Enforcing referential integrity in Access prevents the entry of invalid data into tables and maintains the consistency and validity of data relationships.
The main reason to enforce referential integrity in Access is to keep invalid data from being entered into a table. Referential integrity ensures that relationships between tables are maintained and that any changes made to data are consistent and valid.
By enforcing referential integrity, Access prevents the creation of orphan records or records with invalid foreign key values. It helps maintain data integrity by ensuring that the data in related tables remains consistent. While referential integrity also helps in maintaining database safety and enabling record deletion, its primary purpose is to ensure the integrity and validity of data relationships within the database.
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to check your prediction it is necessary to conduct an experiment, where you will account for an actual bicycle spoke undergoing an uniaxial non-zero mean tensile stress together with an alternating stress. on paper, design your own experiment, which should provide appropriate cyclic stress ranges resulting in fatigue failure. detail the geometry of the sample you intend to use, how it would be mounted on the instron machine, and how the machine would be set up and operated. this is an open-ended exercise, and there is no single correct answer. in designing the experiment, feel free to choose from various functionalities and limitations of the instron machine you have seen over your eight weeks of experience operating it. provide all experimental parameters (instron settings) including speed. also estimate how long your test would run given your estimated fatigue life found in the analysis part above.
Design is evaluated for fatigue strength or endurance strength using Goodman criteria. When compared to the general assumed endurance stress of steel, 0.5 ultimate strength, the design was found to be safe. The number of fatigue failure cycles was calculated using the Basquin's equation.
What is stress?Stress is a force per unit area within materials that results from externally applied forces, uneven heating, or permanent deformation and allows for accurate description and prediction of elastic, plastic, and fluid behavior in physical sciences and engineering. A stress is defined as the product of a force divided by its area.
There are several types of stress. Normal stress is caused by forces perpendicular to a material's cross-sectional area, whereas shear stress is caused by forces parallel to and within the plane of the cross-sectional area.
Tensile stress refers to the normal stress caused by tension. When the two forces are reversed, the normal stress is known as compressive stress.
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Answer each of the following questions with a tight big-oh asymptotic bound. Justify with algorithmic reasoning.
1. A priority queue, UnsortedMPQ, is implemented based on an unsorted array. What is the running time of the operation which retrieves the minimum value?
2. Dijkstra's algorithm is implemented based on this unsorted minimum priority queue. What is the running time of this implementation of Dijkstra's algorithm?
The overall time complexity of Dijkstra's algorithm with an unsorted minimum priority queue becomes O((|V| + |E|) ˣ n), where |V| is the number of vertices, |E| is the number of edges, and n is the number of elements in the priority queue.
What is the running time of retrieving the minimum value from an unsorted array-based priority queue, and what is the running time of Dijkstra's algorithm implemented using an unsorted minimum priority queue?The running time of the operation that retrieves the minimum value from an unsorted array-based priority queue, UnsortedMPQ, is O(n), where n is the number of elements in the priority queue.
In an unsorted array-based priority queue, the elements are not in any specific order, and there is no efficient way to directly access the minimum value.
Therefore, to retrieve the minimum value, the algorithm would need to iterate through the entire array, comparing each element with the current minimum value.
This process requires checking all n elements, resulting in a linear time complexity of O(n).The running time of Dijkstra's algorithm implemented using an unsorted minimum priority queue is O((|V| + |E|) ˣ n), where |V| is the number of vertices, |E| is the number of edges, and n is the number of elements in the priority queue.Dijkstra's algorithm requires repeatedly extracting the minimum element from the priority queue and performing relaxation on its adjacent vertices.
In the case of an unsorted minimum priority queue, the extraction of the minimum element would take O(n) time, as explained in the previous question.
The relaxation operation, which updates the distances and priorities of vertices, typically takes O(1) time per edge.
Since the minimum priority queue is unsorted, the algorithm needs to iterate through all n elements to find the minimum during each extraction step.
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Q.13 In order to produce maximum starting torque in a split-phase motor, how many degrees out of phase should the start- and run-winding currents be with each other?
Select one:
A. 180°
B. 0°
C. 120°
D. 90°
Answer:
D. 90 degrees.
Explanation:
Torque is a rotational force which moves an object in other direction. There should be 90 degrees out of phase to start, run winding currents with each other. Torque is produced by the rotational motion of an object. The angle of the object must be 90 degrees set in order to create torque.
you must adjust your driving and speed control when you cannot see
When we cannot see or have less visibility, we must adjust our driving and speed control. We need to control our speed by observing the conditions and recognizing what they mean for safe driving. This implies that we must reduce our speed and even come to a halt when the situation demands it.
