Register transfers among three registers (R0, R1, R2) are given as follows: CA: RO R2 CB: R1 R0, R2 ← R1 - Cc: RO ← R1, R2 RO Assuming that the control variables (C₁, CB, CC) are mutually exclusive, draw a logic diagram that implements a single bit of the above register transfers using three registers and two multiplexers. The logic diagram converts the control variables as inputs to outputs that are the SELECT inputs for the multiplexers and LOAD signals for the registers.

Answers

Answer 1

The logic diagram for the given register transfers involving three registers (R0, R1, R2) and two multiplexers would require a more detailed explanation and diagram representation.

How can the control variables (C₁, CB, CC) be converted into SELECT inputs for multiplexers and LOAD signals for registers in a logic diagram implementing register transfers among three registers (R0, R1, R2)?

The logic diagram would include three registers (R0, R1, R2) and two multiplexers. The control variables (CA, CB, CC) will serve as inputs to the logic diagram.

To implement the single-bit register transfer for CA: RO R2, the output of CA would be connected to the SELECT input of the first multiplexer. The output of the first multiplexer would be connected to the LOAD input of register R0, and the output of the first multiplexer would also be connected to the LOAD input of register R2.

Similarly, for CB: R1 R0, the output of CB would be connected to the SELECT input of the second

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Related Questions

A running man cannot stop as soon as he wants to stop. Explain why ?


Plz reply fast

Answers

Answer:

mass is not eager to be accelerated or in this case slowed down.

Explanation:

In general, Newton's 1st law states that every object will remain at rest or in uniform motion in a straight line unless compelled to change its state by the action of an external force.

What this means is that a mass is not eager to be accelerated or in this case slowed down. It will require an external force (muscle power) to get the mass of a running man to slow down. It is not instant also, because it takes time to slow down.

EXTRA

Supose the running man would try to stop instantly by purposely running against a brick wall. Even in that case, there is a small amount of time needed ( a fraction of a second perhaps) in which the moving mass of the man is forced to stop moving. That force is usually so huge, that it will injure someone in case of a crash, which might result even in death!

The purpose of an airbag or wearing a helmet, is to extend the time during a crash, FROM 0 to close to zero.

The layer of foam inside a helmet, protects the head in case of a crash, because it takes an amount of time for the head to squash the foam inside the helmet because the mass needs to be stopped ALMOST instantly. That difference between zero seconds and maybe 1 second, is sometimes enough to be able to survive a crash.

View the graph of sun hours in a city.
Average Monthly Sun Hours in Addis Ababa, Ethiopia
300 hrs
150 hrs
0 hrs
Jan
Feb
Mar Apr May
Jul Aug Sep
Oct Nov
Dec
Jun
Month
It can be predicted that in the following year, this city can expect the hours of sunshine to significantly increase after
which month?
January
May
July
September

Answers

It can be expected in this city that the hours of sunshine will significantly increase after the month of July

What is the trend in the hours of monthly sunshine in Addis Ababa?

The monthly hours of sunshine in the city is the average of daily sunshine in a month.

The trend as seen on th graph shows that monthly hours of sunshine is maximum between the months of December and January. Afterwards the monthly sunshine hours decreases.

Therefore, it can be expected in this city that the hours of sunshine will significantly increase after the month of July.

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View the graph of sun hours in a city.Average Monthly Sun Hours in Addis Ababa, Ethiopia300 hrs150 hrs0

A green ball has a mass of 0.525 kg and a blue ball has a mass of 0.482 kg. A croquet player strikes the green ball and it gains an initial velocity of 2.26 m/s. It then strikes the blue ball, which is initially at rest. After the collision, the green ball has a velocity of 1.14 m/s in the same direction. If the balls roll on a frictionless surface and the collision is head-on, what is the final velocity of the blue ball? (Round your answer to the nearest hundredths place.)

Answers

Answer:

v' = 1.21 m/s

Explanation:

Mass of a green ball, m = 0.525 kg

Mass of a blue ball, m' = 0.482 kg

Initial velocity of green ball, u = 2.26 m/s

Initial velocity of blue ball, u' = 0 (at rest)

After the collision,

The final velocity of the green ball, v = 1.14 m/s

We need to find the final velocity of the blue ball after the collision if the collision is head on. Let v' is the final velcity of the blue ball. Using the conservation of momentum to find it :

\(mu+m'u'=mv+m'v'\\\\0.525 (2.26)+0=0.525 (1.14)+0.482v'\\\\0.588=0.482v'\\\\v'=\dfrac{0.588}{0.482}\\\\v'=1.21\ m/s\)

So, the final velocity of the blue ball is 1.21 m/s.

from the definition of the moment of inertia, determine the moment of inertia of a uniform rod of mass m and length l rotating around its middle point.

