The average current induced in the loop during expansion from 0.50 m to 1.00 m over 1.0 s in a magnetic field of 52 mT is 4.2 μA in the counterclockwise direction.
The average current produced within the loop and the direction of the current can be determined as follows:
Initial radius of the circular loop, r₁ = 0.50 m
Final radius of the circular loop, r₂ = 1.00 m
Magnetic field, B = 52 m T
Time taken for the transformation, t = 1.0 s
Internal resistance of the wire, R = 30 Ω
Formula:The induced emf can be given by the following formula:
ε = ΔΦ/Δt
where,
ε is the induced emf and
ΔΦ is the change in flux.
As the magnetic field is pointing into the page, the magnetic flux can be given as:
Φ = BA
where,
A is the area of the loop.
As the loop expands, the area of the loop increases.
The area can be calculated using the formula of the area of the circle.
A = πr²
The change in the area can be calculated as:
ΔA = π(r₂² - r₁²)
The change in magnetic flux can be given as:
ΔΦ = BΔA = Bπ(r₂² - r₁²)
Now, the induced emf can be given as:ε = ΔΦ/Δt = Bπ(r₂² - r₁²)/t = 52 × 10⁻³ × π(1.00² - 0.50²)/1.0 = 0.15 V
ε= 0.15 V
The induced emf can be given as the following formula:
ε = IR + Ir
where, I is the current and
R is the internal resistance of the wire.
Now, the current can be given as:
I = (ε - Ir)/RI = (0.15 - 0.5 × 10⁻⁶ × π(1.00² - 0.50²))/30 = 4.2 μA
I = 4.2 μA
Thus, the average current produced within the loop is 4.2 μA in the counterclockwise direction.
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an aircraft which is equipped with an electronic flight display (efd) can
An aircraft equipped with an Electronic Flight Display (EFD) can significantly enhance its situational awareness, safety, and efficiency during flight operations.
EFDs are advanced systems that provide a digital, customizable presentation of critical flight information to the pilot, including altitude, airspeed, attitude, navigation, and engine data.
When using an EFD, the pilot can access information more efficiently, as it consolidates multiple traditional analog instruments into a single, integrated display. This allows the pilot to quickly and easily monitor and interpret crucial flight parameters, leading to improved decision-making and reduced workload.
Moreover, EFDs often incorporate advanced features such as synthetic vision, terrain awareness, and weather information. These capabilities further assist the pilot in navigating complex environments and avoiding potential hazards. Additionally, EFDs can be integrated with other avionics systems to enable seamless communication and data exchange, further enhancing overall aircraft performance and safety.
In summary, an aircraft equipped with an Electronic Flight Display can benefit from increased situational awareness, streamlined data access, and improved safety and efficiency during flight operations.
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how to answer for computer science quora how do your interests directly connect with cornell engineering? if you have an intended major, what draws you to that department at cornell engineering? if you are unsure what specific engineering field you would like to study, describe how your general interest in engineering most directly connects with cornell engineering. it may be helpful to concentrate on one or two things that you are most excited about\.\* (250 words)
Focus primarily on highly precise specifics of what Cornell offers and how it matches with your interests and values. You can regard this as a "Why us?" essay with some optional "Why major" spice.
