Explain why knowing a combination of grappling and striking martial arts is advantageous during a street self defense scenario. Explain how both are beneficial

Answers

Answer 1

Knowing a combination of grappling and striking martial arts is highly advantageous during a street self defense scenario. This is because both grappling and striking techniques offer unique benefits that complement each other, providing a comprehensive set of skills that can be applied in various situations.

In a self defense scenario, grappling techniques, such as throws and joint locks, can be used to immobilize an opponent and prevent them from causing harm. Additionally, grappling allows for control and manipulation of an attacker's body, allowing for strategic positioning and the opportunity to escape or defend oneself.

On the other hand, striking techniques, such as punches and kicks, can be used to incapacitate an attacker quickly and efficiently. Striking can also create distance between oneself and the attacker, reducing the likelihood of further harm.

Combining these two techniques offers an added advantage, as it allows for a wider range of options depending on the situation. For example, if an attacker is too close for striking, grappling can be used to gain control of the situation. Similarly, if an attacker is too far for grappling, striking techniques can be used to keep them at bay.

In conclusion, knowing a combination of grappling and striking martial arts is highly advantageous during a street self defense scenario. Both techniques offer unique benefits that complement each other, providing a comprehensive set of skills that can be applied in various situations.

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Related Questions

I WILL GIVE BRAINLIEST!!!!!Which site is moving the fastest? Which is moving Slowest?
Norco North= 2.4 cm/yr North East= -2.3 cm/yr
Site 6106 North= 2.4 cm/yr East =-2.15 cm/yr
MT. Luna North= 1.4 cm/yr East= -1.2 cm/yr
Arrowhead North= 1.7 cm/yr East= -1.6
Point65 North= 1.4 cm/yr East= -1.5 cm/yr

Answers

Answer:

Fastest: Norco

Slowest: Mt luna

The use of which one of the following is the most preferred in a disinfection process for salon implements?
A.
A. autoclave

B.
B. gamma radiation

C.
C. ultraviolet radiation

D.
D. high frequency sound waves

Answers

Among the options given, the use of "autoclave" is the most preferred in a disinfection process for salon implements. Autoclave is a method of sterilizing materials through high-pressure steam.

Autoclaves are the best means of disinfecting salon implements because they kill both bacterial spores and fungi, as well as viruses.An autoclave is used in beauty salons to sterilize items that may have been contaminated with blood, fungi, or bacteria. An autoclave, unlike other forms of sterilization, completely eliminates all types of microorganisms, including viruses and spores, from tools and equipment.

Disinfection is the method of reducing the number of microorganisms on an item to a degree where it is no longer harmful. Bacterial endospores are the most challenging microorganisms to remove or kill. An autoclave is the only method of sterilization that effectively kills all types of bacterial endospores.

An autoclave is the best way to disinfect salon implements since it destroys both bacterial spores and fungi as well as viruses. Sterilization, the process of killing or removing all types of microorganisms, is necessary for beauty salons to guarantee the safety of their customers. Disinfection is the procedure of reducing the number of microorganisms to a point where they are no longer dangerous. Autoclaving is the preferred method of sterilization for salon equipment since it is the only method that can kill bacterial spores.Autoclaves have been used in beauty salons for a long time to sterilize tools and equipment. They are highly effective and have been shown to kill all types of microorganisms, including spores. Autoclaves work by subjecting the objects being sterilized to high-pressure steam. This procedure ensures that all microorganisms are killed and that the objects are safe to use. In conclusion, the use of autoclave is the most preferred in a disinfection process for salon implements because it is the only method that can kill all types of microorganisms, including bacterial spores, fungi, and viruses.

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This country has become an attractive manufacturing location for semiconductors because of the number of manufacturing plants in the country and availability of workers skilled in semiconductor production.

Answers

This country has become an attractive manufacturing location because of availability of workers skilled in semiconductor production is True.

What is Production?

This involves the process of conversion of raw materials into finished products.

It involves the factors of production which is why the country became an attractive manufacturing location for semiconductors because of the number of manufacturing plants in the country and availability of workers skilled in semiconductor production.

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A baseball with a mass of 0. 15 kilograms collides with a bat at a speed of 40 meters/second. The duration of the collision is 8. 0 x 103 seconds. The

ball moves off with a speed of 50 meters/second in the opposite direction. What is the value of the force?

Answers

The value of force is 1.7 × 10⁻³ N, with the direction opposite to that of the bat's motion.