Answers

The moment of inertia of a uniform rod of mass m and length l rotating around its middle point would be (1/12)ml^2.

What is a moment of inertia?

The moment of inertia of an object is a measure of its resistance to rotational motion. It is defined as the sum of the products of the mass and the square of the distance from each particle in the object to the axis of rotation.

Determining moment of inertia:
For a uniform rod of mass m and length l rotating around its middle point, the moment of inertia can be calculated using the formula:
I = (1/12)ml^2
where I is the moment of inertia, m is the mass of the rod, and l is the length of the rod.

The (1/12) term comes from the integration of the mass distribution over the length of the rod. It is important to note that this formula assumes that the rod is thin and has a uniform mass distribution.

So, the moment of inertia of a uniform rod of mass m and length l rotating around its middle point is (1/12)ml^2.

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name and describe the process that fuels the sun

Answers

Answer:

The Sun derives all its energy from a fusion cycle. In that process, tiny hydrogen molecules combine into a continuous proton-proton chain to create larger helium nuclei. The above figure illustrates the fusion of hydrogen into helium.

Explanation:

Hope this helps.

Answer:

nuclear fusion

Explanation:

In this process, small hydrogen molecules fuse together to form bigger helium nuclei in a continuous proton-proton chain.

Which is a physical property of matter that is always the same regardless of size or amount

Answers

Answer:

ntensive properties: A physical property that will be the same regardless of the amount of matter.

Explanation:

A 35 g bullet strikes a 5 kg stationary block and embeds itself in the block. The block and bullet fly off together at 8.6 m/s What was the original speed of the bullet?

Answers

Hi there!

We can use the conservation of momentum for a perfectly inelastic collision to solve.

\(m_1v_1 + m_2v_2 = v_f( m_1+ m_2)\)

m1, v1 = mass and velocity of bullet (0.035 kg and ? m/s respectively)

m2, v2 = mass and velocity of block (5 kg and 0 m/s respectively)

vf = combined final velocity (8.6 m/s)

Plug in the givens and solve:

\(0.035 (v_1) + 5(0) = 8.6(0.035 + 5)\\ \\ 0.035v_1 = 43.301\\ \\ v_1 = \frac{43.301}{0.035} = \boxed{1237.17 \frac{m}{s}}\)

the behavior of a wildfire is typically described
by:
a) spread and recurrence
b) intensity and spread
c) temperature and location
d) severity and seasonality
e) recurrence and fuel composition

Answers

The behavior of a wildfire is typically described by b) intensity and spread.

Wildfire behavior refers to the way the fire responds to the various factors that influence its spread and movement. The behavior of a wildfire is typically described by two main characteristics, which are intensity and spread. Intensity refers to the heat output of the fire and its potential for ignition and combustion. Spread, on the other hand, is the rate at which the fire is moving and how far it has spread. The intensity of a wildfire is influenced by several factors, including the type of fuel, weather conditions, and topography.

High-intensity wildfires tend to occur in areas with abundant and dry fuel, high temperatures, low humidity, and high winds, they can be dangerous and difficult to control, and they often result in significant damage to the environment and human communities. Spread is influenced by the same factors as intensity, as well as the presence of firebreaks, the availability of resources, and the tactics used by firefighting personnel. The speed and direction of the fire can vary greatly depending on the surrounding conditions, and it is important to monitor and assess these factors in order to manage the fire effectively. So therefore the behavior of a wildfire is typically described by b) intensity and spread.

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Sound can travel incredibly quickly: 1 mile in about 1 12 of a minute. Based on that, what is the approximate speed of sound?.

Answers

720 miles/h

If sound travels 1 mile for 1/12 of a minute, it means that in one minute it will travel 12 miles per minute, or 720miles per hour. so, answer is 720 miles/h

The slope of a distance-time graph will give

Answers

5.
explanation: the answer is 5

_________________________ was created to promote world trade through monitoring and maintaining fixed exchange rates and by making loans to countries with payments problems.

Answers

The International Monetary Fund (IMF) was created to promote world trade through monitoring and maintaining fixed exchange rates and by making loans to countries with payments problems.

