True. The showName() method is a way to create objects based on existing prototypes. Prototypes are essentially blueprints for creating new objects, and they contain all of the shared properties and methods that will be inherited by any objects created from that prototype.
The showName() method specifically allows you to create new objects that inherit the properties and methods of an existing prototype, but also add new properties or methods specific to the new object.
This can be a very useful way to create objects that share a lot of common functionality, but also have unique characteristics that set them apart from each other. When an object is created using an existing prototype, it inherits the properties and methods of the prototype, enabling it to utilize the showName() method without duplicating code.In summary, the showName() method is a way to create new objects based on existing prototypes, and it allows for a lot of flexibility in terms of adding new properties and methods to those objects. So, the statement "The showName() method provides another way to create objects that are based on existing prototypes" is true.The showName() method can provide another way to create objects based on existing prototypes. This approach allows for the efficient use of resources by reusing code through the concept of inheritance.Know more about the prototype
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a voltage amplifier with an input resistance of 40 kn, an output resistance of i 00 n, and a gain of 300 v n is connected between a 10-kn source with an open-circuit voltage of to m v and a i 00-n load. for this situation:
The current flowing through the circuit is approximately 0.4 μA.
To analyze the situation, we can use the voltage divider rule and the concept of load and source resistance to determine the voltage across the load and the current flowing through the circuit.
Given data:
Input resistance (Rin) = 40 kΩ
Output resistance (Rout) = 100 Ω
Gain (Av) = 300 V/V
Source resistance (Rsource) = 10 kΩ
Open-circuit voltage (Voc) = 20 mV
Load resistance (Rload) = 100 Ω
To calculate the voltage across the load (Vload), we can use the voltage divider rule:
Vload = Voc * (Rload / (Rsource + Rin + Rload))
Substituting the given values:
Vload = 20 mV * (100 Ω / (10 kΩ + 40 kΩ + 100 Ω))
Vload = 20 mV * (100 Ω / 50.1 kΩ)
Vload ≈ 0.04 mV
The voltage across the load is approximately 0.04 mV.
To calculate the current flowing through the circuit, we can use Ohm's Law:
I = Vload / Rload
Substituting the values:
I = 0.04 mV / 100 Ω
I = 0.4 μA
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T.J. wants to send a friend a file with a funny dancing cat. Which file format should T.J. use?
DOCX
GIF
MP3
PDF
Answer:
T. J. should the file by GIF to his friend.
beeeeeeeeeeeeeeeeeeeeeeeeep its gif
Ball joints connect the ends of each of the struts as shown. The resulting structure supports a force of p= 1025 N which lies in the xz plane. a.) Determine the angle (in degrees) between strut AD and strut AC. b.) Determine the dimention g such that the force F is perpendicular to r AC.
a) The angle between strut AD and strut AC is 67.3 degrees.b) The dimension g is 1.33 m.
To determine the angle between strut AD and strut AC, we can use the dot product formula: cos(theta) = (AD dot AC) / (|AD| * |AC|). Using the given coordinates, we can calculate AD = <1, 2, 0> and AC = <0, 2, 3>. Thus, AD dot AC = 4 and |AD| * |AC| = 3 * sqrt(5). Plugging these values into the formula gives us cos(theta) = 4 / (3 * sqrt(5)), which yields an angle of approximately 67.3 degrees.
To determine the dimension g such that the force F is perpendicular to r AC, we can use the cross-product formula: F cross r AC = 0. Since the force is given as p = 1025 N in the xz plane, we can write F = <1025 sin(theta), 0, 1025 cos(theta)> where theta is the angle between F and the positive x-axis. The position vector r AC is given by <0, g, -3>. Taking the cross product and setting each component equal to zero yields the equations 1025 sin(theta) * 3 = 1025 cos(theta) * g and 1025 cos(theta) * 0 - 1025 sin(theta) * g = 0. Solving for theta and g gives us theta = 78.7 degrees and g = 1.33 m.
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Which statement best describes how power and work are related?
O A. Power is the ability to do more work with less force.
O B. Power is a measure of how quickly work is done.
O C. Power and work have the same unit of measurement
O D. Power is the amount of work needed to overcome friction.
Pls answer quick
B
a jsdnjwevhfgruewbkuwygru
Under a subsection for geological hazards the buyer is encouraged to obtain an read the booklet
Answer:
Buyer is encouraged to obtain and read the booklet entitled "The Homeowners Guide to Earthquake Safety." In most cases a questionnaire within the booklet must be completed by Seller and the entire booklet given to the Buyer if the Property was built prior to 1960.
