文件名称:film
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根据对真空蒸发镀膜的分析,在40×40的范围内分别蒸
发:1000、5000、10000、20000、30000个粒子。
利用2维数组记录每个点的粒子数。
初始粒的横纵坐标为0~40的均匀分布。
能量为(15,3)的正态分布。
在基体表面自由行走时损失1的能量。
若该点有粒子,即与其他粒子相遇时损失3的能量。
由低处向高处扩散,每扩散一层,损失4的能量,由高处
向低处扩散,损失3的能量。
当粒子的能量小于等于0时停留下来,该点的粒子数加1。
临界核的尺寸为10个粒子。
根据每个点粒子个数的不同,以不同的灰度显示这些点。
点越亮,则表示该点的膜越厚。
以图形方式显示粒子初始能量的正态分布情况-Based on the analysis of the vacuum evaporation coating, respectively, in the range of from 4040 evaporated: 1000,5000,10000,20000,30000 particles. each point using 2-dimensional array to record the number of particles. The initial grains transverse and longitudinal coordinates of a uniform distribution of 0 to 40. The energy as a normal distribution (15,3). 1 energy losses in the substrate surface to walk. point particles that 3 energy loss in the encounter with the other particles. by the lower diffusion tops every diffusion layer, a loss of 4 energy diffusion from high to low, the energy loss of 3. When the energy of the particles is less than or equal to 0:00 stay down, add 1 to the number of particles that point. critical nucleus size of 10 particles. these points, depending on the number of particles of each point is displayed in a different shade. Point, the brighter, the thicker the point of the fi
发:1000、5000、10000、20000、30000个粒子。
利用2维数组记录每个点的粒子数。
初始粒的横纵坐标为0~40的均匀分布。
能量为(15,3)的正态分布。
在基体表面自由行走时损失1的能量。
若该点有粒子,即与其他粒子相遇时损失3的能量。
由低处向高处扩散,每扩散一层,损失4的能量,由高处
向低处扩散,损失3的能量。
当粒子的能量小于等于0时停留下来,该点的粒子数加1。
临界核的尺寸为10个粒子。
根据每个点粒子个数的不同,以不同的灰度显示这些点。
点越亮,则表示该点的膜越厚。
以图形方式显示粒子初始能量的正态分布情况-Based on the analysis of the vacuum evaporation coating, respectively, in the range of from 4040 evaporated: 1000,5000,10000,20000,30000 particles. each point using 2-dimensional array to record the number of particles. The initial grains transverse and longitudinal coordinates of a uniform distribution of 0 to 40. The energy as a normal distribution (15,3). 1 energy losses in the substrate surface to walk. point particles that 3 energy loss in the encounter with the other particles. by the lower diffusion tops every diffusion layer, a loss of 4 energy diffusion from high to low, the energy loss of 3. When the energy of the particles is less than or equal to 0:00 stay down, add 1 to the number of particles that point. critical nucleus size of 10 particles. these points, depending on the number of particles of each point is displayed in a different shade. Point, the brighter, the thicker the point of the fi
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film.doc