When an object collides with another object, they exchange energy. For example, a baseball and bat collision or a car collision. When two objects collide, the force of the collision has to be equal on both sides of the collision according to Newton's Third Law. So, to find the value of force, we will apply the equation:

F = ΔP / ΔT

where F is the force, ΔP is the change in momentum, and ΔT is the time of collision. The equation represents the impulse momentum theorem.

Now, let's apply the given values to the above equation.

Final momentum (p2) = mass × final velocity (v2)

p2 = 0.15 kg × (-50 m/s)

p2 = -7.5 kg.m/s

Initial momentum (p1) = mass × initial velocity (v1)

p1 = 0.15 kg × (40 m/s)

p1 = 6 kg.m/s

Change in momentum (ΔP) = p2 - p1

ΔP = -7.5 kg.m/s - 6 kg.m/s

ΔP = -13.5 kg.m/s

Time of collision (ΔT) = 8.0 × 10³ s

Now, putting the values of ΔP and ΔT in the equation of impulse momentum theorem, we get:

F = ΔP / ΔT

F = -13.5 kg.m/s ÷ 8.0 × 10³ s

F = -1.7 × 10⁻³ N

Thus, the value of force is 1.7 × 10⁻³ N, with the direction opposite to that of the bat's motion.

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State the Boyle's Law. If the graph for Boyle's law is straight line through the origin then state the quantity taken along: a) X-axis , b)Y-axis.(NOTE: Please clearly mention the quantities appropriately by mentioning the axes)

Answers

Answer:

(a) X- axis represent (1/P) inverse of pressure

(b) Y-axis represent (V) volume

Explanation:

Boyle's Law States that at constant temperature, the volume of a fixed mass of gas is inversly proportional to its pressure. It can be expressed mathematically as

V α 1/P

VPα1

removing the proportionality sign and introducing a constant

VP = k

V₁P₁ = V₂P₂

Where V₁ and V₂ are initial and final volume respectively, P₁ and P₂ are initial and final pressure respectively.

If the graph for Boyle's law is straight line through the origin,

(a) X-axis represent (1/P) inverse of pressure

(b) Y- axis represent (V) volume.



will give correct answer brainliest




In a trial, an expert witness uses the conservation of momentum to demonstrate which initial velocities would give the final states that occurred in the accident. Can using the conservation of momentum be justified in this case? Yes, because momentum is conserved in all collisions. No, momentum is only conserved in elastic collisions which this is not. No, energy is always conserved, but momentum is only sometimes conserved. Yes, because momentum is conserved in inelastic collisions which all car accidents are.​

will give correct answer brainliestIn a trial, an expert witness uses the conservation of momentum to

Answers

Answer :
Yes, because momentum is conserved in all inelastic collisions which all car accidents are

Explanation :
What is law of conservative of momentum

It expresses that In a harmony the underlying force is equivalent to the last energy of the body

A red 120 kg bumper car moving at 4 m/s collides with a green 100 kg bumper car moving at 3 m/s. The red bumper car bounces off at 2 m/s. What is the green car's final velocity?​

Answers

we can utilize the equation pi=pf (p=momentum). because p=mv, we can sub in the initial masses and velocities as well as the finals in order to form an equation. this results in 120(4)+100(3)=120(2)+100x. this can be simplified to 540=100x, or x=5.4 m/s.

which is a dopant for a p-type semiconductor?

a. arsenic
b. indium
c. phosphorus
d. antimony

Answers

A. Arsenic is the answer

A 8.0\,\text {kg}8.0kg8, point, 0, start text, k, g, end text box is released from rest at a height y_0 =0.25\,\text my 0 ​ =0.25my, start subscript, 0, end subscript, equals, 0, point, 25, start text, m, end text on a frictionless ramp. The box slides from the ramp onto a rough horizontal surface. The box slides 2.0\,\text m2.0m2, point, 0, start text, m, end text horizontally until it stops.

Answers

Answer:

μ = 0.125

Explanation:

To solve this problem, which is generally asked for the coefficient of friction, we will use the conservation of energy.

