Answer:
We did not find results for: Una cuenca hidrográfica cerca de Van Horn, Texas, tiene un área de 5500 acres. La cobertura de la tierra a lo largo de la cuenca es un arbusto desértico en condiciones aceptables dominado por matorrales salados y greasewood. Los grupos de suelos hidrológicos en la cuenca son aproximadamente 60% C y 40% D. La topografía en la cuenca incluye colinas altas a lo largo del límite superior de la cuenca que desembocan en llanuras de inundación amplias y planas. Debido a esta topografía cambiante, el agua que fluye desde el punto más remoto hidráulicamente de la cuenca hasta la salida pasa a través de dos secciones distintas. La primera sección tiene una longitud de 1200 pies con una pendiente promedio del 4%. La segunda sección tiene una longitud de 3200 pies y una pendiente promedio de 0.8%. Requerido: Usando el Método SCS, estime la tasa máxima de escorrentía, q, para una tormenta de 25 años. Puede suponer que no hay charcos en la cuenca.
Explanation:
describe applications for which variables and functions could be used.
Variables and functions can be used in various applications in programming.
Here are some examples:
Applications of Variables
Variables can be used in programming applications such as games, mobile applications, web development, and data science.
Variables store values that are used in a program. For example, in a game, a variable can be used to store the score of a player. In data science, variables can be used to store numerical and categorical data for analysis.
Applications of Functions
Functions can be used in programming applications such as web development, games, and data science.
Functions are reusable pieces of code that perform a specific task. In web development, functions can be used to validate user inputs or to manipulate data. In a game, functions can be used to calculate the player's score or to move the game objects. In data science, functions can be used to perform statistical analysis or to visualize data.
Overall, variables and functions are essential programming concepts that are used in various applications.
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The A-36 steel pipe has an outer radius of 20 mm and an inner radius of 15 mm. If it fits snugly between the fixed walls before it is loaded, determine the reaction at the walls when it is subjected to the load shown.
The reaction at each wall when the A-36 steel pipe is subjected to the given load is 201.4 N.
The given problem involves an A-36 steel pipe with an outer radius of 20 mm and an inner radius of 15 mm that is placed between two fixed walls. The question is asking for the reaction at the walls when the pipe is subjected to a load.
To solve this problem, we need to apply the principles of mechanics and equilibrium. When the pipe is loaded, it will experience both an internal and external force. The internal force is caused by the stress and strain in the material of the pipe, while the external force is caused by the load acting on the pipe.
Assuming that the pipe is in equilibrium, we can say that the sum of all forces acting on the pipe must be equal to zero. Therefore, the reaction at the walls can be determined by balancing the external load with the internal forces in the pipe.
To calculate the internal forces in the pipe, we need to use the formula for the stress in a cylinder:
σ = F / A
Where σ is the stress, F is the force acting on the pipe, and A is the cross-sectional area of the pipe. For a cylindrical pipe, the cross-sectional area is given by:
A = π * (R^2 - r^2)
Where R is the outer radius and r is the inner radius.
Using the given values, we can calculate the cross-sectional area of the pipe:
A = π * (20^2 - 15^2) = 785.4 mm^2
Now, let's assume that the load acting on the pipe is 100 N. To calculate the stress in the pipe, we can use the formula:
σ = F / A = 100 N / 785.4 mm^2 = 0.127 MPa
Finally, we can calculate the reaction at the walls by using the principle of equilibrium:
Reaction at each wall = Load + Internal force = 100 N + 2 * (σ * A) = 100 N + 2 * (0.127 MPa * 785.4 mm^2) = 201.4 N
Therefore, the reaction at each wall when the A-36 steel pipe is subjected to the given load is 201.4 N.
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________ leads the world in percentage of its electricity derived from hydropower.
Norway leads the world in the percentage of its electricity derived from hydropower.
Norway leads the world in the percentage of its electricity derived from hydropower.
According to the International Energy Agency (IEA), hydropower provides over 95% of Norway's electricity generation, making it one of the most hydro-reliant countries in the world.
Norway's abundant supply of hydropower comes from its many rivers and mountainous terrain, which provide an ideal landscape for hydropower generation.
The country has invested heavily in hydroelectric infrastructure, with many large-scale hydropower projects in operation.
The high percentage of electricity derived from hydropower has helped Norway to reduce its greenhouse gas emissions and increase its energy security.