How to write essay ?Cornell is fundamentally a research institution, and I am fundamentally a researcher. The Collective Embodied Intelligence Lab would be the ideal place for me to put what I have learned from my own work in that area to use while learning from Dr. Petersen and her ground-breaking research in termite-inspired construction robots. The lab focuses on the control of multi-agent robotic systems, especially drawing inspiration from insect swarm mechanics. Cornell is known for its research, but what truly stood out to me was its distinct dedication to project teams. I discovered I wanted to join every team after doing my homework on them. Consider Baja; the idea of creating an off-road car from scratch is comparable to FTC competitions. Even though I have a strong foundation in CAD, wiring, and chassis construction, I'm eager to tackle more complex issues with even more room for creativity.To learn more about essay refer :
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A one-dimensional plane wall is exposed to convective and radiative conditions at x- 0. The ambient and sur- rounding temperatures are T. = 20°C and Tsur-40°C, respectively. The convection heat transfer coefficient is h 20 W/m2- K, and the absorptivity of the exposed sur- face is α = 0. 78. Determine the convective and radiative heat fluxes to the wall at x= 0 if the wall surface tem- perature is T, 24°C. Assume the exposed wall surface is gray, and the surroundings are large
To determine the convective and radiative heat fluxes to the wall at x = 0, we can use the following equations:
1. Convective heat flux:
q_conv = h * (T_s - T_∞)
2. Radiative heat flux:
q_rad = α * σ * (T_s^4 - T_∞^4)
where:
q_conv is the convective heat flux (in W/m²),q_rad is the radiative heat flux (in W/m²),h is the convective heat transfer coefficient (in W/m²·K),T_s is the surface temperature of the wall (in °C),T_∞ is the ambient temperature (in °C),α is the absorptivity of the exposed surface (dimensionless),σ is the Stefan-Boltzmann constant (approximately 5.67 × 10^-8 W/(m²·K⁴)).Given:
T_∞ = 20°C
T_sur = 40°C
h = 20 W/(m²·K)
α = 0.78
T_s = 24°C
Let's calculate the convective and radiative heat fluxes:
1. Convective heat flux:
q_conv = 20 * (24 - 20) = 80 W/m²
2. Radiative heat flux:
q_rad = 0.78 * 5.67 × 10^-8 * ((24 + 273.15)^4 - (20 + 273.15)^4) = 238.17 W/m²
Therefore, the convective heat flux to the wall at x = 0 is 80 W/m², and the radiative heat flux is 238.17 W/m².
In this scenario, the one-dimensional plane wall is exposed to both convective and radiative heat transfer. The convective heat transfer occurs due to the temperature difference between the surface of the wall (T_s) and the surrounding ambient temperature (T_∞), which is characterized by the convective heat transfer coefficient (h). The convective heat flux represents the amount of heat transferred per unit area through convection.
The radiative heat transfer, on the other hand, occurs due to the temperature difference and the emissivity/absorptivity of the wall's exposed surface (α). The radiative heat flux depends on the Stefan-Boltzmann constant (σ) and the fourth power of the temperatures involved (T_s and T_∞). The emissivity/absorptivity of the surface determines how efficiently it radiates and absorbs thermal radiation.
In this case, since the surroundings are considered "large," we assume that the temperature of the surroundings (T_sur) remains constant and unaffected by the wall's heat transfer. This assumption simplifies the analysis by focusing only on the heat exchange between the wall and the ambient environment.
By applying the equations for convective and radiative heat fluxes, we can calculate the respective contributions to the total heat transfer at the wall's exposed surface.
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Find the height of a 6" equilateral triangle (use Pythagoras theorem and round to the nearest thousandth - your answer will be a decimal)
An equilateral triangle is a triangle whose sides are all equal in length. An isosceles triangle is a triangle with at least two sides of equal length. The interior angles of an equilateral triangle all measure 60 degrees each.
An equilateral triangle is also an isosceles triangle.According to the Pythagoras theorem, in a right-angled triangle, the square of the length of the hypotenuse (the side opposite the right angle) is equivalent to the sum of the squares of the lengths of the other two sides. Consider a 6-inch equilateral triangle. The height of the equilateral triangle is the length of the line segment that goes from the midpoint of any side of the triangle to the opposite vertex.To determine the height of an equilateral triangle of 6 inches using Pythagoras' theorem, we start by dividing the triangle into two equal parts. We draw a line down from the top of the triangle to the center of the bottom side.
The line from the midpoint to the vertex is the height of the triangle. The midpoint of the bottom side is 3 inches away from each vertex.Let's draw a line down from the top vertex to the midpoint of the bottom side, making two 30-60-90 triangles. The side opposite the 60-degree angle is the height of the triangle. According to the Pythagoras theorem, in a 30-60-90 triangle, the hypotenuse is two times the length of the shorter leg, while the longer leg is the square root of 3 times the length of the shorter leg.Therefore, the height of the equilateral triangle is:height = √3/2 * 6height = 3√3 inches= 5.196 inches (rounded to the nearest thousandth)
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A car travels from A, due north to a town B 4 km away. It then travels due east until it arrives town C 5 km from B. determine the distance of town C from A
Answer:
A to C = 6.4 km
Explanation:
A to B = 4 km
B to C = 5 km
A to C = using pythagorean theorem
a² + b² = c²
a = A to B = 4
b = B to C = 5
c = A to C
c² = 4² + 5²
c = 6.4 km (A to C)
According to the scenario, the distance between town C from town A is found to be 6.40 Km.
