We created a program that alternates between the localization, steering, and navigation modules. The navigation module implements a routing algorithm and selects the global route.
What is program?A program is described as a set of instructions that a computer executes to do a certain activity. Study programs are made to fit your specific learning needs and get you ready for more education, training, or work.
Navigation modules are defined as the interactions that let users move between, inside of, and outside of the various pieces of content in your app. Extra parts are frequently included in the modules to make the sensor easier to use.
Thus, we created a program that alternates between the localization, steering, and navigation modules. The navigation module implements a routing algorithm and selects the global route.
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Kinetic energy kx is 1/2mvx2. evaluate the mean square kinetic energy < kx2 >in one dimension for n2 molecules at 25°c (hint: in the derivation of < kx2 > use f (vx.) )
The mean kinetic energy of the N₂ molecules at 25 °C is 3593.519 joules per mole.
How to estimate the mean square kinetic energy associated to gas molecules
Let suppose that the gas sample behaves ideally. The Graham's law establishes a connection between the ideal gas model and the kinetic theory of gases.
In this question we need to use this law to estimate the average kinetic energy (Kₐ), in joules per mole, of a diatomic gas (N₂), which is defined by the following expression:
\(K_{a} = \frac{3}{2}\cdot R_{u}\cdot T\) (1)
Where:
\(R_{u}\) - Ideal gas constant, in joules per mole-Kelvin.\(T\) - Temperature, in KelvinIf we know that \(R_{u} = 8.314\,\frac{J}{mol\cdot K}\) and \(T = 288.15\,K\), then the average kinetic energy is:
\(K_{a} = \frac{3}{2}\cdot \left(8.314\,\frac{J}{mol\cdot K} \right) \cdot (288.15\,K)\)
\(K_{a} = 3593.519\,\frac{J}{mol}\)
The mean kinetic energy of the N₂ molecules at 25 °C is 3593.519 joules per mole. \(\blacksquare\)
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A total of 10 rectangular aluminum fins (k = 203 W/m·K) are placed on the outside flat surface of an electronic device. Each fin is 100 mm wide, 20 mm high and 4 mm thick. The fins are located parallel to each other at a center-to-center distance of 8 mm. The temperature at the outside surface of the electronic device is 72°C. The air is at 20°C, and the heat transfer coefficient is 80 W/m^2·K. Determine:
a. the rate of heat loss from the electronic device to the surrounding air
b. the fin effectiveness.
Answer:
a. the rate of heat loss from the electronic device to the surrounding air
A total of 10 rectangular aluminum fins (k = 203 W/m·K) are placed on the outside flat surface of an electronic device. Each fin is 100 mm wide, 20 mm high and
4 mm thick. The fins are located parallel to each other at a center-to-center distance of 8 mm. The temperature at the outside surface of the electronic device is 72°C. The air is at 20°C, and the heat transfer coefficient is 80 W/m2·K. Determine (a) the rate of heat loss from the electronic device to the surrounding air and (b) the fin effectiveness.
Explanation:
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This might count as engineering, I'm not sure as this is IT
An ordered collection of data elements stored and accessed in a program is called what?
Group of answer choices
Variables
List
Locale
Parameters
Answer:
10.5
Explanation:
Convert to an equation for example P%* X=Y
P is 7.5% X is 140, so the equation Is 7.5 percent * 14= Y
convert 7.5% Into a decimal by removing the percent sign and deviding by 7.5/100= 0.075
Substitute 0.075 for 7.5% in the equation: 7.5%*140=Y becomes 0.075*140= 10.5
A hydrogenation catalyst is prepared by soaking alumina particles (100-150 mesh size) in aqueous NiNO3 solution. After drying and reduction, the particles contain about 7 wt% NiO. This catalyst is then made into large cylindrical pellets for rate studies. The gross measurements for one pellet are: Mass, g 3.15 Diameter, mm 25 Thickness, mm 6 Volume, cm3 3.22 The alumina particles contain micropores, and the pelleting process introduces macropores surrounding the particles. If the macropore volume of the pellet is 0.645 cm3 and the micropore volume is 0.40 cm3 /g of particles, determine: i] The density of the pellet ii] The macropore volume in cm3 /g iii] The macropore void fraction in the pellet iv] The micropore void fraction in the pellet v] The solid fraction vi] The density of the particles
i] The density of the pellet is 0.977 g/cm^{3}. ii] The macropore volume in cm^{3}/g is 0.205 cm^{3}/g. iii] The macropore void fraction in the pellet is 25.1%.iv] The micropore void fraction in the pellet is 49.0%. v] The solid fraction of the pellet is 25.9%. vi] The density of the particles is 1.222 g/cm^{3}.
