1) The _________ would be considered a mid-range club? (hint: golf clubs)2) The strength of the golfer, the form of the golfer, the wind, and the ________ affect the distance the gulf ball will travel.
A. age of the golfer
B. temperature
C. course conditions
D. height of the golfer

Answers

Answer 1
Answer: C. course conditions
If the grass is grown then the golf ball will not be able to able to cover good ground distance
Answer 2
Answer:

The TaylorMade M3 Irons are to be considered a mid-range club and is one of the best of 2018.

The strength of the golfer, the form of the golfer, the wind, and the course conditions affect the distance the gulf ball will travel.

Course conditions are really important for a golfer as the grass on the course can determine a lot how the ball moves about after its first bounce.

The heavier the grass and course conditions the lesser the ball travels and vice versa obviously. Same goes if the conditions are damp or not.


Related Questions

The balanced half-reaction in which dichromate ion is reduced to chromium metal is a ________ process. a. two-electron b. six-electron c. four-electron d. three-electron e. twelve-electron
Which of the following statements is an accurate description of vibrations? A. Neither ultrasonic nor infrasonic vibrations can be heard by humans. B. The frequency of infrasonic vibrations is much too high to be heard by humans. C. Ultrasonic vibrations have a frequency lower than the range for normal hearing. D. Infrasonic vibrations are used in sonar equipment as well as to detect flaws in steel castings.
you toss a bowling ball straight up into the air with a speed of 2.1. how long does it take the bowling ball to reach its highest point?
A tuning fork with a frequency of 512 Hz is used to tune a violin. When played together, beats are heard with a frequency of 4 Hz. The string on the violin is tightened and when played again, the beats have a frequency of 2 Hz. The original frequency of the violin was ______.
Modern scientists say that electrons are found in a ...a. cloudb. orbitalc. puddingd. orb

The path followed by a projectile is called its _____.A. projectile motion


B. projectile path


C. trajectory


D. path of motion

Answers

The path followed by a projectile is called itstrajectory. (C)

In the most common school situation... with gravity but without air resistance, the trajectory of a projectile is the shape of an inverted parabola (nose  pointing up).  That's the result of constant horizontal velocity and accelerated vertical velocity.

Answer:

Trajectory

Explanation:

Trajectory is the path followed or traced by a projectile.

It follows a parabola shape. That is the shape got in javeline.

What is the equation for calculating a machine's efficiency?I searched all over my textbook and couldn't find it, so I decided to post my question here.

Answers

Efficiency of a machine is defined as the ratio of work performed on it to work performed by it.

What is the fundamental meaning of efficiency?

  • Efficiency is the capacity to achieve something or get a desired outcome without wasting resources, time, money, energy, or effort. In a broader sense, it is the capacity to carry out tasks effectively and efficiently.
  • Effectiveness and efficiency are frequently misunderstood. Efficiency is often a quantifiablenotion that is based on the ratio of total useful input to total useful output.
  • When a machine uses the majority of the power provided to it for its load and just a small portion for waste, it is said to be highly efficient.

Efficiency = Output energy/ Input energy

The percentage value of efficiency of a machine is calculated as:

Efficiency = (Output energy/ Input energy) X 100%

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Efficiency is usually defined as how much useful work output do you get for each unit of work input. 

Efficiency = work output/work input 

Work input = effort force * effort distance 
Work output = load force * load distance 

Which of these is the unit of measure for work?a. watts
b. joules
c. pounds
d. newtons

Answers

The SI unit of measure for work, as well as
for all other kinds of energy, is the "joule".

Which of these is the unit of measure for work?

B. Joules

Which of the following occurs when light is reflected from a rough or unpolished surface? A. The original pattern of the light is distorted.
B. The original pattern of the light is preserved.
C. The angle of reflection is less than the angle of incidence.
D. The angle of reflection is greater than the angle of incidence.

Answers

So we want to know what does occur when light is refracted from a rough and unpolished surface. The correct answer is A. the original pattern of the light is distorted because rough and unpolished surfaces dissipate light in all directions so we cant get a clear image.
The correct answer is A

A water skier has a mass of 79.0 kg and accelerates at 1.40 m/s2. What is the net force acting on him? F = ___ NAnswer choices
56.4
111
77.6
0.018
80.4
774.2

Answers

The answer is 111.

Using Newton's Second Law, F=ma, plugging known values in we get:

F = (79kg)(1.4m/s^2) = 110.6N ≈ 111N

Final answer:

The net force acting on the water skier, calculated using Newton's second law (F=ma), is approximately 111 Newtons.

Explanation:

The net force acting on the water skier can be calculated using Newton's second law, which states that force equals mass times acceleration (F=ma). In this instance, the skier's mass (m) is 79.0 kg and his acceleration (a) is 1.40 m/s2.

By multiplying these values together (F = 79.0 kg * 1.40 m/s2), we find that the net force acting on him is 110.6 Newtons (N). However, this exact value is not listed in the answer choices. Among the given choices, 111 N would be the closest approximation to the calculated value.

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A situation were you can accelerate even though your speed doesn't change

Answers

'Acceleration' doesn't mean 'speeding up'. It means any change in the speed ordirection of motion.  Any motion that's not constant speed in a straight line is accelerated motion.
Here are a few.  I'm sure you can think of lots more.

-- go around a curve on a bicycle or in a car
-- jump up in the air and come down again
-- jump from a diving board
-- stop pedaling or turn off the engine and coast to a stop
-- ride a satellite in orbit around the Earth
-- stand still on the Earth, and let it spin you around in a circle in 24 hours

Answer:

Explanation:

airplane flying around in a circle