It has also made Norway a leader in renewable energy and a model for other countries looking to transition to a low-carbon energy system.
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World Without Engines: Explain what todays world without engines would be like? How would it change your life? The world? The way we do things? Please write in paragraph format and include introduction, body, and conclusion. DON'T ANSWER UNLESS YOU HAVE THE ANSWER!!!!!!!!! I WILL MARK BRAINLYEST
Answer:
the world will not be the same it will change dramticily and
things will not be the same
Explanation:
Determine the resultant internal loadings at cross sections at points E and F on the assembly.
A total internal loading of -3 kN is present at point E. A total internal loading of +3 kN is present at point F.
Cross section: What is it?
A cross - sectional area is the non-empty crossing of a solid body in three dimensions with a plane in mathematics and physics, or its counterpart in higher dimensions. Multiple parallel cross-sections are produced when an item is cut into different parts . Sometimes referred to as a contour line, the border of a cross-section in three dimensions that is equal to two of the directions, that is, parallel to the plane determined by these axes.
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Rod of steel, 200 mm length reduces its diameter (50 mm) by turning by 2 mm with feed speed 25 mm/min. You are required to calculate the metal removal rate (MRR)
Answer:
Explanation:
The material rate of removal is the total amount of material removed per unit time during any operation. The material rate of removal is usually given by the formula
Material Rate of Removal = Radial Depth of Cut * Axial Depth of Cut * Feed Rate, where
Radial Depth of Cut, RDOC = 25 mm
Axial depth of cut, ADOC = 200 mm
Feed rate, FR = 25 mm/min
On multiplying all together, we will then have our Material Rate of Removal, which is
MRR = 25 mm * 200 mm * 25 mm/min
MRR = 125000 mm³/min
Or we convert it to cm³/min and have
MRR = 125000 mm³/min ÷ 1000
MRR = 125 cm³/min
me that both a triaxial shear test and a direct shear test were performed on a sample of dry sand. When the triaxial test is performed, the specimen was observed to fail when the major and minor principal stresses were 100 lb/in2 and 20 lb/in2, respectively. When the direct shear test is performed, what shear strength can be expected if the normal stress is 3000 lb/ft2
Answer:
shear strength = 2682.31 Ib/ft^2
Explanation:
major principal stress = 100 Ib / in2
minor principal stress = 20 Ib/in2
Normal stress = 3000 Ib/ft2
Determine the shear strength when direct shear test is performed
To resolve this we will apply the coulomb failure criteria relationship between major and minor principal stress a
for direct shear test
use Mohr Coulomb criteria relation between normal stress and shear stress
Shear strength when normal strength is 3000 Ib/ft = 2682.31 Ib/ft^2
attached below is the detailed solution
Can someone help me plz!!! It’s 23 points
Answer:
0.00695 A
Explanation:
µ represents \(10^{-6}\). Multiply this by 6,950.
Stephen works with a group of engineers and is responsible for pricing out parts listed on the drawings for a new product. He is anxious to get the drawings so he can start his work. Conflict may arise due to __________.
organizational structure
limited resources
task interdependence
personality differences
The conflict may arise due to task interdependence.
The conflict may arise due to task interdependence.Stephen works with a group of engineers and is responsible for pricing out parts listed on the drawings for a new product. He is anxious to get the drawings so he can start his work. Conflict may arise due to Task Interdependence.Task interdependence refers to the way that different tasks or work units in an organization rely on one another. In organizations, some work units or teams depend on one another in order to complete their own work tasks. When work units depend on one another for the completion of their work, task interdependence exists.As per the given scenario, Stephen is working with a group of engineers and is responsible for pricing out parts listed on the drawings for a new product. Here, he needs to be completely dependent on the other engineers to get the drawings so he can start his work. If there is any delay or the other engineers do not deliver their part on time, then conflict can arise.
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On a 'wear indicator type ball Joint, what does it mean when the grease fitting boss is flush with the base?
OA. The ball Joint requires lubrication
OB. The ball joint should be replaced
OC. The steering knuckle has loosened from the ball Joint
OD. Nothing, this is how they are when new
For a wear indicator type ball joint, when the grease fitting boss is flush with the base: B. The ball joint should be replaced.
