is the core domain for Accenture’s Multi-party Systems practice?


A. digital identity
B. employee retention
C. social networking
D. marketing responsiveness

Answers

Answer:

a

Explanation:

digital identity is the answer

The core domain for Accenture’s multi-party System is that of a digital identity. Ths that option A is correct.

What is a Multi-party System?

A multiparty system is a shared data infrastructure within the individual and the organizations that drive the efficiency nf new business and lead to the formation of the revenue models. They include the blockchain and distribution database and include a variety of technology and other capabilities.

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_____________ processes are actions that create physical solutions to problems.

a
Production Processes
b
Medical Processes
c
Agricultural Processes
d
Communication Process

Answers

Answer:

yes answer d is correct

Communication Process are actions that create physical solutions to problems. The correct option is d.

What is Communication Process?

Human existence and organisational survival both depend on effective communication. It is a process of generating and disseminating thoughts, facts, opinions, and sentiments from one place, individual, or group to another. The Management function of Directing depends on effective communication.

The sending party, message encoding, channel selection, message receipt by the recipient, and message decoding are all aspects of the communication process.

Feedback is when the recipient communicates something back to the original sender. These procedures are actions that result in tangible fixes for issues.

Thus, the correct option is d.

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Your by-laws provide for what trade classifications?

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Your by-laws provide a kind of trade classification known as Harmonized System, Standard International Trade Classification and North American Industry Classification System,

What are trade classifications?

Trade classification is the process of categorizing goods and services into different groups based on various criteria, such as their nature, purpose, or industry. This eases the process of trade by creating standardized categories that can be used to track and analyze trade activities.

There are several different trade classification systems used around the world. Harmonized System is a standardized system of names and numbers that are used to classify products in international trade. There are 21 sections that allow for categorizations.

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43) According to kinetic-molecular theory, if the temperature of a gas is raised from 100°C to 200°C, the average kinetic energy of the gas will
A) double

B) increase by a factor of 1.27

C) increase by a factor of 100

D) decrease by half

E) decrease by a factor of 100

Answers

A) double

According to the kinetic-molecular theory, the temperature of a gas is a measure of the average kinetic energy of the gas molecules. The kinetic energy of a molecule is the energy it possesses due to its motion. As the temperature of a gas increases, the average kinetic energy of the molecules increases.

If the temperature of a gas is raised from 100°C to 200°C, the average kinetic energy of the molecules will double. This is because the temperature increase is a 100% increase, and the average kinetic energy of the molecules will also increase by 100%.

It is important to note that this is only true if the volume and number of molecules in the gas are held constant. If the volume or number of molecules changes, the relationship between temperature and average kinetic energy may be different.

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Name the manufacturing process that the worker is using to create the workpiece. The manufacturing process carried out by the blacksmith in the image is the process of​

Name the manufacturing process that the worker is using to create the workpiece. The manufacturing process

Answers

Answer:

Metamorphic manufacturing

Explanation:

I don't know what form of an answer you wanted but I hope this helps :)

Estimating is important in construction industry because
Select one:
a. Contractors need to know the amount of mark-up
b. Projects are awarded on serious competition
c. Construction industry has tendency for complex constructions
d. The regulations of government for construction industry changes
Your answer is correct,​

Answers

Answer:

a( contractors need to know the amount of markup)

because the contractor should have a long term vision for a proper satisfaction to the people.

Why do we use deciBels instead of microbars to relate to sound pressure level?

Answers

Answer:

  SPL is best represented using a logarithmic scale

Explanation:

Microbars would be a linear scale. deciBels is a logarithmic scale, so is able to express a wide range of sound pressures more easily.

a weight of 20 lb is applied to a cylinder that is full of water. The Piston area is 4.5 inches squared. what is the pressure of the water? round to one "decimal" place.​

Answers

Answer:

6.564 is the answers i learned that in the american school i live there

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

Answers

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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Miriam is doing a measurement with her multimeter and the LCD is showing Hz. What's she measuring?
A. Resistance
B. Amplitude
C. Voltage
D. Frequency

Answers

Answer:

voltage

Explanation:

because it is used with a moving pointer to display readings.

In a cooling tower, the required make up water is 14.2 kg/s. Atmospheric air at 100 kPa, 25°C db, 30% relative humidity enters the cooling tower and exits at 35°C db, 80% relative humidity. What is the mass flow rate of dry air across the cooling tower?

Answers

The mass flow rate of dry air across the cooling tower is 13.97 kg/s.

We need to find the value of mw to calculate the mass flow rate of dry air across the cooling tower.From the psychrometric chart,

The specific humidity of air at inlet condition is 0.0182 kg/kg dry air.

The specific humidity of air at exit condition is 0.0334 kg/kg dry air.