i] To determine the density of the pellet, we can use the formula:
Density = Mass / Volume
Given that the mass of the pellet is 3.15 g and the volume is 3.22cm^{3}, we can calculate the density as follows:
Density = 3.15 g / 3.22 cm^{3}≈ 0.977 \(g/cm^{3\)
ii] The macropore volume in cm3/g can be calculated by dividing the macropore volume of the pellet (0.645 cm3) by the mass of the pellet (3.15 g):
Macropore volume = 0.645 cm^{3} / 3.15 g ≈ 0.205 \(cm^{3} /g\)
iii] The macropore void fraction in the pellet can be calculated using the formula:
Macropore void fraction = Macropore volume / Total volume of the pellet
Total volume of the pellet = Volume - Macropore volume = 3.22 cm^{3}- 0.645 cm^{3} = 2.575 cm^{3}
Macropore void fraction = 0.645 cm^{3} / 2.575 \(cm^{3}\)≈ 0.251 or 25.1%
iv] The micropore void fraction in the pellet can be calculated using the given micropore volume of the particles (0.40 cm^{3} /g) and the mass of the pellet (3.15 g):
Micropore volume in the pellet = Micropore volume/g x Mass
Micropore volume in the pellet = 0.40 \(cm^{3} /g\) x 3.15 g = 1.26 cm3
Micropore void fraction = Micropore volume in the pellet / Total volume of the pellet
Micropore void fraction = 1.26 \(cm^{3}\) / 2.575 \(cm^{3}\) ≈ 0.490 or 49.0%
v] The solid fraction of the pellet can be calculated by subtracting the sum of macropore and micropore void fractions from 1:
Solid fraction = 1 - (Macropore void fraction + Micropore void fraction)
Solid fraction = 1 - (0.251 + 0.490) ≈ 0.259 or 25.9%
vi] The density of the particles can be determined using the mass of the pellet (3.15 g) and the total volume of the particles:
Total volume of the particles = Volume - Macropore volume = 3.22 \(cm^{3}\)- 0.645 \(cm^{3}\) = 2.575\(cm^{3}\)
Density of the particles = Mass / Total volume of the particles
Density of the particles = 3.15 g / 2.575\(cm^{3}\) ≈ 1.222 \(g/cm^{3}\)
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n order to test whether camshafts are being manufactured to specification a sample of n = 35 camshafts are selected at random. The average value of the sample is calculated to be 4.44 mm and the depths of the camshafts in the sample vary by a standard deviation of s = 0.34 mm. Test the hypotheses selected previously, by filling in the blanks in the following: An estimate of the population mean is 4.44 . The standard error is 0.06 . The distribution is normal (examples: normal / t12 / chisquare4 / F5,6). The test statistic has value TS= . Testing at significance level α = 0.01, the rejection region is: less than and greater than (2 dec places). Since the test statistic (is in/is not in) the rejection region, there (is evidence/is no evidence) to reject the null hypothesis, H0. There (is sufficient/is insufficient) evidence to suggest that the average hardness depth, μ, is different to 4.5 mm. Were any assumptions required in order for this inference to be valid? a: No - the Central Limit Theorem applies, which states the sampling distribution is normal for any population distribution. b: Yes - the population distribution must be normally distributed.
The efficiency of a steam power plant can beincreased by bleeding off some of the steam thatwould normally enter the turbine and usingit topreheat the water entering the boiler. In this process,liquid water at 50oC and 1000 kPa is mixed withsuperheated steam at 200oC and 1000 kPa. If the plantoperators want to produce a saturated liquid at 1000kPa, what ratio of mass flow rates of water andsuperheatedsteam are required
Answer:
Explanation:
This is Answer....