The International Monetary Fund (IMF) is a major financial agency of the United Nations, and an international financial institution, headquartered in Washington, D.C., consisting of 190 countries. Its stated mission is "working to foster global monetary cooperation, secure financial stability, facilitate international trade, promote high employment and sustainable economic growth, and reduce poverty around the world. It now plays a central role in the management of balance of payments difficulties and international financial crises. Countries contribute funds to a pool through a quota system, from which countries experiencing balance of payments problems can borrow money.

So, The International Monetary Fund (IMF) was created to promote world trade through monitoring and maintaining fixed exchange rates and by making loans to countries with payments problems.

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The electric force between two charged objects is 64 N. What will be the magnitude of the electric force if the distance between these two
charges is cut in half?

Answers

DONT SUBMIT THE LINK. IT COULD CONTAIN BAD ACTIVITY OR COULD TAKE PERSONAL INFO!

An automobile travels a displacement of 75km 45 degrees north of east. How many kilometers north does it travel?

Answers

Answer:

It travelled 53.03 Km North.

The distance traveled by the automobile is 53.03 km north.

The given parameter:

the displacement of the automobile, = 75 km 45 degrees north of east.

To find:

the distance traveled by the automobile

The vertical component of the displacement is equal to the distance traveled by the automobile in north.

\(distance \ towards \ north = 75 \ km \ \times \ sin(45)\\\\distance \ towards \ north = 75 \ km \times 0.7071\\\\distance \ towards \ north = 53.03 \ km \ north\)

Thus, the distance traveled by the automobile is 53.03 km north.

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Help!!! If you cannot type in the box, dont answer.

Answers

I can

Exp: because I just can

Answer: lollllllllllllllllllllll

Explanation:

what do you meaningful by ma of a levers is 3 vr of a lever is 4 and effect of a machine is 60%?​

Answers

Answer:

To do this, you divide the distance from the fulcrum, the point at which the lever pivots, to the applied force by the distance from the fulcrum to the resistance force.

A 52 kg child is struck in the face by a 0. 25 kg dodgeball, as he is standing against a wall. If the child is knocked backward at 4. 2 m/s, what is the velocity of the dodgeball? (This answer is going to seem extreme)

Answers

The velocity of the dodgeball after the collision is approximately 352.8 m/s.

Using the conservation of momentum principle, we can write:

m_child * 0 + m_dodgeball * v = m_child * (-4.2) + m_dodgeball * v'

Substituting the given values, we get:

0.25 kg * v = 52 kg * (-4.2 m/s) + 0.25 kg * v'

Simplifying and solving for v', we get:

v' = (0.25 kg * v + 52 kg * 4.2 m/s) / 0.25 kg

v' = 352.8 m/s

velocity is a vector quantity that describes the rate of change of an object's position over time. It is defined as the displacement (change in position) of an object divided by the time interval over which the displacement occurred. Velocity is often expressed in units of meters per second (m/s).

Velocity includes both speed and direction, so two objects can have the same speed but different velocities if they are moving in different directions. In addition to describing the motion of objects, velocity is also used to calculate other important quantities in physics, such as acceleration and momentum. It plays a crucial role in many areas of physics, from classical mechanics to relativity, and is a fundamental concept in understanding the behavior of the physical world.

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what is the dose (gy) in a thin lif dosimeter struck by a fluence of 3*10^11 e/cm^2 with t0=20 mev

Answers

The dose in a thin LiF dosimeter struck by a fluence of 3*10^11 e/cm^2 with t0=20 MeV is 0.00796 Gy.
To determine the dose (Gy) in a thin LiF dosimeter struck by a fluence of 3*10^11 e/cm² with an initial energy (T0) of 20 MeV, you would need to know the energy deposition per unit mass (in J/kg or Gray) and the mass of the dosimeter.

Here's a brief explanation of the terms:

- Dose: It is the energy absorbed per unit mass, measured in Gray (Gy). In this context, it refers to the energy absorbed by the dosimeter from the fluence of particles.

- Dosimeter: A device that measures the absorbed dose of ionizing radiation. In your case, it's a thin LiF dosimeter.

- Fluence: The number of particles (such as electrons) incident on a specific area per unit area, measured in particles/cm². In your example, it is 3*10^11 e/cm².

To find the dose (Gy), you would need more information about the energy deposition per unit mass and the mass of the dosimeter.

