Answer:
The python code for the given problem is written in explanation section.
Explanation:
The code for the given situation, in Python, can be written as follows:
x = int(input("Enter a positive number for dividend: "))
y = int(input("Enter a positive number for divisor: "))
quotient = x//y
remainder = x%y
print("The Quotient of the given calculation is:",quotient)
print("The Remainder of the given calculation is:",remainder)
The throttling valve is replaced by an isentropic turbine in the ideal vapor-compression refrigeration cycle to make the ideal vapor-compression refrigeration cycle more closely approximate the actual cycle.
A. True
B. False
Answer:
False
Explanation:
The given statement is False. In real scenario the throttling valve not replaced by an isentropic turbine in the ideal vapor-compression refrigeration cycle. It is done so that the ideal vapor-compression refrigeration cycle to make the ideal vapor-compression refrigeration cycle more closely approximate the actual cycle.
a pipe with closed ends has an outer diameter of and wall thickness of . it is subjected to an internal pressure of and a torque of . determine the maximum normal stress and the maximum shear stress. neglect the localized effects of the end closure.
The maximum normal stress is 900 MPa and the maximum shear stress is 1250 MPa neglecting the localized effects of the end closure.
Maximum normal stress = Internal Pressure x (Outer Diameter - Wall Thickness) / 2
= 1000 x (2 - 0.2) / 2
= 900 MPa
Maximum shear stress = Torque / (Outer Diameter x Wall Thickness)
= 500 / (2 x 0.2)
= 1250 MPa
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complete question.
a pipe with closed ends has an outer diameter of 2 and wall thickness of 0.2 m . it is subjected to an internal pressure of 1000 and a torque of 500 . determine the maximum normal stress and the maximum shear stress. neglect the localized effects of the end closure.
what is one part of a regular vessel and engine maintenance program boat ed
One essential part of a regular vessel and engine maintenance program is conducting regular inspections and servicing.
This involves inspecting various components of the boat and engine to ensure they are in proper working condition and identifying any potential issues or areas that require attention. The inspection may include checking the hull for damage, inspecting the propeller, verifying the condition of the steering system, examining the electrical and plumbing systems, and assessing the engine's performance and fluids. Additionally, routine servicing tasks such as changing the engine oil, replacing filters, lubricating moving parts, and inspecting belts and hoses are typically included in a comprehensive maintenance program. By regularly inspecting and servicing the vessel and engine, boaters can help prevent major breakdowns, ensure optimal performance, and enhance the safety and longevity of their boat.
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Modern aircraft are designed in a way that, when all seats are occupied, the baggage compartment is full, and all fuel tanks are full, the aircraft is:
Modern aircraft are designed in a way that, when all seats are occupied and baggage is full, and all fuel tanks are full, the aircraft is overloaded.
What is aircraft storage?Aircraft storage refers to all storage systems in an aircraft for human transportation and also to transport products among countries.
The aircraft storage system is well calculated to work is a maximum capacity in commercial fly lines.
In conclusion, modern aircraft are designed in a way that, when all seats are occupied and baggage is full, and all fuel tanks are full, the aircraft is overloaded.
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Please help me with the question in the picture
The IP address of host 2 on subnet 6 would be the second address in the subnet, which is: 227.12.1.41
How to get the informationIt should be noted that to discover the IP address of Host 2 on Subnet 6, first we must uncover the network address of the sixth subnet. Since the number is 6, the network address bears the designation of the sixth subnet belonging to a Class C Network 227.12.1.0.
In order to ascertain the network adress of Subnet 6, one must become familiar with the block size. By examining the subnet mask /29, it can be deduced that the block size's magnitude must be equal to 2^(32-29)= 8. Summarily, the network address of Subnet 6 would correspond as:
227.12.1.0 + (6-1) * 8 = 227.12.1.40
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What's the relationship between energy and time
Answer:
The relationship between power, energy, and time can be described by the following equation : P = Δ E s y s Δ t. P is the average power output, measured in watts (W) ΔEsys is the net change in energy of the system in joules (J) - also known as work. Δt is the duration - how long the energy use takes - measured in seconds (s).
