-rw-r--r-- | demo-init.lua | 2 | ||||
-rw-r--r-- | demos/fractals.lua | 2 | ||||
-rw-r--r-- | demos/linfit.lua | 2 | ||||
-rw-r--r-- | demos/svg.lua | 2 | ||||
-rw-r--r-- | demos/vegas.lua | 2 |
diff --git a/demo-init.lua b/demo-init.lua index fd1e0ee9..a435c531 100644 --- a/demo-init.lua +++ b/demo-init.lua @@ -24,7 +24,7 @@ end local function print_demos_list() for group, t in pairs(demo_list) do - print('*** ', group) + io.write('*** ', group, '\n') for k, v in ipairs(t) do print(v.name .. ' - ' .. v.description) end diff --git a/demos/fractals.lua b/demos/fractals.lua index 86ad8f5b..6ef492cb 100644 --- a/demos/fractals.lua +++ b/demos/fractals.lua @@ -133,7 +133,7 @@ end return {'Fractals', { { - name = 'vonkock', + name = 'vonkoch', f = von_koch_demo, description = 'Von Koch\'s curve', }, diff --git a/demos/linfit.lua b/demos/linfit.lua index 7fdfde07..c3060992 100644 --- a/demos/linfit.lua +++ b/demos/linfit.lua @@ -53,7 +53,7 @@ local function demo2() local p = graph.fxplot(fitleg, x0, x1) p:addline(graph.xyline(x, y), 'blue', {{'marker', size=5}}) - p.title = 'Legendre Polinomial fit of Bessel J3(x)' + p.title = 'Legendre polynomial fit of Bessel J3(x)' p.clip = false return p diff --git a/demos/svg.lua b/demos/svg.lua index afb4b892..29d67d36 100644 --- a/demos/svg.lua +++ b/demos/svg.lua @@ -78,7 +78,7 @@ local function demo1() local p = do_plot(save_svg, 'circle', 5, true) p:save('demo', 600, 400) - print 'Plot saved in BMP format in demo.bmp (demo.ppm on linuex).' + print 'Plot saved in BMP format in demo.bmp (demo.ppm on linux).' p:show() end diff --git a/demos/vegas.lua b/demos/vegas.lua index 9ff47770..28a7e945 100644 --- a/demos/vegas.lua +++ b/demos/vegas.lua @@ -29,7 +29,7 @@ local function demo1() local maxdim = 10 local lo,hi = 0,2 local results = {} - local p = graph.plot('Integral of sum (i*x_i^2) (i=1..'..maxdim..')') + local p = graph.plot('Integral of sum (i*x_i^2) (i=1..n)') p.clip, p.pad = false, true local exact = graph.filine(|n| n*(n+1)/2 * (hi^3 - lo^3)/3 * (hi-lo)^(n-1),maxdim) local computed = graph.filine(testdim,1,maxdim) |