To calculate the dose in a thin lif dosimeter struck by a fluence of 3*10^11 e/cm^2 with t0=20 mev, we need to use the following formula:

Dose (Gy) = Fluence (electrons/cm^2) * Conversion Factor * Energy Deposition Coefficient

The conversion factor for electrons in the air is 0.876 Gy/electron/cm^2, and the energy deposition coefficient for lithium fluoride (LiF) is 1.21 eV/electron. Therefore:

Dose (Gy) = 3*10^11 e/cm^2 * 0.876 Gy/electron/cm^2 * (20 MeV * 1.6*10^-19 J/electron) / (1.21 eV/electron * 1000 J/Gy)

Simplifying the units, we get:

Dose (Gy) = 3*10^11 * 0.876 * 20 * 1.6*10^-19 / 1.21 / 1000
Dose (Gy) = 0.00796 Gy

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developing a criterion for judging the effectiveness of a solution occurs during which step of the problem-solving process?

Answers

Developing a criterion for judging the effectiveness of a solution occurs during the step of evaluating solutions in the problem-solving process.

Problem-solving is the method of determining a problem's root cause and developing and executing an effective solution. Problem-solving is a critical skill for anyone to have in both their personal and professional lives. The problem-solving process entails the following steps:

1. Identifying and defining the problem

2. Gathering information

3. Developing potential solutions

4. Evaluating alternatives

5. Selecting the best solution

6. Planning and executing the solution

7. Monitoring the solution

You can follow these steps in any order. However, most successful problem-solving approaches are iterative, which means they go back and forth between steps until the best solution is found.

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he first right-hand rule relates which two quantities?
A.
current (thumb) to magnetic field (fingers)
B.
magnetic field (thumb) to current (fingers)
C.
current (thumb) to force (fingers)
D.
force (thumb) to current (fingers)
Reset Next

Answers

Answer: A.

current (thumb) to magnetic field (fingers)

Answer:

A. current (thumb) to magnetic field (fingers)

Explanation:

According to the Right-Hand Thumb rule, if we are holding a current- carrying straight conductor in our right hand such that the thumb points toward the direction of current, then the fingers will wrap around the conductor in the direction of the field lines of the magnetic field.

Hope it helps.

If you have any query, feel free to ask.

In a domestic electric circuit (220.V),an electric kettle of 3kW power rating is operatedthat has a current rating of 4A. What result do you expect? Explain.ii)In our homes there are two separate circuits one for high power rating appliances and other for low power rating appliances.Why?Givereasons.

Answers

Answer:

(i) It will take longer (75/22 times) the time to boil a given quantity of water compared to when the current is working at its rated capacity

(ii) The reasons are;

(1) For economy; most of the appliances in the home only require low power circuitry with thinner wire while a separate high power circuitry is created directly from the main supply for the high electric power rated appliances

(2) For safety; to prevent the over heating of the electric circuits when an high electric power appliance needs to be connected an high power electric power outlet has to be specified

Explanation:

(i) The power rating of the kettle = 3 kW

The voltage rating of the circuit, V = 220 V

The current rating, I = 4 A

The formula for electric power = I² × R = I × V

Therefore, we have;

Power produced = 220 V × 4 A = 880 V·A = 800 W

Hence, since the power produced is below the power rating of the electric kettle, it will take a longer time to boil a given amount of water than specified by the kettle manufacturer

The energy supplied H = V×I×t

Where:

t = Time in seconds

Therefore, we have;

3 kW = 3000 W;

3000 × t₁ = 880 × t₂

t₂/t₁ =3000/880 = 75/22

Hence the kettle will take 75/22 multiplied by the time it takes when working at rating capacity to boil a given quantity of water

(ii) This is so because the power consumption already factored in the electrical installation as well as the type of appliances utilized in the home allow for several low power rating consumption and few high power rating consumption

Therefore, for both economy and safety the electrical circuit are split to allow for the use of very thick copper or aluminium electric cables in the high power rating electric circuits to which can be plugged high electric power consuming devices such as the water heater and electric cooker

The low electric power consuming devices, such as the electric bulb and fans are connected to the low or "regular" power rating electric circuit outlets

The current required for high power and low power appliances is different and also the fuse rating required for both the appliances different, so two separate circuits are used for high power and low power appliances.

The difference between the two molar specific heats of a gas is 8000J/kgK. If the ratio of the two specific heats is 1.65, calculate the two molar specific heats.

Answers

Answer:

sorry

Explanation:

pls search on google

Miles and Joselin are riding a two person long board down an extremely dangerous hill while Chloe watches in horror and Talia in delight. At the end of the hill Alex and Jason are holing a crash pad to stop the dynamic duo from falling off the cliff. If the riders have a combined mass of 200 kg and an acceleration of 30 m/s^2, what Force will they crash the mattress with? Use the correct Force for full credit.