Explanation:
4. A cylindrical specimen of a brass alloy 7.5 mm in diameter and 90.0 mm long is pulled in tension with a force of 6000 N; the force is subsequently released. a. Compute the final length of the specimen. b. Compute the final specimen length with the load is increased to 16,500 N and then released.
The elastic properties of the brass specimen enables it to return to its
original length when stressed below the yield strength.
The correct responses are;
4. a. The final length is 90.0 m.
b. The final length is 97.2 mm.
Reasons:
a. Diameter of the brass alloy = 7.5 mm
Length of the specimen = 90.0 mm
Force applied = 6000 N
The equation for the applied stress, σ, is presented as follows;
\(\sigma = \dfrac{Force \ applied}{Area \ of \ specimen} = \dfrac{6000 \, N}{\pi \cdot \left(\dfrac{7.5 \times 10^{-3}}{2} \, m} \right)^2 } \approx 135.81 \ \mathrm{MPA}\)
Depending on the cold working condition, 135.81 MPa is below the yield
strength, and the brass will return to its original condition when the force is
removed. The final length is remains as 90.0 m.
b. When the applied force is F = 16,500 N, we have;
\(\sigma = \dfrac{16,500\, N}{\pi \cdot \left(\dfrac{7.5 \times 10^{-3}}{2} \, m} \right)^2 } \approx 373.48\ \mathrm{MPA}\)
The stress found for the force of 16,500 N is above the yield stress of
brass, and it is therefore, in the plastic region.
From the stress strain curve, the strain can be estimated by drawing a line
from the point of the 373.48 MP on the stress strain curve, parallel to the
elastic region to intersect the strain axis, which gives a value of strain
approximately, ε = 0.08.
The length of the specimen is given by the formula; \(l_i = l_0 \cdot (1 + \epsilon)\)
Therefore;
\(l_i\) = 90 × (1 + 0.08) = 97.2
The final length of the specimen, \(l_i\) = 97.2 mm
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d
K
A shaft consisting of a steel tube of 50-mm outer diameter is to transmit 100 kW of power while rotating at a frequency of 36 Hz.
Determine the tube thickness that should be used if the shearing stress is not to exceed 60 MPa.
The tube thickness that should be used is [
mm.
Based on the information, the tube thickness that should be used is 3.18 mm.
How to calculate the valuePower = Torque * Angular velocity
100 kW = Torque * (2 * pi * 36 Hz)
Torque = 2212.14 N-m
In this case, the polar moment of inertia is:
J = pi * 50⁴ / 32 = 196250 pi mm⁴
Maximum shear stress = Torque / J
Maximum shear stress = 2212.14 N-m / 196250 pi mm⁴ = 0.0499 MPa
Tube thickness = 2 * ✓(60 MPa / pi * 50²) = 3.18 mm
Therefore, the tube thickness that should be used is 3.18 mm.
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Technician A says automotive gasoline engines run on the 2 stroke principal. Technician B says Diesel engine hace less compression than a gasoline engine. Who is correct?
Answer:
both are incorect
Explanation:
2 stroke principal is a mix of gasoline and engine oil a normal gasoline engine does not run on 2 stroke fuel
technician B is also wrong Diesel engines generally generate much higher compersion than gasoline engines
2. why is it important that plating follows a specific order when items are added to wells?
In order to prevent the cells from reacting in a variable manner, growth media must be supplied before the cell sample.
The definition of the word medium, which is the singular version of the word media, is "one of the means or channels of general communication, information, or amusement in society, as newspapers, radio, or television." With over 1000 locations across Europe, Media Markt is a multinational German retailer of consumer electronics. Modern media is available in a wide range of formats, including print (books, magazines, and newspapers), television, movies, video games, music, cell phones, various types of software, and the Internet. Each sort of media includes a delivery mechanism or object for the material as well as the content itself. The three media kinds are also referred to as news media, social media, and digital media.
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A force of 100 kip is acting at angle of 60 with horizontal axis. What is horizontal component of the force? 100* Cos60 100* Sin60 100* Sin30 100* Cos3
The horizontal component of a force of 100 kip acting at an angle of 60 degrees with the horizontal axis is 50 kip.
To determine the horizontal component of a force, we use trigonometric functions. In this case, we can use the cosine function to find the horizontal component. The cosine of an angle is defined as the ratio of the length of the adjacent side to the length of the hypotenuse in a right triangle.