Let's start working on the ramp

starting point. Highest point of the ramp

         Em₀ = U = m h y

final point. Lower part of the ramp, before entering the rough surface

        \(Em_{f}\) = K = ½ m v²

as they indicate that there is no friction on the ramp

          Em₀ = Em_{f}

          m g y = ½ m v²

          v = \(\sqrt{2gy}\)

we calculate

          v = √(2 9.8 0.25)

           v = 2.21 m / s

in the rough part we use the relationship between work and kinetic energy

          W = ΔK = K_{f} -K₀

as it stops the final kinetic energy is zero

          W = -K₀

The work is done by the friction force, which opposes the movement

          W = - fr x

friction force has the expression

          fr = μ N

let's write Newton's second law for the vertical axis

         N-W = 0

         N = W = m g

we substitute

            -μ m g x = - ½ m v²

           μ = \(\frac{v^{2} }{2 g x}\)

Let's calculate

           μ = \(\frac{2.21^{2}}{2\ 9.8\ 2.0}\)

           μ = 0.125

A 8.0 kg box is released from rest at a height y0 = 0.25 m on a frictionless ramp. The box slides from the ramp onto a rough horizontal surface. The box slides 2.0 m horizontally until it stops.

What is the friction coefficient of the horizontal surface?

Answer: 0.125

You are in a room that has three switches and a closed door. The switches control three light bulbs on the other side of the door. Once you open the door, you may never touch the switches again. How can you definitively tell which switch is connected to each of the light bulbs?

Answers

Answer:

By watching in the door lock

Answer:

.-. you can flip a switch and look at the bottom or the top of the door and see if there’s a light of there isn’t then flip another one.

also the other chat that we were talking on got deleted

Steam passes steadily through a turbine and condenser as shown in the figure below. After expanding through the turbine and producing 1000kW of power, the steam is at a pressure of 0.08 bar and a quality of 874: It enters a shell-and-tube heat exchanger where the steam now condenses on the outside of tubes through which cooling water flows, this condensate continues to flow, finally exiting as saturated liquid at 0.08 bar. The mass flow rate of the condensing steam is 58kg/s. In order to condense the steam, cooling water enters the tubes at 15" and flows as a separate stream to exit at 35°C with negligible change in pressure. Stray heat transfer is negligible as are kinetic and potential effects. Considering the steam inside the turbine as a system, is the system best described as open, closed, or isolated? What is the mass flow rate of steam entering the turbine in kg/s? What is the enthalpy at the inlet of the turbine in kJ/kg? What is the mass flowrate of the cooling water in kg/s? If the diameter of the cooling water line is 10cm, what is the velocity of the cooling water in m/s when it enters the condenser? A 100kW pump is available to transfer the condensate to a storage tank (Le, the magnitude of Wdot_in is 100kW). What would be the maximum increase in height in meters that the pump could move the water assuming that the temperature, pressure, and velocity of the condensate are roughly equal at the inlet and outlet of the pump section?

Answers

The system can be best described as an open system. The mass flow rate of steam entering the turbine is 58 kg/s. The enthalpy at the inlet of the turbine is not provided in the information provided.

Based on the given information, the system is best described as an open system because steam enters and exits the system while interacting with its surroundings.

The mass flow rate of the steam entering the turbine is given as 58 kg/s.

The enthalpy at the inlet of the turbine is not provided in the information given. It would require additional data, such as the specific enthalpy of the steam at the given conditions, to calculate the enthalpy.

The mass flow rate of the cooling water is not provided in the information given. Without the mass flow rate, it is not possible to calculate the velocity of the cooling water when it enters the condenser.

The maximum increase in height that the pump could move the water cannot be determined without additional information. The given information does not provide the necessary data, such as the pressure difference across the pump or the pump efficiency, to calculate the maximum increase in height.

Overall, additional information is needed to provide specific answers to the questions about enthalpy, cooling water mass flow rate, power cooling water velocity, and the maximum increase in height that the pump could achieve.

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In a bell-shaped curve, the x-axis (horizontal direction) of the graph represents which of the following

Answers

X-axis represents the value of a particular characteristic; characteristics of an organism can include such traits as size and color.

What is a bell-shaped curve?

A typical sort of distribution for a variable is the bell curve, commonly referred to as the normal distribution. The normal distribution graph, which has a symmetrical bell-shaped curve, is what gave rise to the phrase "bell curve."

The highest point on the curve, or the top of the bell, denotes the most likely outcome in a set of data (its mean, mode, and median), while all other potential outcomes are symmetrically distributed around the mean, resulting in a downward-sloping curve on each side of the peak. The bell curve's standard deviation provides information about its width.

The x-axis represents a variable's value, while the y-axis provides information about the likelihood that we will see that value.