Una barca intenta cruzar un río. La barca lleva una velocidad de 3 m/s con dirección perpendicular a la de la velocidad del agua que es de 4 m/s. Si el ancho del río es de 120 m. El tiempo en llegar a la otra orilla es de:
Answer:
El tiempo que tarda la barca en llegar a la orilla es 40 s.
Explanation:
Debido a que el río se mueve en dirección perpendicular a la barca, ésta se va a mover de manera diagonal, cuya velocidad (\(v_{b_{d}}\)) viene dada por:
\(|v_{b_{d}}| = \sqrt{v_{r}^{2} + v_{b}^{2}} = \sqrt{(4)^{2} + (3)^{2}} = 5 m/s\)
Por lo tanto, el módulo del vector velocidad diagonal es 5 m/s, y su dirección es:
\(tan(\alpha) = \frac{v_{r}}{v_{b}} = \frac{4}{3}\)
Entonces, α es:
\( \alpha = arctan(\frac{4}{3}) = 53.13 ^{\circ} \)
Ahora, debemos encontrar la distancia de la longitud diagonal que recorre la barca:
\( cos(\alpha) = \frac{a}{d_{d}} \)
\( d_{d} = \frac{a}{cos(\alpha)} = \frac{120 m}{cos(53.13)} = 200.0 m \)
Finalmente, el tiempo que le tomaría a la barca recorrer 200 m sería:
\(v_{b_{d}} = \frac{d_{d}}{t}\)
\( t = \frac{200 m}{5 m/s} = 40 s \)
Por lo tanto, el tiempo que tarda la barca en llegar a la orilla es 40 s.
Espero que te sea de utilidad!
test equipment for checking the primary circuit is being discussed. technician a says a logic probe can be used. technician b says a dmm can be used. who is correct?
Technician A is correct. Technician B is also correct that a Digital Multimeter (DMM) can be used, as it measures various electrical values like voltage, current, and resistance.
Both technicians are partially correct.
A logic probe can be used to test the primary circuit as it can detect and indicate the presence of logic signals, such as pulses or high/low voltages.
A DMM (digital multimeter) can also be used to test the primary circuit as it can measure voltage, current, and resistance. However, it may not be able to detect the presence of logic signals.
Therefore, it depends on the specific needs and requirements of the testing situation. If logic signals need to be detected, a logic probe would be more appropriate. If voltage, current, and resistance measurements are needed, a DMM would be more appropriate.
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Using a definition of the limit of function, prove that the following functions are continuous
at = 0:
) () = 1 − 2 + 52, 0 = 1
Answer:
... you gotta do divson?
Explanation:
what is the purpose of the fast fourier transform? a. it allows you to look at the trajectory of the device. b. it allows you to fit the plot with a trendline. c. it takes the signal from the position domain and represents it in the frequency domain instead. d. it allows you to plot the velocity v. the position instead of velocity v. time.
The purpose of the fast Fourier transform is it takes the signal from the position domain and represents it in the frequency domain instead, and it allows you to plot the velocity. The correct options are c and d.
What is the fast Fourier transform?
FFT stands for "Fast Fourier Transform," which is an important measurement method. In the process, it dissects a signal into its individual spectral components and provides frequency information about the signal.
The output of the FFT is a complex vector that includes information about the signal's frequency content. The magnitude reflects the relative strength of the frequency components in comparison to other components.
Therefore, the correct options are c and d.
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The pressure at the second floor faucet in the residential building is 45 psi, which is less than the recommended domestic pressure range of 50 to 60 psi. It is considered that an additional pump will be installed at point 1 to provide the recommended pressure at the faucet. Estimate the additional pump horse-power requirement at point 1 to provide 57 psi pressure at the faucet. Note, Q = 2. 5 cfs
To estimate the additional pump horsepower requirement at point 1, you will need to consider the following factors:
1. The pressure drop between point 1 and the faucet: The difference between the pressure at point 1 and the pressure at the faucet will determine the amount of work that the pump needs to do. In this case, the pressure drop is 57 psi - 45 psi = 12 psi.