Which of the following scenarios describes someone who is a materials engineer?
Jon is helping to create a new blood pressure arm cuff.
Kristin is currently modifying a newly discovered plastic material to work on a new lightweight lacrosse stick.
Thomas uses a computer program to be sure that all of the architect’s blueprints are structurally sturdy.
Ethan is helping to design a new bug-resistant soil for garden beds.
Answer: Kristin is currently modifying a newly discovered plastic material to work on a new lightweight lacrosse stick.
Explanation:
The main function of a materials engineer is to develop, study and test materials that are used on order to make different products.
Material engineer solve problems in other engineering fields, like electrical, aerospace, civil, mechanical, chemical, and nuclear.
From the information given in the question, the correct option is "Kristin is currently modifying a newly discovered plastic material to work on a new lightweight lacrosse stick."
Answer:
nice
Explanation:
**Can someone please help me solve these problems step by step, thank you!
1. If a 12-inch diameter driving Gear A has 100 tooth which turns CCW with a torque of 200 ft-lb and 100 rpm is meshed with Gear B, 25 tooth, turn along with Gear C, 50 tooth as they are a compound gear and Gear D, 150 tooth meshed with C.
-->sketch and annotate the gear train.
-->what direction does gear ratio B, C, and D turn?
-->what is the gear ratio for B, C, and D?
-->what is the angular velocity for gears B, C, and D?
-->what is the torque for gears B, C, and D?
-->what is the diameter of gears B, C, and D?
2. In a pulley system, pulley A is moving 1000 rpm and has a diameter of 18inches. There are two pulleys with different sizes, B moving ot 1575 rpm and C moving at 1850 rpm attached on a single axle.
-->sketch and annote the pulley system.
-->what is the diameter of pulley B and pulley C?
Answer:
The answer is "\(\bold{11.428 \ in \ \ and \ \ 9.729 \ in}\)".
Explanation:
The second question solution can be defined as follows:
\(N_A= 1000 \ rpm\\\\N_B=1575 \ rpm\\\\N_C=1850 \ rpm\\\\D_A= 18 \ in \\\\\)
In point 1:
Calculating the value of the linear velocity is the same:
\(\to V_A=V_B\\\\\to \pi D_A N_A=\pi D_BN_B\\\\\to D_B= \frac{D_A \times N_A}{N_B}\)
\(=\frac{18 \times 1000}{1575}\\\\=11.428 \ in \ \ \text{Diameter of pulley B}\)
In point 2:
\(\to V_A=V_C\\\\\to \pi D_A N_A=\pi D_C N_C\\\\\to D_C=\frac{D_A \times N_A}{N_C}\\\\\)
\(=\frac{1000 \times 18}{1850}\\\\=9.729 \ in \ \ \text{Diameter of pulley B}\)
what is the esr in the capacitor
Answer: Equivalent Series Resistance
Explanation:
Equivalent series resistance (ESR), also known as internal resistance, is a value representing the loss of useful energy in a simple electronic circuit consisting of a resistor and an ideal (perfect) capacitor.
Rank the capacitors on the basis of the charge stored on the positive plate_ Rank from largest to smallest: To rank items as equivalent; overlap them: View Available Hint(s) Reset Help largest smallest A = 4 cm? =1nF A = 2 cm? =8 nF A = 2 cm? =4 nF A = 4 cm? C = 2 nF A =1 cm? =lnF A = 8 cm? =2 nF The correct ranking cannot be determined. Submit Previous Answers
A fixed-value capacitor known as a ceramic capacitor uses ceramic material as the dielectric. It is made of two or more layers that alternate.
Ceramic capacitors are mostly employed in devices with high stability and minimal loss. The capacitance values of these capacitors are steady with regard to the applied voltage, frequency, and temperature thanks to the devices' extremely precise findings. Ceramic capacitors are non-polarized capacitors used in timing, coupling, decoupling, and filtering applications. The ceramic capacitor has a pretty high voltage rating and can withstand both DC and AC voltage. A ceramic material serves as the dielectric medium in a ceramic capacitor. A thin coating of metal oxide serves as the dielectric medium within an electrolytic capacitor. A ceramic capacitor's corresponding series resistance is little.
