效果是否如图?公式如下:
=IF(COUNTIF($A$1:$A$19,VLOOKUP($A1,$A2:$A$19,1,0))>1,MATCH(A1,$A2:$A$19,0)-1,"")
CAD2010注册机必须在本机运行方能激活成功,不能激活主要是你的注册激活方法不对(序列号:356-72378422 ,密钥:001B1)。
你所谓的注册机不能用不是权限高低的问题,而是你电脑上的防杀毒软件禁用了注册机的运行,把防杀毒软件暂时关闭下就可以了。
具体安装激活方法如下:
1安装(win7系统须右键点击“以管理员身份运行”)和启动AutoCAD2010~2012产品
2点击激活 :在点击激活前先断网然后再点激活 或直接点击激活(强烈建议断网激活!!!!以免出现其他问题),如果提示你的序列号是错误的,关闭提示界面返回上一级再点激活或关闭CAD2010~2012 再运行CAD2010~2012(注意此时不能再填序列号)
3选择选择“我具有Autodesk提供的激活码”(I have an activation code from Autodesk)
4运行注册机(Win7系统右键----以管理员身份运行,这一步很重要,不然会出错,同时最好把注册机复制到安装目录下运行)
5从激活界面复制申请码粘贴到注册机的"Request"栏中,点击“Mem Patch”,出现“succeed Pade”字样表示成功,再点击“Generate”生成激活码。
6从注册机“Activation”栏中复制激活码粘贴到软件激活界面的输入框中,点击“下一步”,完成激活。(复制与粘贴使用Ctrl+C与Ctrl+V)
注意:有些防、杀毒软件会报毒且会禁用注册机,造成无法运行注册机,所以在下载、解压、运行注册机时先把防杀毒软件暂时关闭。另外win7系统一定要右键点击——以管理员身份运行,否则无法正常运行注册机。同时要注意注册机也有32位与64位之分。
如果之前激活失败,把C:\ProgramData\FLEXnet文件夹里面的adskflex_00691b00_tsfdata 与adskflex_00691b00_tsfdata_backup001 两个文件删除,再运行CAD按照激活方法步骤再次激活看看。
注意二:C:\ProgramData文件夹是个系统的隐藏文件夹,win7系统需有管理员权限才能对其进行操作。同时要在“文件夹选项”——“查看”选项卡中把“显示隐藏的文件、文件夹和驱动器”选上,才能看到C:\ProgramData 这个文件夹。
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mrbhuemrg不能组成一个单词,最接近的是:hamburger。
hamburger
读音:英 [ˈhæmbɜːɡə(r)] 美 [ˈhæmbɜːrɡər] 。
释义:汉堡包;汉堡牛肉饼。
英英释义:a sandwich consisting of a fried cake of minced beef served on a bun, often with other ingredients。
翻译:一种三明治,由一块炸牛肉饼和一个小圆面包组成,通常还有其他配料。
用法示例:
1、We stopped at a drive-in for a hamburger
我们在一家“免下车”餐馆停下来吃汉堡包。
2、I suppose you'd rather be in Chicago, eating waffles and hamburgers, or suchlike
我想你可能更愿意呆在芝加哥,吃着华夫饼干和汉堡包之类的东西,对吗?
3、Avoid unhealthy foods such as hamburger and chips
不要吃不健康食品,如汉堡和薯条。
hamburger的同根词burger相关组词:
Beef Burger 牛肉汉堡包 。
cheese burger 吉事汉堡。
veggie burger 植物蛋白饼 。
hamburger 汉堡包。
burger 表示"夹馅包"。
歌曲名:My Life
歌手:Billy Joel
专辑:Piano Man/52Nd Street/Kohuept (3 Pak)
My Life
Got a call from an old friend we used to be real close
said he couldnt go on the americanway
closed the shop sold a house baught a ticket to the west coast
now he gives them a stand-up routine in LA
I dont need you to worry for me cos im alright
i dont want you to tell me its time to come home
I dont care what you say anymore this is my life
go ahead with your own life leave me alone
I never said you had to offer me a second chance
i never said i was a victim of circumstance
i stil belong, dont get me wrong
you can speak your mind but not on my time
They will tell you you cant sleep alone in a strange place
then they'll tell you you cant sleep with somebody else
oh but sooner or later you sleep in your own space
either way its ok you wake up with yourself
I dont need you to worry for me cos im alright
i dont want you to tell me its time to come home
I dont care what you say anymore this is my life
go ahead with your own life leave me alone
I never said you had to offer me a second chance
i never said i was a victim of circumstance
i stil belong, dont get me wrong
you can speak your mind but not on my time
I dont care what you say anymore this is my life
go ahead with your own life leave me alone
什么叫归一化?怎么联系到HSI格式的?