Which background does this question depend on?The background that this question depends on is known as the direction-based question. These types of questions completely depend on the distance of moving bodies like cars, persons, or any other objects as well with respect to the initial position.
According to the question,
The distance between town A to town B = 4 km.
The distance between town B to town C = 5 km.
Now, according to the Pythagoras theorem, the distance between town C to town A is as follows:
\(AC^2\) = \(AB^2 +BC^2\).
\(AC^2\) = \(4^2+5^2\)
\(AC^2\) = 16 + 25 = 41.
AC = √41 = 6.40 km.
Therefore, the distance between town C from town A is found to be 6.40 Km.
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Help, quick please. I need help with my engineering word problem
Answer:
a
Explanation:
2.2 k omega= _____ omega
Explanation:
2.2 k omega= ___2200__ omega
here k is kilo so simply multiply by 1000
The flow between two infinitely flat parallel plates displays a parabolic profile, and is called plane Poiseulle flow.
a. True
b. False
Answer:
a. True
Explanation:
The study of fluids in a state of rest or in motion and the forces involved in it is called fluid mechanics. Fluid mechanics has a wide range of applications in the field of mechanical engineering as well as civil engineering.
When we study the flow of fluid between any two flat plates that is indefinitely flat and is parallel, the flow of the fluid is known as plane Poiseulle flow. The profile of a plane Poiseulle flow is parabolic.
The velocity profile of a plane Poiseulle flow is :
\($\frac{u(y)}{U_{max}}=1-\left(\frac{2y}{h}\right)^2$\)
Thus the answer is TRUE.
what is digital abstraction? how many bit of information would be represented by a variable with n distinct states? 2. convert the following binary number to a decimal number: 101100101 3. add the following two binary numbers: 101101, 11010 4. write the truth tables, boolean equations and the symbols of the logic gates xnor, nand and or 5. write a boolean equation in sum-of-product (sop) canonical form for the following truth table
The output of the OR gate is High if either of the inputs is 1. It is only equal to 0 when both outputs are 0.
Pick the appropriate words from the standard sum of products (SOP) form. For function 11b, select the appropriate words from the canonical sum of products (SOP) form. A'b'e Do'+b+c Abc A + B + C Babic Ha+b+' A+bc, A+b+c, A+b+C, etc. What Kinds of SOPs Exist? Step-by-step, hierarchical, and flowchart SOPs can all be used to categories these three types of SOPs. What format does LPP typically take? The LPP canonical form in matrix notation is as follows: Z = CX (objective function), X 0 (limitations), and AX b (restrictions) are applied (non-negativity restrictions). Since the NAND gate does not function like an AND gate, its output must simply be reversed. Transform 0s into 1s and vice versa.
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Consider a system with a single light (can be on or off) that can be controlled by any one of three switches. On switch is the master on/off switch. If it is down, the light is off. When the master switch is up, the light will be on iff both the other switches are up.a. Write a Boolean function (let’s call it F) for this circuitb. Write a truth table for F.c. Draw a circuit diagram to show how F could be implemented with AND, OR, and NOT gates.
Answer:
Explanation:
Hi sorry I'm new and need points ty
what's the answer???
Answer:
The best chose will happen to be C
pjm, the regional grid operator that includes peco, has asked for consumers to look for ways to safely conserve electricity until 10 a.m. tomorrow. if your health permits, please consider reducing the use of your electricity.
The straightforward response is that PJM is not profitable. Federal law mandates that PJM operate in a profit-neutral manner, which requires that overall income and expenses balance out over the long run.
What do you mean by PJM grid?The movement of wholesale electricity in all or parts of Delaware, Illinois, Indiana, Kentucky, Maryland, Michigan, New Jersey, North Carolina, Ohio, Pennsylvania, Tennessee, Virginia, West Virginia, and the District of Columbia is coordinated by the regional transmission organization (RTO) known as PJM Interconnection.
Electricity is purchased by the PJM Energy Market to satisfy both immediate and future consumer demand. It incorporates the sale or purchase of energy in the five-minute Real-Time Energy Market and the day-ahead Market of PJM (one day forward). The Learning Center has further information on the energy industry.
More than 1,379 electric generators and more than 85,103 miles of high-voltage transmission lines are monitored and coordinated by PJM. We are not equipment owners, just like air traffic controllers. Electrical plants and power lines belong to third parties.