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In an orthogonal cutting, a cylinder is turned to reduce the diameter with the following processing conditions Initial diameter Depth of cut Feed Rake angle Chip-tool contact length Cutting force Thrust force Spindle RPM 100 mm 2 mm 0.1 mm/rev 10° 0.5 mm 450 N 150 N 60 Calculate a) Shear and normal stresses on chip-tool interface b) Shear angle using the Lee and Shaffer's model c) Chip thickness d) Shear and normal stresses on shear plane e) Specific cutting energy f) Spindle horse power
In an orthogonal cutting, a cylinder is turned to reduce the diameter with the following processing conditions Initial The spindle horse power is 11.78 kW.
Shear and normal stresses on the chip-tool interface To determine the shear stress (τ) and normal stress (σ) on the chip-tool interface, the following formula will be used:τ = the thrust force, t is the chip-tool contact length, is the width of the chip.t = 0.5 mm w = 0.1 mm/rev * 2 mm = 0.2 mmτ = 450 N / (0.5 mm * 0.2 mm) = 45000 N/m²σ = 150 N / (0.5 mm * 0.2 mm) = 15000 N/m²Therefore, the shear stress on the chip-tool interface is 45000 N/m², and the normal stress is 15000 N/m².
Shear angle using the Lee and Shaffer's model Lee and Shaffer's model can be used to calculate the shear angle (ϕ) using the formula:ϕ = (1 / tan α_r) * [(1 + sin ψ) / (cos ψ)]whereα_r is the rake angle andψ is the clearance angle.α_r = 10°ψ = 90° - 10° = 80°ϕ = (1 / tan 10°) * [(1 + sin 80°) / cos 80°] = 18.19°Therefore, the shear angle is 18.19°.
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Shear stress on chip-tool interface = 300 MPa ;Normal stress on chip-tool interface = 52.17 MPa ; Shear angle = 5.74°Chip thickness = 0.57 mm ; Shear stress on shear plane = 263.16 MPa ; Normal stress on shear plane = 45.79 MPa ; Specific cutting energy = 113398.2 N/m ; Spindle horse power = 8.44 hp.
Given data:
Initial diameter = 100 mm
Depth of cut = 2 mm
Feed = 0.1 mm/rev
Rake angle = 10°
Chip-tool contact length = 0.5 mm
Cutting force = 450 N
Thrust force = 150 N
Spindle RPM = 60
Formula used:
Shear force = Cutting force - Thrust force
Chisel angle = Tan-1(1/ Tan Φ - Tan Φ / Tan λ)
Shear angle = Tan-1(Tan Φ / (Cos λ - Sin Φ Sin λ))
Chip thickness = Feed / Sin λa)
Shear and normal stresses on chip-tool interface
Chip-tool contact length, l = 0.5 mm
Shear force, Fs = Cutting force - Thrust force= 450 - 150= 300 N
Area of contact, Ac = t × l= 2 × 0.5= 1 mm2
Shear stress, τ = Fs / Ac= 300 / 1= 300 MPa
Normal force, Fn = Fs Tan λ= 300 × Tan 10°= 52.17 N
Normal stress, σ = Fn / Ac= 52.17 / 1= 52.17 MPab)
Shear angle using the Lee and Shaffer's model
Here, λ = 10°
Chisel angle, Φ = Tan-1(1 / Tan λ)= Tan-1(1 / Tan 10°)= 5.71°
Shear angle, α = Tan-1(Tan Φ / (Cos λ - Sin Φ Sin λ))= Tan-1(Tan 5.71° / (Cos 10° - Sin 5.71° Sin 10°))= Tan-1(0.1)= 5.74°c) Chip thicknessHere, λ = 10°Feed, t = 0.1 mm
Chip thickness, h = t / Sin λ= 0.1 / Sin 10°= 0.57 mmd)
Shear and normal stresses on shear plane
Shear force, Fs = 300 N
Shear plane area, As = t × d= 2 × 0.57= 1.14 mm2
Shear stress, τ = Fs / As= 300 / 1.14= 263.16 MPa
Normal stress, σ = Fn / As= 52.17 / 1.14= 45.79 MPae)
Specific cutting energy
Cutting power, Pc = Fs × vc= Fs × πdn/1000= 300 × π × 100 × 60/1000= 5669.91 W
Specific cutting energy, E = Pc / Vt= Pc / (f × Vf)= 5669.91 / (0.1 × 0.5)= 113398.2 N/mmf)
Spindle horse power
Spindle power, Ps = Pc / η= Pc / 0.9= 5669.91 / 0.9= 6299.90 W= 6.2999 kW= 8.44 hp (1 hp = 0.7457 kW)
Therefore,
Shear stress on chip-tool interface = 300 MPa
Normal stress on chip-tool interface = 52.17 MPa
Shear angle = 5.74°Chip thickness = 0.57 mm
Shear stress on shear plane = 263.16 MPa
Normal stress on shear plane = 45.79 MPa
Specific cutting energy = 113398.2 N/m
Spindle horse power = 8.44 hp
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If you've edited your source code file, you don't have to compile again before run to test, since the program last compiled is from the same file.a. TRUE
b. FALSE
The make command uses the gnu c compiler to compile source code into a binary programme.