2. The flow rate: The flow rate, or the volume of water that needs to be pumped per unit of time, will also affect the horsepower requirement of the pump. In this case, the flow rate is given as Q = 2.5 cfs.
3. The efficiency of the pump: The efficiency of the pump will affect the amount of horsepower required to achieve a certain flow rate and pressure drop. More efficient pumps will require less horsepower to achieve the same results as less efficient pumps.
How do you estimate the additional pump horse-power requirement?To estimate the horsepower requirement of the pump, you can use the following formula:
Horsepower = (Flow rate x Pressure drop) / (3960 x Efficiency)
Plugging in the values from the problem, we get:
Horsepower = (2.5 cfs x 12 psi) / (3960 x Efficiency)
The value of the efficiency will depend on the specific pump that you choose. You can typically find the efficiency of a pump in its technical specifications or by contacting the manufacturer.
Once you have the efficiency value, you can plug it into the formula above to calculate the horsepower requirement of the pump. Keep in mind that this is just an estimate, and the actual horsepower requirement may vary based on other factors such as the type and condition of the piping system, the viscosity of the water, and the elevation of the pump.
Therefore, the correct answer is as given above
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Which of the following defines context?
the ability to find new ways of thinking about a problem
the condition in which a problem exists
the study of the theoretical nature of an event
the problem-solving technique of an engineer
Answer:
The condition in which a problem exists
Explanation:
Context is the situation surrounding information, e.g. if you don't understand a word in a passge you can look for "context clues" where you use surrounding words to infer the meaning of the unknown one
in mining auxiliary operations are the supplementry steps that support the production cycle . elucidate the auxiliary operations of underground mining?
Answer:
The answer is below
Explanation:
The mining auxiliary operations in underground mining involve various activities that are important for a successful mining operation particularly in the areas of productive operating conditions.
The activities involved in the auxiliary operations in underground mining include the following: ventilation, haulage, drainage, power supply, lighting, delivery of compressed air, water, supplies to the working sections, and communications.
What does efficiency measure?
Answer:
Efficiency is defined as any performance that uses the fewest number of inputs to produce the greatest number of outputs. Simply put, you're efficient if you get more out of less.
Explanation:
Seth wants to build a wall of bricks. Which equipment will help him in the process?
OA masonry pump
OB. hacksaw
OC. mortar mixer
OD. pressurized cleaning equipment
what are the resources, costs, and time needed for a donation of non-perishable food vs a cash donation to a food bank?
Non-perishable food donations require physical resources for collection, transportation, and storage, cash donations involve financial resources.
Non-perishable food donations may also require time for individuals to purchase and deliver the items. In contrast, cash donations require minimal time and effort, as they can be made online or through direct transactions. Costs associated with non-perishable food donations include the value of the food items, transportation expenses, and storage infrastructure, while cash donations have no additional costs besides the donated amount.
Donating non-perishable food to a food bank involves various resources, costs, and time commitments. Individuals or organizations need to allocate physical resources to gather the non-perishable food items, such as canned goods or dry goods. This may include purchasing these items from stores or organizing food drives to collect donations. Transportation is required to deliver the donated food to the food bank or designated collection points. Additionally, the food bank needs to allocate resources for sorting, inventory management, and storage of the donated food items.
In terms of costs, non-perishable food donations have associated expenses. These include the monetary value of the food items being donated, which varies depending on the quantity and type of items. Additionally, there may be costs related to transportation, such as fuel expenses or hiring a delivery service. Food banks also need to invest in storage infrastructure, such as shelving or refrigeration units, to accommodate the donated items.
Non-perishable food donations also require time from individuals involved in the donation process. This includes the time spent on purchasing the food items, organizing food drives, or volunteering to collect and deliver the donations. The collection and sorting process at the food bank also require manpower and time to ensure the donations are distributed effectively.