Answers

Answer:

They will crash with the force of 6,000N

Explanation:

Force is equal to mass time acceleration. When we multiply 200 kg, the mass, and 30 m/s2, the acceleration, the answer is 6,000.

Calculate the acceleration of a car (in m/s2) that accelerates from 0 to 25 m/s in 6 s along a straight road.

Answers

Answer:

4.2 m/s²

Explanation:

acceleration = final velocity - initial velocity / time

25 - 0 = 25

25 / 6 = 4.167

a ping-pong ball weighs 0.025 n. the ball is placed inside a cup that sits on top of a vertical spring. if the spring is compressed 0.055 m and released, the maximum height above the compressed position that the ball reaches is 2.84 m. assuming only conservative forces are applied to the ball, determine the spring constant. choose the right answer and justify it showing all your calculations.

Answers

The spring constant is 2.09 N/m.

To determine the spring constant, we can use the conservation of mechanical energy principle. When the spring is compressed, its potential energy is converted into gravitational potential energy when the ball reaches its maximum height. We can set up the equation:

(1/2) * k * x² = m * g * h

where k is the spring constant, x is the compression distance (0.055 m), m is the mass of the ball, g is the gravitational constant (9.81 m/s² ), and h is the maximum height (2.84 m). First, we need to find the mass of the ball:

0.025 N = m * 9.81 m/s²
m = 0.025 N / 9.81 m/s² = 0.00255 kg

Now we can substitute the values into the equation and solve for k:

(1/2) * k * (0.055 m)² = (0.00255 kg) * (9.81 m/s²) * (2.84 m)
k = (0.00255 kg * 9.81 m/s² * 2.84 m) / (0.5 * (0.055 m)²) = 2.09 N/m

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How high did a worker lift a 25 kg bag of sand if it now has 2940 of gravitational potential energy

Answers

Answer:

12 m

Explanation:

From the question given above, the following data were obtained:

Mass (m) of bag = 25 kg

Potential energy (PE) = 2940 J

Height (h) =?

Objects carried to a particular height will always experience an acceleration due to gravity of 9.8 m/s².

With the above in mind, we can obtain the height to which the load is lifted to as shown below:

Mass (m) of bag = 25 kg

Potential energy (PE) = 2940 J

Acceleration due to gravity (g) = 9.8 m/s².

Height (h) =?

PE = mgh

2940 = 25 × 9.8 × h

2940 = 245 × h

Divide both side by 245

h = 2940 / 245

h = 12 m

Therefore, the worker lifts the load to a height of 12 m.

Match the following moves to the correct total distance and displacement of the moves.

A) Move 12 m west and then 8 m east
B) Move 9 m west and then 16 m east
C) Move 10 m east and then 12 m west
D) Move 5 m east and then 12 m east

1) Displacement is 17 m
east; distance is 17 m
2) Displacement is 2 m west; distance is 22 m
3) Displacement is 7 m east; distance is 25 m
4) Displacement is 4 m west; distance is 20 m

Match the following moves to the correct total distance and displacement of the moves.A) Move 12 m west

Answers

Answer:

A=4

B=3

c=2

D=1

Explanation:

since the person moving in opposite direction so displacement =distance in east/west - distance in west/east

As the scattering angle in the Compton effect increases, the energy of the scattered photon A. increases. B. stays the same. C. decreases. D. decreases by $\sin \theta

Answers

The energy of the scattered photon increases as the scattering angle in the Compton effect increases. The correct option is A.

The Compton effect refers to the scattering of photons by charged particles, typically electrons. When a photon interacts with an electron, it can transfer some of its energy and momentum to the electron. As a result, the photon changes its direction and its energy.

In the Compton effect, the change in the energy of the scattered photon depends on the scattering angle, which is the angle between the initial and final directions of the photon. According to the Compton formula, the change in energy (ΔE) of the scattered photon is given by:

ΔE = E' - E = \(\frac{{h}}{{m_e c}}(1 - \cos \theta)\),

where E' is the energy of the scattered photon, E is the initial energy of the photon, h is the Planck's constant, me is the mass of the electron, c is the speed of light, and θ is the scattering angle.

From the Compton formula, it can be observed that as the scattering angle increases (θ increases), the term (1 - cosθ) becomes larger, resulting in a larger change in energy (ΔE). Therefore, the energy of the scattered photon increases as the scattering angle increases in the Compton effect. Option A is the correct answer.