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The complete question is:
Why is PJM, a regional network operator that includes PECO, asking consumers to find ways to safely save electricity until 10:00 AM tomorrow?
What are poor conductors of heat and electricity that are brittle and break easily.
Solid nonmetal elements are "poor conductors of heat and electricity that are brittle and break easily".
Elements that usually lack the characteristics of metals are called nonmetals. Nonmetals are generally poor conductors of electricity and heat because in nonmetals electrons are not free to move. Nonmetals can be in form of solids, gases, or liquids. Solid nonmetals are referred to as those nonmetals that are not ductile or malleable but are brittle or powdery. Solid nonmetals are breakable easily.
Therefore, it is concluded that solid nonmetals are bad conductors of electricity and heat that are brittle and break easily.
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In the figure show, what's the distance from point H to point C?
A. 2'
B. 18'6"
C. 18'
D. 2'6"
Answer:
B.
Explanation:
I think not sure hehe
mechanical engineering Please describe how you have prepared for your intended major, including your readiness to succeed in your upper-division courses once you enroll at the university.
Aspiring for success in a chosen major such as Mechanical Engineering would require a strong will or zeal to pull through and succeed, which is an ideal psychological prerequisite to success.
Additionally, Mechanical Engineering is a mix of Mathematics and Physics, a good background knowledge of these subjects would go a long way to ease your journey as it will aid the ability to grasp new concept and applications.Similarly, simulation and software packages related to Mechanical Engineering should be held in high esteem. This is because it will aid in understanding the practical aspect of the course and certainly yield good result.Hence, the combination of practical and theoretical knowledge in basic subject coupled with determination should be enough to succeed.
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You installed a new 40 gallon water heater with a 54,000 BTUh burner. The underground water temperature coming into the house is 55FHow long will it take to heat the water in the tank to a normal setting of 120F.Please show setup and calculations.
An aircraft engine operates on a simple ideal Brayton Cycle with a pressure ratio of 10. Heat is added to the cycle at a rate of 500 kW; air passes through the engine at a rate of 1 kg/s; and the air at the beginning of the compression is at 70 kPa and 0oC. Determine the power produced by this engine and its thermal efficiency. Use constant specific heats at room temperature.
Answer: look at the screenshot
The power and thermal efficiency of this engine is equal to 241 Kilowatts and 48.2% respectively.
How to calculate the power and thermal efficiency?
First of all, we would determine the thermal efficiency of this engine by applying the following formula:
\(\eta= 1-\frac{1}{r_p^{k-1/k}} \\\\\eta= 1-\frac{1}{10^{1.4-1/1.4}} \\\\\eta= 1-\frac{1}{10^{0.4/1.4}}\\\\\eta= 1-\frac{1}{10^{0.4/1.4}}\\\\\eta= 1-\frac{1}{10^{0.2857}}\\\\\eta = 0.482\)
Thermal efficiency = 48.2%.
Now, we can determine net power output as follows:
\(W_{out}=nq_{in}\\\\W_{out}= 0.482 \times 500\\\\W_{out}=241\;kW.\)
Power = 241 Kilowatts.
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Consider a 2.4-kW hooded electric open burner in an area where the unit costs of electricity and natural gas are $0.10/kWh and $1.20/therm (1 therm = 105,500 kJ), respectively. The efficiency of open burners can be taken to be 73 percent for electric burners and 38 percent for gas burners. Determine the rate of energy consumption and the unit cost of utilized energy for both electric and gas burners.
Answer:
1.75 kW
$0.137 kWh
4.61 kW
$3.16 therm
Explanation:
Utilized power input of the burner is
P(ui) = total power input * efficiency
P(ui) = 2400 W * 0.73
P(ui) = 1752 W or 1.75 kW
Unit cost of utilized energy is
C(ui) = Unit cost of electricity/efficiency
C(ui) = $0.1 / 0.73 kWh
C(ui) = $0.137 kWh
Power input to the gas burner is
P(gi) = Utilized power input of the burner / efficiency of the burner
P(gi) = 1.75 / 0.38
P(gi) = 4.61 kW
Unit cost of utilized energy is
C(gi) = Unit cost of gas /efficiency
C(gi) = $1.2 / 0.38 kWh
C(gi) = $3.16 therm
The * key is used for ____.
Consider the beam and loading shown where P is 144 kN and E = 200 × 109 Pa.