The specific humidity change is:Δw = 0.0334 - 0.0182 = 0.0152 kg/kg dry air

Absolute humidity at inlet condition is:0.0182 / (1 - 0.0182) = 0.0185 kg/kg moist air

Absolute humidity at exit condition is:0.0334 / (1 - 0.0334) = 0.0345 kg/kg moist air

The absolute humidity change is:ΔH = 0.0345 - 0.0185 = 0.016 kg/kg moist air

Let's calculate the mass flow rate of water vapor using the below formula:

Total mass flow rate of water vapor = Absolute humidity change x Mass flow rate of atmospheric air

mw = ΔH x ma => mw = 0.016 x 14.2 = 0.2272 kg/s

Substitute the value of mw in the mass balance equation,mda = 14.2 - mw => mda = 14.2 - 0.2272 => mda = 13.97 kg/s

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A germanium diode carries a current of 1 mA at room temperature when a forward bias of 0.15v is applied. Estimate the reverse saturation current at room temperature.

Answers

The reverse saturation current, denoted as I0, can be estimated using the diode equation:

I = I0 * (exp(qV/kT) - 1)

where I is the current through the diode, q is the charge of an electron, V is the voltage across the diode, k is Boltzmann's constant, and T is the temperature in Kelvin.

At room temperature, T = 298 K. We are given that the diode carries a current of 1 mA when a forward bias of 0.15 V is applied. Let's assume that the diode is ideal, meaning that it has no series resistance, so the voltage across the diode equals the forward bias voltage.

Plugging in these values, we get:

1E-3 A = I0 * (exp((1.602E-19 C)(0.15 V) / (1.381E-23 J/K)(298 K)) - 1)

Simplifying, we get:

1E-3 A = I0 * (exp(0.01275) - 1)

1E-3 A / (exp(0.01275) - 1) = I0

I0 = 2.34E-12 A, or approximately 0.23 nA. Therefore, the estimated reverse saturation current at room temperature is 0.23 nA.

a new fire pump must be able to operate at what percentage of its rated pressure while delivering 150 percent of the rated volume in gpm (l/min)?

Answers

A modern fire pump must be able to run at 150% of its rated flow while maintaining a minimum of 65% of its rated pressure in order to comply with the NFPA standard for fire pumps, specifically NFPA 20.

What is the fire pumps' minimum pressure requirement?

This fire pump's capacity must be sufficient to defend these areas when two jets of water from fire hoses with 19 mm nozzles are supplied simultaneously at a minimum pressure of 0.5 MPa.

How much pump pressure is typical?

A typical home pipe system operates between 30 and 80 psi. Although you don't want the psi to be too high, it is against the law to have it above 80. Instead, you should strive for a psi of 60 to 70.

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The energy transferred between objects at different temperatures a.temperatureb.thermal energyc.heat

Answers

The energy transferred between objects at different temperatures is called heat. Heat is a form of energy that flows spontaneously from hotter objects to cooler objects until thermal equilibrium is achieved. This transfer of energy occurs due to the difference in temperature between the two objects and the thermal energy stored within them.

Thermal energy refers to the total energy stored within a substance due to the motion of its atoms and molecules. When two objects of different temperatures are brought into contact, the atoms and molecules in the hotter object transfer some of their thermal energy to the cooler object through the process of heat transfer.

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Refrigerant 134a at p1 = 30 lbf/in2, T1 = 40oF enters a compressor operating at steady state with a mass flow rate of 200 lb/h and exits as saturated vapor at p2 = 160 lbf/in2. Heat transfer occurs from the compressor to its surroundings, which are at T0 = 40oF. Changes in kinetic and potential energy can be ignored. The power input to the compressor is 2 hp. Determine the heat transfer rate for the compressor, in Btu/hr, and the entropy production rate for the compressor, in Btu/hr·oR.

Answers

Answer:

a) \(\mathbf{Q_c = -3730.8684 \ Btu/hr}\)

b) \(\mathbf{\sigma _c = 4.3067 \ Btu/hr ^0R}\)

Explanation:

From the properties of Super-heated Refrigerant 134a Vapor at \(T_1 = 40^0 F\), \(P_1 = 30 \ lbf/in^2\) ; we obtain the following properties for specific enthalpy and specific entropy.

So; specific enthalpy \(h_1 = 109.12 \ Btu/lb\)

specific entropy \(s_1 = 0.2315 \ Btu/lb.^0R\)

Also; from the properties of saturated Refrigerant 134 a vapor (liquid - vapor). pressure table at \(P_2 = 160 \ lbf/in^2\) ; we obtain the following properties:

\(h_2 = 115.91 \ Btu/lb\\\\ s_2 = 0.2157 \ Btu/lb.^0R\)

Given that the power input to the compressor is 2 hp;

Then converting to  Btu/hr ;we known that since 1 hp = 2544.4342 Btu/hr

2 hp = 2 × 2544.4342 Btu/hr

2 hp = 5088.8684 Btu/hr

The steady state energy for a compressor can be expressed by the formula:

\(0 = Q_c -W_c+m((h_1-h_e) + \dfrac{v_i^2-v_e^2}{2}+g(\bar \omega_i - \bar \omega_e)\)

By neglecting kinetic and potential energy effects; we have:

\(0 = Q_c -W_c+m(h_1-h_2) \\ \\ Q_c = -W_c+m(h_2-h_1)\)