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Express 48 m/s in terms of
1.km/h
2.m/min
3.km/s
4.km/minutes

Answers

48 m/s in terms of km/h is 720.8 km/h. In terms of m/min is 2880 m/min, in terms of km/s is 0.048 km/s and in terms of km/min is 2.88 km/min.

To solve this question, we need to understand some terms. The unit of velocity is measured in m/s. It can be expressed in different units of velocity.

1 km (kilometer) = 1000 meter

1 h (hour) = 3600 seconds

1 minutes = 60 seconds

To convert m/s into km/h,

48 m/s * 3600/1000 =  172.8 km/h

To convert m/s into m/min,

48 m/s * 60 = 2880 m/min

To convert m/s into km/s,

48 m/s ÷ 1000 = 0.048 km/s

To convert m/s into km/minutes,

48 m/s * 60 / 1000 = 2.88 km/min

Therefore, the 48 m/s expressed is 172.8 km/h, 2880 m/min, 0.048 km/s and 2.88 km/min.

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48 m/s is equivalent to  172.8 km/h, 2880 m/min, 0.048 km/s, and 2.88 km/minute.

To express 48 m/s in different units of velocity:

km/h (kilometers per hour):

To convert m/s to km/h, we can use the conversion factor of 3.6 since 1 m/s is equal to 3.6 km/h.

48 m/s * (3.6 km/h / 1 m/s) = 172.8 km/h

Therefore, 48 m/s is equivalent to 172.8 km/h.

m/min (meters per minute):

To convert m/s to m/min, we can use the conversion factor of 60 since there are 60 seconds in a minute.

48 m/s * (60 m/min / 1 s) = 2880 m/min

Therefore, 48 m/s is equivalent to 2880 m/min.

km/s (kilometers per second):

Since 1 kilometer is equal to 1000 meters, to convert m/s to km/s, we divide the value by 1000.

48 m/s / 1000 = 0.048 km/s

Therefore, 48 m/s is equivalent to 0.048 km/s.

km/minute (kilometers per minute):

To convert m/s to km/minute, we first need to convert m/s to km/s (as calculated in the previous step) and then multiply by 60 to convert seconds to minutes.

0.048 km/s * 60 = 2.88 km/minute

So, 48 m/s is equivalent to 2.88 km/minute.

Hence, 48 m/s is equivalent to approximately 172.8 km/h, 2880 m/min, 0.048 km/s, and 2.88 km/minute.

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Which is the asterism and which is the constellation: Orion and Orion's belt?

Answers

Orion is a constellation, and Orion's Belt is an asterism.

A constellation is a group of stars that appear to form a pattern when viewed from Earth, while an asterism is a pattern of stars that is part of a larger constellation. Orion's Belt is an asterism within the larger constellation of Orion.On the celestial equator, Orion is a well-known constellation that can be seen from anywhere in the world. It is one among the night sky's most noticeable and familiar constellations.In the case of Orion, the asterism is formed by three bright stars in a row – Alnitak, Alnilam, and Mintaka – in the middle of the constellation.

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Orion is a constellation, and Orion's Belt is an asterism.

A constellation is a group of stars that appear to form a pattern when viewed from Earth, while an asterism is a pattern of stars that is part of a larger constellation. Orion's Belt is an asterism within the larger constellation of Orion.On the celestial equator, Orion is a well-known constellation that can be seen from anywhere in the world. It is one among the night sky's most noticeable and familiar constellations.In the case of Orion, the asterism is formed by three bright stars in a row – Alnitak, Alnilam, and Mintaka – in the middle of the constellation.

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Along the frictionless path you have chosen in question 8, the main force(s) acting on the puck after receiving the kick is (are):
O a downward force of gravity.
a downward force of gravity, and a horizontal force in the direction of motion.
a downward force of gravity, an upward force exerted by the surface, and a horizontal force in the direction of motion.
a downward force of gravity and an upward force exerted by the surface.
none. (No forces act on the puck.)

Answers

The main force(s) acting on the puck after receiving the kick is a downward force of gravity, an upward force exerted by the surface, and a horizontal force in the direction of motion.

What is friction?

Friction can be defined as that resistance that one surface or object encounters when moving over another.

So therefore, the main force(s) acting on the puck after receiving the kick is a downward force of gravity, an upward force exerted by the surface, and a horizontal force in the direction of motion

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