On the other hand, making a cash donation to a food bank involves fewer resource requirements, costs, and time commitments. Cash donations can be made directly to the food bank or through online platforms, requiring minimal effort and time. Financial resources are the primary requirement for cash donations, as individuals or organizations contribute a specified amount of money without the need for physical collection or transportation of goods. Cash donations do not incur additional costs beyond the donated amount, making it a cost-effective option for supporting food banks.
In summary, non-perishable food donations involve physical resources, costs associated with purchasing and transporting the items, and time commitments for collection and delivery. Cash donations, on the other hand, require financial resources and involve minimal costs and time. Both forms of donations play a crucial role in supporting food banks, and individuals can choose the option that aligns with their resources, preferences, and circumstances.
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Find the volume of the rectangular prism
9 cm
10 cm
Answer:
V= 90h cm³ where h is the height of the rectangular prism.
Explanation:
The formula for volume of a rectangular prism is ;
V=l*w*h where;
V=volume in cm³
l= length of prism=10cm
w =width of the prism = 9 cm
Assume the height of the prism as h cm then the volume will be;
V= 10* 9*h
V= 90h cm³
when the value of height of the prism is given, substitute that value with h to get the actual volume of the prism.
Does a song need separate mix and mastering engineers?.
Two stepped bar is supported at both ends.At the join point of two segments,the force F is applied(downwards).Calculate reactive forces R1 and R3 at the supports.What is value of absolute maximal stress?
Choose one answer nearest your result.
given= d1=10mm d2=20mm L1=20mm L2=10mm E=200GPa F=20kN
Answer:
F=200kN
Explanation:
Two identical billiard balls can move freely on a horizontal table. Ball a has a velocity V0 and hits balls B, which is at rest, at a point C defined by θ=45°. knowing that the coefficient of restitution between the two balls is e=0.8 and assuming no friction , determine the velocity of each ball after impact?
Answer:
Velocity of ball B after impact is \(0.6364v_0\) and ball A is \(0.711v_0\)
Explanation:
\(v_0\) = Initial velocity of ball A
\(v_A=v_0\cos45^{\circ}\)
\(v_B\) = Initial velocity of ball B = 0
\((v_A)_n'\) = Final velocity of ball A
\(v_B'\) = Final velocity of ball B
\(e\) = Coefficient of restitution = 0.8
From the conservation of momentum along the normal we have
\(mv_A+mv_B=m(v_A)_n'+mv_B'\\\Rightarrow v_0\cos45^{\circ}+0=(v_A)_n'+v_B'\\\Rightarrow (v_A)_n'+v_B'=\dfrac{1}{\sqrt{2}}v_0\)
Coefficient of restitution is given by
\(e=\dfrac{v_B'-(v_A)_n'}{v_A-v_B}\\\Rightarrow 0.8=\dfrac{v_B'-(v_A)_n'}{v_0\cos45^{\circ}}\\\Rightarrow v_B'-(v_A)_n'=\dfrac{0.8}{\sqrt{2}}v_0\)
\((v_A)_n'+v_B'=\dfrac{1}{\sqrt{2}}v_0\)
\(v_B'-(v_A)_n'=\dfrac{0.8}{\sqrt{2}}v_0\)
Adding the above two equations we get
\(2v_B'=\dfrac{1.8}{\sqrt{2}}v_0\\\Rightarrow v_B'=\dfrac{0.9}{\sqrt{2}}v_0\)
\(\boldsymbol{\therefore v_B'=0.6364v_0}\)
\((v_A)_n'=\dfrac{1}{\sqrt{2}}v_0-0.6364v_0\\\Rightarrow (v_A)_n'=0.07071v_0\)
From the conservation of momentum along the plane of contact we have
\((v_A)_t'=(v_A)_t=v_0\sin45^{\circ}\\\Rightarrow (v_A)_t'=\dfrac{v_0}{\sqrt{2}}\)
\(v_A'=\sqrt{(v_A)_t'^2+(v_A)_n'^2}\\\Rightarrow v_A'=\sqrt{(\dfrac{v_0}{\sqrt{2}})^2+(0.07071v_0)^2}\\\Rightarrow \boldsymbol{v_A'=0.711v_0}\)
Velocity of ball B after impact is \(0.6364v_0\) and ball A is \(0.711v_0\).