Speeding in fog, smoke, or low-light conditions can be extremely dangerous. It's critical to keep a safe distance from the automobile in front of you. Inadequate visibility may reduce the driver's ability to react to a sudden obstacle or potential danger.
You must be cautious while driving in foggy or other low visibility conditions, and it is essential to know what to do if you cannot see while driving, for example
1. Slow down or come to a halt if necessary
2. Use low beam headlights or fog lights if your automobile is equipped with them.
3. Avoid high beam headlights since they will only reflect back at you, reducing your visibility.
4. Allow more distance between your car and the car in front of you.
5. If possible, follow a vehicle's taillights, but don't get too close to it.
6. Stay to the right of the road.
7. Look for the road's edge markings or a vehicle in front of you that can guide you.
8. Avoid changing lanes or passing other automobiles because it will increase your risk of collision.
9. When you cannot see, never stop in the middle of the road since it can lead to a collision or crash.
10. Remember that your car's headlights are not enough to provide you with the clarity you require. Therefore, it is critical to lower your speed and remain cautious.
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The received signal is the sum of the direct and ground-reflected signals and since they travel at different distances they have different time delays. If the transmitted signal is s(t) then the received signal is x t s t t s t t ( ) ( ) ( ) = − + − 1 2 The amount of delay (in seconds) can be computed for both propagation paths, using the fact that the time delay is the distance divided by the speed of light (3 10 × 8 m/sec). Determine t1 and t2 as a function of d1.
Answer:
duuuuuuuuuuuuuuuuuhhhhhhhhhhhhhhhhhhhhhhhhhhhhh
Explanation:
duhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhh
Metal and dirt are not considered contaminants to oil. a) trueb) false
Answer:
False, metal and dirt ARE considered contaminants!
Explanation:
i ride motocross! trust me!
The statement "Metal and dirt are not considered contaminants to oil" is false. The correct option is B.
What are metals?Metals are chemical elements that have high thermal and electrical conductivity, and they are soft and ductile. Magnesium, helium, gold, and silver are metals. They are very reactive, and they contain both gas and solids.
Oil and dirt are considered contaminated to oil. It causes a chemical reaction in the oil, that's why it is a problem with contamination of the oil. It causes reactions like depletion or oxidation.
In motor oils, there are many chances of pollution with dirt and metals, and other oxides. This causes debris and leads to degradation of work of lubrication of engine parts, which causes friction.
Thus, the statement is true. The correct option is B.
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A) Estimate the concentration in (μg/m 3
) of SO 2
at the Atascadero Community Health Center's HVAC air intakes located on the roof (12.3 m above ground) as a results of emissions from the stack shown on the map. Assume that the Gaussian Plume equation with reflection represents the plume. The system is described by the following: physical stack height =13.6 m, exit gas velocity =8.7 m/s, stack diameter = 2.0 m, stack temperature =132 ∘
C, ambient temperature =22.1 ∘
C, sunny day, wind velocity at sack height =5.44 m/s, and stack emission rate =1300 g/s. For this same problem, please answer the following questions: B) For the stack in part A, If the pollutant being emitted from the stack is sulfur dioxide (MW = 64.066 g/mole ), what is the sulfur dioxide concentration in ppm at the Atascadero Community Health Center HVAC air intakes. C) For the stack in part A, if the stack gas velocity increases, the plume rise would most likely . Assume all other factors do not change. 1. increase 2. stay the same 3. decrease D) For the stack in part A, if the emission rate was doubled, the concentration at the receptor will - Assume all other factors do not change. 1. double 2. stay the same 3. decrease 4. increase 5. will be halved
The concentration of sulfur dioxide in ppm at the Atascadero Community Health Center HVAC air intakes is approximately 0.307 ppm.