I understand the question you are looking for is this:

In a bell-shaped curve, the x-axis (horizontal direction) of the graph represents which of the following?

a. The value of a particular characteristic; characteristics of an organism can include such traits as size and color.

b. The number of individuals

c. Time

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1. (a) At what temperature do the Fahrenheit and Celsius scales have the same numerical value? (b) At what temperature do the Fahrenheit and Kelvin scales have the same numerical value? 1. How large an expansion gap should be left between steel railroad rails if they may reach a maximum temperature 30 deg C greater than when they were laid? Their 1 original length is 12.5 m. Use a=1.2x10-5 O m

Answers

The point at which the Fahrenheit and Celsius scales have the same numerical value is -40°C. The point at which the Fahrenheit and Kelvin scales have the same numerical value is 459.67°F the expansion gap that should be left between the steel railroad rails is 0.0045 m or 4.5 mm.

(a) The point at which the Fahrenheit and Celsius scales have the same numerical value is -40°C. This is because this temperature is equivalent to -40°F.  At this temperature, both scales intersect and meet the same numerical value.
(b) The point at which the Fahrenheit and Kelvin scales have the same numerical value is 459.67°F. At this temperature, both scales intersect and meet the same numerical value.
For the second part of the question:
Given that the original length of the steel railroad rails is 12.5m, the maximum temperature rise is 30℃, and the coefficient of linear expansion (a) is 1.2×10⁻⁵/℃.
Therefore, the expansion ΔL can be calculated as:
ΔL = L×a×ΔT
Where L is the original length of the steel railroad rails, a is the coefficient of linear expansion, and ΔT is the temperature rise.
Substituting the given values, we have:
ΔL = 12.5×1.2×10⁻⁵×30
ΔL = 0.0045 m
Therefore, the expansion gap that should be left between the steel railroad rails is 0.0045 m or 4.5 mm. This gap allows the rails to expand without buckling or bending.

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A capacitor is a simple electrical device. It consists of three parts sandwiched tightly together. Two outer layers made of conductors are separated by an insulating middle layer. A simple circuit is made with a capacitor, a wire, and a battery. When fully connected, which of the following occurs?
1. The insulator stops the flow of electricity.

2. One plate becomes positively charged.

3. The net charge on the capacitor remains at zero.

Answers
I only

II only

I, II, and III

I and II only

Answers

A substance that prevents free flow of electrical current is known as an electrical insulator. The electrons in the insulator's atoms are securely bonded and immobile.

Which plate is electrically positive?

Protons are in overabundance on an aluminium plate that is positively charged. A positively charged aluminium plate has a deficiency of electrons when viewed from the perspective of electrons. We might characterise each extra proton as being somewhat dissatisfied in terms of people.

How could a plate get charged up positively?

The other plate develops an imposed positive charge as a result of the electron's electric field, which pulls on the electrons that are in that plate and repels other electrons.

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It was on the morning of January 1, 2022, during the New Year celebration, that you heard gun shots
at a distance. Mang Tomas your neighbor woke up to find his five-year-old bulldog dead of a gunshot
wound. You begin to think that the gun shots heard the night before may have something to do with the
incident.
 There are three suspects in the neighborhood that are registered owners of .45 pistols:
 Suspect A: has a record of noise violations for loud parties he frequently holds at his residence.
 Suspect B: has no criminal record
 Suspect C: has a record that includes possession of prohibited drugs. He served time in prison
and was released after the completion of his sentence.

Answers

The prime suspect in this case is suspect C because he has a previous criminal record.

Who is the prime suspect in the case?

A suspect is a person who is under investigation of charges of a particular crime leveled against him.

During an investigation, the prime suspect is always the person who has a previous criminal record. Hence, the prime suspect in this case is suspect C.

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Which of the following statements are true?Check all that applyFor the gas to do positive work, the cycle must be traversed in a clockwise manner.Positive heat is added to the gas as it proceeds from state C to state D.The net work done by the gas is proportional to the area inside the closed curve.The heat transferred as the gas proceeds from state B to state C is greater than the heat transferred as the gas proceeds from state D to state A.

Answers

Out of the given statements, the true statements  are that positive work occurs when the cycle is traversed in a clockwise manner, and the net work done by the gas is proportional to the area inside the closed curve.

1. For the gas to do positive work, the cycle must be traversed in a clockwise manner.
2. The net work done by the gas is proportional to the area inside the closed curve.

In a thermodynamic cycle, positive work is done when the cycle proceeds in a clockwise manner.

Additionally, the net work done by the gas in a cycle is proportional to the area enclosed by the cycle on a pressure-volume diagram.