An Integrated Development Environment, or IDE, is a piece of software that makes it simple for programmers to write, edit, compile, and run their applications. Syntax highlighting and automated code completion are two aspects of IDEs that make a programmer's job simpler.Notable Java IDEs available for many platforms and operating systems include BlueJ, JBuilder, IntellijIDEA, Eclipse, Netbeans, etc. One of the compilers in the GNU Compiler collection, the GNU C Compiler was made available by the Free Software Foundation. The GNU C Compiler is a completely *nix-oriented C language compiler that may be used by issuing instructions from its command line interface.
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For a manufacturing process that produces copper tubing, a(n) would track the variability of the tubing's diameter. A. R-chart B. x-bar chart C. p-chart D.m-chart E. v-chart
A. R-chart An R-chart, also known as a range chart, is used to track the variability or dispersion of a manufacturing process.
It is commonly used in statistical process control (SPC) to monitor the consistency of a process over time.
In the case of copper tubing production, an R-chart would be suitable for tracking the variability of the tubing's diameter. The chart displays the range (the difference between the largest and smallest values) of a set of samples taken from the manufacturing process. By analyzing the range values, one can assess whether the process is producing tubing with consistent diameter or if there is excessive variability.
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A ball of mass m is dropped vertically from a height h0 above the ground.
If it rebounds to a height of h1, determine the coefficient of restitution between the ball and the ground.
Express your answer in terms of some or all of the variables m, h0, and h1.
The coefficient of restitution (e) is the ratio of the velocity of the ball after collision to the velocity before collision. In this case, since the ball is dropped vertically, the initial velocity is zero. Therefore, we can use the conservation of energy to determine the final velocity of the ball before it rebounds.
Initially, the ball has <b>potential</b> energy equal to mgh0, where g is the acceleration due to gravity. When it rebounds, it reaches a maximum height of h1, which means it has potential energy equal to mgh1. By conservation of energy, the total energy of the system (ball + Earth) is conserved, so we can set these two expressions for potential energy equal to each other:
mgh0 = mgh1 + 0.5mv^2
Simplifying, we can solve for the velocity of the ball just before it rebounds:
v = sqrt(2gh0 - 2gh1)
Now we can use the definition of coefficient of restitution to find e:
e = v_rebound / v_drop
where v_rebound is the velocity of the ball just after rebounding and v_drop is the velocity of the ball just before it was dropped (which is zero). The velocity just after rebounding is given by:
v_rebound = sqrt(2gh1)
Substituting these expressions, we get:
e = sqrt(2gh1) / sqrt(2gh0 - 2gh1)
Simplifying, we can cancel out the 2 and factor out h1 to get:
e = sqrt(h1 / (h0 - h1))
Therefore, the coefficient of restitution between the ball and the ground is sqrt(h1 / (h0 - h1)), expressed in terms of the variables m, h0, and h1.
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The scale of the blueprint tells us the
of drawing to real space?
Answer:
yes
Explanation:
blueprint of the construction is a prediction of project its is slightly auto cad
the answer is A,C
i did it already
Which actions would the maintenance and operations crews carry out as a building is completed and preparing to open to the public? Select all that apply.
make any last minute repairs
install new equipment and furnishings
troubleshoot solutions to any lingering problems or malfunctions
determine which new residents or company employees will occupy which offices or residences
Answer:
1. make any last minute repairs
2. install new equipment and furnishings
3. troubleshoot solutions to any lingering problems or malfunctions
Explanation:
Given that the role or functions of maintenance and operations crews in building construction are to ensure that the building is maintained to the required standard of use.