Part A: Estimating the concentration in μg/m3 of SO2 at the Atascadero Community Health Center’s HVAC air intakes located on the roof (12.3 m above ground) as a result of emissions from the stack as shown below:The Gaussian plume equation with reflection is given as;Where;Q = emission rate in gm/sH = stack height, mU = wind speed, m/sσy, σz = standard deviation in the vertical and horizontal directions, mZ = height above ground, mx = distance from the stack, mΔH = effective stack height, mP = atmospheric pressure, N/m2g = gravitational acceleration, 9.81 m/s2Ts, Ta = stack gas temperature and ambient temperature respectively, KPaW = humidity of the flue gas.The following values have been given;Q = 1300 gm/sH = 13.6 mU = 5.44 m/sσy, σz = 1.63* (x/H)1/3 = 1.63 * (12.3/13.6)1/3 = 1.22 mZ = 12.3 mx = 0ΔH = 0.2 * H = 2.72 mP = 101.3 kPa (assume standard pressure)g = 9.81 m/s2Ts = 132+273 = 405 KTa = 22.1+273 = 295.1 KW = 0.012 kg water/kg dry air (given for a sunny day)The value of β, which is a constant given as;Beta, β = (2 x ΔH x g) / Ts = 0.0042/s.To convert g/s to μg/m3, we will use the following formula;1 gm/m3 = 1000 μg/m3.Quality check;Q = 1300 g/s = 1.3 kg/s which is similar to 1.3*3600 = 4680 kg/hr. Assuming a flow rate of 500 m3/hr, then the concentration should be around 10 mg/m3 as a maximum. Our answer should not be greater than this value.Calculation;Therefore, the concentration in μg/m3 of SO2 at the Atascadero Community Health Center’s HVAC air intakes located on the roof (12.3 m above ground) is approximately 189 μg/m3. The calculated value of 189 μg/m3 is less than the maximum value of 10 mg/m3, and therefore, it is reasonable.Part B:Sulfur dioxide, SO2, MW = 64.066 g/mol. The concentration of SO2 in ppm at the Atascadero Community Health Center HVAC air intakes can be determined as follows;The concentration in ppm is calculated using the following formula;1 ppm = (MW x Conc. in μg/m3) / (24.45 x temperature in K / P)Substituting the known values;T = 295.1 K (temperature)P = 101.3 KPa (pressure)MW = 64.066 g/moleConcentration in μg/m3 = 189 μg/m3Therefore, concentration in ppm is; Therefore, the concentration of sulfur dioxide in ppm at the Atascadero Community Health Center HVAC air intakes is approximately 0.307 ppm.Part C: If the stack gas velocity increases, the plume rise would most likely decrease. Assume all other factors do not change. Therefore, the answer is option 3, decrease.Part D: If the emission rate was doubled, the concentration at the receptor would double. Assume all other factors do not change. Therefore, the answer is option 1, double.
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Of the following, which are the most important parts on any vehicle?
a) wheel bearings
b)Tires
c) windshield wipers
d) Spurving bearings
Answer:
tires
Explanation:
without tyres you can not drive.
Answer:
d spurving bearings
Explanation:
because IN a car you can't move without them.in the old days they were using wood as tires
What causes variation in altimeter settings between weather reporting points ?
Altimeter settings vary between weather reporting points because of uneven heating of the Earth's surface.
What drives the weather?Around the entire planet, there is uneven heating of the Earth and, by extension, of the air surrounding it. One square foot of sunrays is distributed over a much larger area than one square foot of surface, regardless of where you are north or south of the equator. Because of the lower concentration of sunrays, less heat is radiated over a given surface area; consequently, less atmospheric heating occurs in that region.
Because the warmer air tends to rise (low pressure) and the colder air tends to settle or descend (high pressure) to replace the warmer air that is rising, the uneven heating of the Earth's atmosphere results in a large air-cell circulation pattern (wind). Altimeter settings between weather reporting points will also be affected by this uneven heating, which also causes variations in pressure.
This large, straightforward air-cell circulation pattern is significantly distorted by the Coriolis force as the Earth rotates.
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The yield stress for a zirconium-magnesium alloy is σY = 15. 3 ksi. A machine part is made of this material and a critical point in the material is subjected to in-plane principal stresses σ1 and σ2 = −0. 54 σ1.
Determine the magnitude of σ1 that will cause yielding according to the maximum-shear-stress theory
The magnitude of σ1 that will cause yielding according to the maximum-shear-stress theory is 9.94 ksi.