Hence, Out of the given statements, the true ones are that positive work occurs when the cycle is traversed in a clockwise manner, and the net work done by the gas is proportional to the area inside the closed curve.

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Kent Swimm (who is taking physics for the second year in a row, and not because he likes it) has
rowed his boat to within three feet of the dock. In an effort to save a little time, he decides that he
will simply jump off his boat onto the dock, turn around and then tie down his boat. Explain to
Kent why this would not be too wise an idea.

Answers

Answer:

The boat moves away from the dock, he won't be able to grab the line

Explanation:

When he jumps, he applies a force to the boat and the boat exerts a force equal in magnitude and opposite in direction to the force he applied.  Because the friction is very low between the bottom of the boat and the water, the boat moves away from the dock.  He won't be able to lean over and grab the line.  This is Newton's 3rd Law of Motion.

Explain how inductive reasoning is inferior to deductive reasoning in establishing theory.

Answers

Answer: Created Fall 2016 by Ronald Wilson Inductive reasoning uses a set of specific observations to reach an overarching conclusion; it is the opposite of deductive reasoning. So, a few particular premises create a pattern which gives way to a broad idea that is likely true.

Explanation: No explanation lol. But I hope this is helpful!

what two elements are highlighted on group 3 of the periodic table​

Answers

Answer:

hello! Jaesuk~Sakai here!

Explanation:

The four group 3 elements are scandium, yttrium, lanthanum and actinium. “lanthanide” refers to the elements between lanthanum and lutetium. That term does not encompass scandium and yttrium. Scandium and yttrium act pretty much identically to lanthanides.

happy to help!!

Remember to always stay happy no matter what happens! ^^

Worker productivity is one of the most important factors that helps us determine the performance of an economy. Which of the following best describes productivity? a. capital per worker b. total number of hours worked c. per capita gdp d. total output in one year e.percentage change in output

Answers

Worker productivity is the amount of work done per hour of labor input. When you put it simply, productivity is defined as the amount of output generated per hour of work performed. Therefore, the most appropriate alternative from the options given would be "d. total output in one year."

What is Worker Productivity?

Worker productivity is a measure of the output of a particular worker or group of workers over a certain period of time. The amount of labor required to produce a certain amount of output is a measure of productivity. The level of output produced by each worker is determined by their productivity level.

When workers are more productive, they produce more products in a shorter amount of time, resulting in a more efficient and profitable operation. Worker productivity is calculated by dividing the total output generated by the total number of workers or hours worked, as you might be aware.

Therefore, the most appropriate option from the alternatives given would be "d. total output in one year."

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A spring with a spring constant of 100 N/m completes one oscillation in 2.4 seconds. What is the mass attached to the spring?
a. 9.7 kg
b. 14.6 kg
c. 13.3 kg
d. 5.2 kg
e. 12.3 kg

Answers

To solve this problem, we can use the formula for the period of oscillation of a spring-mass system:

T = 2π√(m/k)

where T is the period of oscillation, m is the mass attached to the spring, and k is the spring constant.

We are given that T = 2.4 seconds and k = 100 N/m. Substituting these values into the formula, we get:

2.4 = 2π√(m/100)

Squaring both sides and rearranging, we get:

m = (100/4π²) × (2.4²) = 12.3 kg (rounded to one decimal place)

Therefore, the mass attached to the spring is 12.3 kg.
Hi! I'd be happy to help you with your question. To find the mass attached to the spring, we need to use the formula for the period of a spring-mass system: T = 2π√(m/k), where T is the period (time for one oscillation), m is the mass, and k is the spring constant.

In this case, the spring constant (k) is 100 N/m, and the period (T) is 2.4 seconds. We can rearrange the formula to solve for the mass (m):

m = (T^2 * k) / (4π^2)

Substitute the given values into the formula:

m = (2.4^2 * 100) / (4π^2)
m ≈ (5.76 * 100) / (39.48)
m ≈ 14.61

The mass attached to the spring is approximately 14.61 kg.

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A car travelling at a constant velocity along a motorway covers a distance of 1.00 km in 50.0 s. To maintain this velocity the car produces a driving force of 230 N. Calculate the effective power of the car engine in maintaining this motion.​

Answers

Answer:

The answer for Power is 4600W or 4.6KW

Explanation:

Power is the time rate of doing work

Power=Work done/time

P=F×d/t

convert 1km to m

1km=1000m

P=230×1000/50

P=230000/50

P=4600W

P=4.6KW

What is the wavelength of light emitted when an electron relaxes from the n = 5 level to the n = 2 level?