This involves making sure that all repairs in a building are done. The equipment is properly installed and solved any form of equipment that malfunctions.
Hence, in this case, the correct answer is:
1. make any last-minute repairs
2. install new equipment and furnishings
3. troubleshoot solutions to any lingering problems or malfunctions
Answer:
1. make any last minute repairs
2. install new equipment and furnishings
3. troubleshoot solutions to any lingering problems or malfunctions
Explanation:
La iluminación de la superficie de un patio amplio es 1600 lx cuando el ángulo de elevación del sol 53°. Calcular la iluminación cuando el ángulo de elevación del Sol sea 37°
Answer:
I = 1205.69 Lx
Explanation:
The irradiation or intensity of the solar radiation on the earth is maximum for the vertical fire, with a value I₀
I = I₀ sin θ
in this case with the initial data we can calculate the initial irradiance
I₀ = \(\frac{I}{sin \ \theta }\)
I₀ = 1600 /sin 53
I₀ = 2003.42 lx
for when the angle is θ = 37º
I = 2003.42 sin 37
I = 1205.69 Lx
a flexible rubber part called a _ is used to protect a cylinder from external contaminates
the o-seal is used to protect the cylinder
Consider IP address X: 193.101.50.44/26 a) Which of the IP addresses below is on the same network as X: (b) With subnet mask 255.255.255. 192, what is the maximum number of hosts on the subnet?
The IP address 193.101.50 is on the same network as the given IP address X, the maximum number of hosts on the subnet is 64..
a) To determine which of the IP addresses below is on the same network as X:193.101.50.1/26, we need to find out the network address of the given IP address by calculating the subnet mask. The subnet mask for the given IP address 193.101.50.44/26 is 255.255.255.192. To find out which of the IP addresses is on the same network as the given IP address, we will compare the first 3 octets of the IP address with the first 3 octets of the given IP address.
The first three octets of the given IP address 193.101.50 are:193.101.50
The first three octets of the IP addresses provided are:192.168.1 10.0.0 193.101.50 172.16.0
Thus, the IP address 193.101.50 is on the same network as the given IP address X.
b) With subnet mask 255.255.255.192, the maximum number of hosts on the subnet can be calculated as follows:
Given subnet mask = 255.255.255.192
This is a class C subnet mask. The 24 bits in the subnet mask are all turned on, plus the first 2 bits in the fourth octet, which means there are 2^2 = 4 possible subnets in this network. The remaining 6 bits in the fourth octet are turned on, which gives us 2^6 = 64 host addresses per subnet.
Therefore, the maximum number of hosts on the subnet is 64.
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a line passes through (1,9) is parallel to the line through (-2,2) and (4,5) find its equation.
What disadvantages can a resort come across
Answer:
the disadvantages can be people's thoughts about them and also a rival resort nearby which looks more posh pls mark brainliest i need 5 more for next rank thank you
Explanation:
What does it mean to test a hypothesis?
A.carefully study the results of other scientists
B.analyze only the results from scientific sources
C.have no assumptions about experimental results
D.see if the experiment's results match predictions
Answer:
D.
Explanation:
I know this because one of my science teachers I had a few years ago made my science class pretty much memorize this since a hypothesis is your best educated guess I know that to test a hypothesis you see if you have the right predictions or hypothesis by testing your predictions to see if they are right or wrong.
Pls help!!! will give brainly!!!
Bridge collapses have hit the news recently with more frequency. Do some research online and state two possible reasons for these collapses. How might those employed in the Health, Safety, & Environmental Management pathway help prevent these collapses and keep us safe?
Answer:
The main reason for bridges collapses is: earthquakes (natural disasters) and construction incidents. Whenever a natural disaster occur, it makes the bridge collapse. An example is hurricanes. Hurricanes come with a great wind and that might lead to the bridge collapsing. Construction incidents means the bridge falls during construction. Those who are employed in health, safety and environmental management need to make sure that during the construction, they have examined the material and made sure it is strong. Working with economists, they should seek better understanding of the methods for minimizing the costs during the life of the bridge. In case for natural disasters, like flooding, they should make the bridge in a lever where the water won't reach the bridge. And they should have a limit for weight in the bridges because that is another reason it collapses, because the bridge does not support extra weight.
Explanation:
hope this helps
What would you do if you were trapped in a grocery store for the rest of your life? (Assuming that power does not function and most of the food is rotten.)