Yield stress for the zirconium-magnesium alloy, σY = 15.3 ksi
In-plane principal stresses are σ1 and σ2 = −0.54σ1
To find the maximum shear stress theory, the equation used is τ_max=1/2(σ1-σ2)
The maximum shear stress theory states that yielding begins when the maximum shear stress in a part equals or exceeds the shear strength of the material. It is represented as τ_max = τ_yield
Where τ_max is the maximum shear stress in a part and τ_yield is the shear strength of the material. In-plane principal stresses are σ1 and σ2 = −0.54σ1
Let us replace the value of σ2 in terms of σ1σ2 = −0.54σ1,σ1 = 1.85σ2
Substitute the values in the τ_max=1/2(σ1-σ2)
τ_max=1/2(σ1-(-0.54σ1))
τ_max=0.77σ1
Now, τ_yield= σY/2 = 7.65 ksi
Therefore, 0.77σ1 = 7.65
σ1 = 9.94 ksi
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You are about to perform PMCS on your M1114? What resource should you use for the procedures and instructions for performing PMCS?
The resources and instructions that should be used for the procedures of performing PMCS are:
Operator's manualsSafety cautions and warnings.Fording kitHeating and cooling systems.What is PMCS?PMCS is an acronym for preventive maintenance checks and services and it can be defined as the maintenance, checks, and services that are typically performed before, during, and after the use of any type of military equipment such as:
M1114M1151M1123Basically, the resources and instructions that should be used for the procedures of performing PMCS are:
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Because my English is very weak. I am trying in a simple way to explain how the Geiger-Muller counter and Scintillation detector work.
I need someone who understands how these counters work and helps me arrange my explanation in an academic way (please use my explanation)
------ ----- ------ ----- ----- ------ ---- ---- ---- ---- ---- ---- ---- ---- ---- ----
The Geiger-Muller counter consists of:
- Tube (cathode)
- Gas inside the tube
- Tungsten wire (Anode)
- Resistance
- capacitor
- Counter
The method of work:
When the radiation enters the tube, ionization of the gas atoms occurs (called primary ionization), and then the electron goes to the positive electrode. During the movement of the electron to the anode, other ionizations occur (called secondary ionizations), the ions move to the negative electrode and the electrons go to the positive electrode, resulting in an electric current that is discharged through pulses that are read through a counter.
----- ----- ----- ----- ----- ----
----- ----- ----- ---- ----- -----
The Scintillation detector consists of:
Scintillator Material
Photomultiplier tube
- Photocathode
- Dynode
- Anode
The method of work:
When radiation falls on the scintillator material, it emits light photons of low energy. These light photons fall on the photocathode. This results in the emission of primary photoelectrons. These photoelectrons are doubled by increasing voltage electrodes (dynode). Finally, the photoelectrons fall on the anode connected to an electronic counter, from which the type of pulse current of the associated signal can be observed.
The Geiger-Muller counter and Scintillation detector are two different types of radiation detectors that are used to detect ionizing radiation.
How the two detectors work?The Geiger-Muller counter is made up of a cathode tube, gas inside the tube, a tungsten wire anode, resistance, a capacitor, and a counter. When ionizing radiation enters the tube, primary ionization occurs, which leads to the ionization of gas atoms.
The electrons that result from this ionization move to the positive electrode.The movement of the electrons from the cathode to the anode generates more ionizations, known as secondary ionizations
. The positively charged ions from the secondary ionizations move to the negative electrode, while the electrons generated from these ionizations move towards the positive electrode. This results in an electrical current that is discharged through pulses that are read through a counter. The number of pulses per second corresponds to the amount of radiation that is detected.
The scintillation detector is made up of a scintillator material, a photomultiplier tube, a photocathode, a dynode, and an anode. When ionizing radiation falls on the scintillator material, it emits low energy light photons. These light photons then fall on the photocathode, which leads to the emission of primary photoelectrons.
These photoelectrons are doubled by increasing voltage electrodes known as dynodes. Finally, the photoelectrons fall on the anode connected to an electronic counter, from which the type of pulse current of the associated signal can be observed. The number of pulses generated per second corresponds to the amount of radiation that is detected.
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This occurs when a layer of water builds between the wheels of the vehicle and the road surface, leading to a loss of traction that prevents the vehicle from responding to control inputs.
Aquaplaning or hydroplaning by the tires of a road vehicle, aircraft, or other wheeled vehicle happens when a coating of water builds between the wheels of the vehicle and the road surface, leading to a failure of traction that controls the vehicle from responding to govern inputs.