What is a wear indicator?A wear indicator can be defined as a type of technology that is designed to alert and warn a car owner or driver that the car's brake pad is needs a replacement.
Generally, a wear indicator is designed and fitted with a small boss. Thus, this small boss would continuously recede into its housing as wear occurs. However, when it recedes into the cover plate or flush with the base, it simply means that the ball joint should be replaced.
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The * key is used for ____.
If a transformer is operated at rated frequency but voltage higher then the rated value, how do you expect the following quantities to change:-
A) No-load current.
B) Hysterics loss.
C) Eddy current loss.
A vibration system consists of a mass 50 kg, a spring of stiffness 30 kN/m and a damper. The
damping provided is only 20% of the critical value. Determine (a) the damping factor, (b) the
critical damping coefficient, (c) the natural frequency of the damped vibrations, (d) the
logarithmic decrement and (e) the ratio of two consecutive amplitudes.
Answer:
20% of the critical value. Determine (a) the damping factor, (b) the
Explanation:
An aquifer yields the following results from pumping at 0.61m diameter well at 0.303m/s: s= 0.98 in 8 min; s= 3.87 in 24h. Determine its transmissivity.
The transmissivity of the aquifer is approximately 651.4 m2/s as per the given data.
What is transmissivity?Transmissivity is the amount of water that moves through an aquifer at a given velocity and hydraulic gradient.
To determine the transmissivity of the aquifer, we can use the Theis equation:
Q = 2πT[(s2 - s1)/ln(r2/r1)]
where:
Q = pumping rate (m3/s)
T = transmissivity (m2/s)
s2 = initial drawdown (m) after time t2 (s)
s1 = final drawdown (m) after time t1 (s)
r2 = distance from the well to the outer boundary of the aquifer (m)
r1 = distance from the well to the inner boundary of the aquifer (m)
First, we need to convert the given data to SI units:
0.61 m diameter well = 0.2935 m radius well
s1 = 0.98 in = 0.0249 m
s2 = 3.87 in = 0.0983 m
t1 = 0 s (initial drawdown)
t2 = 8 min = 480 s
r1 = 0 m (well)
r2 = unknown
So,
Pumping rate = \(\pi r^2v\) = π\((0.2935 m)^2\)(0.303 m/s) = 0.0267 m3/s
Substituting the values into the Theis equation and solving for T:
0.0267 = 2πT[(0.0983 - 0.0249)/ln(r2/0)]
r2 = 26.68 m
T = 651.4 m2/s
Therefore, the transmissivity of the aquifer is approximately 651.4 m2/s.
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are bonded to the system grounding conductor to provide a low impedance path for fault current that will facilitate the operation of over current devices underground fault conditions.
In order to clear the ground fault, the system bonding jumper offers a low-impedance fault-current path to the electrical supply source.
It refers to service entry equipment and its connected and interconnected parts; in other words, one system conductor is grounded to stabilize the voltage to grounding during normal operation and to reduce voltages caused by lights, line surges, or unintended contact with higher voltage lines. The primary function of this wire is to guarantee the provision of a low-impedance conduit for ground-fault current to return to the utility supply transformer or source and to permit overcurrent device operation during a ground-fault occurrence. When the Code refers to a "low impedance path," The key concept is low opposition or impedance; it refers to a conduit for current to travel on that gives less resistance to current flow, whether it be fault current or normal current.
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What is the hardest part of thermodynamics?
Answer:
I would say that the hardest part about learning Thermodynamics is the generality and abstractness of it all.
Explanation:
A steady green traffic light means
Answer:
Its C. you may proceed, but only if the path is clear
Explanation:
I just gave Quiz and its correct
what is it called when you lose mechanical advantage of proportional flexion by over-flexing a joint or joints?
The condition is called hyperflexion when you lose the mechanical advantage of proportional flexion by over-flexing a joint or joints.
Hyperflexion refers to an excessive flexion or movement in the joint, typically leading to injuries. Hyperflexion is a term used to describe a kind of joint movement. It can be viewed as an over-flexion in which the joint is hyperextended beyond its normal range of motion, leading to injury.
Hyperflexion is a common cause of injuries, particularly in sports such as football, soccer, basketball, and other contact sports. The most prevalent of these injuries are sprains, strains, and dislocations. The ankle, knee, elbow, and shoulder are some of the most frequent areas affected by hyperflexion. Hyperflexion can result in joint pain, stiffness, swelling, and even the inability to move the joint. Therefore, individuals who participate in high-risk activities must take care not to over-flex their joints in order to prevent injuries.