Answer:
i need point 344
Explanation:
FILL IN THE BLANK You _____ an HTML file to the validator, which means you transfer a copy of the document to the validation website.
You upload an HTML file to the validator, which means you transfer a copy of the document to the validation website.
HTML stands for Hyper Text Markup Language. It is a programming language that is used to create and structure the content of web pages.
HTML is used to describe the structure of the page, including headings, paragraphs, lists, and links. It also includes codes that specify the formatting of the content, such as font size, color, and style. When creating a website, it is important to ensure that the HTML code is valid.
Validation is the process of checking the HTML code to make sure that it complies with the standards set by the World Wide Web Consortium (W3C). Valid HTML code ensures that the website is accessible to all users, regardless of their browser or device. It also helps to improve the search engine optimization (SEO) of the site by making it easier for search engines to crawl and index the content.
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The roof of a house has three layers: (1) 2 inch thick pine, (2) 4 inches of fiberglass insulation and (3) 0.1 inch thick Asphalt shingles. Calculate the rate of flow of heat (BTU/hour) through the roof. The temperature inside the house is 700F and the temperature outside is 300F. The R/inch for pine is 1.28, the R/inch for fiberglass is 3.0 and the R/inch for Shingles is 4.0. Take the area of the roof to be 500 square feet. The Unit of R is mixed: ft2 . 0F.h/BTU
Answer:
the rate of flow of heat through the roof is 45616.858 BTU/hr
Explanation:
Given the data in the question;
pin thickness \(t_p\) = 2 in
fiber glass thickness \(t_f\) = 4 in
Asphalt shingles thickness \(t_a\) = 0.1 in
R/inch for pine = 1.28
R/inch for fiberglass = 3.0
R/inch for Shingles = 4.0
Temperature inside the house \(T_{inside\) = 700 F
Temperature outside the house \(T_{outside\) = 300 F
area of the roof A = 500 ft²
we calculate the total Resistance;
R = ( 2 × 1.28 ) + ( 4 × 3.0 ) + ( 0.1 × 4.0 )
R = 2.56 + 12 + 0.4
R = 14.96
Now, we determine the rate of heat flow;
dQ/dt = ΔT(A) / R
⇒ ( \(T_{inside\) - \(T_{outside\) )A / R
we substitute
⇒ (( 700 - 300 ) × 500 ) / 14.96
⇒ ( 400 × 500 ) / 14.96
⇒ 200000 / 14.96
⇒ 13368.98 watt
we know that 1 watt = 3.412142 BTU/hr
⇒ ( 13368.98 × 3.412142 ) BTU/hr
⇒ 45616.858 BTU/hr
Therefore, the rate of flow of heat through the roof is 45616.858 BTU/hr
rosbel or Janette lol baakkaaa
Answer:
t5g5gtttttttttttttttttttttttttttttttttttttttttttt
Explanation:gt555555555555555555555555555555555555555555555555
Answer:
dawbkjbjwwjhjfbfjewfaekfhawkjndwkja
Explanation: dum*as*
A car is driven over a curb twice—once very slowly and once quite rapidly. What would you need to know about the car in the second case that you did not need to know in the first case if you were required to find the tire force that resulted from going over the curb?
Answer:
You'd need to know things like the weight of the car, the spring constant of the suspension springs.
Explanation:
Driving over the curb slowly does not have much of an "impact" because of the small potential energy it has but to find the force that results from going over the curb at a much higher speed, you would need to know the weight of the car since it directly impact the force that it applies. You also would need to know about the car's suspension, the spring material, how stiff the springs are and their spring constant to calculate the force they absorb.
I hope this answer helps.
Which one of the following answer options are your employers responsibility
Where are your answer options?
Answer:
Implement a hazard communication program
Explanation: i took the quiz
the conductors and equipment connecting electric energy from the serving utility to the wiring system of the premises served is the nec definition for service.
The statement "the conductors and equipment connecting electric energy from the serving utility to the wiring system of the premises served is the new definition for service" is definitely true.
What is the reason behind this solution?The reason behind this service may be understood by the fact that the conductors and equipment connecting the serving utility to the wiring system of the premises served.
A service can only be supplied by the serving utility. If electric energy is supplied by other than the serving utility, the supplied conductors and equipment are considered feeders and not a service.
Service may be defined as the conductors and equipment connecting electric energy from the serving utility to the wiring system of the premises served.
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