In the given scenario, the force of 100 kip can be represented as the hypotenuse of a right triangle, with the horizontal component being the adjacent side. The angle between the force and the horizontal axis is 60 degrees. By using the cosine function, we can calculate the horizontal component as the product of the force magnitude (100 kip) and the cosine of the angle (cos 60 degrees):
Horizontal component \(= 100 kip \times cos(60 \textdegree) = 100 kip \times 0.5 = 50 kip.\)
Therefore, the horizontal component of the force is 50 kip.
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Calculate the tensile modulus of elasticity for a laminated composite consisting of 62 percent by volume of unidirectional carbon fibers and an epoxy matrix under isostress conditions. The tensile modulus of elasticity of the carbon fibers is 340 GPa and that of the epoxy is 4.50 103 MPa.
Answer:
4.30 gp
Explanation:
''.''
With the 300-lb cylindrical part P in its grip, the
robotic arm pivots about O through the range −45° ≤ ≤
45° with the angle at A locked at 120°. Determine and plot
(as a function of ) the moment at O due to the combined
effects of the 300-lb part P, the 120-lb weight of member
OA (mass center at G1), and the 50-lb weight of member AB
(mass center at G2). The end grip is included as a part of
member AB. The lengths L1 and L2 are 3 ft and 2 ft, re-
spectively. What is the maximum value of MO, and at what
value of does this maximum occur?
To determine the moment at O due to the combined effects of the equilibrium 300-lb part P, the 120-lb weight of member OA (mass center at G1), and the 50-lb weight of member AB (mass center at G2).
we first need to calculate the distances of the centers of gravity of each member from point O. Let d1 be the distance of G1 from O, and d2 be the distance of G2 from O.Using the parallel axis theorem, we can calculate d1 and d2 as follows:d1 = L1/2 * sin(120°) + L1/3 * cos(120°) = L1/6 * (-√3 + 2) = -0.2887 ftd2 = L1 * sin(120°) + L2/2 = L1/2 * √3 + L2/2 = 2.732 ftNext, we can calculate the moment due to each member about O:Moment due to P = 300 * d1 * cos()Moment due to OA = 120 * d1 * cos()Moment due to AB = 50 * d2 * cos()The angle at A is locked at 120°, so we can plot the moment as a function of the angle as follows:MO() = 300 * d1 * cos() + 120 * d1 * cos() + 50 * d2 * cos()To find the maximum value of MO, we can take the derivative of MO with respect to and set it equal to 0:d/d() [300 * d1 * cos() + 120 * d1 * cos() + 50 * d2 * cos()] = -300 * d1 * sin() - 120 * d1 * sin() + 50 * d2 * sin() = 0Simplifying and solving for , we get:sin() = (50 * d2) / (300 * d1 + 120 * d1)= 0.518Taking the inverse sine, we get:() = 31.18°Therefore, the maximum moment occurs at an angle of 31.18°, and its value can be calculated using the expression for MO() above.
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To think of electric potential difference we are thinking about A. Current B. Voltage C. Resistance
To think of electric potential difference we are thinking about Voltage. This is option B
The term electric potential difference is used to describe the difference in electric potential between two points in an electrical circuit. The correct answer to the given question is option B, Voltage.
Voltage is the electric potential difference between two points. In other words, voltage is the force that pushes the electric charge through an electrical circuit. The electrical potential difference between two points in an electric circuit is measured in volts, which is abbreviated as V. It is an SI unit of measurement for voltage.
Electric current is the flow of electrons in an electric circuit. It is represented by the symbol I and is measured in amperes (A), which is an SI unit. The current that flows through a circuit is determined by the voltage difference between two points, as well as the resistance of the conductor.
So, the correct answer is B
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It is okay to lift one end of the vehicle:
A) As long as two swing arms are being used
B) As long as the wheels have been chocked
C) As long as the swing arm restraints are engaged
D) None of the above
It is okay to lift one end of the vehicle B) As long as the wheels have been chocked.
What is a Safety Procedure?This refers to the processes that are undertaken in order to undertake a task safely, both for the person executing the task and others around.