我理解的归一化是将数据变成某种相对值关系(它是一种无量纲处理手段),例如:将0~255这间的数据double化为0~1(相对值)。
从RGB到HSI只是对同一图像用不同的方式表示,这样有利于使用不同的方法进行处理。
例如:我想将一幅图像的饱和度提高,那么直接用RGB不太容易,于是转化为HSI后,就非常容易了。
下面是转换代码RGB和HSI的互换代码。
--------------------------------------------------------------------------
function
hsi=rgb2hsi(rgb)
%RGB2HSI
Converts
an
RGB
image
to
HSI
%
HSI=RGB2HSI(rgb)
converts
an
RGB
image
to
HSI
The
input
image
is
%
assumed
to
be
of
size
M-by-N-by-3,
where
the
third
dimension
accounts
%
for
three
image
planes:red,
green,
and
blue,
in
that
order
If
all
RGB
%
component
images
are
equal,
the
HSI
conversion
is
undefined
Ths
input
%
image
can
be
of
class
double
(with
values
in
the
rang[0,1]),
uint8,
or
%
uint16
%
The
output
image,
HSI,
is
of
class
double,
where:
%
hsi(:,:,1)=
hue
image
normalized
values
to
the
range
[0,1]
by
%
dividing
all
angle
values
by
2pi
%
hsi(:,:,2)=saturation
image,
in
the
range
[0,1]
%
hsi(:,:,3)=intensity
image,
in
the
range
[0,1]
%Extract
the
individual
component
images
rgb=im2double(rgb);
r=rgb(:,:,1);
g=rgb(:,:,2);
b=rgb(:,:,3);
%Implement
the
conversion
equations
num=05((r-g)+(r-b));
den=sqrt((r-g)^2+(r-b)(g-b));
theta=acos(num/(den+eps));
H=theta;
H(b>g)=2pi-H(b>g);
H=H/(2pi);
num=min(min(r,g),b);
den=r+g+b;
den(den==0)=eps;
S=1-3num/den;
H(S==0)=0;
I=(r+g+b)/3;
%Combine
all
three
results
into
an
hsi
image
hsi=cat(3,H,S,I);
function
rgb=hsi2rgb(hsi)
%HSI2RGB
Converts
an
HSI
image
to
RGB
%
HSI2RGB
Converts
an
HSI
image
to
RGB,
where
HSI
is
assumed
to
be
of
%
class
double
with:
%
hsi(:,:,1)=
hue
image
normalized
values
to
the
range
[0,1]
by
%
dividing
all
angle
values
by
2pi
%
hsi(:,:,2)=saturation
image,
in
the
range
[0,1]
%
hsi(:,:,3)=intensity
image,
in
the
range
[0,1]
%
The
components
of
the
output
image
are:
%
rgb(:,:,1)=red;
%
rgb(:,:,2)=green
%
rgb(:,:,3)=blue
%Extract
the
individaul
HSI
component
images
H=hsi(:,:,1)2pi;
S=hsi(:,:,2);
I=hsi(:,:,3);
%Implement
the
conversion
equations
R=zeros(size(hsi,1),size(hsi,2));
G=zeros(size(hsi,1),size(hsi,2));
B=zeros(size(hsi,1),size(hsi,2));
%
RG
sector
(0<=H<2pi/3)
idx=find((0<=H)&(H<2pi/3));
B(idx)=I(idx)(1-S(idx));
R(idx)=I(idx)(1+S(idx)cos(H(idx))/cos(pi/3-H(idx)));
G(idx)=3I(idx)-(R(idx)+B(idx));
%BG
sector
(2pi/3<=H<4pi/3)
idx=find((2pi/3<=H)&(H<4pi/3));
R(idx)=I(idx)(1-S(idx));
G(idx)=I(idx)(1+S(idx)cos(H(idx)-2pi/3)/cos(pi-H(idx)));
B(idx)=3I(idx)-(R(idx)+G(idx));
%BR
sector
idx=find((4pi/3<=H)&(H<=2pi));
G(idx)=I(idx)(1-S(idx));
B(idx)=I(idx)(1+S(idx)cos(H(idx)-4pi/3)/cos(5pi/3-H(idx)));
R(idx)=3I(idx)-(G(idx)+B(idx));
%Combine
all
three
results
into
an
RGB
image
Clip
to
[0,1]
to
compensate
for
floating-point
arithmetic
rounding
effects
rgb=cat(3,R,G,B);
rgb=max(min(rgb,1),0);
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