A firm is considering the purchase of a new machine to increase the output of an existing production process. Of all the machines considered, the management has narrowed the field to the machines represented by the cash flows shown as follows: Machine 1. Initial Investment (-$50,000). Annual Operating Income ($22,815)). [Machine 2 Initial Investment (-$60,000) . Annual Operating Income($25,995)) (Machine 3 (-$75,000). Annual Operating Income ($32,115)) (Machine 4 (-$80,000), Annual Operating Income ($34,371) Machine 5 ($100,000), Annual Operating Income (542,485)) If each of these machines provides the same service for 3 years and the minimum attractive rate of return is 12% which machine should be selected? (Hint: Choose the Machine that will provide the greatest income.) a. Machine 1 b. Machine 3 c. Machine 2 d. Machine 4 e. Machine 5
A production process is a way to use economic resources, such as labour, expensive machinery, or land, to create goods and services for customers.
Thus, The manufacturing process often deals with how to make things for sale efficiently and productively so that customers may get them quickly without sacrificing the product's quality or production.
Organizations can employ a variety of production techniques depending on their manufacturing goals, production numbers, and technology tools or software systems.
A critical aspect of a manufacturing manager's job is making broad-based production decisions that affect the productivity levels of product creation and sales.
Thus, A production process is a way to use economic resources, such as labour, expensive machinery, or land, to create goods and services for customers.
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Which fingerprint could be identfied with Mr. Kurtz?
a. 3
b. 9
c. 6
d. 10
Fingerprint 6 is the one associated with Mr. Kurtz.The correct answer is c.
Fingerprinting is an important security measure used to identify individuals and verify their identity. It involves taking an impression of the ridges and patterns on a person's fingers, which are then used to create a unique digital record that can be used to identify and verify an individual's identity.
The process involves taking an impression of the ridges and patterns on a person's fingers with a special scanner, which is then used to create a unique digital record. This record is then used to identify and verify the individual's identity. Fingerprinting has become increasingly popular in recent times, due to its accuracy and reliability as a form of biometric identification.
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read each of the following descriptions. match each description to one of the zone control system types listed. provides cooling only and the air handlers are not constantly operating at full capacity. answer 1 choose... provides temperature and humidity control for multiple zones and includes a cooling coil at the air handling unit and then a heating coil is located in each zone to provide the required temperature for that zone. answer 2 choose... serves very large buildings with many zones and is flexible to allow for easy expansion. answer 3 choose... warmed and cooled air flows through separate duct systems and mixes the warmed and cooled air together in a terminal located in a space. answer 4 choose... a system that uses refrigerant coils and does not need ductwork. answer 5 choose...
The correct answer is: 1, 2, 4. provides cooling only and the air handlers are not constantly operating at full capacity.
What is capacity?
Capacity refers to your capacity or the volume that something can hold. If your bird cage is already full, adding another bird won't prevent the bird from developing claustrophobia. "Breadth" and "capacity" are the meanings of the Latin word capacitatem. A room's capacity to hold a certain number of people, a law's ability to reduce crime rates, or your capacity to learn new languages are all examples of capacity as a noun, which simply means "ability" or "capability." You may hear about factories operating at "full capacity," which refers to operating at maximum speed and output.
Serves very large structures with numerous zones and is adaptable to facilitate simple expansion. warmed and cooled air flows through separate duct systems and mixes the warmed and cooled air together in a terminal located in a space.
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What does a filter drier do?
Answer:
they trap coarse particulate contamination and copper shavings
Process Planning Process Flowchart for Making an Acrylic Phone Stand Directions: Working in a group or partners, create a process flowchart for producing 1,000 acrylic phones stand for a business. Use the symbols provided to create the flowchart. To understand the process, you need to know these facts: The machine can only produce 20 phones stands per acrylic sheet. Your team must be done on a Friday so the phone stands must be ready for delivery the following Monday. 3. 1. 2 There must be inspections before production, during production, and after production. 4. The acrylic sheets and machine are located in different rooms. The 1000 phones stands has to be delivered to a vendor on Mondays. Your Process Planning must start with the gathering of materials and end with delivery. 7. Too short of a flowchart will be very unclear and can lead to mistakes in production.