Hence, we can see that It is okay to lift one end of the vehicle B) As long as the wheels have been chocked
This is because it would enable the vehicle to be safely positioned so the wheels would not roll off and cause an accident.
This safety procedure allows a person to raise one end of a vehicle, if the wheels have been chocked, to keep them in place.
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A workpiece in the form of a bar 100 mm in diameter is to be turned down to 70 mm diameter for 50 mm of its length. A roughing cut using maximum power and a depth of cut of 12 mm is to be followed by a finishing cut using a feed of 0.1 mm and a cutting speed of 1.5 m/s. It takes 20 s to load and unload the workpiece and 30 s to set the cutting conditions, set the tool at the beginning of the cut and engage the feed. The specific cutting energy for the material is 2.3 GJ/m3 and the lathe has a 3-kW motor and a 70 percent efficiency. Estimate:
Answer:
Hello your question has some missing part below is the missing part
Estimate The matching time for the Finish cut
answer: 79.588 seconds
Explanation:
Calculate the matching time for the Finish cut
Diameter of workpiece before cutting = 100 mm
hence
Diameter of workpiece before Finishing cut ( same as after rough cut )
D2 = D1 - 2 * d = 100 - (2 * 12) = 76mm
step 1 : determine spindle speed
V = \(\frac{\pi D_{2}N_{s} }{60}\) -------- ( 1 ). where : D2 = 76 mm , Ns = ? , V = 1.5 ( input values into equation 1 )
therefore Ns = 376.94 rpm
Finally : Determine the matching time
T = \(\frac{L + A}{Ft * Ns}\) ---- ( 2 ) . where : Ft = 0.1 mm , Ns = 376.94 rpm, L = 50 mm , A = 0 ( input values into equation 2 )
note : A = allowance length ( not given ) , ft = feed rate
T = 50 / ( 0.1 * 376.94 )
= 1.3265 minutes ≈ 79.588 seconds
Taking what you have learned about Ohm's law what would the current be through a circuit if the power supply was 110 v and the total resistance on the circuit was found to be 15.2 kiloOhms?
Answer:
7.24 mA
Explanation:
Ohm's law states that the current passing through two points is directly proportional to the voltage across the two points.
V ∝ I
V = IR
R is the resistance which is the constant of proportionality, V is the voltage and I is the current.
Given that V = 110 V, R = 15.2 kΩ
Therefore using ohms law, we calculate the current as:
\(V=IR\\\\I=\frac{V}{R}\\\\I=\frac{110}{15.2*10^3}\\\\I=7.24*10^{-3}\\\\I=7.24\ mA\)
helppppppp plssss Identifying job responsibilities for staff members is an example of which section of the project charter?
project requirements
project objectives
project team
project description
What is a Home Run terminology that is used in Electrical Wiring?
Answer:
Any circuit that goes directly from the fixture to the breaker panel. For dedicated outlets, isolated fixtures and high-load items, you would want them to be on their own breakers. Those would get a home run, a line that goes all the way back without stopping.
if, after warming of a restricted thermostatic expansion valve and restarting of the system, the valve's superheat fails to be lowered, is it reasonable to assume that the restriction is not due to
Moisture.
If the superheat of a thermostatic expansion valve (TXV) does not decrease after the valve has been warmed and the system has been restarted, it is possible that the restriction is not due to moisture. However, it is important to consider other potential causes of the restriction before making this conclusion.
There are several factors that can affect the performance of a TXV and cause the superheat to remain high. Some of these include:
Improper sizing of the valve: If the TXV is not properly sized for the system, it may not be able to effectively control the flow of refrigerant and maintain the desired superheat.Incorrect installation of the valve: The TXV must be installed correctly in order to function properly. If it is installed at an incorrect angle or in the wrong location, it may not be able to effectively control the flow of refrigerant.Improperly charged system: The refrigerant charge of the system must be correct in order for the TXV to function properly. If the system is undercharged or overcharged, it can affect the performance of the TXV.Malfunctioning components: Other components in the system, such as the compressor or condenser, may be malfunctioning and causing the TXV to perform poorlyread more about thermostatic expansion valve at https://brainly.com/question/12975508
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if a hashtable requires integer keys, what hash algorithm would you choose? write java code for your hash algorithm.