\(Q_c = -5088.8684 \ Btu/hr +200 \ lb/hr( 115.91 -109.12) Btu/lb \\ \\\)

\(\mathbf{Q_c = -3730.8684 \ Btu/hr}\)

b)  To determine the entropy generation; we employ the formula:

\(\dfrac{dS}{dt} =\dfrac{Qc}{T}+ m( s_1 -s_2) + \sigma _c\)

In a steady state condition \(\dfrac{dS}{dt} =0\)

Hence;

\(0=\dfrac{Qc}{T}+ m( s_1 -s_2) + \sigma _c\)

\(\sigma _c = m( s_1 -s_2) - \dfrac{Qc}{T}\)

\(\sigma _c = [200 \ lb/hr (0.2157 -0.2315) \ Btu/lb .^0R - \dfrac{(-3730.8684 \ Btu/hr)}{(40^0 + 459.67^0)^0R}]\)

\(\sigma _c = [(-3.16 ) \ Btu/hr .^0R + (7.4667 ) Btu/hr ^0R}]\)

\(\mathbf{\sigma _c = 4.3067 \ Btu/hr ^0R}\)

The displacement of a certain object is described by y(t) = 23 sin 5t, where t is measured in seconds. Compute its period and its oscillation frequency in rad/sec and in hertz

Answers

Answer:

5 rad/sec

0.796 Hz

1.256 seconds

Explanation:

Y(t) = 23sin5t ----1

Y(t) = aSin(w)t----2

w = 5 rad/sec

Then we get the Oscillation frequency from the formula below

w = 2πf

We make f to be the subject of this formula

f = w/2π

f = 5/2*3.24

f = 5/6.28

f = 0.796Hz

From the calculated frequency, we get the period = 1/f

= 1/0.796

= 1.256 seconds

The feasible region for the pure ILP problem:a. is equivalent to the feasible region for the LP relaxation problemb. is a lattice consisting of points corresponding only to integer values of the decision variablesc. is a k-dimensional hyperspaced. is impossible to determine

Answers

It is to be noted that the feasible region for the pure integer linear programming (ILP) problem: " is a lattice consisting of points corresponding only to integer values of the decision variables" (Option B).

What is a Pure Integer Linear Programming problem?

An integer programming (IP) issue is a linear programming (LP) problem in which the decision variables must be integers. The goal function as well as the restrictions must be linear. The branch-and-bound approach is the most widely utilized method for solving an IP.

The LP relaxation of an ILP problem is obtained by relaxing the integer constraints on the decision variables, allowing them to take on fractional values.

Thus, the feasible region for the LP relaxation is a superset of the feasible region for the corresponding ILP problem, as it includes all of the points that are feasible for the ILP problem as well as additional points that are feasible for the LP relaxation but not the ILP problem.

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In the engineering design and prototyping process, what is the advantage of drawings and symbols over written descriptions?

Answers

The advantages that can be associated to

drawings and symbols over written descriptions in engineering design and prototyping process are;

Communicate design ideas as well as technical information to engineers.

Symbols and drawings can be universal which means it is easy to interpret any where by professionals.

An engineering drawing serves as complex dimensional object and symbol use by engineer to communicate.

Drawings and symbols makes it easier to communicate design ideas and technical information to engineers and and how the process will go.

Therefore, drawings and symbols is universal to all engineer unlike written one.

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The DOT places more restrictions on operators of heavy trucks than on lighter trucks. Why do you think this is?

Only the states can regulate drivers of light trucks.

The drivers of heavy trucks go on long hauls, and therefore are most likely to engage in smuggling and related activities that might pose a national security risk.
The DOT does not actually place more restrictions on operators of heavy trucks.
The DOT is tasked with protecting the safety of people on the roadways, and long hauls pose more such risks.

Answers

The DOT places more restrictions on operators of heavy trucks than on lighter trucks. The reason for this is that "The DOT is tasked with protecting the safety of people on the roadways, and long hauls pose more such risks."

What is the DOT?

The United States Department of Transportation (or DOT) is a federal cabinet department of the United States government involved with transportation. It was founded in 1966 and went into operation on April 1, 1967. The United States Secretary of Transportation is in charge of it.

Its goal statement is: "To serve the United States by assuring a rapid, safe, efficient, open, and convenient transportation system that satisfies our essential national interests and improves the quality of life of the American people today and in the future."

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Please help with these circuit questions

Please help with these circuit questions
Please help with these circuit questions

Answers

B is the answer because is the question because it says therw

If two current are in the same direction at any instant of time in a given branch of a circuit, the net current at that instant

Answers

If two currents are in the same direction at any instant of time in a given branch of a circuit, the net current at that instant will be the sum of the two individual currents. In other words, the net current is the algebraic sum of the two currents.

How can this be illustrated?

For example, if one current is 2 amperes and the other current is 3 amperes, and they are flowing in the same direction in a given branch of the circuit, then the net current at that instant will be 5 amperes (2 + 3 = 5).

It's important to note that this only applies at a specific instant in time, and the net current may change as the circuit changes or the currents vary.

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