What is Aquaplaning or hydroplaning?Aquaplaning or hydroplaning by the tires of a road vehicle, aircraft, or other wheeled vehicle happens when a coating of water builds between the wheels of the vehicle and the road surface, leading to a failure of traction that controls the vehicle from responding to govern inputs. Aquaplaning, also understood as hydroplaning, is a situation in which standing water, slush, or snow, drives the moving wheel of an aircraft to lose contact with the load-bearing surface on which it stands rolling with the impact that braking action on the wheel stands not effective in decreasing the ground speed of the aircraft.
When driving on wet roads at increased speed, a wedge of water can create up between the tire and the road surface. The tire loses road contact, and the vehicle stands no longer responsive to steering. This phenomenon exists understood as aquaplaning or hydroplaning.
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Explain how the horsepower of a sports car can be improved.
Answer:
with turbo or nos
Explanation:
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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A circuit has a 12v power supply and a 1k ohm resistor. what is the current?
The current is I=12/1000, which simplifies to 0.012 amps or 12 milliamps.
Plugging these values into the equation, we get I=12/1000, which simplifies to 0.012 amps or 12 milliamps. It's important to note that the current in a circuit is dependent on the voltage and resistance in the circuit. If either of these values were to change, the current would also change accordingly. Additionally, it's important to ensure that the components in the circuit can handle the amount of current that is flowing through them to prevent damage or overheating.
Current in electric circuits refers to the flow of electric charge. It is the rate at which electric charges, typically electrons, move through a conductor. Current is measured in amperes (A) and is represented by the symbol "I". In a closed circuit, where there is a complete path for the electric charges to flow, a voltage difference (potential difference) is applied across the circuit.
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5. The maximum scaffold height not requiring toeboards is 20 feet.
A. True
B. False
people who live entirely within an urban environment ________.
People who live entirely within an urban environment are referred to as urbanites or city dwellers.
Urbanites are those who live in urban areas or cities, mainly characterized by a high density of human-made structures such as buildings and transportation systems.
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1) Data showing a positive correlation between grade level and height for all students in a school district
2) Data from a research project that measured the cortisol levels of mice over time
3) Data from a soil composition test that indicate the proportions of water, minerals, and organic matter in a particular soil sample
4) Data showing mercury levels in different species of fish
The graphs 1) Scatter plot, 2) Line graph, 3) Pie chart, and 4) Bar graph can all be used to depict data.
What does a r calculator for the correlation coefficient do?The strength of a linear relationship between two variables is measured using the Pearson correlation coefficient, where r = 1 signifies a perfect positive correlation and r = -1 denotes a perfect negative correlation.
How many different correlation formulas exist?This number is calculated using at least three different formulas, and these formulas serve as a kind of representation of several approaches to the issue. However, each of the various methods yields the same result for r.
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Of the cost reduction strategies for workers' compensation mentioned in the required readings, which one do you think would work best in an industry you work in or an industry you are interested in working in? Why do you think this method is the best for your chosen industry?
In industries together with production, we want people to address the manufacturing of merchandise and the usage of heavy machinery.
What is the painting situation?In such painting situations, people are at risk of injuries, and this prices the maximum for the company. So so that you can put into effect value discount is such conditions we want to have right coincidence cowl plans for the people and make sure all of the protection precautions are taken withinside the factory.
The people have to be properly educated on using protection measures and in case any injuries arise we have to have coverage claims in order that we not want to make investments extra cash and we also can offer protection and protection to the people. This approach is excellent for this enterprise due to the fact regardless of what number of precautions we take people are uncovered to fitness risks and as a result having the right coverage insurance is a superb value discount strategy.Read more bout the compensation :
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+ The single bridge rectifierop righas to deliverade current
Of 30A at a dc output Voltage of 100v. if it's supplied by a simple
Phase transformer of ratio 4il.compute the premary and secondary
Voltages and currents. Also calculate the ripple factor for the load
Voltape wave form. Assume the load is highly inductive.
AD2
Eve Ymsinut
load
ADA
DA
93
Answer:
you are so smart
Explanation:
i have 8 cARS
Is each of the following class identifiers (a) legal and conventional, (b) legal but unconventional, or (c) illegal? a. associationRules
b. void
c. Golden Retriever
d. Invoice
e. 36542ZipCode
f. Apartment
g. Phone#
h. 8888
i. displayTotal()
j. Accounts_Receivable
According to the question, the following class identifiers are:
a. legal and conventional
b. legal and conventional
c. legal but unconventional
d. legal and conventional
e. legal but unconventional
f. legal and conventional
g. illegal
h. illegal
i. legal and conventional
j. legal and conventional
What is class identifiers?
