What is the minimum resistance which can be made using five resistors each of 1/5

Answers

Answer 1
Answer: The minimum resistance to the flow of electrical current is achieved when
the resistors are connected in parallel, just as the minimum resistance to the
flow of vehicular traffic is achieved when several lanes are built in parallel.

When 5 equal resistors are connected in parallel, the net resistance of their
combination is just 1/5 of the value of each one. 

So 5 equal resistors in parallel, each with a resistance of 1/5 ohm, have a
combined net resistance 0f 1/25 ohm.

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Two students grab a slinky and start waving it up and down. A third student counts the number of waves that pass by every second and measures the distance between the wave peaks. This data is recorded and a graph is made to show the results.Determine the velocity of the wave produced.

A) 1 m/s

B) 2 m/s

C) 3 m/s

D) 6 m/s


Graph Attached*

Answers

Velocity = frequency * wavelength

v = fλ

Just pick any points on the graph for frequency f and corresponding λ

Taking the first red point at the top.

λ = 6m    f = 1 Hz

v = 6 * 1

v = 6 m/s

D. 

A fast car (Car A) and a slow car (Car B) both travel the same distance. Which car takes more time to do this? Explain.

Answers

Answer:

Input work is the work done on a machine as the input force acts through the input distance. This is in contrast to output work which is a force that is applied by the body or system to something else. Output work is the work done by a machine as the output force acts through the output distance.Jan 15, 2020 whhdbd dhd dvd s bs sbs shs shs sh s

Explanation:

avsvsyxsgzvs zvx shs dhx xbx dhd dvd dj

A 3.00 kg toy falls from a height of 10.0 m. Just before hitting the ground, what will its kinetic energy be?

Answers

Answer:

294 J

Explanation:

To find the kinetic energy (KE) of a 3.00 kg toy falling from a height of 10.0 m, we'll use the kinetic energy formula: KE = 0.5 * m * v^2, where 'm' is the mass of the toy, and 'v' is its velocity.

We'll also apply the conservation of energy principle, which states that the total energy of an isolated system remains constant. This means that the gravitational potential energy (PE) of the toy at the initial height is equal to its kinetic energy just before hitting the ground.

The formula for gravitational potential energy is PE = m * g * h, where 'm' is the mass of the object, 'g' is the acceleration due to gravity, and 'h' is the height of the object.

So, we can equate these two expressions and solve for 'v':

0.5 * m * v^2 = m * g * h

v^2 = 2 * g * h

v = √(2 * g * h)

Plugging in the given values:

v = √(2 * 9.8 m/s² * 10.0 m)

v ≈ 14.0 m/s

Now that we have the velocity of the toy, we can calculate its kinetic energy using the KE formula:

KE = 0.5 * m * v^2

KE = 0.5 * 3.00 kg * (14.0 m/s)^2

KE ≈ 294 J

So, just before hitting the ground, the kinetic energy of the toy is approximately 294 joules.

A bulldozer does a work of 50,000 Joules to move a boulder through a distance of 15m. how much force is applied to move the boulder​

Answers

Answer:

Force applied by bull dozer is 3333.33 joules.

Explanation:

Which of these statements would suggest that digital television transmission is a better method than analog?

Answers

Answer:   A  digatil is newer better

Explanation:

What is the moment of the couple formed by the two forces applied to the corners b and d of a rectangular plate, given that p = 88-n? Resolve each force into horizontal and vertical components, and add the moments of the resulting couples?

Answers

The moment of the couple formed by the two forces applied to the corners b and d of a rectangular plate, given that p = 88-n, is 7.33 N * m.

What is the moment of the couple formed by the two forces applied to the corners b and d of a rectangular plate?

To resolve each force into horizontal and vertical components, we can use the following equations:

Horizontal component = P * cos(theta)

Vertical component = P * sin(theta)

where P is the magnitude of the force and theta is the angle between the force and the horizontal.

In this case, both forces are applied at a 50-degree angle to the horizontal. Therefore, the horizontal and vertical components of each force are:

Horizontal component = 88 N * cos(50 degrees) = 51.42 N

Vertical component = 88 N * sin(50 degrees) = 61.28 N

To calculate the moment of the couple, we need to multiply the force by the perpendicular distance between the line of action of the force and the origin of the moment. In this case, the perpendicular distance is the length of the plate.

The moment of the couple formed by the two forces is:

Moment = (51.42 N * 0.5 m) + (61.28 N * 0.3 m) = 7.33 N * m

Therefore, the moment of the couple formed by the two forces applied to the corners b and d of a rectangular plate, given that p = 88-n, is 7.33 N * m.

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