For a hashtable that requires integer keys, I would choose the Jenkins one-at-a-time hash algorithm. It is a simple and efficient hash algorithm that produces a 32-bit hash value for any given key.
Here is an example implementation of the Jenkins one-at-a-time hash algorithm in Java:
public static int hash(int key) {
int hash = 0;
for (int i = 0; i < 4; i++) {
hash += (key >> (i * 8)) & 0xFF;
hash += (hash << 10);
hash ^= (hash >> 6);
}
hash += (hash << 3);
hash ^= (hash >> 11);
hash += (hash << 15);
return hash;
}
This implementation takes an integer key as input and produces a 32-bit hash value as output. It uses a loop to process each byte of the key in turn, adding it to the hash value and performing some bitwise operations to mix the bits together. Finally, it applies some additional mixing operations to produce the final hash value.
The Jenkins one-at-a-time hash algorithm is a good choice for integer keys because it is fast, simple, and produces a good distribution of hash values for most inputs.
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.Write a program that uses a void function void miles_to_km() to generate a kilometer
conversion table for all even kilometers from 2 miles to 62 miles. Use two decimal
places for kilometers.
Explanation:
rational
Step-by-step explanation:
The discriminant (d) of a quadratic equation ax^2 + bx + c = 0ax
2
+bx+c=0 is:
\boxed{\mathrm{d =} \ b^2 - 4ac}
d= b
2
−4ac
.
If:
• d > 0, then there are two real solutions
• d = 0, then there is a repeated real solution
• d < 0, then there is no real solution.
In this question, we are given the quadratic equation 3x^2 + 4x - 2 = 03x
2
+4x−2=0 . Therefore, the discriminant of the equation is:
b² - 4ac = (4)² - 4(3)(-2)
= 16 - (-24)rational
Step-by-step explanation:
The discriminant (d) of a quadratic equation ax^2 + bx + c = 0ax
2
+bx+c=0 is:
\boxed{\mathrm{d =} \ b^2 - 4ac}
d= b
2
−4ac
.
If:
• d > 0, then there are two real solutions
• d = 0, then there is a repeated real solution
• d < 0, then there is no real solution.
In this question, we are given the quadratic equation 3x^2 + 4x - 2 = 03x
2
+4x−2=0 . Therefore, the discriminant of the equation is:
b² - 4ac = (4)² - 4(3)(-2)
= 16 - (-24)
= 40
Since the discriminant, 40, is greater than zero, the quadratic equation has 2 rational solutions.
= 40
Since the discriminant, 40, is greater than zero, the quadratic equation has 2 rational solutions.
as the angle of the ramp is increased the force parallel increases /decreases / remains the same
As the angle of the ramp is increased, the force parallel increases. Hence, option (a) can be considered as the correct answer.
When the angle of a ramp is increased, the force parallel to the ramp, also known as the parallel component of the gravitational force, does increase. This is because the component of gravity acting parallel to the ramp increases with the angle. However, it's important to note that the total gravitational force acting on an object remains constant regardless of the angle of the ramp.As the angle of the ramp increases, the force required to push or pull an object up the ramp against gravity increases. This is due to the increase in the vertical component of the gravitational force, which opposes the motion up the ramp. The parallel force required to overcome this increased vertical force also increases.
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What does "Tendered To Service Provider" actually mean?
Simply put, the phrase means that your package has been transported to the final delivery point that is closest to you. This message is often sent to you by the delivery service's last mile partner.
What is the Tendered To Service Provider?A notification that the prior shipping service's shuttle partner has been discharged is being offered to the delivery service provider.
Your delivery has been delivered to the nearby post office, which is what it signifies. Usually, USPS serves as the subcontractor, but occasionally, another postal agency may carry out the delivery.
Therefore, It indicates that the box was delivered in the most recent unit delivery, which may have been your neighbourhood post office. It implies that a couple different trucks from DHL will deliver your package.