Answers

The wavelength released in transition energy is 4.23 x 10¯⁶ m.

We need to know about transition energy to solve this problem. Electrons in a hydrogen atom can move to another level of energy. It is also called a transition. In this process, electrons will absorb or release their energy to move. The transition energy can be determined as

ΔE = E2 - E1

where ΔE is transition energy, E2 is the final state of energy and E1 is the initial state of energy.

The state energy of a hydrogen atom can be calculated by

E = -(13.6) / n² eV

E = h.c / λ

where n is the number of energy states, h is Planck constant (4.136 x 10¯¹⁵ eV/Hz), c is speed of light (3 x 10⁸ m/s) and λ is wavelength.

From the question above, we know that

n1 = 5

n2 = 2

By substituting the following parameter, we get

ΔE = E2 - E1

ΔE = -(13.6) / n2² - (-(13.6) / n1²)

ΔE = -(13.6) / 2² - (-(13.6) / 5²)

ΔE = 0.544 - 0.85

ΔE = -0.306 eV

the energy is minus because it got released.

Calculate the wavelength released

ΔE = 0.306 eV

h.c / λ = 0.306 eV

4.136 x 10¯¹⁵ . 3 x 10⁸ / λ = 0.306

λ = 4.23 x 10¯⁶ m

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Describe the energy of a roller coaster during one full down and up cycle. What type of energy did it have at the before it dropped? What energy did it have at the bottom of the cycle? What did the energy look like at the end of the cycle?

Answers

The roller coaster required work to get it to the top of the initial rise, where it now possesses gravitational potential energy. It possesses some kinetic energy as well because of its sluggish motion.

What kind of energy is left over after a roller coaster stops?

Yet, kinetic mechanical energy also isn't wasted. Instead, it is converted into thermal energy or sound by the friction, which is visible as a rise in temperature all along track and the steel wheels of the roller cars.

A roller coaster's first energy kind is what?

The two types of energy that are most crucial in roller coasters are kinetic energy and gravitational potential energy. The energy that an item has due to its height is called gravitational potential energy (PE = mgh), and it is equal to the mass of the object times its height times the gravitational constant.

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2. could you predict what would happen if you hold the tube horizontally and rotate the bob in a vertical circle? support your answer with calculations.

Answers

You can predict what will happen with the bob

If a sample of a radioactive isotope has a half-life of 1 year, how much of the original sample will be left at the end of the second year?

Answers

Answer:

1/4 of the original

Explanation:

That would be TWO half lives:

1/2  * 1/2   = 1/4   <======= 1/4 would be left

All of the following are kinds of forces except thrust acceleration gravity friction

thrust

acceleration

gravity

friction ​

Answers

Answer:

Acceleration

Explanation:

The choice from the given option which is not a force is acceleration.

Acceleration is defined as the rate of change of velocity of a body with time;

   Acceleration  = \(\frac{change in velocity}{time}\)  

Force is a pull or push on a body. The product of mass and acceleration is force.

Thrust is a form of forceGravity is a force acting on bodies with masses. Friction is a force that opposes motion,

1pt If an object is moving at a constant velocity, it means that....
A. no net force is acting on it
B. a constant force is acting on it in the direction of its motion
c. a constant force is acting on it in the opposite direction of its motion
D. several forces are acting on it, but one force is greater than the others

Answers

Answer:

thecool me

Explanation:

calculates the speed of the satellite which performs orbital motion around the earth from an altitude of 3600km?​

Answers

Answer:

Using the equation for orbital speed

orbital speed= square root of GM/r

Where

G= Gravitational Constant = 6.674x10^-11m^3/kg.s^2

M= mass of The Earth=5.972x10^24 kg

r= the combined radius of The Earth and the height of the satellite above The Earth=6378km+ 3600km= 9978km converting to meters gives (1000m=1km) 9978km*1000m/1km= 9,978,000m or 9.978x10^6m

orbital speed = square root of (6.674x10^-11*5.972x10^24/9.978x10^6= 63198m/s

Salem walked 60 m in 5 seconds, his average speed is.

Answers

Answer:

12m/s

Explanation:

60/5=12

Answer:

Explanation:

Solution,

Distance(d)=60m

Time(t)=5sec

Now,

A.speed=d/t

A.speed=60/5=12m/s

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