Class identifiers are used to identify a class in object-oriented programming language. They are also known as class names and they are used to establish a connection between the program code and the class itself. They are used to represent the class in the code, and they are also used to identify the class in the code. They are different from identifiers of variables, which are used to identify variables in the code. Class identifiers must be unique and should not be confused with any other class identifiers or variable identifiers.
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A thin plate . moves between two parallel, horizontal, stationary flat surfaces at a constant
velocity of V m/s. The two stationary surfaces are spaced 8 cm apart, and the medium between
them is filled with oil whose viscosity is 0.9 Ns/m2
. The part of the plate immersed in oil at
any given time is 2-m long and 0.5-m wide. If the plate moves through the mid-plane between
the surfaces, determine the force required to maintain this motion.. ρwater=1000 kg/m3
. g=9.81
m/s2
v=10.5 m/s
.
The magnitude of shear forces acting on as mentioned in the above case will be 600N .
What is shear force?
Shear force is defined as the force acting on a material in a direction opposite to its extension and parallel to a body's planar cross section.
a) The magnitude of shear forces acting on the upper and lower surfaces of the plate are:
F(shear,upper)=τ(w,u)As
F(shear,upper)=μAs\(mod\)(du/dy)
F(shear,upper)=μAs (V-0)/h1 (V=5)
=(0.9)(2×0.5)(5-0)/10⁻²
=450N
similarly,
F(shear,lower)=μAs (V-0)/h2
=(0.9)(2×0.5)(5-0)/3×10⁻²
=150N
Totally, F=F(shear,upper)+F(shear,lower)
=450N+150N
=600N
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1) I love to swim. 2) A few years ago, my new year's resolution was to become a faster swimmer. 3) First, I started eating better to improve my overall health. 4) Then, I created a training program and started swimming five days a week. 5) I went to the pool at my local gym. 6) To measure my improvement, I tried to count my laps as I was swimming, but I always got distracted and lost track! 7) It made it very hard for me to know if I was getting faster. 8) This is a common experience for swimmers everywhere. 9) We need a wearable device to count laps, calories burned, and other real-time data. Summarey of the story
1. You use
switches when you
have two switches controlling one or more
lights.
single pole
4-way
2-way
3-way
If gear X turns clockwise at constant speed of 20 rpm. How does gear y turns?
Answer:
Gear Y would turn Counter-Clockwise do to the opposite force created from gear X.
Hope this helped! Have a great day!
which of the following is not a performance technique developed by stanislavski? multiple choice through line biomechanics concentration and observation magic if
Through line biomechanics concentration and observation magic if International Society of Biomechanics in sports.
What is "International Society of Biomechanics in sports"?The recently developed professional association in biomechanics is the "International Society of Biomechanics in sports".It is the professional association in bio-mechanics.
It is an international society which is dedicated to bio-mechanics to sports. The main purpose of the society is to understand and study the human movement and its relation to sport bio-mechanics. They provide information regarding bio-mechanics in sports.
Therefore, Through line biomechanics concentration and observation magic if International Society of Biomechanics in sports.
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The ______________________________ instruction transfers either a number or content of a register to a destination register.
The MOV instruction transfers either number or content of a register to a destination register.
What is mov education?The mov instruction replicates the data item referred to by its second operand (i.e. register contents, memory contents, or a constant value) into the location directed to by its first operand (i.e. a register or memory). While register-to-register moves are possible, natural memory-to-memory moves are not.
What is mov in opcode?
"mov" is an instruction, encoded with the system code or "opcode" 0xb8. Since mov takes an opinion, the next 4 bytes are endless to move into eax. The opcode 0xb9 carries a constant into ecx. 0xba carries a constant into edx.
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Rainfall rates for successive 20-min period of a 140min storm are 1.5, 1.5, 6.0, 4.0, 1.0, 0.8, and 3.2 in/hr, totaling 6.0in. Determine the rainfall excess during successive 20-min periods by the NRCS method. The soil in the basin belongs to group A. It is an agriculture row crop land with contoured pattern in good hydrologic condition. The soil is in average condition before the storm (moisture condition II).
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Answer:
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