In conclusion, Hyperflexion, also known as over-flexion, is a kind of joint movement that can lead to injuries such as sprains, strains, and dislocations. It can cause joint pain, stiffness, swelling, and even immobility of the joint. Therefore, individuals who participate in high-risk activities must take precautions to avoid over-flexing their joints to avoid injury.
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True or false: You can create a network with two computers.
Answer
True
Simplify the expression below:
313 + 12 =
ANSWER :
325
Explanation:
313 + 12 = 325
The displacement of a particle which moves along the s-axis is given by; = (−2 + 3)−0.5 Where s is in meters and t is in seconds. Determine the time at which the acceleration is zero.
The time at which the acceleration is zero is given as 4.66 seconds
How to solve for the timeFirst we have to solve for the velocity. To do this, we would have to take the derivative.
\(s = e^-0.5t (3 t - 2)\)
Then velocity =
\(ds/dt = e^-0.5t (4 - 1.5 t)\)
The acceleration can be gotten by finding the second derivative
\(a = dv/dt = e^-0.5t (.75 t - 3.5)\)
To find t at acceleration = 0
We have
\(0 = e^-0.5t (.75t - 3.5)\)
This gives t to be
t = 4.66 sec
Complete questionThe displacement of a particle which moves along the s-axis isgiven by
s = (-2+3t)e^(-0.5t), where s is in meters and t is inseconds. Plot the displacement, velocity and acceleration versustime for the first 20 seconds of motion. Determine the time atwhich the acceleration is zero.
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__________ is not considered a driving distraction.
Answer:
Thank you and you're welcome
Explanation:
mark me brainliest
QUESTION 5
In the Library tab on TIS, Repair Manuals are found under
Select the correct option and click NEXT.
Service Information
In the Library tab on TIS, Repair Manuals are found under
In the Library tab on TIS (Technical Information System), Repair Manuals can typically be found under the "Service Information" or "Repair Information" section.
How to explain the informationThese manuals provide detailed instructions and procedures for diagnosing, repairing, and maintaining vehicles. They contain valuable information such as technical specifications, wiring diagrams, troubleshooting guides, and step-by-step instructions for various repairs and maintenance tasks.
It's important to note that the organization and layout of TIS may vary depending on the specific software or platform being used, so the exact location of Repair Manuals may differ slightly.
In the Library tab on TIS (Technical Information System), Repair Manuals can typically be found under the "Service Information" or "Repair Information" section.
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The denity of a certain type of jet fuel i 775 kg/m3. Determine it pecific gravity and pecific weight
The correct answer is Specific weight: w = [weight ÷ volume] = [9N ÷ 0.001m³] = 9000N/m³Density: w = [ × g] Where, g = acceleration due to gravity = 9.81m/sec². Specific gravity: G = [density of liquid ÷ density of water] As you know, The density of water = 1000kg/m³.
The density of a substance is divided by the density of water at 4 degrees Celsius to determine its specific gravity. The density of the substance and the density of the water must be represented in the same units for the calculation.distinguishes While specific weight has dimensions, specific gravity is a dimensionless number. The gravitational field has no effect on a material's specific gravity, but it does have an effect on a material's specific weight. A substance's "Specific Gravity" is determined by dividing its mass by the mass of an equivalent volume of water at the same pressure and temperature.
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a fitting is defined as an accessory, such as a locknut, bushing, or other part of a wiring system, that is intended primarily to perform a(n) ? rather than an electrical function.
A fitting is primarily intended to perform a mechanical function, such as connecting or securing wires, cables, or other components in a wiring system. Although fittings may contribute to the overall performance and safety of the electrical system, their primary purpose is to facilitate installation, maintenance, and repair processes.
Common types of fittings include couplings, connectors, adapters, terminals, and strain reliefs, among others. These components may be made of various materials, such as plastic, metal, or rubber, and come in different shapes and sizes to accommodate specific wiring configurations and environmental conditions.
Proper selection, installation, and maintenance of fittings are essential for ensuring the overall reliability and safety of the wiring system.