Determine the deflection at point C. (Round the final answer to two decimal places.)
The deflection at point C is 0.0025 m or 2.50 mm (rounded to two decimal places). To determine the deflection at point C, we can use the formula.
δ = (PL³)/(48EI)
Where δ is the deflection, P is the load, L is the length of the beam, E is the modulus of elasticity, and I is the moment of inertia.
First, we need to calculate the moment of inertia of the beam. Since it is a rectangular beam, the moment of inertia can be found using the formula:
I = (bh³)/12
Where b is the width and h is the height of the beam. In this case, b = 0.1 m and h = 0.2 m. So, I = (0.1 × 0.2³)/12 = 0.000133 m⁴.
Next, we can plug in the values to get:
δ = (144 × 10³ × 3³)/(48 × 200 × 10⁹ × 0.000133) = 0.0025 m
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Can you be convicted of a DUI with a BAC of less than the presumptive limit of .08?
Yes.
It is possible to be convicted of a DUI (Driving Under the Influence) with a blood alcohol concentration (BAC) below the presumptive limit of 0.08%.
The specific legal limit for DUI can vary by jurisdiction, and in many places, there is a tiered system where different levels of impairment can lead to different charges. Even with a BAC below the legal limit, if there is evidence of impaired driving or if other factors indicate a person's ability to operate a vehicle safely was compromised, they can still be charged with and convicted of DUI. The decision ultimately depends on the laws and regulations of the specific jurisdiction in which the incident occurred.
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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.
A particular DSL modem operates at 768 kbits/sec. How many bytes can it receive in 1 minute? USB 3.0 can send data at 5 Gbits/sec. How many bytes can it send in 1 minute?
Answer:
a. 1.6 Kbytes/min
b. 10.417 Mbytes/min
Explanation:
a. The DSL modem operates at 768 Kbits/sec.
But,
8 bits = 1 byte and 1 Kbit = 1 000 bits, so that:
= \(\frac{768 000}{8}\)
= 96 000 bytes
Therefore, the modem operates at 96 Kbytes/sec.
The byte to be received in 1 minute can be calculated thus;
Since 60 seconds = 1 minute, then:
= \(\frac{96000}{60}\)
= 1600
= 1.6 Kbytes/min
The modem receives 1.6 Kbytes/min
b. The USB sends 5 Gbits/sec.
But, 8 bits = 1 byte and 1 Gbit = 1000000000 bits so that:
= \(\frac{5000000000}{8}\)
= 625000000
= 0.625 Gbytes
The USB sends 0.625 Gbyte/sec.
Since 60 seconds = 1 minute, then:
= \(\frac{625000000}{60}\)
= 10416666.67
= 10.417 Mbytes/min
The county is normally the state's largest political and _____ unit.
Answer:
Hello There!!
Explanation:
The answer is territorial.
hope this helps,have a great day!!
~Pinky~
\(\huge{\textbf{\textsf{{\color{navy}{An}}{\purple{sw}}{\pink{er}} {\color{pink}{:}}}}}\)
The county is normally the state's largest political and Territorial unit.
ThanksCrates A and B weigh 100lb and 50lb , respectively. If they start rest, determine their speed when t=5s. Also, find the force exerted by crate A on crate B during the motion. The cofficient of kinectic friction between the crates the ground is u= 0.25
To solve this problem, we can use Newton's second law of motion:We can also use the equation for kinetic friction:
ΣF = ma
where ΣF is the net force acting on the system, m is the total mass of the system, and a is the acceleration of the system. We can also use the equation for kinetic friction:
f = μN
where f is the force of kinetic friction, μ is the coefficient of kinetic friction,and N is the normal force.
First, we need to find the acceleration of the system:
ΣF = ma
F_net = F_A - f
where F_A is the force exerted by crate A on the system, and f is the force of kinetic friction. Since the system is starting from rest, its initial velocity is 0.
F_A = m_total*a
m_total = m_A + m_B
f = μ*N
N = m_total*g
where g is the acceleration due to gravity.