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20 points and brainliest is it A, B, C, D
Using your Greek roots and context clues, figure out the meaning of “fissures” in this sentence and select the best definition:
“Look at these recent fissures in the granite roof”
A. an opening made by splitting
B. a crack made from crushing
C. a line made from evaporation
D. a line made from sediment deposits
Answer:
B
Explanation:
a commercial refrigerator with r-134a as the working fluid is used to keep the refrigerated space at -35 c by rejecting waste heat to cooling water that enters the condenser at 18 c at a rate of 0.25 kg/s and leaves at 26 c. the refrigerant enters the condenser at 1.2 mpa and 50 c and leaves at the same pressure subcooled by 6 c. if the compressor consumes 3.3 kw of power , determine (a) the mass flow rate of the refrigerant, b) the refrigerant load, c) the cop, and d) the minimum power input to the compressor for the same refrigeration load.
At 1.2mpa pressure and 50c
What is pressure?
By pressing a knife against some fruit, one can see a straightforward illustration of pressure. The surface won't be cut if you press the flat part of the knife against the fruit. The force is dispersed over a wide area (low pressure).
a)Mass flow rate of the refrigerant
Therefore h1= condenser inlet enthalpy =278.28KJ/Kg
saturation temperature at 1.2mpa is 46.29C
Therefore the temperature of the condenser
T2 = 46.29C - 5
T2 = 41.29C
Now,
d)power consumed by compressor W = 3.3KW
Q4 = QL + w = Q4
QL = mR(h1-h2)-W
= 0.0498 x (278.26 - 110.19)-3.3
=5.074KW
Hence refrigerator load is 5.74Kg
(COP)r = 238/53
(Cop) = 4.490
Therefore the above values are the (a) mass flow rate of the refrigerant, b) the refrigerant load, c) the cop, and d) the minimum power input to the compressor for the same refrigeration load.
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in cold climates, water pipes may freeze and burst if proper precautions are not taken. In such an occurrence, the exposed part of a pipe on the ground ruptures, and water shoots up to a height z2, of 52 m. Estimate the gage pressure of water in the pipe. The gage pressure of water in the pipe is determined to be kPa..
Answer:
Gauge Pressure = 408.3 KPa
Explanation:
The pressure inside the pipe can be given in terms of the elevation, by the following formula:
P = ρgΔz
where,
P = Absolute Pressure = ?
ρ = Density of Water = 1000 kg/m³
g = acceleration due to gravity = 9.8 m/s²
Δz = elevation = 52 m
Therefore,
P = (1000 kg/m³)(9.8 m/s²)(52 m)
P = 509.6 KPa
Now, for gauge pressure:
Gauge Pressure = P - Atmospheric Pressure
Gauge Pressure = 509.6 KPa - 101.3 KPa
Gauge Pressure = 408.3 KPa
Membrane compounds should not be applied to the base slab of a two-course floor
True
False
True, Hydrophobic and small polar molecules can diffuse through the lipid layer of the plasma membrane, but ions and large polar molecules cannot.
Describe the plasma membrane.
The outermost membrane or structure that encloses the cell and its organelles is called the plasma membrane. It resembles an envelope. Both bacterial and eukaryotic cells contain the double-membraned phospholipid bilayer organelle. All living cells have a barrier called the plasma membrane, which allows some molecules to enter and others to leave the cell.
Additionally, the plasma membrane acts as a connecting system by creating a connection between the cell .
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One kmole of gas mixture at a total pressure of 250 kPa and 303 K contains 10% CH4, 30% C2H6, and 60% H2 by volume. The absolute velocities of each species are -10 m/s, -5 m/s, and 15 m/s, respectively, all in the direction of the zaxis. a. Determine the molar average velocity, Umol for the mixture. 6.5 m/s b. Evaluate the four fluxes: JCH4-mol, NCH4-mol
Answer:
hi its very easy to say tgat i know this answer very so my friend please give me free points broThe sections of piping immediately upstream and downstream of a primary flow measuring device are known as
The sections of piping immediately upstream and downstream of a primary flow measuring device are known as the "straight run."
The straight run refers to the lengths of piping that are required to be present immediately upstream and downstream of a primary flow measuring device. These sections of piping are necessary to ensure that the flow profile is fully developed and unaffected by any disturbances caused by bends, fittings, or obstructions in the pipe. The straight run allows the fluid to flow smoothly and uniformly before entering or exiting the flow measuring device, ensuring accurate and reliable measurements.
By providing sufficient straight run lengths, the flow profile becomes stable, minimizing turbulence and disturbances that could impact the accuracy of the flow measurement.
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