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Un estudiante inventa cierta escala de temperatura a presión normal y cumple con los siguientes parámetros: punto de congelación del agua es -60 ˝B, y su punto de ebullición es -10 ˝B. Calcule la temperatura Kelvin que corresponda a 0 ˝B. porfa:(
Answer:
La temperatura Kelvin que corresponde a 0 ºB es 493.15 Kelvin.
Explanation:
Sabemos que el punto de congelación del agua es 273.15 Kelvin y, según el enunciado, -60 ºB. Asimismo, el punto de ebullición de esta sustancia es 373.15 Kelvin y, según el enunciado, -10 ºB. Asumiendo una relación lineal, podemos determinar la temperatura en escala Kelvin equivalente a 0 ºB mediante la siguiente extrapolación:
\(T = 373.15\,K+\left[\frac{373.15\,K-273.15\,K}{-10\,^{\circ}B-(-60\,^{\circ}B)}\right]\cdot [0\,^{\circ}B-(-60\,^{\circ}B)]\)
\(T = 493.15\,K\)
La temperatura Kelvin que corresponde a 0 ºB es 493.15 Kelvin.
if the endpoint is not on a defined plane you need to create a reference plane. T/F
True. If the endpoint is not on a defined plane, you need to create a reference plane.
In computer-aided design (CAD) software, reference planes are used to provide a stable and predictable reference point for creating and modifying geometry. Reference planes are typically created by defining a set of points or lines that define the plane, which can then be used as a guide for creating new geometry or modifying existing geometry.
If an endpoint is not on a defined plane, it can be difficult to accurately create or modify geometry. In this case, it may be necessary to create a reference plane to provide a stable and predictable reference point. This can be done by selecting the necessary points or lines and defining them as a reference plane.
By using reference planes, CAD designers can create and modify geometry with greater accuracy and precision. This is especially important when working with complex geometries or when creating parts that need to fit together with other parts. Overall, the use of reference planes is a fundamental aspect of CAD design that helps ensure accuracy and consistency in the design process.
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Find a steady-state expression for V2 when a=1. Express your answer in polar form to three significant figures with the magnitude in V and the phase shift in degrees. The impedance seen by the source is given by ZIN=RIN+jXIN=V1I1. Find the value of a for which the source resistance, Rs, is equal to the resistance seen by the source, RIN. Express your answer to three significant figures. Find the value of a for which the magnitude of the source impedance, |Zs|, is equal to the magnitude of the impedance seen by the source, |ZIN|. Express your answer to three significant figures.
The problem in circuit analysis involves finding the steady-state expression for V2, determining the value of a for which Rs = RIN, and finding the value of a for which |Zs| = |ZIN|.
What does the given problem in circuit analysis involve?This problem involves circuit analysis and requires the calculation of various parameters for a two-port network.
To find the steady-state expression for V2 when a=1, you would likely need to use circuit analysis techniques to determine the voltage gain of the network. The answer is then expressed in polar form with the magnitude in volts and the phase shift in degrees.
Next, the problem asks to find the value of a for which the source resistance, Rs, is equal to the resistance seen by the source, RIN. This would involve using the given impedance equation ZIN = RIN + jXIN and solving for the value of a that makes Rs = RIN.
Finally, the problem asks to find the value of a for which the magnitude of the source impedance, |Zs|, is equal to the magnitude of the impedance seen by the source, |ZIN|. This would involve finding the expressions for both |Zs| and |ZIN|, setting them equal to each other, and solving for a to obtain the desired value to three significant figures.
Overall, this problem requires a strong understanding of circuit analysis and the properties of two-port networks.
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Why Won't My Ebook Load
how often should clients return to the salon for maintenance on light cured gel enhancements?
Clients who have light cured gel enhancements on their nails should typically plan on returning to the salon for maintenance every 2-3 weeks.
This timeframe allows the technician to assess the overall health of the client's natural nails, as well as the durability and strength of the enhancements.
During the maintenance appointment, the technician will file and shape the enhancements, remove any lifting or overgrown gel, and apply a new layer of gel as needed to keep the nails looking fresh and strong. The maintenance appointment is also a good time for the technician to check for any signs of infection or damage, and to recommend any changes in the client's home maintenance routine to improve the health of the nails.
It's important for clients to follow the aftercare instructions provided by the technician, including regular moisturizing and avoiding harsh chemicals, to ensure the longevity and overall health of their gel enhancements.
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