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Example 1.3 An electric circuit is supplied by a voltage represented by the expression v = 240 sin (471,239t) V. Calculate the following: a) The frequency of the supply voltage. the voltage
Answer: 75,000 Hz
Explanation:
To calculate the frequency of the supply voltage, we need to use the formula:
frequency = 1 / time period
where the time period is the time it takes for one complete cycle of the waveform. For a sine wave, the time period is given by:
time period = 2π / angular frequency
where the angular frequency is the rate of change of the angle with respect to time and is given by:
angular frequency = 2π × frequency
Comparing the given voltage expression v = 240 sin (471,239t) V to the general form of a sine wave:
v = Vm sin(ωt + θ)
where Vm is the amplitude, ω is the angular frequency, t is time, and θ is the phase angle, we can see that the amplitude is 240 V, the angular frequency is 471,239 rad/s, and there is no phase angle (θ = 0).
Using the formula for angular frequency, we can find the frequency:
angular frequency = 2π × frequency
471,239 = 2π × frequency
frequency = 471,239 / (2π) ≈ 75,000 Hz
Therefore, the frequency of the supply voltage is approximately 75,000 Hz.
Hope this helps, :^)
A circuit has two resistors in parallel, each resistor is 6 ohms. This circuit is connected to a single resistor of 6 ohms, to form a series-parallel circuit. What is the total resistance of the circuit?
The tatal resistance of the series-parallel circuit with two resistor connected in parallel which combination is connected in series to a single resistor is 9 ohms.
What is a resistance?
This can be defined as the opposition to current flow in a circuit.
To calculate the total resistance, first we need to find the total resistance of the parallel resistor.
For parallel,
R' = (R₁R₂)/(R₁+R₂)............Equation 1Where:
R' = Total resistance of the parallel resistor.
From the question,
Given:
R₁ = 6 ohmsR₂ = 6 ohmsSubstitute these values into equation 1
R' = (6×6)(6+6)R' = 3 ohms.Finally, we combine the effective parallel resistance in series to the single resistance to the the total resistance of the circuit.
Rt = R'+R₃.................. Equation 2Where:
Rt = Total resistance of the circuit.From the question,
R' = 3 ohmsR₃ = 6 ohmsSubstitute these values into equation 2
Rt = 3+6Rt = 9 ohms.Hence, the total resistance of the circuit is 9 ohms.
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A___ remote control can be an advantage to an
operator who is welding close to the power source.
•wireless
•corded
•cable technology
•none of these
Answer:
Wireless
Explanation:
A wireless remote control can be an advantage to an operator who is welding close to the power source. Hence, option A is correct.
What is wireless remote control?An electrical device used to wirelessly and remotely operate another device is a remote control, often known as a remote or clicker. Consumer gadgets, such as television sets, DVD players, and other home appliances, can be controlled by a remote control.
In the current electronic market, remote control systems fall into three primary categories: IR-based systems, RD-based systems, and BT-based systems. the receiver and the remote must be lined up exactly for infrared, also known as IR.
IR, on the other hand, is unable to pass through a number of materials but can operate over a much wider spectrum. This allows the user far greater freedom and control in environments with challenging terrain and obstacles.
Thus, option A is correct.
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a ball bounces off a wall with a velocity whose magnitude is less than it was before hitting the wall. is the collision elastic? explain. O Yes, momentum is conserved so the co n must be elastic. ONo, there is a loss of kinetic energy in the collision, so it is inelasti
The correct answer is "no," because there is a loss of kinetic energy in the collision, so it is inelastic. In an inelastic collision, kinetic energy is not conserved, and some of it is converted into other forms of energy, such as heat or deformation.
A collision refers to an event where two or more objects come into contact with each other, resulting in a change in their motion or properties. Collisions can occur between objects of various sizes and in different contexts, such as physics, engineering, sports, or everyday life. In an elastic collision, the total kinetic energy of the system is conserved before and after the collision.
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Why should a real source NOT be modeled as an ideal current source in series with a resistor? A) because in such a model, output current is not a function of output voltage
B) because a real source should be modeled using an ideal voltage source, not an ideal current source
C) because an ideal current source cannot be in series with a resistor
D) because the resistance should be a function of the current, not vice versa
Genuine source NOT be treated as an ideal current source coupled to a resistor since the output current in that case is not a function of the output voltage.
The voltage across an ideal current source is arbitrary, and the ideal current source has unlimited internal resistance.
There won't be any loading effect caused by the source resistor if a genuine source is modelled as an ideal current source connected in series with a load and a resistor. This is because the source current will flow through the series arrangement of the load and the source resistor.
As a result, the output current flowing through the load will always match the source current.
As a result, the output current won't depend on the output voltage.
Therefore, choice A is the best one.
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