Answer:
20a=1000
Explanation:
When pole vaulting, a pole achieves a minimum radius of curvature estimated to be 5. 0 m. The pole has an OD of 40 mm and an ID of 15 mm and is made of fiberglass with an of E= 69 GPa and a yield stress of 3 GPa
a. The max strain develop in the pole at bmax/E = ymax / R
b. The value of the max strain is 4 × 10^-3
c. The max stress at this same location is 276mpa.
d. The factor of safety with this stress is 10.86.
What is Max strain?Max strain, or the Point of Breakdown (POB), refers to the greatest degree of deformity that a material can be subject to, prior to enduring permanent damage. Strain stands as a signal of an item's alteration in shape under pressure, and is generally shown as a percentage or decimal rate compared to the material's initial size.
The utmost strain an object is able to sustain is contingent upon its mechanical characterstics such as ultimate strength, yield strength, and ductility. These properties are impacted by dynamics including the material's elements, microstructure, and processing chronicle.
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(refer to illustration 5.) the vor receiver has the indications shown. what radial is the aircraft crossing?
Center the CDI with a From indication to determine which radial the aircraft is on. The radial you are on is indicated by the number at the top of the course index. To capture and depart from a station using a radial.
What is VOR?The VOR receiver is common equipment on almost every type of aircraft, from Cessna 150s to Boeing 747s and Bell Jet Ranger helicopters, due to its wide signal range and numerous uses for pilots. Victor airways, sometimes known as VOR airways, and VOR instrument approach methods can be used anywhere in the world.
What is VOR indicator?The pilot selects VOR radials by positioning them above the course index (on top of the VOR indication) or below the reciprocal course index using the OBS (omni bearing selector) knob on the cockpit's VOR indicator (at the bottom of the VOR indicator). A course deviation indicator (CDI), often known as a Left/Right needle, displays to the pilot how many degrees and in which direction he is deviating from the preset radial.
The dots on the instrument's face show the pilot how many degrees off course he is, while the direction of deflection indicates where he is in relation to the radial. A 2-degree deviation from the desired trajectory is represented by each dot. The center disk is deflected by 10 degrees on either side, giving a total indicating capability of 20 degrees. The instrument's face has a To/From flag that indicates which side of the designated radial the pilot is flying.
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The aircraft is crossing a radial of 200 degrees
What is radial?
Radial is indeed a type of symmetrical that occurs whenever a line is traced from of the centre of the a shape as well as image towards its outer edges. Many animals and plants in nature exhibit radial symmetry, making it a familiar sight. Many different forms of art, building, and design display this symmetry. For the purpose of making balanced and aesthetically beautiful compositions, radial symmetry might be helpful. Additionally, it can be utilised to draw the viewer's attention to a certain area or to highlight a particular feature.
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PLEASE HELP!!!
What was Amelia Earhart was the first woman to accomplish?
A Flying around the world
B Flying solo across the Atlantic
C Inventing a jumpsuit for female pilots
D Flying across the English Channel
Answer:
B!
Explanation:
Answer:
B. Flying solo across the atlantic
Explanation:
history class
Part A Identify the zero-force members in the truss. (Figure 1) (Hint: Use both visual inspection and analysis.) Check all that apply. DE UAB CD O BE BC BD AE
The zero-force members in the truss are BE and BC. This is because they are the two non-collinear members.
How would you identify zero-force members in truss?You would definitely identify zero-force members in a truss by the fact that a joint has only two non-collinear members and there is no external load or support reaction at that joint, then those two members are zero-force members.
Zero-force members in a truss are the structural members that significantly support no loading but aid in the stability of the truss.
Therefore, the zero-force members in the truss are BE and BC. This is because they are the two non-collinear members.
To learn more about truss methods, refer to the link:
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Which term is defined as the study of sound waves and their behaviors and interactions? propulsion acoustics hydraulics thermodynamics
Answer: i believe it’s acoustics
Explanation: