What will be the wavelength of a ball of mass 0.2 kg is moving with a velocity of 10 Metre per second?
Table of Contents
- 1 What will be the wavelength of a ball of mass 0.2 kg is moving with a velocity of 10 Metre per second?
- 2 What will be the wavelength of a ball of mass 0.2 kg moving with velocity of 20 ms 1?
- 3 What is the wavelength of ball of mass 0.1 kg?
- 4 What will be the wavelength of an electron moving with 1/10th of velocity of light?
- 5 What will be the de Broglie wavelength of a particle with mass 1g?
- 6 What will be the de Broglie wavelength of a ball of mass 200 g?
- 7 What is the mass and velocity of the ball?
- 8 What is the mass of the ball in kg?
What will be the wavelength of a ball of mass 0.2 kg is moving with a velocity of 10 Metre per second?
Answer: According to DE BROGLIE wavelength is inversely proportional to the momentum of the particle. =2.652×10^-34 m (aprox.)
What will be the wavelength of a ball of mass 0.2 kg moving with velocity of 20 ms 1?
The de Broglie wavelength of the ball is 1.06 × 10⁻³⁴ m.
What will be the wavelength of a ball of mass 100 grams moving with a velocity of 10 m s?
λ=(6.626×10-34kgm2s-1)(0.1kg)×(100ms-1)=6.626×10-35m.
What will be the wavelength of a ball of mass 200 gram moving with a velocity of 200 Metre per second?
The wavelength associtated with a golf ball weight 200 g and moving at a speed of 5 m h^(-1) is of the order. λ=6.6×10-34200×10-3×5/(60×60)=2.38×10-10m.
What is the wavelength of ball of mass 0.1 kg?
$\lambda = \dfrac{h}{{mv}} = \dfrac{{6.626 \times {{10}^{ – 34}}Js}}{{(0.1Kg) \times 10m{s^{ – 1}}}} = 6.626 \times {10^{ – 34}}m$ . Hence, $6.626 \times {10^{ – 34}}m$ is the answer.
What will be the wavelength of an electron moving with 1/10th of velocity of light?
43×10−4m.
What is de Broglie wavelength of a ball of mass 0.12 kg moving with a speed of 20m s What can we infer from this result?
What is the de Broglie wavelength of a ball of mass 0.12 Kg moving with a speed of 20 ” ms”^(-1)? What can we infer from this result? The wave length of ball is very very small . Hence , its motion can be observed .
What is the wavelength of a ball of mass 0.1 kg?
What will be the de Broglie wavelength of a particle with mass 1g?
The de-Broglie wavelength of a particle with mass 1 g and velocity 100 m//sec is. (a) λ=hmv=6.63×10-3410-3×100=6.63×10-33m.
What will be the de Broglie wavelength of a ball of mass 200 g?
answer : option (d) 10^-30 m.
What is de Broglie wavelength associated with a ball of mass 150g?
1. 47×10−16m.
What is the de Broglie wavelength?
The wavelength (λ) that is associated with an object in relation to its momentum and mass is known as de Broglie wavelength. A particle’s de Broglie wavelength is usually inversely proportional to its force.
What is the mass and velocity of the ball?
Best answer Given, mass of ball (m) = 0.1 Kg Velocity of ball (v) = = 10 ms−1 According to the Broglie equation,
What is the mass of the ball in kg?
Given, mass of ball (m) = 0.1 Kg Velocity of ball (v) = = 10 ms−1 According to the Broglie equation, λ = h m v = 6.626 × 10 − 34 J s 0.1 K g × 10 m s − 1
What is the velocity of a 2kg and 3kg ball?
Two spherical balls of 2kg & 3 kg masses are moving towards each other with velocities of 6m/s & 4m/s respectively. What will be the velocity of smaller ball after collision if velocity of 3kg mass is 3m/s?
How do you calculate the length of a wave?
Wave length =6.62*10^-34m Ans. , B.E Bachelor of Engineering in Electrical Engineering & Sapiosexuals, Kavikulguru Institute of Technology and… It can be calculated using de broglie hypothesis where,”The de Broglie wavelength is thewavelength, λ, associated with a object and is related to its momentum and mass.”